Hand Held Products Barcode Reader IT5600 User Manual

IT5600  
Retail/Commercial Handheld Linear Imager  
IT5800  
Industrial Handheld Linear Imager  
User’s Guide  
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Statement of Agency Compliance  
This device complies with part 15 of the FCC Rules. Operation is subject to the  
following two conditions: (1) this device may not cause harmful interference, and  
(2) this device must accept any interference received, including interference that  
may cause undesired operation.  
FCC Class B Compliance Statement  
This equipment has been tested and found to comply with the limits for a Class  
B digital device pursuant to part 15 of the FCC Rules. These limits are designed  
to provide reasonable protection against harmful interference in a residential  
installation. This equipment generates, uses, and can radiate radio frequency  
energy and, if not installed and used in accordance with the instructions, may  
cause harmful interference to radio communications. However, there is no  
guarantee that interference will not occur in a particular installation. If this  
equipment does cause harmful interference to radio or television reception,  
which can be determined by turning the equipment off and on, the user is  
encouraged to try to correct the interference by one or more of the following  
measures:  
Reorient or relocate the receiving antenna.  
Increase the separation between the equipment and receiver.  
Connect the equipment into an outlet on a circuit different from that to  
which the receiver is connected.  
Consult the dealer or an experienced radio or television technician for  
help.  
Caution: Any changes or modifications made to this device that are not  
expressly approved by Hand Held Products may void the user’s authority to  
operate the equipment.  
Note: To maintain compliance with FCC Rules and Regulations, cables  
connected to this device must be shielded cables, in which the cable shield  
wire(s) have been grounded (tied) to the connector shell.  
Canadian Notice  
This equipment does not exceed the Class B limits for radio noise emissions as  
described in the Radio Interference Regulations of the Canadian Department of  
Communications.  
Le present appareil numerique n’emet pas de bruits radioelectriques depassant  
les limites applicables aux appareils numeriques de la classe B prescrites dans  
le Reglement sur le brouillage radioelectrique edicte par le ministere des  
Communications du Canada.  
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The CE mark on the product indicates that the system has been  
tested to and conforms with the provisions noted within the 89/336/  
EEC Electromagnetic Compatibility Directive and the 73/23/EEC  
Low Voltage Directive.  
For CE-related inquiries, please contact:  
Hand Held Products  
Nijverheidsweg 9  
5627 BT Eindhoven  
The Netherlands  
Hand Held Products shall not be liable for use of our product with equipment (i.e.,  
power supplies, personal computers, etc.) that is not CE marked and does not  
comply with the Low Voltage Directive.  
UL and cUL Statement  
UL listed UL1950 and CSA 22.2 No.950. cUL listed UL1950 and CSA 22.2 No  
950.  
LED Safety Statement  
This device has been tested in accordance with EN60825-1 LED safety, and has  
been certified to be under the limits of a Class 1 LED device.  
Aimer Beam Safety Statement (IT5800 Option only)  
This device has been tested in accordance with and complies  
with EN60825-1: 1994+A11+A2 and 21 CFR 1040.10 and  
1040.11, except for deviations pursuant to Laser Notice No.  
50, dated July 26, 2001.  
LASER LIGHT, DO NOT STARE INTO BEAM, CLASS 2 LASER PRODUCT,  
1.0 mW MAX OUTPUT: 650nM.  
Caution: Use of controls or adjustments or performance of procedures  
other than those specified herein may result in hazardous  
radiation exposure.  
TÜV Statement  
TÜV or GS marked to EN60950 and EN60825-1.  
C-Tick Statement  
Conforms to AS/NZS 3548. C-Tick number: N10410.  
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Mexico  
Patents  
Certified  
Please refer to the IT5600/5800 packaging for patent information.  
Solids and Water Protection  
The IT5600 has a rating of IP41, immunity of foreign particles and dripping water.  
The IT5800 has a rating of IP54, immunity of windblown dust penetration and  
splashing water.  
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IT5600/5800 ......................................................................... 1-1  
IBM 4683 Ports 5B, 9B, and 17 Interface...................... 1-8  
IBM SurePos................................................................ 1-10  
Chapter 2 - Terminal Interfaces  
Terminal ID .......................................................................... 2-1  
Supported Terminals............................................................. 2-2  
Keyboard Country ................................................................ 2-4  
Keyboard Style ..................................................................... 2-5  
Keyboard Modifiers.............................................................. 2-6  
i
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Wand Emulation Transmission Rate............................ 2-12  
Wand Emulation Idle ................................................... 2-13  
Chapter 3 - Output  
Reread Delay ........................................................................ 3-5  
User-Specified Reread Delay......................................... 3-6  
Aimer Beam Delay (Aimer Beam option only).................... 3-7  
User-Specified Aimer Beam Delay................................ 3-7  
Aimer Mode (Aimer Beam option only) .............................. 3-7  
Aimer Beam Time-Out (Aimer Beam option only) ............. 3-8  
Centering Window................................................................ 3-8  
ii  
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Output Sequence Editor................................................ 3-11  
Suffix Selections............................................................. 4-4  
Intercharacter, Interfunction, and Intermessage Delays ....... 4-4  
Data Format Editor Introduction........................................... 5-1  
Other Programming Selections ...................................... 5-2  
Chapter 6 - Secondary Interface  
IT5600 Models...................................................................... 6-1  
IT5800 Models...................................................................... 6-1  
Enabling the Secondary Interface ......................................... 6-1  
Secondary RS-232 Connection............................................. 6-2  
iii  
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Secondary Code 39 Wand Emulation................................... 6-2  
Laser Emulation Transmission Rate..................................... 6-3  
Code 93 Message Length............................................. 7-11  
Code 93 Code Page...................................................... 7-11  
Code 2 of 5.......................................................................... 7-12  
Code 2 of 5 Message Length........................................ 7-12  
IATA Code 2 of 5 Message Length............................. 7-13  
Matrix 2 of 5....................................................................... 7-13  
Matrix 2 of 5 Message Length ..................................... 7-14  
iv  
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EAN/JAN 13 Addenda Separator................................. 7-25  
ISBN Translate............................................................. 7-25  
EAN/JAN 8......................................................................... 7-26  
EAN/JAN 8 Check Digit.............................................. 7-26  
EAN/JAN 8 Addenda................................................... 7-26  
EAN/JAN 8 Addenda Required ................................... 7-27  
EAN/JAN 8 Addenda Separator................................... 7-27  
v
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PosiCode Message Length........................................... 7-34  
Codablock F Message Length...................................... 7-35  
Code 49............................................................................... 7-37  
Code 49 Message Length............................................. 7-37  
Chapter 9 - Utilities  
To Add a Test Code I.D. Prefix to All Symbologies............ 9-1  
Resetting the Standard Product Defaults.............................. 9-1  
Temporary Visual Menu 2003 Configuration ...................... 9-2  
Chapter 10 - Visual Menu 2003  
Visual Menu 2003 Introduction.......................................... 10-1  
Installing Visual Menu 2003 from the Web................. 10-1  
vi  
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Query Commands......................................................... 11-2  
Responses ..................................................................... 11-2  
Chapter 12 - Product Specifications  
IT5600 Product Specifications............................................ 12-1  
Maintenance........................................................................ 13-1  
Chapter 14 - Customer Support  
Product Service and Repair................................................. 14-1  
Online Product Service and Repair Assistance ............ 14-2  
Technical Assistance........................................................... 14-2  
Online Technical Assistance ........................................ 14-2  
Limited Warranty................................................................ 14-2  
vii  
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Appendix A - Appendix A  
Symbology Chart..................................................................A-1  
ASCII Conversion Chart (Code Page 1252).........................A-2  
Code Page Mapping of Printed Bar Codes...........................A-4  
viii  
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1
Getting Started  
IT5600/5800  
The IT5600 and IT5800 mark a new performance level for handheld scanners.  
Both the IT5600 and IT5800 are powered by Hand Held Products AdaptusTM  
Imaging Technology. The performance of Adaptus technology delivers  
aggressive read rates and depths of field on 1D, stacked linear, and matrix  
codes.  
Designed for today’s demanding retail and commercial environments, the  
IT5600 offers a superior reading range, durability, and the ability to read poor  
quality bar codes. Linear imaging technology is defined by a bright and sharply  
focused aiming line, high resolution imaging, and fast reading speed. The  
IT5600 is comfortable to hold, easy to use, rugged, and excellent for retail  
applications, as well as for all general scanning applications.  
The IT5800 handheld industrial image reader is the first industrial class reader to  
be powered by Hand Held Products Adaptus imaging technology. Adaptus  
technology allows you to read bar codes at ranges up to 82 inches on paper  
labels. In addition, this technology allows your IT5800 to pick up and process  
your bar code image 270 times per second. Although the IT5800 uses the same  
general ergonomic design as the IT5600, the IT5800 is built to withstand your  
toughest industrial applications.  
About This Manual  
This User’s Guide provides installation and programming instructions for the  
IT5600/5800. Product specifications, dimensions, warranty, and customer  
support information are also included.  
Hand Held Products bar code scanners are factory programmed for the most  
common terminal and communications settings. If you need to change these  
settings, programming is accomplished by scanning the bar codes in this guide.  
An asterisk (*) next to an option indicates the default setting.  
Unpacking the Scanner  
After you open the shipping carton containing the IT5600/5800, take the  
following steps:  
Check to make sure everything you ordered is present.  
Check for damage during shipment. Report damage immediately to the  
carrier who delivered the carton.  
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IT5600 Models  
Note: The Hand Held Products IT5600 scanner may be used with many  
interfaces, which are described in this user’s guide. Refer to the chart  
below to determine the models that can be used with the interface you are  
using. Refer to Chapter 6 for programming information regarding  
Secondary Interfaces.  
The chart below lists the IT5600 scanner models. “SR” indicates “Standard  
Range” linear optics.  
Secondary  
Interfaces  
Models  
Primary Interfaces  
5600SRX00  
5600SR030  
TTL Level 232  
Laser Emulation  
True RS-232  
True RS-232, True RS-232  
serial wedge  
5600SRX50  
Keyboard wedge, TTL level  
232, TTL level 232 serial  
Wand Emulation, TTL  
level 232  
wedge, IBM 4683, wand emula-  
USB retail (IBM SurePOS)  
IT5800 Models  
Note: The Hand Held Products IT5800 scanner may be used with many  
interfaces, which are described in this user’s guide. Refer to the chart  
below to determine the models that can be used with the interface you are  
using. Refer to Chapter 6 for programming information regarding  
Secondary Interfaces.  
The chart below lists the IT5800 scanner models. “SR” indicates “Standard  
Range” linear optics. If the product number has the number one (1) as the last  
character, the unit contains the aimer beam option (e.g., 5800SR001).  
Secondary  
Interfaces  
Models  
Primary Interfaces  
5800SR00X  
5800SR03X  
TTL Level 232  
Laser Emulation  
True RS-232  
True RS-232, True RS-232  
serial wedge  
1 - 2  
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Secondary  
Interfaces  
Models  
Primary Interfaces  
5800SR05X  
Keyboard wedge, TTL level  
232, TTL level 232 serial  
Wand Emulation, TTL  
level 232  
wedge, IBM 4683, wand emula-  
tion, USB keyboard, USB HID,  
USB retail (IBM SurePOS)  
IT5600/5800 Scanner Identification  
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IT5800 Scanner (with aimer beam option) Identification  
1 - 4  
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Connecting the Scanner When Powered by Host  
(Keyboard Wedge)  
A scanner can be connected between the keyboard and PC as a “keyboard  
wedge,” plugged into the serial port, or connected to a portable data terminal in  
wand emulation or non decoded output mode. The following is an example of a  
keyboard wedge connection:  
1. Turn off power to the terminal/computer.  
2. Disconnect the keyboard cable  
from the back of the terminal/  
computer.  
Disconnect  
3. Connect the  
appropriate  
interface  
3
cable to the  
scanner and  
to the  
terminal/  
computer.  
2
1
4. Turn the terminal/computer power back on. The scanner beeps.  
5. Verify the scanner operation by scanning a bar code from the Sample  
Symbols in the back of this manual. The scanner beeps once.  
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Reading Techniques  
The scanner has a view finder that projects a bright red aiming beam that  
corresponds to its horizontal field of view. The aiming line should be centered  
horizontally over the bar code; it will not read if the aiming line is in any other  
direction.  
Good Read  
Bad Read  
Bad Read  
The best focus point for reading most code densities is about 5 inches (12.7 cm)  
from the unit. To read single or multiple symbols (on a page or on an object),  
hold the imager at an appropriate distance from the target, pull the trigger, and  
center the aiming line on the symbol.  
Resetting the Standard Product Defaults  
If you aren’t sure what programming options are in your scanner, or you’ve  
changed some options and want the factory settings restored, scan the  
Standard Product Default Settings bar code below.  
Standard Product Default Settings  
The Menu Commands starting on page 11-5 lists the factory default settings for  
each of the commands (indicated by an asterisk (*) on the programming pages).  
Plug and Play  
Plug and Play bar codes provide instant scanner set up for commonly used  
interfaces.  
1 - 6  
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Note: After you scan one of the codes, power cycle the host terminal to have the  
interface in effect.  
Keyboard Wedge Connection  
IT5600 scanners are factory programmed for a keyboard wedge interface to an  
IBM PC AT with a USA keyboard. If this is your interface and you do not need to  
modify the settings, skip to Chapter 3 - Output.  
If you programmed the scanner for a different terminal interface and you want to  
change to an IBM PC AT and compatibles keyboard wedge interface, scan the  
bar code below.  
Note: The following bar code also programs a carriage return (CR) suffix.  
IBM PC AT and Compatibles  
with CR suffix  
Laptop Direct Connect  
For most laptops, scanning the Laptop Direct Connect bar code allows  
operation of the scanner in parallel with the integral keyboard. The following  
Laptop Direct Connect bar code selects terminal ID 03, programs a carriage  
return (CR) suffix and turns on Emulate External Keyboard (page 2-5).  
Laptop Direct Connect  
with CR suffix  
RS-232  
The RS-232 Interface bar code is used when connecting to the serial port of a  
PC or terminal. The following RS-232 Interface bar code also programs a  
carriage return (CR) and a line feed (LF) suffix, baud rate, and data format as  
indicated below. It also changes the trigger mode to manual.  
Option  
Setting  
Baud Rate  
Data Format  
38400 bps  
8 data bits, no parity bit, 1 stop bit  
RS-232 Interface  
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Wand Emulation Plug & Play  
In Wand Emulation mode, the imager decodes the bar code then sends data in  
the same format as a wand imager. The Code 39 Format converts all  
symbologies to Code 39.  
The Same Code Format transmits UPC, EAN, Code 128 and Interleaved 2 of 5  
without any changes, but converts all other symbologies to Code 39.  
The Wand Emulation Plug & Play Code 39 Format bar code below sets the  
terminal ID to 61. The Wand Emulation Plug & Play Same Code Format bar  
code sets the terminal ID to 64. These Plug & Play bar codes also set the  
Transmission Rate to 25 inches per second, Output Polarity to black high, and  
Idle State to high. (If you want to change the terminal ID only, without changing  
any other imager settings, please refer to Wand Emulation Connection on page  
2-11.)  
Wand Emulation (Code 39 Format)  
Wand Emulation Same Code  
IBM 4683 Ports 5B, 9B, and 17 Interface  
Scan one of the following “Plug and Play” codes to program the 56/5800SR050  
for IBM 4683 Port 5B, 9B, or 17.  
Note: After scanning one of these codes, you must power cycle the cash  
register.  
IBM 4683 Port 5B Interface  
IBM 4683 Port 9B HHBCR-1 Interface  
IBM 4683 Port 9B HHBCR-2 Interface  
IBM 4683 Port 17 Interface  
1 - 8  
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Each bar code above also programs the following suffixes for each symbology:  
Symbology  
EAN 8  
Suffix  
0C  
EAN 13  
16  
UPC A  
0D  
UPC E  
0A  
Code 39  
00 0A 0B  
00 0D 0B  
00 0A 0B  
00 18 0B  
Interleaved 2 of 5  
Code 128 *  
Code 128 **  
* Suffixes programmed for Code 128 with IBM 4683 Port 5B, IBM 4683 Port 9B HHBCR-1,  
and IBM 4683 Port 17 Interfaces  
**Suffixes programmed for Code 128 with IBM 4683 Port 9 HHBCR-2 Interface  
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Connecting the Scanner with USB  
A scanner can be connected to the USB port of a computer.  
1. Connect the appropriate interface cable to the scanner and to the computer.  
2. The scanner beeps.  
3. Verify the scanner operation by scanning a bar code from the Sample  
Symbols in the back of this manual.  
Note: The following USB “Plug and Play” codes are supported on specific  
IT5600 and IT5800 models. Refer to IT5600 Models and IT5800  
Models on page 1-2 to determine if this interface applies to your scanner.  
IBM SurePos  
Scan one of the following “Plug and Play” codes to program the IT5600/5800 for  
IBM SurePos (USB Handheld scanner) or IBM SurePos (USB Tabletop  
scanner).  
1 - 10  
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Note: After scanning one of these codes, you must power cycle the cash  
register.  
IBM SurePos (USB Handheld Scanner) Interface  
IBM SurePos (USB Tabletop Scanner) Interface  
Each bar code above also programs the following suffixes for each symbology:  
Symbology  
EAN 8  
Suffix  
0C  
EAN 13  
16  
UPC A  
0D  
UPC E  
0A  
Code 39  
Interleaved 2 of 5  
Code 128  
00 0A 0B  
00 0D 0B  
00 18 0B  
USB PC or Macintosh Keyboard  
Scan one of the following codes to program the IT5600/5800 for USB PC  
Keyboard or USB Macintosh Keyboard. Scanning these codes adds a CR and  
selects the terminal ID (USB PC Keyboard - 124, USB Macintosh Keyboard -  
125).  
USB Keyboard (PC)  
USB Keyboard (Mac)  
USB HID  
Scan the following code to program the IT5600/5800 for USB HID bar code  
USB HID Bar Code Scanner  
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USB Com Port Emulation  
The driver will use the next available Com Port number. Apple® Macintosh  
computers recognize the imager as a USB CDC class device and automatically  
uses a class driver. Scanning the code below changes the terminal ID to 130.  
USB Com Port Emulation  
Note: No extra configuration (e.g., baud rate) is necessary.  
CTS/RTS Emulation  
On  
* Off  
ACK/NAK Mode  
On  
* Off  
Connecting the Scanner with Serial Wedge  
The IT5600/5800 uses True and TTL signal levels to wedge into an RS-232 serial  
network. Use only IT5600/5800 serial wedge cables to prevent damage to the  
scanner. Refer to Connecting the Scanner with RS-232 Serial Port on page 2-8  
to set the baud rate and communications protocol.  
1. Turn off power to the computer.  
2. Disconnect the existing serial cable from the computer.  
3. Connect the appropriate interface cable to the scanner.  
1 - 12  
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Note: For the scanner to work properly, you must have the correct cable for your  
type of computer.  
To Host  
5
4
3
6
4. Plug the serial connector into the serial port on your computer. Tighten the  
two screws to secure the connector to the port.  
5. Plug the other serial connector into the host connection and tighten the two  
screws.  
6. Plug the power pack cable into the receptor on the scanner cable.  
7. Plug the power pack into a power source.  
8. Once the scanner has been fully connected, power up the computer.  
To set up the serial wedge terminal ID, use the serial terminal ID 050 and follow  
the instructions on page 2-1. Set the port to which you want the scanned data to  
transmit. Port 1 corresponds to P1 on the output cable and Port 2 corresponds  
to P2 on the output cable. Choosing Both sends scanned data to P1 and P2.  
Default = P1.  
* P1  
P2  
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2
Terminal ID  
If your interface is not a standard PC AT, refer to "Supported Terminals" on  
page 2-2 through page 2-3, and locate the Terminal ID number for your PC.  
Scan the Terminal ID bar code below, then scan the numeric bar code(s) from  
the Programming Chart inside the back cover of this manual to program the  
scanner for your terminal ID. Scan Save to save your selection.  
