METROLOGIC INSTRUMENTS, INC.
IS4110 and IS4125
®
ScanQuest Laser Scan Engine
Installation and User’s Guide
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TABLE OF CONTENTS
Introduction
Theory of Operation...............................................................................1
Accessories ...........................................................................................2
Components of the ScanQuest Engine.................................................3
Label Locations .....................................................................................4
Maintenance..........................................................................................4
Applications and Protocols........................................................................5
Design Specifications
Operational............................................................................................6
Maintenance..........................................................................................6
Mechanical ............................................................................................7
Electrical................................................................................................7
Specifications for the Supplemental Window ........................................8
Default Settings
IS4125 Communication Parameters .....................................................9
Scanner Terminations
IS4125-17 Connector Pin Assignments ..............................................15
IS4125-38 Connector Pin Assignments ..............................................16
IS4125-41 Connector Pin Assignments ..............................................17
IS4125-103 Connector Pin Assignments ............................................18
IS4110 Connector Pin Assignments....................................................19
Scan Sense Timing
IS4110 Timing Diagram.......................................................................20
Regulatory Requirements and Warnings
Regulatory Requirements....................................................................21
Europe .................................................................................................22
United States.......................................................................................23
ii
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TABLE OF CONTENTS
Canada................................................................................................24
Warnings..............................................................................................24
Limited Warranty.....................................................................................25
Patents ....................................................................................................26
Index........................................................................................................27
Contact Information and Office Locations...............................................29
iii
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INTRODUCTION
Metrologic’s ScanQuest® Engines are miniature laser bar code scanners
designed to be used in OEM applications and decode equipped OEM devices.
The ScanQuest series provides fast, accurate, reliable scanning in a compact,
lightweight package.
Two engine models are available: the IS4125 and the IS4110. The IS4125 has
built-in decoding for versatile OEM operations, while the IS4110 non-decode
engine interfaces directly with decode-equipped OEM devices*. The IS4125 has
flash upgradeable firmware.
* Note: The manufacturer of the end equipment must register with agencies
such as the Food and Drug Administration (FDA). The
specifications required for registration are not obtainable until the
OEM manufacturer uses the ScanQuest Engine in its final
configuration. Therefore, it becomes the responsibility of the
manufacturer who incorporates the scan engine into their product to
comply with all federal laser safety regulations. The manufacturer
must submit a Laser Product Report for the FDA in the US or
similar forms as required by other countries. Metrologic will assist
its customers in complying with the necessary procedures.
Theory of Operation
An infrared (IR) device located behind the scanner window initiates the scanning
process. The IR sensor is active as long as the unit is being powered. When the
laser decodes a bar code, the scan engine transmits the data to the host system.
If the same bar code stays in the field after successfully scanning, the laser stays
on for approximately 4 seconds and then turns off. This prevents unintentional
reads of the same bar code. To read the same symbol more than once, remove
the object from the scan field for approximately 1 second and then present the
symbol again.
If the bar code and object is removed from the field during the scanning process,
the laser turns off. In this stage, the scan engine’s computer remains on
“standby”.
However, if the object stays in the field, the laser remains on for up to 2.5
seconds trying to detect the bar code. To reactivate the scanning sequence,
remove the object.
1
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INTRODUCTION
Accessories
The following are available:
IS4125 Decoded Scan Engine Part Numbers
Decode Demo Kit 45729
(Includes RS232 adapter cable – MCA951 to 9 PC port)
MLPN*
MANUFACTURE/PART NO.
6233
811
HP HLMP-1300
HP HLMP-1523
1170
7102
7103
Star Micronics QMB-105
Burndy FLWSLW125-1C7
Burndy BFC12X30A4
Flex Ribbon 12 Pos x 130mm
IS4110 Non-Decoded Scan Engine Part Numbers
Non-Decode Demo Kit 45730
(Includes 9-pin squeeze connector to decode controllers)
MLPN*
MANUFACTURE/PART NO.
6233
811
HP HLMP-1300
HP HLMP-1523
1170
7084
7104
Star Micronics QMB-105
MOLEX 52030-1010
Burndy BFC10X130A4
Flex Ribbon 10 POS x 130mm
* Metrologic Part Number
2
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INTRODUCTION
Components of the ScanQuest Scan Engine
Figure 1: IS4110
Figure 2: IS4125
Scanner window:
This aperture emits laser light.
Infrared Object Sensor: When a specified time has elapsed without any
scanning, the unit will enter a “standby” mode. To
reactivate the unit, present an object in front of the
IR (infrared) sensor.