For example, an IBM AT terminal has a Terminal ID of 003. You would scan the  
Terminal ID bar code, then 0, 0, 3 from the Programming Chart inside the back  
cover of this manual, then Save. If you make an error while scanning the digits  
(before scanning Save), scan the Discard code on the Programming Chart, scan  
the Terminal ID bar code, scan the digits, and the Save code again.  
Terminal ID  
Save  
Note: After scanning one of these codes, you must power cycle your computer.  
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Supported Terminals  
Terminal  
Model(s)  
Terminal ID  
DEC  
DEC  
VT510, 520, 525 (PC style)  
VT510, 520, 525 (DEC style  
LK411)  
005  
104  
Esprit  
Heath Zenith  
HP  
IBM  
IBM  
200, 400  
PC, AT  
Vectra  
005  
003  
003  
001  
002  
003 *  
XT  
PS/2 25, 30, 77DX2  
AT, PS/2 30–286, 50, 55SX, 60,  
70, 70–061, 70–121, 80  
IBM  
IBM 102 key  
3151, 3161, 3162, 3163, 3191,  
3192, 3194, 3196, 3197, 3471,  
3472, 3476, 3477  
006  
IBM 122 key  
IBM 122 key  
3191, 3192, 3471, 3472  
3196, 3197, 3476, 3477, 3486,  
3482, 3488  
007  
008  
IBM 122 key  
IBM 122 key  
IBM DOS/V 106 key  
IBM SurePOS  
IBM SurePOS  
IBM Thinkpad  
IBM Thinkpad  
IBM Thinkpad  
I/O 122 key  
ITT  
3180  
024  
114  
102  
128***  
129***  
097  
106  
003  
008  
007  
007  
103  
001  
003  
3180 data entry keyboard  
PC & Workstation  
USB Handheld Scanner  
USB Tabletop Scanner  
360 CSE, 340, 750  
365, 755CV  
2676D, 2677C, 2677D  
9271  
Lee Data  
NEC  
Olivetti  
Olivetti  
IIS  
98XX Series  
M19, M200  
M240, M250, M290, M380,  
P500  
RS-232 True  
RS-232 TTL  
Serial Wedge  
Silicon Graphics  
Telex 88 key  
000**  
000  
050  
005  
025  
Indy, Indigoll  
078, 078A, 79, 80, 191, 196,  
1191,1192, 1471, 1472, 1476,  
1477, 1483  
Telex 88 key  
Telex 102 key  
Data Entry Keyboard  
112  
045  
078, 078A, 79, 80, 191, 196,  
1191,1192, 1471, 1472, 1476,  
1477, 1483  
2 - 2  
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Supported Terminals (Continued)  
Terminal  
Model(s)  
Terminal ID  
Telex 122 key  
078, 078A, 79, 80, 191, 196,  
1191,1192, 1471, 1472, 1476,  
1477, 1482, 1483  
046  
USB PC Keyboard  
USB Mac Keyboard  
USB Com Port  
124***  
125***  
130  
USB HIDPOS  
Wand Emulation (Code  
39 Format)  
131***  
061  
Wand Emulation (Same  
Code Format)  
064  
* Default for 5600SR010 and 56/5800SR050 models  
** Default for 5600SR030 model (applies to 5600SR030 models only)  
***Applies to 56/5800SR050 model only. It is best to use the Plug and Play bar codes on  
page 1-11 to program these interfaces, rather than scanning the terminal ID listed in this  
table.  
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Keyboard Country  
Scan the appropriate country code below to program the keyboard for your  
country. As a general rule, the following characters are supported, but need  
special care for countries other than the United States:  
@ | $ # { } [ ] = / ‘ \ < > ~  
* United States  
Belgium  
Denmark  
Finland  
France  
Germany/Austria  
Great Britain  
Italy  
Norway  
Spain  
Switzerland  
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Please refer to Hand Held Products website ( www.handheld.com) for complete  
keyboard country support information and applicable interfaces. If you need to  
program a keyboard for a country other than one listed above, scan the Program  
Keyboard Country bar code below, then scan the numeric bar code(s) for the  
appropriate country from the inside back cover, then the Save bar code.  
Program Keyboard Country  
Keyboard Style  
This programs keyboard styles, such as Caps Lock and Shift Lock. Default =  
Regular.  
Regular is used when you normally have the Caps Lock key off.  
* Regular  
Caps Lock is used when you normally have the Caps Lock key on.  
Caps Lock  
Shift Lock is used when you normally have the Shift Lock key on (not common  
to U.S. keyboards).  
Shift Lock  
Automatic Caps Lock is used if you change the Caps Lock key on and off. The  
software tracks and reflects if you have Caps Lock on or off (AT and PS/2 only).  
This selection can only be used with systems that have an LED which notes the  
Caps Lock status.  
Automatic Caps Lock  
Autocaps via NumLock bar code should be scanned in countries (e.g.,  
Germany, France) where the Caps Lock key cannot be used to toggle Caps  
Lock. The NumLock option works similarly to the regular Auotcaps, but uses the  
NumLock key to retrieve the current state of the Caps Lock.  
Autocaps via NumLock  
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Emulate External Keyboard should be scanned if you do not have an external  
keyboard (IBM AT or equivalent).  
Emulate External Keyboard  
Note: After scanning the Emulate External Keyboard bar code, you must power  
cycle your computer.  
Keyboard Modifiers  
This modifies special keyboard features, such as CTRL+ ASCII codes and Turbo  
Mode.  
Control + ASCII Mode On: The scanner sends key combinations for ASCII  
control characters for values 00-1F. Refer to Keyboard Function  
Relationships, page 8-1 for CTRL+ ASCII Values. Default = Off  
Control + ASCII Mode On  
* Control + ASCII Mode Off  
Turbo Mode: The scanner sends characters to a terminal faster. If the terminal  
drops characters, do not use Turbo Mode. Default = Off  
Turbo Mode On  
* Turbo Mode Off  
Numeric Keypad Mode: Sends numeric characters as if entered from a  
numeric keypad. Default = Off  
Numeric Keypad Mode On  
* Numeric Keypad Mode Off  
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Automatic Direct Connect Mode: This selection can be used if you have an  
IBM AT style terminal and the system is dropping characters. Default = Off  
Automatic Direct  
Connect Mode On  
* Automatic Direct Connect  
Mode Off  
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Connecting the Scanner with RS-232 Serial Port  
Note: These instructions are for use with the RS-232 power stealer cable.  
1. Turn off power to the terminal/computer.  
2. Connect the appropriate interface cable to the scanner.  
Note: For the scanner to work properly, you must have the correct cable for your  
type of terminal/computer.  
5
2
4
3
3. Unplug the mouse or keyboard from the computer. Plug the mouse or  
keyboard into the power tap on the scanner cable.  
4. Plug the power tap into the mouse or keyboard port.  
5. Plug the serial connector into the serial port on your computer. Tighten the  
two screws to secure the connector to the port.  
6. Once the scanner has been fully connected, power up the computer.  
All communication parameters between the scanner and terminal must match for  
correct data transfer through the serial port using RS-232 protocol. Scanning the  
RS-232 interface bar code, programs the scanner for an RS-232 interface at  
38,400 baud, parity–none, 8 data bits, 1 stop bit, and adds a suffix of a CR LF.  
RS-232 Interface  
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RS-232 Baud Rate  
Baud Rate sends the data from the scanner to the terminal at the specified rate.  
The host terminal must be set for the same baud rate as the scanner.  
Default = 115,200.  
300  
600  
1200  
2400  
4800  
9600  
19200  
38400  
57,600  
* 115,200  
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RS-232 Word Length: Data Bits, Stop Bits, and Parity  
Data Bits sets the word length at 7 or 8 bits of data per character. If an  
application requires only ASCII Hex characters 0 through 7F decimal (text, digits,  
and punctuation), select 7 data bits. For applications which require use of the full  
ASCII set, select 8 data bits per character. Default = 8.  
Stop Bits sets the stop bits at 1 or 2. Default = 1.  
Parity provides a means of checking character bit patterns for validity.  
Default = None.  
7 Data, 1 Stop, Parity Even  
7 Data, 1 Stop, Parity None  
7 Data, 1 Stop, Parity Odd  
7 Data, 2 Stop, Parity Even  
7 Data, 2 Stop Parity None  
7 Data, 2 Stop, Parity Odd  
8 Data, 1 Stop, Parity Even  
* 8 Data, 1 Stop, Parity None  
8 Data, 1 Stop, Parity Odd  
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RS-232 Handshaking  
RS-232 handshaking is a set of rules concerning the exchange of data between  
serially communicating devices. Default = RTS/CTS, XON/XOFF and ACK/  
NAK Off  
RTS/CTS On  
* RTS/CTS Off  
XON/XOFF On  
* XON/OFF Off  
ACK/NAK On  
Wand Emulation Connection  
The Wand Emulation Connection bar codes should be used if you want to  
change the terminal ID only, without changing any other imager settings. We  
recommend using Wand Emulation Plug & Play bar codes to program your  
imager to emulate a wand reader. The Wand Emulation Plug & Play bar codes  
change other parameters, in addition to changing the terminal ID. Please refer  
to Wand Emulation Plug & Play on page 1-8 for further information.  
In Wand Emulation mode, the imager decodes the bar code then sends data in  
the same format as a wand imager. The Code 39 Format converts all  
symbologies to Code 39.  
The Same Code Format transmits UPC, EAN, Code 128 and Interleaved 2 of 5  
without any changes, but converts all other symbologies to Code 39. 2D  
symbologies are converted to Code 128.  
The Code 39 Format bar code below sets the terminal ID to 61, and the Same  
Code Format bar code sets the terminal ID to 64.  
Code 39 Format  
Same Code Format  
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Wand Emulation Transmission Rate  
The transmission rate is limited by the terminal’s ability to receive data without  
dropping characters. Default = 25 inches/second.  
10  
* 25  
40  
80  
120  
150  
200  
Wand Emulation Polarity  
The Polarity can be sent as standard with black bars high, or reversed with white  
bars high. Default = Black High.  
* Black High  
White High  
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Wand Emulation Idle  
The idle describes the state of the scanner when no data is being transmitted.  
When in Wand Emulation mode, you must set the scanner’s idle state to match  
the idle state for the device to which the scanner is connected. Default = Idle  
High.  
* Idle High  
Idle Low  
Wand Emulation  
Note: Changing primary wand emulation settings also changes the secondary  
wand emulation settings (see Secondary Code 39 Wand Emulation on  
page 6-2).  
Data Block Size  
Note: This option is not applicable to Laser Emulation Raw Output (see  
Secondary Laser Emulation on page 6-3).  
This transmits the data in smaller blocks to prevent buffer overflow. Default = 40.  
20  
* 40  
60  
80  
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Delay Between Blocks  
Note: This option is not applicable to Laser Emulation Raw Output (see  
Secondary Laser Emulation on page 6-3).  
This sets the delay time between data blocks. Default = 50ms.  
5ms  
* 50ms  
150ms  
500ms  
Overall Checksum  
Note: This option is not applicable to Laser Emulation Raw Output (see  
Secondary Laser Emulation on page 6-3).  
When this option is turned on, a computed check character is added at the end  
of the entire message. The check character is the character which when  
Exclusive-OR’d with every preceding character of the message yields a result of  
0x00 (00H). Default = Off.  
On  
* Off  
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3
Output  
Good Read Indicators  
Beeper – Good Read  
The beeper may be programmed On or Off in response to a good read. Turning  
this option off, only turns off the beeper response to a good read indication. All  
error and menu beeps are still audible. Default = On.  
* On  
Off  
Beeper Volume – Good Read  
The beeper volume codes modify the volume of the beep the scanner emits on  
a good read. Default = Medium for the IT5600, High for the IT5800.  
Low  
Medium  
High  
Off  
Beeper Pitch – Good Read  
The beeper pitch codes modify the pitch (frequency) of the beep the scanner  
emits on a good read. Default = Medium.  
Low (1600 Hz)  
* Medium (3250 Hz)  
High (4200 Hz)  
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Beeper Duration – Good Read  
The beeper duration codes modify the length of the beep the scanner emits on a  
good read. Default = Normal.  
* Normal Beep  
Short Beep  
LED – Good Read  
The LED indicator can be programmed On or Off in response to a good read.  
Default = On.  
* On  
Off  
Number of Beeps – Good Read  
The number of beeps of a good read can be programmed from 1 - 9. The same  
number of beeps will be applied to the beeper and LED in response to a good  
read. For example, if you program this option to have five beeps, there will be  
five beeps and five LED flashes in response to a good read. The beeps and LED  
flashes are in sync with one another. To change the number of beeps, scan the  
bar code below and then scan a digit (1-9) bar code and the Save bar code on  
the Programming Chart inside the back cover of this manual. Default = One.  
Number of Pulses  
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Good Read Delay  
This sets the minimum amount of time before the scanner can read another bar  
code. Default = No Delay.  
* No Delay  
Short Delay (500 ms)  
Medium Delay (1000 ms)  
Long Delay (1500 ms)  
User-Specified Good Read Delay  
If you want to set your own length for the good read delay, scan the bar code  
below, then set the delay (from 0-30,000 milliseconds) by scanning digits from  
the inside back cover, then scanning Save.  
Trigger Modes  
Manual/Serial Trigger  
You can activate the scanner either by pressing the trigger, or using a serial  
trigger command (see Trigger Commands on page 11-4). When in manual  
trigger mode, the scanner scans until a bar code is read, or until the trigger is  
released.  
When in serial mode, the scanner scans until a bar code has been read or until  
the deactivate command is sent. In serial mode, the scanner can also be set to  
turn itself off after a specified time has elapsed (see Read Time-Out, which  
follows).  
* Manual/Serial Trigger  
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Read Time-Out  
Use this selection to set a time-out (in milliseconds) of the scanner’s trigger when  
using serial commands to trigger the scanner. Once the scanner has timed out,  
you can activate the scanner either by pressing the trigger or using a serial  
trigger command. After scanning the Read Time-Out bar code, set the time-out  
duration (from 0-300,000 milliseconds) by scanning digits from the inside back  
cover, then scanning Save. Default = 300,000.  
Read Time-Out  
Manual Trigger, Low Power  
The scanner powers down until the trigger is pulled. When the trigger is pulled,  
the scanner powers up and operates until there is no triggering for the time set  
with the Low Power Time-Out bar code below. There is a delay of up to one  
second in operation when the scanner is first triggered, but there is no delay  
when operating in low power time-out mode.  
Manual Trigger, Low Power  
Note: Manual Trigger, Low Power cannot be used with keyboard wedge  
applications.  
Low Power Time-Out Timer  
Scan the Low Power Time-Out bar code to change the time-out duration (in  
seconds). Then scan the time-out duration (from 0-300 seconds) from the inside  
back cover, and Save. Default = 120 seconds.  
If there are no trigger pulls during the “low power time-out timer” interval, the  
scanner goes in low power mode. Whenever the trigger is enabled, the “low  
power time-out timer” is reset.  
Low Power Time-Out  
Automatic Trigger  
The scanner scans continuously at full power with illumination fully on.  
Note: If the Automatic Trigger selection is enabled, the aimer beam option is  
disabled.  
Automatic Trigger  
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Presentation Mode  
Note: Presentation mode does not work when a scanner is programmed for the  
laser emulation interface.  
Note: If the Presentation Mode selection is enabled, the aimer beam option is  
disabled.  
The LEDs are off until a bar code is presented to the scanner. Then the LEDs  
turn on automatically to read the code. Presentation Mode uses ambient light to  
detect the bar codes. If the light level in the room is not high enough,  
Presentation Mode will not work properly.  
Presentation Mode  
Hands Free Time-Out  
The Automatic Trigger and Presentation Modes are referred to as “hands free”  
modes. If the imager’s trigger is pulled when using a hands free mode, the  
imager changes to manual trigger mode. You can set the time the imager should  
remain in manual trigger mode by setting the Hands Free Time-Out. Once the  
time-out value is reached, (if there have been no further trigger pulls) the imager  
reverts to the original hands free mode.  
Scan the Hands Free Time-Out bar code, then scan the time-out duration (from  
0-300,000 milliseconds) from the inside back cover, and Save. Default = 5,000  
ms.  
Hands Free Time-Out  
Reread Delay  
This sets the time period before the scanner can read the same bar code a  
second time. Setting a reread delay protects against accidental rereads of the  
same bar code. Longer delays are effective in minimizing accidental rereads at  
POS (point of sale). Use shorter delays in applications where repetitive bar code  
scanning is required. Default = Medium.  
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Reread Delay only works when in automatic trigger mode (see page 3-4).  
Short (500 ms)  
* Medium (750 ms)  
Long (1000 ms)  
Extra Long (2000 ms)  
User-Specified Reread Delay  
If you want to set your own length for the reread delay, scan the bar code below,  
then set the delay (from 0-30,000 milliseconds) by scanning digits from the inside  
back cover, then scanning Save.  
User-Specified Reread Delay  
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Aimer Beam Delay (Aimer Beam option only)  
The Aimer Beam Delay allows a delay time for the operator to aim the reader  
before the standard illumination and decoding starts. The quickset codes sets  
the time between when the trigger is pulled and when the decode starts to either  
1 or 2 seconds. During the delay time, the aiming beam appears, but the  
illumination LEDs won’t turn on until the delay time is over.  
* Off (no delay)  
1 second  
2 seconds  
User-Specified Aimer Beam Delay  
If you want to set your own length for the duration of the delay, scan the bar code  
below, then set the time-out by scanning digits (0 - 4000 ms) from the  
Programming Chart inside the back cover of this manual and then scan Save.  
Delay Duration  
Aimer Mode (Aimer Beam option only)  
If you are reading codes in applications that exhibit high ambient light, you can  
turn on the aimer beam to assist you in reliably finding and scanning a code.  
Select Off if you don’t want to use the aimer beam.  
Off  
* On  
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Aimer Beam Time-Out (Aimer Beam option only)  
Aimer Beam Time-Out powers down the aimer beam after a time-out if the trigger  
is still pulled and there isn’t a valid decode. Scan the bar code below, then set  
the time-out by scanning digits (from 0 - 240,000 ms) from the Programming  
Chart inside the back cover of this manual and then scan Save. Default = 0 (no  
time-out)  
Time-Out Duration  
Centering Window  
Use the centering feature to narrow the scanner’s field of view so the scanner  
reads only the bar code you want. When centering is turned on, the scanner only  
reads codes that intersect or are contained within the centering window you set  
up. At least part of a bar code must be within the window to be decoded or output  
by the scanner.  
To change the left or right edge of the centering window, scan Centering On, then  
scan one of the following bar codes. Then scan the percent you want to shift the  
centering window using digits on the inside back cover of this manual. Scan  
Save. Default Centering = 40% for Left, 60% for Right.  
Centering On  
* Centering Off  
Left of Centering Window  
Right of Centering Window  
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The figure below illustrates the percentage range from 1 to 100%.  
40%  
60%  
30%  
70%  
80%  
20%  
90%  
10%  
0%  
100%  
Example: If you have two bar codes next to one another and the centering  
window is set to 40% left edge and 60% right edge, only the bar  
code that intersects that window will be decoded.  
Decoded bar code  
40%  
60%  
30%  
70%  
80%  
20%  
90%  
10%  
0%  
100%  
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Output Sequence Overview  
Require Output Sequence  
When turned off, the bar code data will be output to the host as the scanner  
decodes it. When turned on, all output data must conform to an edited sequence  
or the scanner will not transmit the output data to the host device.  
Note: This selection is unavailable when the Multiple Symbols Selection is  
turned on.  
Output Sequence Editor  
This programming selection allows you to program the scanner to output data  
(when scanning more than one symbol) in whatever order your application  
requires, regardless of the order in which the bar codes are scanned. Reading  
the Default Sequence symbol programs the scanner to the Universal values,  
shown below. These are the defaults. Be certain you want to delete or clear all  
formats before you read the Default Sequence symbol.  
Note: To make Output Sequence Editor selections, you’ll need to know the code  
I.D., code length, and character match(es) your application requires. Use  
the Alphanumeric symbols (inside back cover) to read these options.  
To Add an Output Sequence  
1. Scan the Enter Sequence symbol (see Multiple Symbols, page 3-13).  
2. Code I.D.  
On the Symbology Chart on page A-1, find the symbology to which you want  
to apply the output sequence format. Locate the Hex value for that symbol-  
ogy and scan the 2 digit hex value from the Programming Chart (inside back  
cover).  
3. Length  
Specify what length (up to 9999 characters) of data output will be acceptable  
for this symbology. Scan the four digit data length from the Programming  
Chart. (Note: 50 characters is entered as 0050. 9999 is a universal num-  
ber, indicating all lengths.) When calculating the length, you must count any  
programmed prefixes, suffixes, or formatted characters as part of the length  
(unless using 9999).  
4. Character Match Sequences  
On the ASCII Conversion Chart (Code Page 1252), page A-2, find the Hex  
value that represents the character(s) you want to match. Use the Program-  
ming Chart to read the alphanumeric combination that represents the ASCII  
characters. (99 is the Universal number, indicating all characters.)  
5. End Output Sequence Editor  
Scan F F to enter an Output Sequence for an additional symbology, or Save  
to save your entries.  
Other Programming Selections  
Discard  
This exits without saving any Output Sequence changes.  
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Output Sequence Editor  
Enter Sequence  
Default Sequence  
Require Output Sequence  
When an output sequence is Required, all output data must conform to an edited  
sequence or the scanner will not transmit the output data to the host device.  
When it’s On/Not Required, the scanner will attempt to get the output data to  
conform to an edited sequence, but if it cannot, the scanner transmits all output  
data to the host device as is.  
When the output sequence is Off, the bar code data is output to the host as the  
scanner decodes it.  
Note: This selection is unavailable when the Multiple Symbols Selection is  
turned on.  
Required  
On/Not Required  
* Off  
Output Sequence Example  
In this example, you are scanning Code 93, Code 128, and Code 39 bar codes,  
but you want the scanner to output Code 39 1st, Code 128 2nd, and Code 93  
3rd, as shown below.  
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Note: Code 93 must be enabled to use this example.  
A - Code 39  
B - Code 128  
C - Code 93  
You would set up the sequence editor with the following command line:  
SEQBLK62999941FF6A999942FF69999943FF  
The breakdown of the command line is shown below:  
SEQBLKsequence editor start command  
62 code identifier for Code 39  
9999 code length that must match for Code 39, 9999 = all lengths  
41 start character match for Code 39, 41h = “A”  
FF termination string for first code  
6A code identifier for Code 128  
9999 code length that must match for Code 128, 9999 = all lengths  
42 start character match for Code 128, 42h = “B”  
FF termination string for second code  
69 code identifier for Code 93  
9999 code length that must match for Code 93, 9999 = all lengths  
43 start character match for Code 93, 43h = “C”  
FF termination string for third code  
To program the previous example using specific lengths, you would have to  
count any programmed prefixes, suffixes, or formatted characters as part of the  
length. If you use the example on page 3-11, but assume a <CR> suffix and  
specific code lengths, you would use the following command line:  
SEQBLK62001141FF6A001242FF69001143FF  
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The breakdown of the command line is shown below:  
SEQBLK sequence editor start command  
62  
code identifier for Code 39  
0011  
41  
FF  
Code 39 code length (9) plus CR suffix (2) = 11  
start character match for Code 39, 41h = “A”  
termination string for first code  
6A  
code identifier for Code 128  
0012  
42  
FF  
Code 128 code length (10) plus CR suffix (2) = 12  
start character match for Code 128, 42h = “B”  
termination string for second code  
69  
code identifier for Code 93  
0011  
43  
FF  
Code 93 code length (9) plus CR suffix (2) = 11  
start character match for Code 93, 43h = “C”  
termination string for third code  
Multiple Symbols  
Note: This feature does not work when the scanner is in Low Power mode.  
When this programming selection is turned On, it allows you to read multiple  
symbols with a single pull of the scanner’s trigger. If you press and hold the  
trigger, aiming the scanner at a series of symbols, it reads unique symbols once,  
beeping (if turned on) for each read. The scanner attempts to find and decode  
new symbols as long as the trigger is pulled. When this programming selection  
is turned Off, the scanner will only read the symbol closest to the aiming beam.  
On  
* Off  
No Read  
With No Read turned On, the scanner sends an “NR” to the host if you pull and  
release the trigger without reading a code (e.g., bad bar code). If No Read is  
turned Off, the “NR” will not be sent to the host.  
On  
* Off  
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If you want a different notation than “NR,” for example, “Error,” or “Bad Code,”  
you can edit the output message using the Data Formatter (page 5-5). The hex  
code for the No Read symbol is 9C.  
Video Reverse  
Video Reverse is used to allow the scanner to read bar codes that are inverted.  
The “Off” bar code below is an example of this type of bar code.  
Note: If additional menuing is required, Video Reverse must be disabled to read  
the menu bar codes and then re-enabled after menuing is completed.  
On  
* Off  
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4
Data Editing  
Prefix/Suffix Overview  
When a bar code is scanned, additional information is sent to the host computer  
along with the bar code data. This group of bar code data and additional,  
user-defined data is called a “message string.” The selections in this section are  
used to build the user-defined data into the message string.  
Prefix and Suffix characters are data characters that can be sent before and after  
scanned data. You can specify if they should be sent with all symbologies, or  
only with specific symbologies. The following illustration shows the breakdown  
of a message string:  
Prefix  
1-11  
alpha numeric  
characters  
Scanned Data  
Suffix  
1-11  
alpha numeric  
characters  
variable length  
Points to Keep In Mind  
It is not necessary to build a message string. The selections in this chapter  
are only used if you wish to alter the default settings. Default prefix = None.  
Default suffix = None.  
A prefix or suffix may be added or cleared from one symbology or all  
symbologies.  
You can add any prefix or suffix from the ASCII Conversion Chart (Code Page  
1252) on page A-2, plus Code I.D. and AIM I.D.  
You can string together several entries for several symbologies at one time.  
Enter prefixes and suffixes in the order in which you want them to appear on  
the output.  
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To Add a Prefix or Suffix:  
Step 1. Scan the Add Prefix or Add Suffix symbol (page 4-3).  
Step 2. Determine the 2 digit Hex value from the Symbology Chart (included in  
the Appendix A) for the symbology to which you want to apply the prefix  
or suffix. For example, for Code 128, Code ID is “j” and Hex ID is “6A”.  
Step 3. Scan the 2 hex digits from the Programming Chart inside the back  
cover of this manual or scan 9, 9 for all symbologies.  
Step 4. Determine the hex value from the ASCII Conversion Chart (Code Page  
1252) on page A-2, for the prefix or suffix you wish to enter.  
Step 5. Scan the 2 digit hex value from the Programming Chart inside the back  
cover of this manual.  
Step 6. Repeat Steps 4 and 5 for every prefix or suffix character.  
Step 7. To add the Code I.D., scan 5, C, 8, 0.  
To add AIM I.D., scan 5, C, 8, 1.  
To add a backslash (\), scan 5, C, 5, C.  
Note: To add a backslash (\) as in Step 7, you must scan 5C twice – once to  
create the leading backslash and then to create the backslash itself.  
Step 8. Scan Save to exit and save, or scan Discard to exit without saving.  
Repeat Steps 1-6 to add a prefix or suffix for another symbology.  
Example: Add a Suffix to a specific symbology  
To send a CR (carriage return)Suffix for UPC only:  
Step 1. Scan Add Suffix.  
Step 2. Determine the 2 digit hex value from the Symbology Chart (included in  
the Appendix A) for UPC.  
Step 3. Scan 6, 3 from the Programming Chart inside the back cover of this  
manual.  
Step 4. Determine the hex value from the ASCII Conversion Chart (Code Page  
1252) on page A-2, for the CR (carriage return).  
Step 5. Scan 0, D from the Programming Chart inside the back cover of this  
manual.  
Step 6. Scan Save, or scan Discard to exit without saving.  
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You can clear a single prefix or suffix, or clear all prefixes/suffixes for a  
symbology. When you Clear One Prefix (Suffix), the specific character you  
select is deleted from the symbology you want. When you Clear All Prefixes  
(Suffixes), all the prefixes or suffixes for a symbology are deleted.  
Step 1. Scan the Clear One Prefix or Clear One Suffix symbol.  
Step 2. Determine the 2 digit Hex value from the Symbology Chart (included in  
the Appendix A) for the symbology from which you want to clear the pre-  
fix or suffix.  
Step 3. Scan the 2 digit hex value from the Programming Chart inside the back  
cover of this manual or scan 9, 9 for all symbologies.  
Your change is automatically saved.  
To Add a Carriage Return Suffix to all Symbologies  
Scan the following bar code if you wish to add a carriage return suffix to all  
symbologies at once. This action first clears all current suffixes, then programs  
a carriage return suffix for all symbologies.  
Add CR Suffix  
All Symbologies  
Prefix Selections  
Add Prefix  
Clear One Prefix  
Clear All Prefixes  
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Suffix Selections  
Add Suffix  
Clear All Suffixes  
Function Code Transmit  
When this selection is enabled and function codes are contained within the  
scanned data, the scanner transmits the function code to the terminal. Charts of  
these function codes are provided in Supported Interface Keys starting on  
page 8-3. When the scanner is in keyboard wedge mode, the scan code is  
converted to a key code before it is transmitted. Default = Enable.  
* Enable  
Disable  
Intercharacter, Interfunction, and Intermessage Delays  
Some terminals drop information (characters) if data comes through too quickly.  
Intercharacter, interfunction, and intermessage delays slow the transmission of  
data, increasing data integrity.  
Each delay is composed of a 5 millisecond step. You can program up to 99 steps  
(of 5 ms each) for a range of 0-495 ms.  
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Intercharacter Delay  
An intercharacter delay of up to 495 milliseconds may be placed between the  
transmission of each character of scanned data. Scan the Intercharacter Delay  
bar code below, then scan the number of milliseconds and the SAVE bar code  
using the Programming Chart inside the back cover of this manual.  
Prefix  
Scanned Data  
Suffix  
1
2
3
4
5
Intercharacter Delay  
Intercharacter Delay  
To remove this delay, scan the Intercharacter Delay bar code, then set the  
number of steps to 0. Scan the SAVE bar code using the Programming Chart  
inside the back cover of this manual.  
Note: Intercharacter delays are not supported in USB serial emulation.  
User Specified Intercharacter Delay  
An intercharacter delay of up to 495 milliseconds may be placed after the  
transmission of a particular character of scanned data. Scan the Delay Length  
bar code below, then scan the number of milliseconds and the SAVE bar code  
using the Programming Chart inside the back cover of this manual.  
Next, scan the Character to Trigger Delay bar code, then the 2-digit hex value  
for the ASCII character that will trigger the delay ASCII Conversion Chart (Code  
Page 1252) on page A-2.  
Delay Length  
Character to Trigger Delay  
To remove this delay, scan the Delay Length bar code, and set the number of  
steps to 0. Scan the SAVE bar code using the Programming Chart inside the  
back cover of this manual.  
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Interfunction Delay  
An interfunction delay of up to 495 milliseconds may be placed between the  
transmission of each segment of the message string. Scan the Interfunction  
Delay bar code below, then scan the number of milliseconds and the SAVE bar  
code using the Programming Chart inside the back cover of this manual.  
Prefix  
STX  
Scanned Data  
3 4  
Suffix  
CR  
1
HT  
2
5
LF  
Interfunction Delays  
Interfunction Delay  
number of steps to 0. Scan the SAVE bar code using the Programming Chart  
inside the back cover of this manual.  
Intermessage Delay  
An intermessage delay of up to 495 milliseconds may be placed between each  
scan transmission. Scan the Intermessage Delay bar code below, then scan  
the number of milliseconds and the SAVE bar code using the Programming  
Chart inside the back cover of this manual.  
1st Scan Transmission 2nd Scan Transmission  
Intermessage Delay  
Intermessage Delay  
To remove this delay, scan the Intermessage Delay bar code, then set the  
number of steps to 0. Scan the SAVE bar code using the Programming Chart  
inside the back cover of this manual.  
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5
Data Formatting  
You may use the Data Format Editor to change the scanner’s output. For  
example, you can use the Data Format Editor to insert characters at certain  
points in bar code data as it is scanned. The selections in the following pages  
are used only if you wish to alter the output. Default Data Format setting = None.  
Normally, when you scan a bar code, it gets outputted automatically; however  
when you do a format, you must use a “send” command (see Send Commands  
on page 5-2) within the format program to output data.  
Multiple formats may be programmed into the scanner. They are stacked in the  
order in which they are entered. However, the following list presents the order  
in which formats are applied:  
1. Specific Term ID, Actual Code ID, Actual Length  
2. Specific Term ID, Actual Code ID, Universal Length  
3. Specific Term ID, Universal Code ID, Actual Length  
4. Specific Term ID, Universal Code ID, Universal Length  
5. Universal Term ID, Actual Code ID, Actual Length  
6. Universal Term ID, Actual Code ID, Universal Length  
7. Universal Term ID, Universal Code ID, Actual Length  
8. Universal Term ID, Universal Code ID, Universal Length  
If you have changed data format settings, and wish to clear all formats and return  
to the factory defaults, scan the Default Data Format code on page 5-4.  
To Add a Data Format  
Step 1. Scan the Enter Data Format symbol (page 5-4).  
Step 2. Primary/Alternate Format  
Determine if this will be your primary data format, or one of 3 alternate  
formats. (Alternate formats allow you “single shot” capability to scan  
one bar code using a different data format. After the one bar code has  
been read, the scanner reverts to the primary data format. See page 5-  
5.) If you are programming the primary format, scan 0 using the Pro-  
gramming Chart inside the back cover of this manual. If you are pro-  
gramming an alternate format, scan 1, 2, or 3, depending on the  
alternate format you are programming.  
Step 3. Terminal Type  
Refer to the Supported Terminals Chart (page 2-2) and locate the Ter-  
minal ID number for your PC. Scan three numeric bar codes on the  
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inside back cover to program the scanner for your terminal ID (you must  
enter 3 digits). For example, scan 0 0 3 for an AT wedge.  
Note: The wildcard for all terminal types is 099.  
Step 4. Code I.D.  
In the Appendix A, find the symbology to which you want to apply the  
data format. Locate the Hex value for that symbology and scan the 2  
digit hex value from the Programming Chart inside the back cover of  
this manual.  
Step 5. Length  
Specify what length (up to 9999 characters) of data will be acceptable  
for this symbology. Scan the four digit data length from the Program-  
ming Chart inside the back cover of this manual. (Note: 50 characters is  
entered as 0050. 9999 is a universal number, indicating all lengths.)  
Step 6. Editor Commands  
Refer to the Format Editor Commands Chart (page 5-2). Scan the sym-  
bols that represent the command you want to enter. 94 alphanumeric  
characters may be entered for each symbology data format.  
Step 7. Scan Save from the Programming Chart inside the back cover of this  
manual to save your entries.  
Other Programming Selections  
Clear One Data Format  
This deletes one data format for one symbology. If you are clearing the  
primary format, scan 0 from the Programming Chart inside the back cover of  
this manual. If you are clearing an alternate format, scan 1, 2, or 3, depending  
on the alternate format you are clearing. Scan the Terminal Type (refer to the  
Supported Terminals Chart on page 2-2), Code I.D. (refer to the Symbology  
Chart on page A-1), and the bar code data length for the specific data format  
that you want to delete. All other formats remain unaffected.  
Save from the Programming Chart inside the back cover of this manual  
This exits, saving any Data Format changes.  
Discard from the Programming Chart inside the back cover of this manual  
This exits without saving any Data Format changes.  
Data Format Editor Commands  
Send Commands  
F1 Send all characters followed by “xx” key or function code, starting from cur-  
rent cursor position. Syntax = F1xx (xx stands for the hex value for an  
ASCII code, see ASCII Conversion Chart (Code Page 1252) on page A-2.)  
F2 Send “nn” characters followed by “xx” key or function code, starting from  
current cursor position. Syntax = F2nnxx (nn stands for the numeric value  
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ASCII code. See ASCII Conversion Chart (Code Page 1252) on page A-2.)  
F3 Send up to but not including “ss” character (Search and Send) starting from  
current cursor position, leaving cursor pointing to “ss” character followed by  
“xx” key or function code. Syntax = F3ssxx (ss and xx both stand for the  
hex values for ASCII codes, see ASCII Conversion Chart (Code Page  
1252) on page A-2.)  
F4 Send “xx” character “nn” times (Insert) leaving cursor in current cursor posi-  
tion. Syntax = F4xxnn (xx stands for the hex value for an ASCII code, see  
ASCII Conversion Chart (Code Page 1252) on page A-2, and nn is the  
numeric value (00-99) for the number of times it should be sent.)  
E9 Send all but the last “nn” characters, starting from the current cursor posi-  
tion. Syntax = E9nn (nn is the numeric value (00-99) for the number of  
characters that will not be sent at the end of the message.)  
Move Commands  
F5 Move the cursor ahead “nn” characters from current cursor position.  
Syntax = F5nn (nn stands for the numeric value (00-99) for the number of  
characters the cursor should be moved ahead.)  
F6 Move the cursor back “nn” characters from current cursor position.  
Syntax = F6nn (nn stands for the numeric value (00-99) for the number of  
characters the cursor should be moved back.)  
F7 Move the cursor to the beginning of the data string. Syntax = F7.  
EA Move the cursor to the end of the data string. Syntax = EA  
Search Commands  
F8 Search ahead for “xx” character from current cursor position, leaving cursor  
an ASCII code, see ASCII Conversion Chart (Code Page 1252) on page A-  
2.)  
F9 Search back for “xx” character from current cursor position, leaving cursor  
an ASCII code, see ASCII Conversion Chart (Code Page 1252) on page A-  
2.)  
E6 Search ahead for the first non “xx” character from the current cursor posi-  
tion, leaving cursor pointing to non “xx” character. Syntax = E6xx (xx  
stands for the hex value for an ASCII code, see ASCII Conversion Chart  
(Code Page 1252) on page A-2.  
E7 Search back for the first non “xx” character from the current cursor position,  
leaving cursor pointing to non “xx” character. Syntax = E7xx (xx stands for  
the hex value for an ASCII code, see ASCII Conversion Chart (Code Page  
1252) on page A-2.)  
FB Suppress all occurrences of up to 15 different characters, starting at the cur-  
rent cursor position, as the cursor is advanced by other commands. When  
the FC command is encountered, the suppress function is terminated. The  
cursor is not moved by the FB command. Syntax = FBnnxxyy . .zz where  
nn is a count of the number of suppressed characters in the list and xxyy ..  
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zz is the list of characters to be suppressed. (xx stands for the hex value for  
an ASCII code, see ASCII Conversion Chart (Code Page 1252) on page A-  
2.)  
FC Disables suppress filter and clear all suppressed characters. Syntax = FC.  
E4 Replaces up to 15 characters in the data string with user specified charac-  
tax = E4nnxx xx yy yy ...zz zz where nn is the total count of both  
1
2
1
2
1
2
characters to be replaced plus replacement characters; xx defines charac-  
1
ters to be replaced and xx defines replacement characters, continuing  
2
through zz and zz .  
1
2
E5 Terminates character replacement. Syntax = E5.  
FE Compare character in current cursor position to the character “xx.” If char-  
acters are equal, increment cursor. If characters are not equal, no format  
match. Syntax = FExx (xx stands for the hex value for an ASCII code, see  
ASCII Conversion Chart (Code Page 1252) on page A-2.)  
EC Check to make sure there is an ASCII number at the current cursor position.  
If character is not numeric, format is aborted. Syntax = EC.  
ED Check to make sure there is a non-numeric ASCII character at the current  
cursor position. If character is numeric, format is aborted. Syntax = ED.  
Data Format Editor  
Enter Data Format  
* Default Data Format  
Clear One Data Format  
Clear All Data Formats  
Save  
Discard  
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Data Formatter  
When Data Formatter is turned off, the bar code data is output to the host as read  
(including prefixes and suffixes). Choose one of the following options. Default =  
Data Formatter On.  
* Data Formatter On,  
but Not Required  
Data Formatter Off  
When Data Formatter is required, all input data must conform to an edited format  
or the scanner does not transmit the input data to the host device.  
Data Format On, Format Required  
Alternate Data Formats  
Alternate formats allow you “single shot” capability to scan one bar code using a  
different data format than your primary format. When data formats are  
programmed (see page 5-1), you must input whether you are programming the  
primary format, or an alternate format numbered 1, 2, or 3.  
An alternate format is initiated by scanning one of the 3 alternate format bar  
codes below. The scanner will scan the next bar code, formatting the data with  
the selected alternate format, then revert immediately to the primary format.  
Alternate Data Format 1  
Alternate Data Format 2  
Alternate Data Format 3  
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6
Secondary Interface  
By switching secondary interface cables, the IT5600/5800 scanner, for example,  
can communicate with a portable data terminal (secondary interface) in addition  
to the host terminal (primary interface). See the tables below for the secondary  
interfaces for each IT5600/5800 model.  
IT5600 Models  
Secondary  
Interfaces  
Models  
Primary Interfaces  
5600SRX00  
5600SRX30  
TTL Level 232  
Laser Emulation  
True RS-232  
True RS-232, True RS-232  
serial wedge  
5600SRX50  
Keyboard wedge, TTL level  
232, TTL level 232 serial  
Wand Emulation, TTL  
level 232  
wedge, IBM 4683, wand emula-  
tion, USB keyboard, USB HID,  
USB retail (IBM SurePOS)  
IT5800 Models  
The chart below lists the IT5800 scanner models. “SR” indicates “Standard  
Range” linear optics. If the product number has the number one (1) as the last  
character, the unit contains the aimer beam option (e.g., 5800SR001).  
Secondary  
Interfaces  
Models  
Primary Interfaces  
5800SR000  
5800SR030  
TTL Level 232  
Laser Emulation  
True RS-232  
True RS-232, True RS-232  
serial wedge  
5800SR05X  
Keyboard wedge, TTL level  
232, TTL level 232 serial  
Wand Emulation, TTL  
level 232  
wedge, IBM 4683, wand emula-  
tion, USB keyboard, USB HID,  
Enabling the Secondary Interface  
The secondary interface can be programmed at any time.  
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You can temporarily disable the secondary interface, but still retain the  
secondary interface settings in the imager’s memory by scanning the Disable  
bar code below. To re-enable the secondary interface, scan the Enable bar  
code. Default =Disable.  
* Disable  
Enable  
Secondary RS-232 Connection  
All communication parameters between the scanner and terminal must match for  
correct data transfer through the serial port using RS-232 protocol.  
RS-232 programmable selections are used by both the primary and secondary  
interfaces. Changing an RS-232 parameter (e.g., baud rate or parity), while in  
primary or secondary mode will affect both interfaces. If you want to change the  
RS-232 settings, refer to the Connecting the Scanner with RS-232 Serial Port  
section on pages 2-8 to 2-11.  
RS-232 Interface  
Secondary Code 39 Wand Emulation  
In Wand Emulation mode, the scanner decodes the bar code then sends data in  
the same format as a wand scanner. The Code 39 Format converts all  
symbologies to Code 39. The Same Code Format transmits UPC, EAN, Code  
128 and Interleaved 2 of 5 without any changes, but converts all other  
symbologies to Code 39. These codes set the transmission rate to 25 inches per  
second and the output polarity to black, high.  
The Code 39 Format bar code below sets the terminal ID to 61, and the Same  
Code Format bar code sets the terminal ID to 64.  
Wand Emulation  
Code 39 Format  
Wand Emulation  
Same Code Format  
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Secondary Laser Emulation  
Use this selection when connecting to a secondary terminal with integral  
decoding. This also sets the transmission rate to 36 scans per second, the  
polarity to white high, and deletes all prefixes and suffixes.  
* Laser Emulation  
Same Code Output  
When you scan the following bar code, the imager sends the raw data edges to  
the host for host decoding. This also sets the transmission rate to 36 scans per  
second and the polarity to white high.  
Laser Emulation  
Raw Output  
When you scan the following bar code, the scanner decodes and re-encodes the  
data and sends the data to the host as Code 39.  
Laser Emulation  
Code 39 Output  
Laser Emulation Transmission Rate  
The transmission rate is limited by the terminal’s ability to receive data without  
dropping characters. Default = 36 scans/second.  
* 36  
100  
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Laser Emulation Polarity  
The Polarity can be sent as standard with white bars high, or reversed with black  
bars high. Default = White High.  
* White High  
Black High  
Laser Emulation Idle  
The idle describes the state of the scanner when no data is being transmitted.  
When in Non Decoded mode, you must set the scanner’s idle state to match the  
idle state for the device to which the scanner is connected. Default = Idle High.  
Idle Low  
* Idle High  
Secondary Trigger Mode  
Manual Trigger: You must press the scanner trigger to scan. When not  
scanning, idle power is maintained. Default = Manual Trigger.  
* Manual Trigger  
Automatic Trigger: The scanner scans continuously at full power.  
Automatic Trigger  
Presentation Mode: The LEDs are off until a bar code is presented to the  
scanner. Then the LEDs turn on automatically to read the code. Presentation  
Mode uses ambient light to detect the bar codes.  
Presentation Mode  
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Manual Trigger, Low Power: Scan the Manual Trigger, Low Power bar code  
below and the scanner “sleeps” until the trigger is pulled. When the trigger is  
pulled, the scanner wakes up and operates at normal power until there is no  
triggering for the time set with the Low Power Time-Out bar code. Then, the  
scanner goes to “sleep” again.  
Manual Trigger, Low Power  
Low Power Time-Out: Scan the Low Power Time-Out bar code to change the  
time-out duration. Then scan the time-out duration (from 0-300 seconds) from  
the inside back cover and Save. Default = 120 seconds.  
Low Power Time-Out  
Hands Free Time-Out  
The Automatic Trigger and Presentation Modes are referred to as “hands free”  
modes. If the imager’s trigger is pulled when using a hands free mode, the  
imager changes to manual trigger mode. You can set the time the imager should  
remain in manual trigger mode by setting the Hands Free Time-Out. Once the  
time-out value is reached, (if there have been no further trigger pulls) the imager  
reverts to the original hands free mode.  
Note: If you change the time-out duration for the secondary interface, the  
duration of the primary interface will also be changed.  
Scan the Hands Free Time-Out bar code, then scan the time-out duration (from  
0-300,000 milliseconds) from the inside back cover, and Save. Default = 5,000  
ms.  
Hands Free Time-Out  
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7
Symbologies  
Introduction  
This programming section contains the following menu selections. Refer to  
Chapter 11 for settings and defaults.  
All Symbologies  
China Post  
IATA Code 2 of 5  
Interleaved 2 of 5  
Korea Post  
Matrix 2 of 5  
Coupon Code  
MSI  
Codabar  
Codablock F  
Code 2 of 5  
Code 11  
Code 16K  
Plessey Code  
PosiCode  
RSS-14  
Code 39  
Code 32 Pharmaceutical (PARAF)  
Code 49  
Telepen  
Code 93  
Trioptic  
Code 128  
UPC-A  
EAN/JAN  
UPC-E  
All Symbologies  
If you want to decode all the symbologies allowable for your scanner, scan the  
All Symbologies On code. If on the other hand, you want to decode only a  
particular symbology, scan All Symbologies Off followed by the On symbol for  
that particular symbology.  
All Symbologies On  
All Symbologies Off  
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Message Length  
You are able to set the valid reading length of some of the bar code symbologies.  
If the data length of the scanned bar code doesn’t match the valid reading length,  
the scanner will issue an error beep. You may wish to set the same value for  
minimum and maximum length to force the scanner to read fixed length bar code  
data. This helps reduce the chances of a misread.  
EXAMPLE:Decode only those bar codes with a count of 9-20 characters.  
Min. length = 09  
Max. length = 20  
EXAMPLE:Decode only those bar codes with a count of 15 characters.  
Min. length = 15 Max. length = 15  
For a value other than the minimum and maximum message length defaults,  
scan the bar codes included in the explanation of the symbology, then scan the  
digit value of the message length and Save bar codes on the Programming Chart  
inside the back cover of this manual. The minimum and maximum lengths and  
the defaults are included with the respective symbologies.  
7 - 2  
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Codabar  
Codabar  
<Default All Codabar Settings>  
* On  
Off  
Codabar Start/Stop Characters  
Start/Stop characters identify the leading and trailing ends of the bar code. You  
may either transmit, or not transmit Start/Stop characters.  
Default = Don’t Transmit.  
Transmit  
* Don’t Transmit  
Codabar Check Character  
Codabar check characters are created using different “modulos.” You can  
program the scanner to read only Codabar bar codes with Modulo 16 check  
characters. Default = No Check Character.  
No Check Character indicates that the scanner reads and transmits bar code  
data with or without a check character.  
When Check Character is set to Validate and Transmit, the scanner will only  
read Codabar bar codes printed with a check character, and will transmit this  
character at the end of the scanned data.  
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When Check Character is set to Validate, but Don’t Transmit, the unit will only  
read Codabar bar codes printed with a check character, but will not transmit the  
check character with the scanned data.  
* No Check Character  
Validate Modulo 16, but  
Don’t Transmit  
Validate Modulo 16 and Transmit  
Codabar Concatenation  
Codabar supports symbol concatenation. When you enable concatenation, the  
scanner looks for a Codabar symbol having a “D” start character, adjacent to a  
symbol having a “D” stop character. In this case the two messages are  
concatenated into one with the “D” characters omitted. Default = On.  
Character  
Start  
Stop  
Start  
Stop  
Codabar  
A12D  
D34A  
Select Require to prevent the scanner from decoding a single “D” Codabar  
symbol without its companion. This selection has no effect on Codabar symbols  
without Stop/Start D characters.  
* On  
Off  
Require  
7 - 4  
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Codabar Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 2-60. Minimum Default = 4, Maximum Default = 60.  
Minimum Message Length  
Maximum Message Length  
Code 39  
< Default All Code 39 Settings >  
Code 39  
* On  
Off  
Code 39 Start/Stop Characters  
Start/Stop characters identify the leading and trailing ends of the bar code. You  
may either transmit, or not transmit Start/Stop characters. Default = Don’t  
Transmit.  
Transmit  
* Don’t Transmit  
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Code 39, continued  
Code 39 Check Character  
No Check Character indicates that the scanner reads and transmits bar code  
data with or without a check character.  
When Check Character is set to Validate, but Don’t Transmit, the unit only  
reads Code 39 bar codes printed with a check character, but will not transmit the  
check character with the scanned data.  
When Check Character is set to Validate and Transmit, the scanner only reads  
Code 39 bar codes printed with a check character, and will transmit this character  
at the end of the scanned data. Default = No Check Character.  
* No Check Character  
Validate, but Don’t Transmit  
Validate and Transmit  
Code 39 Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 0-48. Minimum Default = 0, Maximum Default = 48.  
Minimum Message Length  
Maximum Message Length  
7 - 6  
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Code 39, continued  
Code 39 Append  
This function allows the scanner to append the data from several Code 39 bar  
codes together before transmitting them to the host computer. When this  
function is enabled, the scanner stores those Code 39 bar codes that start with  
a space (excluding the start and stop symbols), and does not immediately  
transmit the data. The scanner stores the data in the order in which the bar  
codes are read, deleting the first space from each. The scanner transmits the  
appended data when it reads a Code 39 bar code that starts with a character  
other than a space. Default = Off.  
On  
* Off  
Code 32 Pharmaceutical (PARAF)  
Code 32 Pharmaceutical is a form of the Code 39 symbology used by Italian  
pharmacies. This symbology is also known as PARAF.  
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Note: Trioptic Code must be turned off to scan Code 32 Pharmaceutical codes.  
On  
* Off  
Full ASCII  
If Full ASCII Code 39 decoding is enabled, certain character pairs within the bar  
code symbol will be interpreted as a single character. For example: $V will be  
decoded as the ASCII character SYN, and /C will be decoded as the ASCII  
character #. Default = On.  
NUL %U  
SOH $A  
STX $B  
ETX $C  
EOT $D  
ENQ $E  
ACK $F  
BEL $G  
BS $H  
HT $I  
DLE $P  
DC1 $Q  
DC2 $R  
DC3 $S  
DC4 $T  
NAK $U  
SYN $V  
ETB $W  
CAN $X  
EM $Y  
SUB $Z  
ESC %A  
FS %B  
GS %C  
RS %D  
US %E  
SP  
!
SPACE  
/A  
/B  
/C  
/D  
/E  
/F  
/G  
/H  
/I  
0
1
2
3
4
5
6
7
8
9
:
0
@
A
B
C
D
E
F
%V  
A
B
C
D
E
F
P
Q
R
S
T
U
V
W
X
Y
Z
[
P
%W  
+A  
+B  
+C  
+D  
+E  
+F  
+G  
+H  
+I  
p
q
r
+P  
+Q  
+R  
+S  
+T  
1
Q
a
b
c
d
e
f
2
R
#
$
%
&
3
S
s
t
4
T
5
U
u
v
w
x
y
z
{
+U  
+V  
+W  
+X  
+Y  
+Z  
6
V
7
G
H
I
G
H
I
W
X
g
h
i
(
8
)
9
Y
LF $J  
VT $K  
FF $L  
CR $M  
SO $N  
*
/J  
/Z  
%F  
%G  
%H  
%I  
%J  
J
J
Z
j
+J  
+
,
/K  
/L  
;
K
L
K
L
%K  
%L  
%M  
%N  
%O  
k
l
+K  
+L  
%P  
%Q  
%R  
%S  
<
=
>
?
\
|
-
-
M
N
O
M
N
O
]
m
n
o
+M  
+N  
}
.
.
^
~
SI  
$O  
/
/O  
_
+O DEL %T  
Character pairs /M and /N decode as a minus sign and period respectively.  
Character pairs /P through /Y decode as 0 through 9.  
* Full ASCII On  
Full ASCII Off  
7 - 8  
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Code 39 Code Page  
Code pages define the mapping of character codes to characters. If the data  
received does not display with the proper characters, it may be because the bar  
code being scanned was created using a code page that is different from the one  
the host program is expecting. If this is the case, scan the bar code below, select  
the code page with which the bar codes were created from the chart, Code Page  
Mapping of Printed Bar Codes on page A-4, and scan the value and the SAVE  
bar code from the Programming Chart inside the back cover of this manual. The  
data characters should then appear properly.  
Code 39 Code Page  
Interleaved 2 of 5  
< Default All Interleaved 2 of 5 Settings >  
Interleaved 2 of 5  
* On  
Off  
Check Digit  
No Check Digit indicates that the scanner reads and transmits bar code data  
with or without a check digit.  
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When Check Digit is set to Validate, but Don’t Transmit, the unit only reads  
Interleaved 2 of 5 bar codes printed with a check digit, but will not transmit the  
check digit with the scanned data.  
When Check Digit is set to Validate and Transmit, the scanner only reads  
Interleaved 2 of 5 bar codes printed with a check digit, and will transmit this digit  
at the end of the scanned data. Default = No Check Digit.  
* No Check Digit  
Validate, but Don’t Transmit  
Validate and Transmit  
Interleaved 2 of 5 Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 2-80. Minimum Default = 4, Maximum Default = 80.  
Minimum Message Length  
Maximum Message Length  
7 - 10  
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Code 93  
Code 93  
< Default All Code 93 Settings >  
* On  
Off  
Code 93 Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 0-80. Minimum Default = 0, Maximum Default = 80.  
Minimum Message Length  
Code 93 Code Page  
Code pages define the mapping of character codes to characters. If the data  
received does not display with the proper characters, it may be because the bar  
code being scanned was created using a code page that is different from the one  
the host program is expecting. If this is the case, scan the bar code below, select  
the code page with which the bar codes were created from the chart, Code Page  
Mapping of Printed Bar Codes on page A-4, and scan the value and the SAVE  
bar code from the Programming Chart inside the back cover of this manual. The  
data characters should then appear properly.  
Code 93 Code Page  
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Code 2 of 5  
Code 2 of 5  
<Default All Code 2 of 5 Settings>  
On  
* Off  
Code 2 of 5 Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 1-48. Minimum Default = 4, Maximum Default = 48.  
Minimum Message Length  
Maximum Message Length  
IATA Code 2 of 5  
<Default All Code IATA 2 of 5 Settings>  
7 - 12  
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IATA Code 2 of 5, continued  
On  
* Off  
IATA Code 2 of 5 Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 1-48. Minimum Default = 4, Maximum Default = 48.  
Minimum Message Length  
Maximum Message Length  
Matrix 2 of 5  
<Default All Matrix 2 of 5 Settings>  
Matrix 2 of 5  
On  
* Off  
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Matrix 2 of 5 Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 1-80. Minimum Default = 4, Maximum Default = 80.  
Minimum Message Length  
Maximum Message Length  
Code 11  
<Default All Code 11 Settings>  
Code 11  
On  
* Off  
Check Digits Required  
This option sets whether 1 or 2 check digits are required with Code 11 bar codes.  
Default = Two Check Digits.  
One Check Digit  
* Two Check Digits  
7 - 14  
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Code 11, continued  
Code 11 Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 1-80. Minimum Default = 4, Maximum Default = 80.  
Minimum Message Length  
Maximum Message Length  
Code 128  
<Default All Code 128 Settings>  
Code 128  
* On  
Off  
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Code 128, continued  
ISBT 128 Concatenation  
In 1994 the International Society of Blood Transfusion (ISBT) ratified a standard  
for communicating critical blood information in a uniform manner. The use of  
ISBT formats requires a paid license. The ISBT 128 Application Specification  
describes 1) the critical data elements for labeling blood products, 2) the current  
recommendation to use Code 128 due to its high degree of security and its  
space-efficient design, 3) a variation of Code 128 that supports concatenation of  
neighboring symbols, and 4) the standard layout for bar codes on a blood product  
label. Use the bar codes below to turn concatenation on or off. Default =Off.  
On  
* Off  
Code 128 Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 0-80. Minimum Default = 0, Maximum Default = 80.  
Minimum Message Length  
Code 128 Code Page  
Code pages define the mapping of character codes to characters. If the data  
received does not display with the proper characters, it may be because the bar  
code being scanned was created using a code page that is different from the one  
the host program is expecting. If this is the case, scan the bar code below, select  
the code page with which the bar codes were created from the chart, Code Page  
Mapping of Printed Bar Codes on page A-4, and scan the value and the SAVE  
bar code from the Programming Chart inside the back cover of this manual. The  
data characters should then appear properly.  
Code 128 Code Page  
7 - 16  
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Code 128 Function Code Transmit  
By default, Code 128 function codes are not transmitted with Code 128 bar code  
data. However, if you wish to transmit Code 128 function codes with the bar code  
data, scan the Function Codes On bar code, below.  
* Function Codes Off  
Function Codes On  
Telepen  
<Default All Telepen Settings>  
Telepen  
On  
* Off  
Telepen Output  
Using AIM Telepen Output, the scanner reads symbols with start/stop pattern 1  
and decodes them as standard full ASCII (start/stop pattern 1). When Original  
Telepen Output is selected, the scanner reads symbols with start/stop pattern 1  
and decodes them as compressed numeric with optional full ASCII (start/stop  
pattern 2). Default = AIM Telepen Output.  
Original Telepen Output  
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Telepen Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 1-60. Minimum Default = 1, Maximum Default = 60.  
Minimum Message Length  
Maximum Message Length  
UPC A  
<Default All UPC A Settings>  
UPC A  
* On  
Off  
UPC A Check Digit  
This selection allows you to specify whether the check digit should be transmitted  
at the end of the scanned data or not. Default = On.  
* On  
Off  
UPC A Number System  
7 - 18  
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The numeric system digit of a U.P.C. symbol is normally transmitted at the  
beginning of the scanned data, but the unit can be programmed so it will not  
transmit it. Default = On.  
* On  
Off  
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UPC A, continued  
UPC A Addenda  
This selection adds 2 or 5 digits to the end of all scanned UPC A data.  
Default = Off for both 2 Digit and 5 Digit Addenda.  
2 Digit Addenda On  
* 2 Digit Addenda Off  
5 Digit Addenda On  
* 5 Digit Addenda Off  
UPC A Addenda Required  
When Addenda Required is set to on, the scanner will only read UPC A bar  
codes that have addenda. Default = Not Required.  
Required  
* Not Required  
UPC A Addenda Separator  
When this feature is on, there is a space between the data from the bar code and  
the data from the addenda. When turned off, there is no space.  
Default = On.  
* On  
Off  
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UPC-A/EAN-13 with Extended Coupon Code  
Use the following codes to enable or disable UPC-A and EAN-13 with Extended  
Coupon Code. Default = On.  
* On  
Off  
UPC E  
<Default All UPC E Settings>  
UPC E0 and UPC E1  
Most U.P.C. bar codes lead with the 0 number system. For these codes, use the  
UPC E0 selection. If you need to read codes that lead with the 1 number system,  
use the UPC E1 selection. Default = On (UPC E0) and Off (UPC E1).  
* UPC E0 On  
UPC E0 Off  
* UPC E1 On  
UPC E1 Off  
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UPC E, continued  
UPC E0 and UPC E1 Expand  
UPC E Expand expands the UPC E code to the 12 digit, UPC A format.  
Default = Off.  
On  
* Off  
UPC E0 and UPC E1 Addenda Required  
When Addenda Required is set to on, the scanner will only read UPC E bar  
codes that have addenda. Default = Not Required.  
Required  
* Not Required  
UPC E0 and UPC E1 Addenda Separator  
When this feature is on, there is a space between the data from the bar code and  
the data from the addenda. When turned off, there is no space.  
Default = On.  
* On  
Off  
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UPC E, continued  
UPC E0 Check Digit  
Check Digit specifies whether the check digit should be transmitted at the end of  
the scanned data or not. Default = On.  
* On  
Off  
UPC E0 Number System  
The numeric system digit of a U.P.C. symbol is normally transmitted at the  
beginning of the scanned data, but the unit can be programmed so it will not  
transmit it. Default = On.  
* On  
Off  
UPC E0 Addenda  
This selection adds 2 or 5 digits to the end of all scanned UPC E data.  
Default = Off for both 2 Digit and 5 Digit Addenda.  
2 Digit Addenda On  
* 2 Digit Addenda Off  
5 Digit Addenda On  
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EAN/JAN 13  
EAN/JAN 13  
<Default All EAN/JAN Settings>  
* On  
Off  
EAN/JAN 13 Check Digit  
This selection allows you to specify whether the check digit should be transmitted  
at the end of the scanned data or not. Default = On.  
* On  
Off  
EAN/JAN 13 Addenda  
This selection adds 2 or 5 digits to the end of all scanned EAN/JAN 13 data.  
Default = Off for both 2 Digit and 5 Digit Addenda.  
2 Digit Addenda On  
* 2 Digit Addenda Off  
5 Digit Addenda On  
* 5 Digit Addenda Off  
7 - 24  
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EAN/JAN 13, continued  
EAN/JAN 13 Addenda Required  
When Addenda Required is set to on, the scanner will only read EAN/JAN 13 bar  
codes that have addenda. Default = Not Required.  
Required  
* Not Required  
EAN/JAN 13 Addenda Separator  
When this feature is on, there is a space between the data from the bar code and  
the data from the addenda. When turned off, there is no space.  
Default = On.  
* On  
Off  
Note: If you want to enable or disable EAN13 with Extended Coupon Code,  
refer to UPC-A/EAN-13 with Extended Coupon Code on page 7-21.  
ISBN Translate  
This selection causes EAN-13 Bookland symbols to be translated into their  
equivalent ISBN number format. Default = Off.  
On  
* Off  
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EAN/JAN 8  
EAN/JAN 8  
<Default All EAN/JAN 8 Settings>  
* On  
Off  
EAN/JAN 8 Check Digit  
This selection allows you to specify whether the check digit should be transmitted  
at the end of the scanned data or not. Default = On.  
* On  
Off  
EAN/JAN 8 Addenda  
This selection adds 2 or 5 digits to the end of all scanned EAN/JAN 8 data.  
Default = Off for both 2 Digit and 5 Digit Addenda.  
2 Digit Addenda On  
* 2 Digit Addenda Off  
5 Digit Addenda On  
* 5 Digit Addenda Off  
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EAN/JAN 8, continued  
EAN/JAN 8 Addenda Required  
When Addenda Required is set to on, the scanner will only read EAN/JAN 8 bar  
codes that have addenda. Default = Not Required.  
Required  
* Not Required  
EAN/JAN 8 Addenda Separator  
When this feature is on, there is a space between the data from the bar code and  
the data from the addenda. When turned off, there is no space.  
Default = On.  
* On  
Off  
MSI  
<Default All MSI Settings>  
MSI  
On  
* Off  
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MSI, continued  
MSI Check Character  
Different types of check characters are used with MSI bar codes. You can  
program the scanner to read MSI bar codes with Type 10 check characters.  
Default = Validate Type 10, but Don’t Transmit.  
When Check Character is set to Validate and Transmit, the scanner will only  
read MSI bar codes printed with the specified type check character, and will  
transmit this character at the end of the scanned data.  
When Check Character is set to Validate, but Don’t Transmit, the unit will only  
read MSI bar codes printed with the specified type check character, but will not  
transmit the check character with the scanned data.  
Transmit  
Validate Type 10 and Transmit  
MSI Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 4-48. Minimum Default = 4, Maximum Default = 48.  
Minimum Message Length  
Maximum Message Length  
7 - 28  
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Plessey Code  
Plessey Code  
<Default All Plessey Code Settings>  
On  
* Off  
Plessey Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 4-48. Minimum Default = 4, Maximum Default = 48.  
Minimum Message Length  
Maximum Message Length  
RSS-14  
< Default All RSS-14 Settings >  
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RSS-14, continued  
RSS-14  
* On  
Off  
RSS Limited  
< Default All RSS Limited Settings >  
RSS Limited  
* On  
Off  
RSS Expanded  
< Default All RSS Expanded Settings >  
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RSS Expanded, continued  
RSS Expanded  
* On  
Off  
RSS Expanded Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 4-74. Minimum Default = 4, Maximum Default = 74.  
Minimum Message Length  
Maximum Message Length  
EANUCC Emulation  
The imager can automatically format the output from any EAN•UCC data carrier  
to emulate what would be encoded in an equivalent UCC/EAN-128 or  
RSS+Composite symbol. EAN•UCC data carriers include UPC-A and UPC-E,  
EAN-13 and EAN-8, ITF-14, UCC/EAN-128, and EAN•UCC RSS and  
Composites. If UCC/EAN-128 Emulation is selected, the AIM Symbology  
Identifier will be reported as “]C1”. If RSS Emulation is selected, the AIM  
Symbology Identifier will be reported as “]e0.” Any application that accepts  
EAN•UCC data can be simplified since it only needs to recognize one data carrier  
type. Default = EAN•UCC Emulation Off.  
RSS Emulation  
128 Emulation  
* EAN•UCC Emulation Off  
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China Post Code  
<Default All China Post Code Settings>  
China Post Code  
On  
* Off  
China Post Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 2-80. Minimum Default = 4, Maximum Default = 80.  
Minimum Message Length  
Maximum Message Length  
7 - 32  
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Korea Post Code  
<Default All Korea Post Code Settings>  
Korea Post Code  
On  
* Off  
Korea Post Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 2-80. Minimum Default = 4, Maximum Default = 48.  
Minimum Message Length  
Maximum Message Length  
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PosiCode  
<Default All PosiCode Settings>  
PosiCode A and B  
* On  
Off  
You have to have PosiCode A and B on to read any of the PosiCode  
symbologies.  
A and B On  
(No Limited)  
A and B and Limited A On  
(Limited B Off)  
* A and B and Limited B On  
(Limited A Off)  
PosiCode Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 2-80. Minimum Default = 4, Maximum Default = 48.  
Minimum Message Length  
Maximum Message Length  
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Trioptic Code  
Trioptic Code is used for labeling magnetic storage media.  
Note: If you are going to scan Code 32 Pharmaceutical codes, Trioptic Code  
must be off.  
On  
* Off  
Codablock F  
<Default All Codablock F Settings>  
Codablock F  
On  
* Off  
Codablock F Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 1-2048. Minimum Default = 1, Maximum Default = 2048.  
Minimum Message Length  
Maximum Message Length  
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Code 16K  
Code 16K  
<Default All Code 16K Settings>  
On  
* Off  
Code 16K Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 0-160. Minimum Default = 1, Maximum Default = 160.  
Minimum Message Length  
Maximum Message Length  
Code 49  
<Default All Code 49 Settings>  
7 - 36  
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Code 49  
* On  
Off  
Code 49 Message Length  
Scan the bar codes below to change the message length. Refer to Message  
Length on page 7-2 for additional information. Minimum and Maximum  
lengths = 1-81. Minimum Default = 1, Maximum Default = 81.  
Minimum Message Length  
Maximum Message Length  
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8
Interface Keys  
Keyboard Function Relationships  
The following Keyboard Function Code, Hex/ASCII Value, and Full ASCII  
“CTRL”+ relationships apply to all terminals that can be used with the scanner.  
Refer to page 2-6 enable Control + ASCII mode.  
Function Code  
NUL  
SOH  
STX  
ETX  
EOT  
ENQ  
ACK  
BEL  
BS  
HEX/ASCII Value  
Full ASCII “CTRL” +  
00  
01  
02  
03  
04  
05  
06  
07  
08  
09  
0A  
0B  
0C  
0D  
0E  
0F  
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
1A  
1B  
1C  
1D  
1E  
1F  
2
A
B
C
D
E
F
G
H
I
HT  
LF  
J
VT  
K
L
FF  
CR  
M
N
O
P
Q
R
S
T
U
V
W
X
Y
Z
[
SO  
SI  
DLE  
DC1  
DC2  
DC3  
DC4  
NAK  
SYN  
ETB  
CAN  
EM  
SUB  
ESC  
FS  
\
GS  
]
RS  
6
US  
-
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The last five characters in the Full ASCII “CTRL”+ column ( [ \ ] 6 - ), apply to US  
only. The following chart indicates the equivalents of these five characters for  
different countries.  
Country  
United States  
Belgium  
Codes  
[
[
\
<
<
8
Ã
\
]
]
6
6
6
6
6
6
6
6
6
6
6
-
-
Scandinavia  
France  
8
^
9
$
+
+
. .  
]
-
=
-
Germany  
Italy  
-
Switzerland  
United Kingdom  
Denmark  
Norway  
<
¢
\
-
[
8
8
[
-
9
9
]
-
\
-
Spain  
\
-
8 - 2  
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Supported Interface Keys  
IBM AT/XT and  
PS/2 Compatibles,  
WYSE PC/AT  
IBM XTs and  
Compatibles  
IBM, DDC, Memorex  
Telex, Harris*  
ASCII  
NUL  
SOH  
STX  
ETX  
EOT  
ENQ  
ACK  
BEL  
BS  
HEX  
00  
01  
02  
03  
04  
05  
06  
07  
08  
09  
0A  
0B  
0C  
0D  
0E  
0F  
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
1A  
1B  
1C  
1D  
1E  
1F  
Supported Keys  
Reserved  
Enter (KP)  
Cap Lock  
ALT make  
ALT break  
CTRL make  
CTRL break  
CR/Enter  
Reserved  
Tab  
Supported Keys Supported Keys  
Reserved  
CR/Enter  
Caps Lock  
Reserved  
Reserved  
Reserved  
Reserved  
CR/Enter  
Reserved  
Tab  
Reserved  
Enter  
F11  
F12  
F13  
F14  
F15  
New Line  
F16  
HT  
F17  
LF  
Reserved  
Tab  
Reserved  
Tab  
F18  
VT  
Tab/Field Forward  
FF  
Delete  
CR/Enter  
Insert  
Delete  
CR/Enter  
Insert  
Delete  
CR  
Field Exit/New Line  
SO  
Insert  
SI  
Escape  
F11  
Escape  
Reserved  
Home  
F19  
DLE  
DC1  
DC2  
DC3  
DC4  
NAK  
SYN  
ETB  
CAN  
EM  
Error Reset  
Home  
Home  
Print  
Print  
F20  
Back Space  
Back Tab  
F12  
Back Space  
Back Tab  
Reserved  
F1  
Back Space  
Backfield/Back Tab  
F21  
F1  
F2  
F3  
F4  
F5  
F6  
F7  
F8  
F9  
F10  
F1  
F2  
F2  
F3  
F3  
F4  
F4  
SUB  
ESC  
FS  
F5  
F5  
F6  
F6  
F7  
GS  
F8  
F8  
RS  
F9  
F9  
US  
F10  
F10  
* IBM 3191/92, 3471/72, 3196/97, 3476/77, Telex (all models)  
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Supported Interface Keys  
IBM, Memorex Telex (102)* Memorex Telex (88)**  
ASCII  
NUL  
SOH  
STX  
ETX  
EOT  
ENQ  
ACK  
BEL  
BS  
HEX  
00  
01  
02  
03  
04  
05  
06  
07  
08  
09  
0A  
0B  
0C  
0D  
0E  
0F  
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
1A  
1B  
1C  
1D  
1E  
1F  
Supported Keys  
Supported Keys  
Reserved  
Enter  
Reserved  
Enter  
F11  
PF10  
F12  
PF11  
F13  
PF12  
F14  
Reserved  
Reserved  
New Line  
Field Forward  
Field Forward  
Reserved  
Field Forward  
Delete  
F15  
New Line  
F16  
HT  
F17  
LF  
F18  
VT  
Tab/Field Forward  
Delete  
Field Exit  
Insert  
Clear  
Error Reset  
Home  
Print  
FF  
CR  
New Line  
Insert  
SO  
SI  
Erase  
DLE  
DC1  
DC2  
DC3  
DC4  
NAK  
SYN  
ETB  
CAN  
EM  
Error Reset  
Reserved  
Print  
Back Space  
Back Tab  
F19  
Back Space  
Back Field  
Reserved  
PF1  
F1  
F2  
PF2  
F3  
PF3  
F4  
PF4  
SUB  
ESC  
FS  
F5  
PF5  
F6  
PF6  
F7  
PF7  
GS  
F8  
PF8  
RS  
F9  
PF9  
US  
F10  
Home  
* IBM 3196/97, 3476/77, 3191/92, 3471/72, Memorex Telex (all models) with 102  
key keyboards  
** Memorex Telex with 88 key keyboards  
8 - 4  
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Supported Interface Keys  
Esprit 200, 400  
ANSI  
Esprit 200, 400  
ASCII  
Esprit 200, 400  
PC  
ASCII  
NUL  
SOH  
STX  
ETX  
EOT  
ENQ  
ACK  
BEL  
BS  
HEX  
00  
01  
02  
03  
04  
05  
06  
07  
08  
09  
0A  
0B  
0C  
0D  
0E  
0F  
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
1A  
1B  
1C  
1D  
1E  
1F  
Supported Keys  
Reserved  
New Line  
N/A  
Supported Keys  
Supported Keys  
Reserved  
New Line  
N/A  
Reserved  
New Line  
N/A  
N/A  
N/A  
N/A  
N/A  
N/A  
N/A  
N/A  
N/A  
N/A  
N/A  
N/A  
N/A  
New Line  
N/A  
New Line  
N/A  
New Line  
N/A  
HT  
Tab  
Tab  
Tab  
LF  
N/A  
N/A  
N/A  
VT  
Tab  
Tab  
Tab  
FF  
N/A  
N/A  
Delete  
New Line  
Insert  
Escape  
F11  
CR  
New Line  
N/A  
New Line  
N/A  
SO  
SI  
Escape  
F11  
Escape  
F11  
DLE  
DC1  
DC2  
DC3  
DC4  
NAK  
SYN  
ETB  
CAN  
EM  
Insert  
F13  
Insert  
F13  
Home  
Print  
Back Space  
Back Tab  
F12  
Back Space  
Back Tab  
F12  
Back Space  
Back Tab  
F12  
F1  
F1  
F1  
F2  
F2  
F2  
F3  
F3  
F3  
F4  
F4  
F4  
SUB  
ESC  
FS  
F5  
F5  
F5  
F6  
F6  
F6  
F7  
F7  
F7  
GS  
F8  
F8  
RS  
F9  
F9  
F9  
US  
F10  
F10  
F10  
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Supported Interface Keys  
Apple Mac/iMac  
ASCII  
NUL  
SOH  
STX  
ETX  
EOT  
ENQ  
ACK  
BEL  
BS  
HEX  
00  
01  
02  
03  
04  
05  
06  
07  
08  
09  
0A  
0B  
0C  
0D  
0E  
0F  
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
1A  
1B  
1C  
1D  
1E  
1F  
7F  
Supported Keys  
Reserved  
Enter/Numpad Enter  
CAPS  
ALT make  
ALT break  
CNTRL make  
CNTRL break  
RETURN  
APPLE make  
TAB  
HT  
LF  
APPLE break  
TAB  
VT  
FF  
Del  
CR  
RETURN  
Ins Help  
ESC  
SO  
SI  
DLE  
DC1  
DC2  
DC3  
DC4  
NAK  
SYN  
ETB  
CAN  
EM  
F11  
Home  
Prnt Scrn  
BACKSPACE  
LSHIFT TAB  
F12  
F1  
F2  
F3  
F4  
SUB  
ESC  
FS  
F5  
F6  
F7  
GS  
F8  
RS  
F9  
US  
F10  
DEL  
BACKSPACE  
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9
Utilities  
To Add a Test Code I.D. Prefix to All Symbologies  
This selection allows you to turn on transmission of a Code I.D. before the  
decoded symbology. (See the Symbology Chart, included in the Appendix  
A, page A-1) for the single character code that identifies each symbology.) This  
action first clears all current prefixes, then programs a Code I.D. prefix for all  
symbologies. This is a temporary setting that will be removed when the unit is  
power cycled.  
Add Code I.D. Prefix to  
All Symbologies (Temporary)  
Show Software Revision  
Scan the bar code below to output the current software revision, unit serial  
number, and other product information.  
Show Revision  
Show Data Format  
Scan the bar code below to show current data format settings.  
Data Format Settings  
Resetting the Standard Product Defaults  
If you aren’t sure what programming options are in your scanner, or you’ve  
changed some options and want the standard product default settings restored,  
scan the Standard Product Default Settings bar code below.  
Standard Product Default Settings  
The Menu Commands starting on page 11-5 lists the standard product default  
settings for each of the commands (indicated by an asterisk (*) on the  
programming pages).  
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Temporary Visual Menu 2003 Configuration  
For quick download communication configuration, scan the Visual Menu 2003  
bar code to temporarily configure the scanner for Visual Menu 2003 settings.  
Refer to Visual Menu 2003 on page 10-1 for additional information about Visual  
Menu 2003.  
Note: If you have a unit capable of keyboard wedge mode, scan the bar code  
below and the unit will communicate in RS-232 mode, allowing it to work  
communication, cycle the power.  
Visual Menu 2003  
Note: If you download new software into a unit, the user-programmed  
parameters are retained. If you need to discard user-programmed  
settings, scan the Standard Product Default Settings bar code (see  
Standard Product Default Settings on page 9-1).  
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10  
Visual Menu 2003  
Visual Menu 2003 Introduction  
Visual Menu 2003 provides the ability to configure a scanning device by  
connecting the scanner to the com port of a PC. Visual Menu 2003 allows you  
to download updates to a scanner’s firmware, change programmed parameters,  
and create and print programming bar codes. Using Visual Menu 2003, you can  
even set up the configuration for a scanner which is not attached to your PC.  
This enables one expert user to establish the configuration settings for all the  
devices your company uses, then save these configuration files for others. A  
configuration file can be e-mailed or, if you prefer, an expert user can create a  
bar code (or series of bar codes) that contains all the customized programming  
parameters, and mail or fax the bar code(s) to any location. Users in other  
locations can scan the bar code(s) to load in the customized parameters.  
To communicate with a scanner, Visual Menu 2003 requires that the PC have at  
least one available serial communication port and an RS-232 cable to connect  
the port to the device. A power supply, which plugs into the cable, is also  
required.  
Note: If you already have a copy of Visual Menu, please note that older versions  
of Visual Menu will not work with the IT5600/5800. You must use Visual  
Menu 2003 with the IT5600/5800.  
Visual Menu 2003 Operations  
The Visual Menu 2003 program performs the following operations:  
Displays all configuration data, and saves the information to a file on your PC.  
Configures the device to meet your specific requirements. Visual Menu 2003  
has all the programming parameters which are available via programming bar  
codes in this User’s Guide.  
Creates and prints a clone bar code which contains the program and  
configuration data from one device. This bar code can then be used to  
program additional devices with the same parameters.  
Selects a device from a list, then performs offline or online file configuration  
for that device.  
Installing Visual Menu 2003 from the Web  
2. Click in the Quick Search text box and enter Visual Menu 2003.  
3. Click on Search Now.  
4. Click on the entry for Visual Menu 2003.  
5. When prompted, select Save File, and save the files to the  
c:\windows\temp directory.  
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6. Once you have finished downloading the file, exit the web site.  
7. Using Explorer, go to the c:\windows\temp file.  
8. Double click on the Visualmenu2003.exe file. Follow the screen prompts to  
install the Visual Menu 2003 program.  
9. To start Visual Menu 2003, from the Start Menu click on Programs, Visual  
Menu2003, Visual Menu2003.  
Note: If you wish, you can create a shortcut to the Visual Menu 2003 executable  
on your desktop.  
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11  
Serial Programming Commands  
The serial programming commands can be used in place of the programming bar  
codes. Both the serial commands and the programming bar codes will program  
the IT5600/5800. For complete descriptions and examples of each serial  
programming command, refer to the corresponding programming bar code in  
this manual.  
The device must be set to an RS-232 interface (see page 1-7). The following  
commands can be sent via a PC com port using terminal emulation software.  
Conventions  
The following conventions are used for menu and query command descriptions:  
parameterA label representing the actual value you should send as part of a  
command.  
[option] An optional part of a command.  
{Data} Alternatives in a command.  
bold  
Names of menus, menu commands, buttons, dialog boxes, and  
windows that appear on the screen.  
Menu Command Syntax  
Menu commands have the following syntax (spaces have been used for clarity  
only):  
Prefix Tag SubTag {Data} [, SubTag {Data}] [; Tag SubTag {Data}] […] Storage  
Prefix  
Tag  
Three ASCII characters: SYN M CR (ASCII 22,77,13).  
A 3 character case-insensitive field that identifies the desired menu  
command group. For example, all RS-232 configuration settings  
are identified with a Tag of 232.  
SubTag  
A 3 character case-insensitive field that identifies the desired menu  
command within the tag group. For example, the SubTag for the  
RS-232 baud rate is BAD.  
Data  
The new value for a menu setting, identified by the Tag and Sub-  
Tag.  
Storage  
A single character that specifies the storage table to which the  
mand’s operation on the device’s volatile menu configuration table.  
A period (.) performs the command’s operation on the device’s  
non-volatile menu configuration table. Use the non-volatile table  
only for semi-permanent changes you want saved through a power  
cycle.  
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Query Commands  
Several special characters can be used to query the device about its settings.  
^
?
*
What is the default value for the setting(s).  
What is the device’s current value for the setting(s).  
What is the range of possible values for the setting(s). (The de-  
vice’s response uses a dash (-) to indicate a continuous range of  
values. A pipe (|) separates items in a list of non-continuous val-  
ues.)  
Tag Field Usage  
When a query is used in place of a Tag field, the query applies to the entire set  
of commands available for the particular storage table indicated by the Storage  
field of the command. In this case, the SubTag and Data fields should not be  
used because they are ignored by the device.  
SubTag Field Usage  
When a query is used in place of a SubTag field, the query applies only to the  
subset of commands available that match the Tag field. In this case, the Data  
field should not be used because it is ignored by the device.  
Data Field Usage  
When a query is used in place of the Data field, the query applies only to the  
specific command identified by the Tag and SubTag fields.  
Concatenation of Multiple Commands  
Multiple commands can be issued within one Prefix/Storage sequence. Only the  
Tag, SubTag, and Data fields must be repeated for each command in the  
sequence. If additional commands are to be applied to the same Tag, then the  
new command sequence is separated with a comma (,) and only the SubTag and  
Data fields of the additional command are issued. If the additional command  
requires a different Tag field, the command is separated from previous  
commands by a semicolon (;).  
Responses  
The device responds to serial commands with one of three responses:  
ACK Indicates a good command which has been processed.  
ENQ Indicates an invalid Tag or SubTag command.  
NAK Indicates the command was good, but the Data field entry was out of the  
allowable range for this Tag and SubTag combination, e.g., an entry for a  
minimum message length of 100 when the field will only accept 2  
characters.  
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When responding, the device echoes back the command sequence with the  
status character inserted directly before each of the punctuation marks (the  
period, exclamation point, comma, or semicolon) in the command.  
Examples of Query Commands  
In the following examples, a bracketed notation [ ] depicts a non-displayable  
response.  
Example: Example #1:What is the range of possible values for Codabar  
Coding Enable?  
Enter:  
cbrena*.  
Response: CBRENA0-1[ACK]  
This response indicates that Codabar Coding Enable (CBRENA) has a range of  
values from 0 to 1 (off and on).  
Example: Example #2: What is the default value for Codabar Coding Enable?  
Enter:  
cbrena^.  
Response: CBRENA1[ACK]  
This response indicates that the default setting for Codabar Coding Enable  
(CBRENA) is 1, or on.  
Example: Example #3: What is the device’s current setting for Codabar  
Coding Enable?  
Enter:  
cbrena?.  
Response: CBRENA1[ACK]  
This response indicates that the device’s Codabar Coding Enable (CBRENA) is  
set to 1, or on.  
Example: Example #4: What are the device’s settings for all Codabar  
selections?  
Enter:  
cbr?.  
Response: CBRENA1[ACK],  
SSX0[ACK],  
CK20[ACK],  
CCT1[ACK],  
MIN2[ACK],  
MAX60[ACK],  
DFT[ACK].  
This response indicates that the device’s Codabar Coding Enable (CBRENA) is  
set to 1, or on;  
the Start/Stop Character (SSX) is set to 0, or Don’t Transmit;  
the Check Character (CK2) is set to 0, or Not Required;  
concatenation (CCT) is set to 1, or Enabled;  
the Minimum Message Length (MIN) is set to 2 characters;  
the Maximum Message Length (MAX) is set to 60 characters;  
and the Default setting (DFT) has no value.  
IT5600/IT5800 User’s Guide  
11 - 3  
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Trigger Commands  
You can activate and deactivate the scanner with serial trigger commands.  
First, the scanner must be put in Manual/Serial Trigger Mode either by scanning  
the Manual/Serial Trigger Mode bar code (page 3-3), or by sending the Manual/  
Serial Menu Command (page 11-8). Once the scanner is in serial trigger mode,  
the trigger is activated and deactivated by sending the following commands:  
Activate:SYN T CR  
Deactivate:SYN U CR  
The scanner scans until a bar code has been read, until the deactivate com-  
mand is sent, or until the serial time-out has been reached (see Read Time-  
Out on page 3-4 for a description, and the serial command on page 11-8).  
Resetting the Standard Product Defaults  
If you aren’t sure what programming options are in your scanner, or you’ve  
changed some options and want the factory settings restored, scan the  
Standard Product Default Settings bar code below.  
Standard Product Default Settings  
The chart on the following pages lists the factory default settings for each of the  
menu commands (indicated by an asterisk (*) on the programming pages).  
11 - 4  
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Menu Commands  
Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
Factory Default Settings  
Default  
DEFALT  
Terminal Interfaces  
003 (5600SR010 and  
56/5800SR050 models)  
000 (5600SR030 and 000  
models)  
2-2  
Terminal ID  
TERMID###  
*USA  
KBDCTY0  
KBDCTY1  
KBDCTY8  
KBDCTY2  
KBDCTY3  
KBDCTY4  
KBDCTY7  
KBDCTY5  
KBDCTY9  
KBDCTY10  
KBDCTY6  
KBDSTY0  
KBDSTY1  
KBDSTY2  
KBDSTY6  
2-4  
2-4  
2-4  
2-4  
2-4  
2-4  
2-4  
2-4  
2-4  
2-4  
2-4  
2-5  
2-5  
2-5  
2-5  
Belgium  
Denmark  
Finland  
France  
Program Keyboard Country  
Germany/Austria  
Great Britain  
Italy  
Norway  
Spain  
Switzerland  
*Regular  
Caps Lock  
Shift Lock  
Automatic Caps Lock  
Keyboard Style  
Emulate External  
Keyboard  
KBDSTY5  
2-6  
*Control + ASCII Off  
Control + ASCII On  
*Turbo Mode Off  
KBDCAS0  
KBDCAS1  
KBDTMD0  
KBDTMD1  
KBDNPS0  
KBDNPS1  
KBDADC0  
KBDADC1  
PAP232  
2-6  
2-6  
2-6  
2-6  
2-6  
2-6  
2-7  
2-7  
2-8  
Turbo Mode On  
Keyboard Modifiers  
*Numeric Keypad Off  
Numeric Keypad On  
*Auto Direct Conn. Off  
Auto Direct Conn. On  
RS-232  
Serial Port Connection  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
300 BPS  
232BAD0  
232BAD1  
232BAD2  
232BAD3  
232BAD4  
232BAD5  
232BAD6  
232BAD7  
232BAD8  
232BAD9  
2-9  
2-9  
2-9  
2-9  
2-9  
2-9  
2-9  
2-9  
2-9  
2-9  
600 BPS  
1200 BPS  
2400 BPS  
4800 BPS  
9600 BPS  
19200 BPS  
38400 BPS  
57600 BPS  
*115200 BPS  
Baud Rate  
7 Data, 1 Stop, Parity Even  
2-10  
232WRD3  
7 Data, 1 Stop, Parity None  
7 Data, 1 Stop, Parity Odd  
7 Data, 2 Stop, Parity Even  
7 Data, 2 Stop, Parity None  
7 Data, 2 Stop, Parity Odd  
8 Data, 1 Stop, Parity Even  
*8 Data, 1 Stop, Parity None  
8 Data, 1 Stop, Parity Odd  
*RTS/CTS Off  
232WRD0  
232WRD6  
232WRD4  
232WRD1  
232WRD7  
232WRD5  
232WRD2  
232WRD8  
232CTS0  
232CTS1  
232XON0  
232XON1  
232ACK0  
232ACK1  
TERMID64  
TERMID61  
2-10  
2-10  
2-10  
2-10  
2-10  
2-10  
2-10  
2-10  
2-11  
2-11  
2-11  
2-11  
2-11  
2-11  
2-11  
2-11  
Word Length: Data Bits,  
Stop Bits, and Parity  
RTS/CTS On  
*XON/XOFF Off  
RS-232 Handshaking  
XON/XOFF On  
*ACK/NAK Off  
ACK/NAK On  
Same Code Format  
Code 39 Format  
Wand Emulation Connec-  
tion  
11 - 6  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
10  
WNDSPD0  
WNDSPD1  
WNDSPD2  
WNDSPD3  
WNDSPD4  
WNDSPD5  
WNDSPD6  
WNDPOL0  
WNDPOL1  
WNDIDL0  
WNDIDL1  
WNDBLK0  
WNDBLK1  
WNDBLK2  
WNDBLK3  
WNDDLY0  
WNDDLY1  
WNDDLY2  
WNDDLY3  
2-12  
2-12  
2-12  
2-12  
2-12  
2-12  
2-12  
2-12  
2-12  
2-13  
2-13  
2-13  
2-13  
2-13  
2-13  
2-14  
2-14  
2-14  
2-14  
*25  
40  
Wand Emulation Transmis-  
sion Rate  
80  
120  
150  
200  
*Black High  
White High  
Idle Low  
*Idle High  
20  
Wand Emulation Polarity  
Wand Emulation Idle  
*40  
Wand Emulation Data  
Block Size  
60  
80  
5ms  
*50ms  
150ms  
500ms  
Wand Emulation Delay  
Between Blocks  
Wand Emulation Overall  
Checksum  
*Off  
On  
WNDCHK0  
WNDCHK1  
2-14  
2-14  
Output Selections  
Off  
BEPBEP0  
BEPBEP1  
BEPLVL0  
3-1  
3-1  
3-1  
3-1  
3-1  
3-1  
3-1  
3-1  
3-1  
Beeper - Good Read  
*On  
Off  
Low  
BEPLVL1  
Beeper Volume - Good  
Read  
Medium (Default for IT5600)  
High (Default for IT5800)  
Low (1600) (min 400Hz)  
*Medium (3250)  
High (4200) (max 9000Hz)  
BEPLVL2  
BEPLVL3  
BEPFQ11600  
BEPFQ13250  
BEPFQ14200  
Beeper Pitch - Good Read  
(Frequency)  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
*Normal Beep  
Short Beep  
Off  
BEPBIP0  
3-2  
3-2  
3-2  
3-2  
3-2  
3-2  
3-3  
3-3  
3-3  
3-3  
Beeper Duration - Good  
Read  
BEPBIP1  
BEPLED0  
BEPLED1  
BEPRPT1  
BEPRPT#  
DLYGRD0  
DLYGRD500  
DLYGRD1000  
DLYGRD1500  
LED - Good Read  
*On  
*1  
Number of Beeps - Good  
Read  
Range 1 - 9  
*No Delay  
Short Delay (500 ms)  
Medium Delay (1000 ms)  
Long Delay (1500 ms)  
Good Read Delay  
User-Specified Good Read  
Delay  
DLYGRD####  
#
Range 0 - 30,000 ms  
*Manual/Serial Trigger  
3-3  
3-3  
3-4  
3-4  
3-4  
TRGMOD0  
TRGSTO####  
TRGMOD2  
TRGLPT###  
Read Time-Out (0 - 300,000  
ms) *300,000  
Manual Trigger, Low Power  
Low Power Time-Out (0 - 300  
seconds) *120  
Trigger Mode  
Automatic Trigger  
Presentation Mode  
TRGMOD1  
TRGMOD3  
3-4  
3-5  
Hands Free Time-Out (0-  
300,000 seconds) *5000  
TRGPTO####  
##  
3-5  
Short (500 ms)  
DLYRRD500  
DLYRRD750  
DLYRRD1000  
DLYRRD3000  
3-6  
3-6  
3-6  
3-6  
*Medium (750 ms)  
Long (1000 ms)  
Reread Delay  
Extra Long (2000 ms)  
User-Specified Reread  
Delay  
DLYRRD####  
#
Range 0 - 30,000 ms  
3-6  
1 second  
SCNDLY1000  
SCNDLY2000  
SCNDLY0  
3-7  
3-7  
3-7  
3-7  
3-7  
3-7  
2 seconds  
Aimer Delay  
Aimer Mode  
*Off (no delay)  
Delay Duration (0 - 4000ms)  
SCNDLY####  
SCNAIM0  
Off  
*On  
SCNAIM2  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
Time-Out Duration (0 -  
240,000 ms) *0  
SCNADR####  
##  
Aimer Beam Time-Out  
3-8  
Centering On  
DECWIN1  
DECWIN0  
DECLFT###  
DECRGT###  
SEQBLK  
3-8  
*Centering Off  
3-8  
Centering  
Left of Centering Window *40  
3-8  
Right of Centering Window *60  
3-8  
Enter Sequence  
3-11  
3-11  
3-11  
3-11  
3-11  
3-14  
3-14  
3-13  
3-13  
3-13  
3-13  
Output Sequence Editor  
Require Output Sequence  
Default Sequence  
SEQDFT  
Required  
SEQ_EN2  
SEQ_EN1  
SEQ_EN0  
SHOTGN1  
SHOTGN0  
SHWNRD1  
SHWNRD0  
VIDREV1  
On/Not Required  
*Off  
On  
Multiple Symbols  
No Read  
*Off  
On  
*Off  
On  
Video Reverse  
*Off  
VIDREV0  
Prefix/Suffix Selections  
Add CR Suffix to All Symbologies  
VSUFCR  
4-3  
4-3  
4-3  
4-3  
4-4  
4-4  
4-4  
4-4  
4-4  
4-5  
4-5  
4-5  
4-6  
4-6  
Add Prefix  
PREBK2##  
PRECL2  
Prefix  
Suffix  
Clear One Prefix  
Clear All Prefixes  
Add Suffix  
PRECA2  
SUFBK2##  
SUFCL2  
Clear One Suffix  
Clear All Suffixes  
*Enable  
SUFCA2  
RMVFNC0  
RMVFNC1  
DLYCHR##  
DLYCRX##  
DLY_XX###  
DLYFNC##  
DLYMSG##  
Function Code Transmit  
Intercharacter Delay  
Disable  
Delay Length  
User Specified Intercharac-  
ter Delay  
Character to Trigger Delay  
Interfunction Delay  
Intermessage Delay  
IT5600/IT5800 User’s Guide  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
Data Formatter Selections  
*Default Data Format (None)  
DFMDF3  
DFMBK3##  
DFMCL3  
DFMCA3  
DFM_EN0  
DFM_EN1  
DFM_EN2  
VSAF_1  
5-4  
5-4  
5-4  
5-4  
5-5  
5-5  
5-5  
5-5  
5-5  
5-5  
Enter Data Format  
Data Format Editor  
Clear One Data Format  
Clear All Data Formats  
Off  
Data Formatter  
*On, but Not Required  
On, Required  
1
2
3
Alternate Data Formats  
VSAF_2  
VSAF_3  
Secondary Interface Selections  
*Disable  
2IF_EN0  
2IF_EN1  
6-2  
6-2  
Enabling the Secondary  
Interface  
Enable  
Secondary RS-232 Con-  
nection  
RS-232 Interface  
2IFTYP0  
6-2  
Same Code Format  
Code 39 Format  
2IFTYP64  
2IFTYP61  
6-2  
6-2  
Secondary Code 39 Wand  
Emulation  
*Laser Emulation Same Code  
Output  
PAPHLC  
PAP088  
PAP087  
6-3  
6-3  
6-3  
Secondary Laser Emula-  
tion  
Laser Emulation Raw Output  
Laser Emulation Code 39  
Output  
*36  
HLCSPD0  
HLCSPD1  
HLCPOL0  
HLCPOL1  
HLCIDL0  
HLCIDL1  
2IFTRG0  
2IFTRG1  
2IFTRG3  
2IFTRG2  
2IFLPT###  
6-3  
6-3  
6-4  
6-4  
6-4  
6-4  
6-4  
6-4  
6-4  
6-5  
6-5  
Laser Emulation Transmis-  
sion Rate  
100  
Black High  
Laser Emulation Polarity  
Laser Emulation Idle  
*White High  
Low  
*High  
*Manual Trigger  
Automatic Trigger  
Presentation Mode  
Manual Trigger, Low Power  
Low Power Time-Out *120  
Secondary Trigger Mode  
11 - 10  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
Symbologies  
All Symbologies Off  
All Symbologies On  
ALLENA0  
ALLENA1  
7-1  
7-1  
All Symbologies  
Default All Codabar  
Settings  
Codabar  
Codabar  
CBRDFT  
7-3  
Off  
CBRENA0  
CBRENA1  
CBRSSX0  
CBRSSX1  
CBRCK20  
CBRCK21  
CBRCK22  
CBRCCT0  
CBRCCT1  
CBRCCT2  
CBRMIN##  
CBRMAX##  
7-3  
7-3  
7-3  
7-3  
7-4  
7-4  
7-4  
7-4  
7-4  
7-4  
7-5  
7-5  
*On  
*Don’t Transmit  
Transmit  
Codabar Start/Stop Char.  
Codabar Check Char.  
*No Check Char.  
Validate, But Don’t Transmit  
Validate, and Transmit  
Off  
Codabar Concatenation  
*On  
Require  
Minimum (2 - 60) *4  
Maximum (2 - 60) *60  
Codabar Message Length  
Code 39  
Default All Code 39  
Settings  
C39DFT  
7-5  
Off  
C39ENA0  
C39ENA1  
C39SSX0  
C39SSX1  
C39CK20  
7-5  
7-5  
7-5  
7-5  
7-6  
Code 39  
*On  
*Don’t Transmit  
Transmit  
Code 39 Start/Stop Char.  
Code 39 Check Char.  
*No Check Char.  
Validate, But Don’t  
Transmit  
C39CK21  
C39CK22  
7-6  
7-6  
Validate,  
and Transmit  
Minimum (0 - 48) *0  
C39MIN##  
C39MAX##  
C39APP0  
C39APP1  
C39B320  
C39B321  
7-6  
7-6  
7-7  
7-7  
7-8  
7-8  
Code 39 Message Length  
Code 39 Append  
Maximum (0 - 48) *48  
*Off  
On  
*Off  
On  
Code 32 Pharmaceutical  
(PARAF)  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
Off  
C39ASC0  
C39ASC1  
7-8  
7-8  
Code 39 Full ASCII  
Interleaved 2 of 5  
Interleaved 2 of 5  
*On  
Default All Interleaved  
2 of 5 Settings  
I25DFT  
7-9  
Off  
I25ENA0  
I25ENA1  
I25CK20  
7-9  
*On  
7-9  
*No Check Char.  
7-10  
Interleaved 2 of 5 Check  
Digit  
Validate, But Don’t  
Transmit  
I25CK21  
7-10  
Validate, and Transmit  
Minimum (2 - 80) *4  
Maximum (2 - 80) *80  
I25CK22  
7-10  
7-10  
7-10  
I25MIN##  
I25MAX##  
Interleaved 2 of 5 Message  
Length  
Default All Code 93  
Settings  
Code 93  
Code 93  
C93DFT  
7-11  
Off  
C93ENA0  
C93ENA1  
C93MIN##  
C93MAX##  
7-11  
7-11  
7-11  
7-11  
*On  
Minimum (0 - 80) *0  
Maximum (0 - 80) *80  
Code 93 Message Length  
Code 2 of 5  
Default All Code 2 of 5  
Settings  
R25DFT  
7-12  
*Off  
R25ENA0  
R25ENA1  
R25MIN##  
R25MAX##  
7-12  
7-12  
7-12  
7-12  
Code 2 of 5  
On  
Minimum (1 - 48) *4  
Maximum (1 - 48) *48  
Code 2 of 5 Message  
Length  
Default All IATA Code 2 of 5  
Settings  
IATA Code 2 of 5  
IATA Code 2 of 5  
A25DFT  
7-13  
*Off  
A25ENA0  
A25ENA1  
A25MIN##  
A25MAX##  
7-13  
7-13  
7-13  
7-13  
On  
Minimum (1 - 48) *4  
Maximum (1 - 48) *48  
IATA Code 2 of 5 Message  
Length  
Default All Matrix 2 of 5  
Settings  
Matrix 2 of 5  
Matrix 2 of 5  
X25DFT  
7-13  
*Off  
On  
X25ENA0  
X25ENA1  
7-13  
7-13  
11 - 12  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
Minimum (1 - 80) *4  
Maximum (1 - 80) *80  
X25MIN##  
X25MAX##  
7-14  
7-14  
Matrix 2 of 5 Message  
Length  
Default All Code 11  
Settings  
Code 11  
Code 11  
C11DFT  
7-14  
*Off  
C11ENA0  
C11ENA1  
C11CK20  
C11CK21  
C11MIN##  
C11MAX##  
7-14  
7-14  
7-14  
7-14  
7-15  
7-15  
On  
1 Check Digit  
*2 Check Digits  
Minimum (1 - 80) *4  
Maximum (1 - 80) *80  
Code 11 Check Digits  
Required  
Code 11 Message Length  
Code 128  
Default All Code 128  
Settings  
128DFT  
7-15  
Off  
128ENA0  
128ENA1  
ISBENA1  
ISBENA0  
128MIN##  
128MAX##  
128DCP  
7-16  
7-15  
7-16  
7-16  
7-16  
7-16  
7-16  
7-17  
7-17  
7-16  
7-16  
Code 128  
*On  
On  
ISBT Concatenation  
*Off  
Minimum (0 - 80) *0  
Code 128 Message Length  
Code 128 Code Page  
Maximum (0 - 80) *80  
Code 128 Code Page  
*Off  
On  
128FNX0  
128FNX1  
ISBENA0  
ISBENA1  
Code 128 Function Code  
Transmit  
*Off  
On  
ISBT Concatenation  
Telepen  
Default All Telepen  
Settings  
TELDFT  
7-17  
*Off  
TELENA0  
TELENA1  
TELOLD0  
TELOLD1  
TELMIN##  
TELMAX##  
7-17  
7-17  
7-17  
7-17  
7-18  
7-18  
Telepen  
On  
*AIM Telepen Output  
Original Telepen Output  
Minimum (1 - 60) *1  
Maximum (1 - 60) *60  
Telepen Output  
Telepen Message Length  
UPC A  
Default All  
UPC A Settings  
UPADFT  
7-18  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
Off  
UPAENA0  
UPAENA1  
UPACKX0  
UPACKX1  
UPANSX0  
UPANSX1  
UPAAD20  
UPAAD21  
UPAAD50  
UPAAD51  
UPAARQ0  
UPAARQ1  
UPAADS0  
UPAADS1  
7-18  
7-18  
7-18  
7-18  
7-19  
7-19  
7-20  
7-20  
7-20  
7-20  
7-20  
7-20  
7-20  
7-20  
UPC A  
*On  
Off  
UPC A Check Digit  
UPC A Number System  
UPC A 2 Digit Addenda  
UPC A 5 Digit Addenda  
UPC A Addenda Required  
*On  
Off  
*On  
*Off  
On  
*Off  
On  
*Not Required  
Required  
Off  
UPC A Addenda  
Separator  
*On  
Default All UPC E  
Settings  
UPC E  
UPEDFT  
7-21  
Off  
UPEEN00  
UPEEN01  
UPEEN10  
UPEEN11  
UPEEXP0  
UPEEXP1  
UPECKX0  
UPECKX1  
UPENSX0  
UPENSX1  
UPEAD20  
UPEAD21  
UPEAD50  
UPEAD51  
UPEARQ0  
UPEARQ1  
UPEADS0  
UPEADS1  
7-21  
7-21  
7-21  
7-21  
7-22  
7-22  
7-23  
7-23  
7-23  
7-23  
7-23  
7-23  
7-23  
7-23  
7-22  
7-22  
7-22  
7-22  
UPC E0  
*On  
Off  
UPC E1  
*On  
*Off  
UPC E Expand  
On  
Off  
UPC E Check Digit  
UPC E Number System  
UPC E 2 Digit Addenda  
UPC E 5 Digit Addenda  
UPC E Addenda Required  
*On  
Off  
*On  
*Off  
On  
*Off  
On  
*Not Required  
Required  
Off  
UPC E Addenda  
Separator  
*On  
11 - 14  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
Default All EAN/  
JAN 13 Settings  
EAN/JAN 13  
EAN/JAN 13  
E13DFT  
7-24  
Off  
E13ENA0  
E13ENA1  
E13CKX0  
E13CKX1  
E13AD20  
E13AD21  
E13AD50  
E13AD51  
E13ARQ0  
E13ARQ1  
E13ADS0  
E13ADS1  
E13ISB0  
E13ISB1  
7-24  
7-24  
7-24  
7-24  
7-24  
7-24  
7-24  
7-24  
7-25  
7-25  
7-25  
7-25  
7-25  
7-25  
*On  
Off  
EAN/JAN 13 Check Digit  
*On  
*Off  
EAN/JAN 13 2 Digit  
Addenda  
On  
*Off  
EAN/JAN 13 5 Digit  
Addenda  
On  
*Not Required  
EAN/JAN 13 Addenda  
Required  
Required  
Off  
EAN/JAN 13 Addenda  
Separator  
*On  
*Off  
ISBN Translate  
EAN/JAN 8  
On  
Default All EAN/  
JAN 8 Settings  
EA8DFT  
7-26  
Off  
EA8ENA0  
EA8ENA1  
EA8CKX0  
EA8CKX1  
EA8AD20  
EA8AD21  
EA8AD50  
EA8AD51  
EA8ARQ0  
EA8ARQ1  
EA8ADS0  
EA8ADS1  
CPNENA0  
CPNENA1  
MSIDFT  
7-26  
7-26  
7-26  
7-26  
7-26  
7-26  
7-26  
7-26  
7-27  
7-27  
7-27  
7-27  
7-27  
7-21  
7-27  
EAN/JAN 8  
*On  
Off  
EAN/JAN 8 Check Digit  
*On  
*Off  
EAN/JAN 8 2 Digit  
Addenda  
On  
*Off  
EAN/JAN 8 5 Digit  
Addenda  
On  
*Not Required  
EAN/JAN 8 Addenda  
Required  
Required  
Off  
EAN/JAN 8 Addenda  
Separator  
Off  
Coupon Code  
MSI  
*On  
Default All MSI Settings  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
*Off  
On  
MSIENA0  
MSIENA1  
7-27  
7-27  
MSI  
*Validate Type 10, but Don’t  
Transmit  
MSICHK0  
MSICHK1  
7-28  
7-28  
MSI Check Character  
Validate Type 10 and  
Transmit  
Minimum (4 - 48) *4  
Maximum (4 - 48) *48  
Default All Plessey Settings  
*Off  
MSIMIN##  
MSIMAX##  
PLSDFT  
7-28  
7-28  
7-29  
7-29  
7-29  
7-29  
7-29  
MSI Message Length  
Plessey Code  
PLSENA0  
PLSENA1  
PLSMIN##  
PLSMAX##  
Plessey Code  
On  
Minimum (4 - 48) *4  
Maximum (4 - 48) *48  
Plessey Message Length  
RSS-14  
Default All  
RSS-14 Settings  
RSSDFT  
7-30  
Off  
RSSENA0  
RSSENA1  
7-30  
7-30  
RSS-14  
*On  
Default All RSS-14  
Limited Settings  
RSS Limited  
RSLDFT  
7-30  
Off  
RSLENA0  
RSLENA1  
7-30  
7-30  
RSS Limited  
*On  
Default All RSS-14  
Expanded Settings  
RSS Expanded  
RSS Expanded  
RSEDFT  
7-31  
Off  
RSEENA0  
RSEENA1  
RSEMIN##  
RSEMAX##  
EANEMU2  
EANEMU1  
EANEMU0  
7-31  
7-31  
7-31  
7-31  
7-31  
7-31  
7-31  
*On  
Minimum (4 - 74) *4  
Maximum (4 - 74) *74  
RSS Emulation  
128 Emulation  
*EAN•UCC Emulation Off  
RSS Expanded Msg.  
Length  
EAN•UCC Emulation  
Default All China Post Code  
Settings  
China Post Code  
China Post Code  
CPCDFT  
7-32  
*Off  
On  
CPCENA0  
CPCENA1  
7-32  
7-32  
11 - 16  
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Serial  
Setting  
* Indicates default  
Command  
# Indicates a  
numeric entry  
Selection  
Page  
Minimum (2 - 80) *4  
Maximum (2 - 80) *80  
CPCMIN##  
CPCMAX##  
7-32  
7-32  
China Post Code Msg.  
Length  
Default All Korea Post Code  
Settings  
Korea Post Code  
Korea Post Code  
KPCDFT  
7-33  
*Off  
KPCENA0  
KPCENA1  
KPCMIN##  
KPCMAX##  
POSDFT  
7-33  
7-33  
7-33  
7-33  
7-34  
7-34  
7-34  
7-34  
7-34  
7-34  
7-34  
7-34  
7-35  
7-35  
On  
Minimum (2 - 80) *4  
Maximum (2 - 80) *48  
Default All PosiCode Settings  
Off  
Korea Post Code Msg.  
Length  
PosiCode  
POSENA0  
POSENA1  
POSLIM0  
POSLIM1  
POSLIM2  
POSMIN##  
POSMAX##  
TRIENA0  
*On  
PosiCode  
A and B On  
A and B and Limited A On  
*A and B and Limited B On  
Minimum (2 - 80) *4  
Maximum (2 - 80) *48  
*Off  
PosiCode Msg. Length  
Trioptic Code  
Codablock F  
Codablock F  
On  
TRIENA1  
Default All Codablock F Set-  
tings  
CBFDFT  
7-35  
*Off  
CBFENA0  
CBFENA1  
CBFMIN####  
CBFMAX####  
16KDFT  
7-35  
7-35  
7-35  
7-35  
7-36  
7-36  
7-36  
7-36  
7-36  
7-36  
7-37  
7-37  
7-37  
7-37  
On  
Minimum (1 - 2048) *1  
Maximum (1 - 2048) *2048  
Default All Code 16K Settings  
*Off  
Codablock F Msg. Length  
Code 16K  
16KENA0  
Code 16K  
On  
16KENA1  
Minimum (0 - 160) *1  
Maximum (0 - 160) *160  
Off  
16KMIN###  
16KMAX###  
Code 16K  
Code 49  
Code 49  
C49ENA0  
C49ENA1  
C49MIN##  
C49MAX##  
*On  
Minimum (1 - 81) *1  
Maximum (1 - 81) *81  
Code 49  
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12  
Product Specifications  
IT5600 Product Specifications  
Parameter  
Specification  
Dimensions (Typical):  
Height  
6.2 inches (15.7 cm)  
5.3 inches (13.5 cm)  
3.2 inches (8.1 cm)  
6.5 ounces (185 g)  
Length  
Width  
Weight  
Light Source  
Scan Rate  
630 nM visible red LED  
270 scans per second in most usages  
65 degrees  
Skew Angle  
Pitch Angle  
65 degrees  
Horizontal Velocity  
Scan Contrast  
Voltage Requirements  
Current Draw (Max):  
2 inches (5 cm) per second  
20% minimum  
4.5 to 12VDC at scanner  
Scanning  
235mA  
142mA  
235mA  
127mA  
210mA  
120mA  
Standby  
68mA  
48mA  
68mA  
48mA  
60mA  
49mA  
Inrush  
Low Power  
5600SR000 Model @5Vdc  
350mA  
100µA  
@12Vdc  
5600SR010/050 Model @5Vdc  
@12Vdc  
-
-
350mA  
100µA  
-
-
5600SR030 Model @5Vdc  
@12Vdc  
350mA  
-
100µA  
-
Temperature Ranges:  
Operating  
32° F to +122° F (0° C to +50° C)  
-40° F to +140° F (-40° C to +60° C)  
0 to 95% non-condensing  
Storage  
Humidity  
Operational after 50 drops from 6 feet  
(1.8 m) to concrete  
Mechanical Drop  
Vibration  
Withstands 5G peak from 22 to 300 Hz  
15 kV to any external surface  
ESD Sensitivity  
Sealant Rating  
FCC Class B, CE EMC Class B, CE Low  
Agency Compliance  
Voltage Directive, EN60825-1 LED Safety; Class 1,  
UL, cUL, TÜV Certified to EN60950, C-Tick, NOM  
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IT5600 Depth of Field  
Minimum Bar Maximum Near Minimum Far Field  
Width  
Field  
(no ambient lighting)  
13 mil 100% UPC  
1 in (2.5 cm)  
24 in (61 cm)  
7.5 mil Code 39  
10 mil Code 39  
13 mil Code 39  
15 mil Code 39  
20 mil Code 39  
55 mil Code 39  
4 in (10 cm)  
2 in (5 cm)  
14 in (36 cm)  
18 in (46 cm)  
24 in (61 cm)  
28 in (71 cm)  
36 in (91 cm)  
44 in (112 cm)  
1 in (2.5 cm)  
1 in (2.5 cm)  
1 in (2.5 cm)  
4 in (10.2 cm)  
12 - 2  
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IT5800 Product Specifications  
Parameter  
Specification  
Dimensions (Typical):  
without aimer  
with aimer  
Height  
6.4 inches (16.3 cm)  
5.3 inches (13.5 cm)  
3.2 inches (8.1 cm)  
7.5 ounces (213 g)  
630 nm visible red LED  
6.5 inches (16.5 cm)  
5.3 inches (13.5 cm)  
3.2 inches (8.1 cm)  
8.4 oz. (238 g)  
Length  
Width  
Weight  
Light Source  
Aimer Beam Light Source  
Scan Rate  
Class 2 Laser Product, 1.0 mW Max Output:650 nm  
270 scans per second in most usages  
65 degrees  
Skew Angle  
Pitch Angle  
65 degrees  
Horizontal Velocity  
Scan Contrast  
Voltage Requirements  
Current Draw (Max):  
2 inches (5 cm) per second  
20% minimum  
4.5 to 12VDC at scanner  
Scanning  
235mA  
142mA  
235mA  
127mA  
210mA  
120mA  
Standby  
68mA  
48mA  
68mA  
48mA  
60mA  
49mA  
Inrush  
Low Power  
5800SR00X Model @5Vdc  
350mA  
100µA  
@12Vdc  
5800SR05X Model @5Vdc  
@12Vdc  
-
-
350mA  
100µA  
-
-
5800SR03X Model @5Vdc  
@12Vdc  
350mA  
-
100µA  
-
Temperature Ranges:  
Operating  
Storage  
-22° F to +122° F (-30° C to +50° C)  
-40° F to +140° F (-40° C to +60° C)  
0 to 95% non-condensing  
Humidity  
Operational after 50 drops from 6.5 feet (2 m) to  
concrete @ -22° F (-30° C)  
Mechanical Drop  
Vibration  
Withstands 5G peak from 22 to 300 Hz  
15 kV to any external surface  
ESD Sensitivity  
Sealant Rating  
IP 54 (Water and Dust Resistant)  
FCC Class B, CE EMC Class B, CE Low  
Agency Compliance  
Voltage Directive, EN60825-1 LED Safety; Class 1,  
UL, cUL, TÜV Certified to EN60950, C-Tick, NOM  
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IT5800 Depth of Field  
Min. Bar  
Width  
Max.  
Near Field  
Min. Far Field  
(25 Lux lighting)  
Min. Far Field  
(300 Lux lighting)  
13 mil 100% UPC  
2.5 in (6.4 cm)  
26 in (66 cm)  
28 in (71 cm)  
7.5 mil Code 39  
15 mil Code 39  
20 mil Code 39  
55 mil Code 39  
6.5 in (16.5 cm)  
2.5 in (6.4 cm)  
1.5 in (3.8 cm)  
4 in (10.2 cm)  
14 in (36 cm)  
30 in (76.2 cm)  
39 in (99.1 cm)  
63 in (160 cm)  
15 in (38 cm)  
31 in (78.7 cm)  
42 in (107 cm)  
82 in (208 cm)  
12 - 4  
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Standard Cable Pinouts  
Laser Output Only (Laser Compatible Bar Image)  
suyvlageption.  
latdignpower  
Pis4nd9areopu  
ostcrhandle  
csyouterminal  
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Standard Cable Pinouts  
Keyboard Wedge  
otscrhandle  
12 - 6  
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Standard Cable Pinouts  
Wand Emulation  
ostcrhandle  
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Standard Cable Pinouts  
Serial Output  
1
otscrhandle  
12 - 8  
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Standard Cable Pinouts  
USB  
ostcrhandle  
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13  
Maintenance  
Repairs  
Repairs and/or upgrades are not to be performed on this product. These  
services are to be performed only by an authorized service center. Please see  
Customer Support on page 14-1 for further information.  
Maintenance  
The IT5600/5800 provides reliable and efficient operation with a minimum of  
care. Although specific maintenance is not required, the following periodic  
checks ensure dependable scanner operation:  
Cleaning the Scanner’s Window  
Reading performance may degrade if the scanner’s window is not clean. If the  
window is visibly dirty, or if the scanner isn’t operating well, clean the window with  
a soft cloth or lens tissue dampened with water (or a mild detergent- water  
solution or alcohol). If a detergent solution is used, rinse with a clean lens tissue  
dampened with water only.  
The scanner’s housing may also be cleaned the same way.  
Caution:  
!
Do not submerge the imager in water. Do not use  
abrasive wipes or tissues on the imager’s window –  
abrasive wipes may scratch the window.  
Never use solvents (e.g., acetone, benzene, ether, or  
phenol-based agents) on the housing or window –  
solvents may damage the finish or the window.  
Inspecting Cords and Connectors  
Inspect the scanner’s interface cable and connector for wear or other signs of  
operation. Contact your Hand Held Products distributor for information about  
cable replacement. Cable replacement instructions are on page 13-2.  
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Replacing the Interface Cable  
The standard interface cable is attached to the scanner with an 10-pin modular  
connector. When properly seated, the connector is held in the IT5600/5800  
scanner’s handle by a flexible retention tab. The interface cable is designed to  
be field replaceable.  
Order replacement cables from Hand Held Products or from an authorized  
distributor.  
When ordering a replacement cable, specify the cable part number of the  
original interface cable.  
To Replace the IT5600 Interface Cable:  
1. Turn the power to the host system  
OFF.  
2. Disconnect the scanner’s cable from  
the terminal or computer.  
3. Locate the small hole on the side of  
the scanner’s handle (IT5600/5800).  
This is the cable release.  
4. Straighten one end of a paper clip.  
5. Insert the end of the paper clip into the  
small hole and press in. This  
depresses the retention tab, releasing  
the connector. Pull the connector out  
while maintaining pressure on the  
paper clip, then remove the paper clip.  
Cable  
Release  
6. Replace with the new cable.  
Insert the connector into the opening  
and press firmly. The connector is  
keyed to go in only one way, and will click into place.  
13 - 2  
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To Replace the IT5800 Interface Cable:  
1. Turn the power to the host system  
OFF.  
2. Disconnect the imager’s cable from  
the terminal or computer.  
3. Use a screwdriver to unscrew the cord  
lock from the base of the imager if in  
use.  
4. Locate the small hole on the side of  
the imager’s handle. This is the cable  
release.  
Cable  
Release  
5. Straighten one end of a paper clip.  
6. Insert the end of the paper clip into the  
small hole and press in. This  
depresses the retention tab, releasing  
the connector. Pull the connector out  
while maintaining pressure on the  
paper clip, then remove the paper clip.  
Cord lock  
7. Replace with the new cable.  
Insert the connector into the opening  
and press firmly. The connector is keyed to go in only one way, and will click  
into place.  
8. If the cord lock is used, screw it back in place over the cord.  
Troubleshooting  
The scanner automatically performs self-tests whenever you turn it on. If your  
scanner is not functioning properly, review the following Troubleshooting Guide  
to try to isolate the problem.  
Is the power on? Is the red aiming illumination line on?  
If the red aiming illumination line isn’t illuminated, check that:  
The cable is connected properly.  
The host system power is on (if external power isn’t used).  
The trigger works.  
Is the scanner having trouble reading your symbols?  
If the scanner isn’t reading symbols well, check that the symbols:  
Aren’t smeared, rough, scratched, or exhibiting voids.  
Aren’t coated with frost or water droplets on the surface.  
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Are enabled in the scanner or in the decoder to which the scanner connects.  
Is the bar code displayed but not entered?  
The bar code is displayed on the host device correctly, but you still have to press  
a key to enter it (the Enter/Return key or the Tab key, for example).  
You need to program a suffix. Programming a suffix enables the scanner to  
output the bar code data plus the key you need (such as “CR”) to enter the data  
into your application. Refer to Prefix/Suffix Overview on page 4-1 for further  
information.  
Does the scanner read the bar code incorrectly?  
If the scanner reads a bar code, but the data is not displayed correctly on the host  
screen:  
The scanner may not be programmed for the appropriate terminal interface.  
For example, you scan “12345” and the host displays “@es%.”  
Reprogram the scanner with the correct Plug and Play or Terminal selection  
bar code. See Chapter 1 and Chapter 2.  
The scanner may not be programmed to output your bar code data properly.  
For example, you scan “12345” and the host displays “A12345B.”  
7.  
The scanner won’t read your bar code at all.  
1. Scan the sample bar codes in the back of this manual. If the scanner reads  
the sample bar codes, check that your bar code is readable.  
Verify that your bar code symbology is enabled (see Chapter 7).  
2. If the scanner still can’t read the sample bar codes, scan All Symbologies on  
page 7-1.  
If you aren’t sure what programming options have been set in the scanner, or if  
you want the factory default settings restored, scan Resetting the Standard  
Product Defaults on page 11-4.  
13 - 4  
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14  
Customer Support  
Product Service and Repair  
Hand Held Products provides service for all its products through service centers  
throughout the world. To obtain warranty or non-warranty service, return the unit  
to Hand Held Products (postage paid) with a copy of the dated purchase record  
attached. Contact the appropriate location below to obtain a Return Material  
Authorization number (RMA #) before returning the product.  
North America  
Hand Held Products Corporate Offices  
Telephone: (800) 782-4263, Option 3  
Fax: (704) 566-6015  
America Latina  
Hand Held Products America Latina  
Teléfono: (239) 263-7600  
Fax: (239) 263-9689  
Brazil  
Hand Held Products Brazil  
Telephone: +55 (21) 2176-0250  
Fax: +55 (21) 2176-0249  
Europe, Middle East, and Africa  
Hand Held Products Europe  
Telephone:+ 31 (0) 40 29 01 633  
Fax: + 31 (0) 40 2901631  
Asia Pacific  
Hand Held Products Asia/Pacific  
Telephone: +852-2511-3050  
Fax: +852-2511-3557  
Japan  
Hand Held Products Japan  
Telephone: +81-3-5770-6312  
Fax: +81-3-5770-6313  
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Online Product Service and Repair Assistance  
You can also access product service and repair assistance online at  
Technical Assistance  
If you need assistance installing or troubleshooting your scanner, please call  
your Distributor or the nearest Hand Held Products technical support office:  
North America/Canada:  
Telephone:  
Fax number:  
E-mail:  
(800) 782-4263, option 4 (8 a.m. to 6 p.m. EST)  
(315) 685-4960  
Europe, Middle East, and Africa:  
Telephone-  
European Ofc: Int+31 (0) 40 29 01 600  
U.K. Ofc:  
E-mail:  
Int+44 1925 240055  
Asia Pacific:  
Telephone:  
E-mail:  
Int+852-3188-3485 or 2511-3050  
America Latina:  
Teléfono:  
E-mail:  
(704) 998-3998, opción 8  
Online Technical Assistance  
You can also access technical assistance online at www.handheld.com.  
Limited Warranty  
Hand Held Products, Inc. ("Hand Held Products") warrants its products to be free  
from defects in materials and workmanship and to conform to Hand Held  
Products’ published specifications applicable to the products purchased at the  
time of shipment. This warranty does not cover any Hand Held Products product  
which is (i) improperly installed or used; (ii) damaged by accident or negligence,  
including failure to follow the proper maintenance, service, and cleaning  
schedule; or (iii) damaged as a result of (A) modification or alteration by the  
purchaser or other party, (B) excessive voltage or current supplied to or drawn  
from the interface connections, (C) static electricity or electro-static discharge,  
(D) operation under conditions beyond the specified operating parameters, or (E)  
repair or service of the product by anyone other than Hand Held Products or its  
authorized representatives.  
14 - 2  
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This warranty shall extend from the time of shipment for the duration published  
by Hand Held Products for the product at the time of purchase ("Warranty  
Period"). Any defective product must be returned (at purchaser’s expense)  
during the Warranty Period to Hand Held Products’ factory or authorized service  
center for inspection. No product will be accepted by Hand Held Products  
without a Return Materials Authorization, which may be obtained by contacting  
Hand Held Products. In the event that the product is returned to Hand Held  
Products or its authorized service center within the Warranty Period and Hand  
Held Products determines to its satisfaction that the product is defective due to  
defects in materials or workmanship, Hand Held Products, at its sole option, will  
either repair or replace the product without charge, except for return shipping to  
Hand Held Products.  
EXCEPT AS MAY BE OTHERWISE PROVIDED BY APPLICABLE LAW, THE  
FOREGOING WARRANTY IS IN LIEU OF ALL OTHER COVENANTS OR  
WARRANTIES, EITHER EXPRESSED OR IMPLIED, ORAL OR WRITTEN,  
INCLUDING, WITHOUT LIMITATION, ANY IMPLIED WARRANTIES OF  
MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.  
Hand Held Products’ RESPONSIBILITY AND PURCHASER’S EXCLUSIVE  
REMEDY UNDER THIS WARRANTY IS LIMITED TO THE REPAIR OR  
REPLACEMENT OF THE DEFECTIVE PRODUCT. IN NO EVENT SHALL  
Hand Held Products BE LIABLE FOR INDIRECT, INCIDENTAL, OR  
CONSEQUENTIAL DAMAGES, AND, IN NO EVENT, SHALL ANY LIABILITY  
OF Hand Held Products ARISING IN CONNECTION WITH ANY PRODUCT  
SOLD HEREUNDER (WHETHER SUCH LIABILITY ARISES FROM A CLAIM  
BASED ON CONTRACT, WARRANTY, TORT, OR OTHERWISE) EXCEED  
THE ACTUAL AMOUNT PAID TO Hand Held Products FOR THE PRODUCT.  
THESE LIMITATIONS ON LIABILITY SHALL REMAIN IN FULL FORCE AND  
EFFECT EVEN WHEN Hand Held Products MAY HAVE BEEN ADVISED OF  
THE POSSIBILITY OF SUCH INJURIES, LOSSES, OR DAMAGES. SOME  
STATES, PROVINCES, OR COUNTRIES DO NOT ALLOW THE EXCLUSION  
OR LIMITATIONS OF INCIDENTAL OR CONSEQUENTIAL DAMAGES, SO  
THE ABOVE LIMITATION OR EXCLUSION MAY NOT APPLY TO YOU.  
All provisions of this Limited Warranty are separate and severable, which means  
that if any provision is held invalid and unenforceable, such determination shall  
not affect the validity of enforceability of the other provisions hereof. Use of any  
peripherals not manufactured/sold by Hand Held Products voids the warranty.  
This includes but is not limited to: cables, power supplies, cradles, and docking  
stations. Hand Held Products, Inc. extends these warranties only to the first end-  
users of the products. These warranties are nontransferable.  
The limited duration of the warranty for the IT5600 is for five (5) years.  
The limited duration of the warranty for the IT5800 is for three (3) years.  
IT5600/IT5800 User’s Guide  
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14 - 4  
IT5600/IT5800 User’s Guide  
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Appendix A  
Symbology Chart  
Code AIM Hex  
Code AIM Hex  
Symbology  
Symbology  
ID  
ID  
ID  
ID  
ID  
ID  
Q
]X0  
51  
61  
71  
66  
68  
6F  
62  
3C  
f
66  
China Post  
Codabar  
IATA 2 of 5  
Interleaved 2 of 5  
Korea Post  
Matrix 2 of 5  
MSI  
]Rm  
]lm  
a
q
f
e
65  
3F  
6D  
67  
9C  
6E  
57  
]Fm  
]Om  
]Rm  
]Hm  
]Km  
]Am  
]X0  
?
]X0  
]X0  
Codablock F  
Code 2 of 5  
Code 11  
m
g
h
o
b
<
]Mm  
Code 16K  
Code 39  
No Read  
n
]P0  
Plessey Code  
Code 32 Pharma-  
ceutical (PARAF)  
W
]pm  
PosiCode  
l
6C  
Reduced Space  
Symbology (RSS-  
14, RSS Limited,  
RSS Expanded)  
y
79  
]Tm  
]em  
Code 49  
i
69  
6A  
49  
44  
t
74  
3D  
63  
63  
Code 93  
Telepen  
]Gm  
]Cm  
]C1  
]Bm  
]X0  
j
=
c
c
Code 128  
Trioptic Code  
UPC-A  
I
UCC/EAN-128  
]E0  
]E3  
D
]E4  
UPC-A with  
Extended Coupon  
Code  
EAN/JAN-8  
d
d
64  
64  
E
45  
99  
EAN/JAN-13  
UPC-E  
]E0  
]E3  
]E0  
EAN-13 with  
Extended  
Coupon Code  
Note: “m” represents the AIM modifier character. Refer to International  
Technical Specification, Symbology Identifiers, for AIM modifier character  
details.  
Note: Prefix/Suffix entries for specific symbologies override the universal (All  
Refer to Data Editing beginning on page 4-1 and Data Formatting beginning on  
page 5-1 for information about using Code ID and AIM ID.  
IT5600/IT5800 User’s Guide  
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ASCII Conversion Chart (Code Page 1252)  
Note:  
This table applies to U.S. style keyboards. Certain characters may differ depending on your  
Country Code/PC regional settings.  
Dec Hex Char Dec Hex Char Dec Hex Char Dec Hex Char  
0
00  
01  
02  
03  
04  
05  
06  
07  
08  
09  
0A  
0B  
0C  
0D  
0E  
0F  
10  
11  
NUL  
SOH  
STX  
ETX  
EOT  
ENQ  
ACK  
BEL  
BS  
32  
33  
34  
35  
36  
37  
38  
39  
40  
41  
42  
43  
44  
45  
46  
47  
48  
49  
50  
51  
52  
53  
54  
55  
56  
57  
58  
59  
60  
61  
62  
63  
20  
21  
22  
23  
24  
25  
26  
27  
28  
29  
2A  
2B  
2C  
2D  
2E  
2F  
30  
31  
32  
33  
34  
35  
36  
37  
38  
39  
3A  
3B  
3C  
3D  
3E  
3F  
64  
65  
66  
67  
68  
69  
70  
71  
72  
73  
74  
75  
76  
77  
78  
79  
80  
81  
82  
83  
84  
85  
86  
87  
88  
89  
90  
91  
92  
93  
94  
95  
40  
41  
42  
43  
44  
45  
46  
47  
48  
49  
4A  
4B  
4C  
4D  
4E  
4F  
50  
51  
52  
53  
54  
55  
56  
57  
58  
59  
5A  
5B  
5C  
5D  
5E  
5F  
@
A
B
C
D
E
F
G
H
l
96  
97  
98  
99  
60  
61  
62  
63  
1
!
a
b
c
d
e
f
2
3
#
$
%
&
4
100 64  
101 65  
102 66  
103 67  
104 68  
105 69  
106 6A  
107 6B  
108 6C  
109 6D  
110 6E  
5
6
7
g
h
i
8
(
9
HT  
)
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
21  
22  
23  
24  
25  
26  
27  
28  
29  
30  
31  
LF  
*
J
j
VT  
+
,
K
L
k
l
FF  
CR  
-
M
N
O
P
Q
R
S
T
U
V
W
X
Y
Z
[
m
n
o
p
q
r
SO  
.
SI  
/
111  
6F  
DLE  
DC1  
DC2  
DC3  
DC4  
NAK  
SYN  
ETB  
CAN  
EM  
0
1
2
3
4
5
6
7
8
9
:
112 70  
113 71  
114 72  
115 73  
116 74  
117 75  
118 76  
119 77  
120 78  
121 79  
122 7A  
123 7B  
124 7C  
125 7D  
126 7E  
127 7F  
12  
13  
14  
15  
16  
17  
18  
19  
1A  
1B  
1C  
1D  
1E  
1F  
s
t
u
v
w
x
y
z
{
SUB  
ESC  
FS  
;
<
=
>
?
\
|
GS  
]
}
RS  
^
~
US  
_
A - 2  
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Dec Hex Char Dec Hex Char Dec Hex Char Dec Hex Char  
128  
129  
130  
131  
132  
133  
134  
135  
136  
137  
138  
80  
81  
82  
83  
84  
85  
86  
87  
88  
89  
8A  
 
160 A0  
161 A1  
162 A2  
163 A3  
164 A4  
165 A5  
166 A6  
167 A7  
168 A8  
169 A9  
170 AA  
192 C0  
193 C1  
194 C2  
195 C3  
196 C4  
197 C5  
198 C6  
199 C7  
200 C8  
201 C9  
202 CA  
À
Á
Â
Ã
Ä
Å
Æ
Ç
È
É
Ê
224  
225  
226  
227  
228  
229  
230  
231  
232  
233  
234  
E0  
E1  
E2  
E3  
E4  
E5  
E6  
E7  
E8  
E9  
EA  
à
á
â
ã
ä
å
æ
ç
¡
¢
£
¤
¥
¦
ƒ
ˆ
§
¨
è
é
ê
Š
©
ª
«
¬
-
139  
140  
141  
142  
143  
144  
145  
146  
147  
148  
149  
150  
151  
152  
153  
154  
8B  
8C  
8D  
8E  
8F  
90  
91  
92  
93  
94  
95  
96  
97  
98  
99  
9A  
171 AB  
172 AC  
173 AD  
174 AE  
175 AF  
176 B0  
177 B1  
178 B2  
179 B3  
180 B4  
181 B5  
182 B6  
183 B7  
184 B8  
185 B9  
186 BA  
203 CB  
204 CC  
205 CD  
206 CE  
207 CF  
208 D0  
209 D1  
210 D2  
211 D3  
212 D4  
213 D5  
214 D6  
215 D7  
216 D8  
217 D9  
218 DA  
Ë
Ì
235  
236  
237  
238  
239  
240  
241  
242  
243  
244  
245  
246  
247  
248  
249  
250  
EB  
EC  
ED  
EE  
EF  
F0  
F1  
F2  
F3  
F4  
F5  
F6  
F7  
F8  
F9  
FA  
ë
ì
Œ
Í
í
Ž
®
¯
°
Î
î
Ï
ï
Ð
Ñ
Ò
Ó
Ô
Õ
Ö
×
Ø
Ù
Ú
ð
ñ
ò
ó
ô
õ
ö
÷
ø
ù
ú
±
²
³
´
µ
·
˜
¸
š
¹
155  
156  
157  
158  
159  
9B  
9C  
9D  
9E  
9F  
187 BB  
188 BC  
189 BD  
190 BE  
191 BF  
»
219 DB  
220 DC  
221 DD  
223 DF  
Û
Ü
Ý
ß
251  
252  
253  
254  
255  
FB  
FC  
FD  
FE  
FF  
û
ü
ý
þ
ÿ
œ
¼
½
¿
ž
Ÿ
IT5600/IT5800 User’s Guide  
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Code Page Mapping of Printed Bar Codes  
Code pages define the mapping of character codes to characters. If the data  
received does not display with the proper characters, it may be because the bar  
code being scanned was created using a code page that is different from the one  
the host program is expecting. If this is the case, select the code page with which  
the bar codes were created. The data characters should then appear properly.  
Note: The Code Page option is available for Code 39, Code 93, and Code 128.  
Code Page  
1
Standard  
CP ISO646  
ISO 2022  
Description  
2 (Default)  
Automatic National Replacement  
Characters  
3
CP Binary  
82  
83  
ISO 2022 11 Swe  
ISO 2022 69 Fra  
Swedish Replacement Characters  
French/Belgium Replacement Charac-  
ters  
81  
ISO 2022 25 Fra  
French/Belgium Replacement Charac-  
ters  
84  
85  
86  
87  
88  
89  
90  
ISO 2022 11 Ger  
ISO 2022 11 Ita  
ISO 2022 11 Swi  
ISO 2022 11 UK  
ISO 2022 11 Dan  
ISO 2022 11 Nor  
ISO 2022 11 Spa  
German Replacement Characters  
Italian Replacement Characters  
Swiss Replacement Characters  
British Replacement Characters  
Danish Replacement Characters  
Norwegian Replacement Characters  
Spanish Replacement Characters  
A - 4  
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Sample Symbols  
UPC A  
0 123456 7890  
Interleaved 2 of 5  
1234567890  
Code 128  
Code 128  
EAN 13  
9 780330 290951  
EAN 8  
654 3210 5  
UPC-E  
0
456123  
8
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Sample Symbols  
Code 39  
Codabar  
BC321  
Code 93  
A13579B  
Code 2 of 5  
123456-9$  
Matrix 2 of 5  
123456  
6543210  
RSS-14  
(01)00123456789012  
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Programming Chart  
0
2
4
1
3
5
6
8
7
9
A
C
E
B
D
F
Discard  
Save  
Note: If you make an error while scanning the letters or digits (before scanning  
Save), scan Discard, scan the correct letters or digits, and Save.  
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Hand Held Products, Inc.  
700 Visions Drive  
P.O. Box 208  
Skaneateles Falls, NY 13153-0208  
56-5800-UG Rev C  
6/05  
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