Ribbon Cables:
This IS4110 has a 10 position FFC/FPC cable and the
IS4125 has a 12-position FFC/FPC cable. Refer to
Scanner Termination starting on page 15.
3
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INTRODUCTION
Label Locations
The serial number label is located on the bottom of the unit. On the top of the
unit is the “avoid exposure” and model number label.
The following are examples of these labels:
Figure 3: Labels
Maintenance
Smudges and dirt can interfere with the proper scanning of a bar code.
Therefore, the output window will need occasional cleaning.
1. Spray glass cleaner onto lint free, non-abrasive cleaning cloth.
2. Gently wipe the scanning window.
4
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IR SENSOR ACTIVATION
An infrared (IR) sensor located behind the scanner window initiates the scanning
process. In short range mode the signal projects approximately 101.61 mm –
177.84 mm (4" – 7") beyond the output window. In long range mode the signal
projects approximately 228.61 mm – 330.21 mm (9" – 13") beyond the output
window. The IR sensor remains active as long as the unit is powered.
When the unit remains dormant for a time, the laser will turn off. In this stage, the
scan engine’s computer is on “standby”. To reactivate the unit, present an object
within the scan field.
APPLICATIONS AND PROTOCOLS
The model number on each scan engine includes the scan engine number and
communications protocol.
Unit
Communication Protocol(s)
Type
IS4110
Laser Data
Non-decode
RS232 and Light Pen Emulation
(Flash Upgradeable Firmware)
IS4125-41
IS4125-17
IS4125-38
Keyboard Wedge, Stand Alone Keyboard
(Flash Upgradeable Firmware)
Decode
Low Speed USB
Keyboard Emulation or Serial Emulation Mode
IS4125-103
TTL, RS232
5
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DESIGN SPECIFICATIONS
OPERATIONAL
Light Source: VLD 650 ± 10 nm
Designed to be used in CDRH Class II
and IEC Class 2 laser products
CDRH/IEC:
UL:
UL recognized component for
Canada and US
12.7 mm to 203.2 mm (.5" to 8") for
0.33 mm (13 mil) bar codes
Depth of Field, UPC 100%:
Scan Speed: 52 scan lines per second minimum
Scan Pattern: Single scan line
Beam Focus at 3" from
Window:
.21 mm ± 10%
Flipper Scan Angle: ± 15 degrees from 0 axis
At 152 mm (6") from Flipper (5" from Face)
114 mm ± 13 mm (4 ½" ± ½")
Scan Width:
At 25 mm (1”) from Flipper (Face)
22 mm ± 13 mm (⅞" ± ⅛")
Print Contrast: 35% minimum reflectance difference
Decode Capability: Autodiscriminates (menu select)
IS4125
RS232C, Light Pen Emulation,
System Interfaces: Keyboard Wedge, Low Speed USB,
RS232 TTL
MAINTENANCE
Window: Clean Periodically
Specifications are subject to change without notice.
6
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DESIGN SPECIFICATIONS
MECHANICAL
45.7 mm L x 40.6 mm W x 18.5 mm D
(1.8" L x 1.6" W x .73" D)
Dimensions:
IS4125
Weight: 55 g. (1.94 oz.)
Low profile ZIF 12-pin connector that accepts
a 1 mm x 12 position FFC/FPC cable
Termination:
45.7 mm L x 40.6 mm W x 14 mm D
(1.8" L x 1.6" W x .55" D)
Dimensions:
IS4110
Weight: 45 g. (1.774 oz.)
Low profile ZIF 10-pin connector that accepts
a 1 mm x 12 position FFC/FPC cable
Termination:
ELECTRICAL
Power: .625 watts
Input Voltage: 5VDC ± 0.25V
IS4125
IS4110
Operating Current: 125 mA typical @5VDC
Standby Current: 9 mA typical @ 5VDC
Power: .375 watts (IS4110)
Input Voltage: 5VDC ± 0.25V
Operating Current: 75 mA typical @ 5VDC (IS4110)
Standby Current: 1.7 mA typical @ 5VDC (IS4110)
Specifications are subject to change without notice.
7
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DESIGN SPECIFICATIONS
Specifications for the Supplemental Window
The IS4100 ScanQuest series was designed for integration into OEM equipment.
The device is designed to function at its maximum performance capabilities as
shipped. If the scanner is integrated into a system that requires a supplemental
window in front of it, its performance will be altered to some degree.
To minimize the effect of adding a supplemental window in front of the scanner
the following recommendations should be followed:
Material
•
•
The window should have a transmission of 95% or greater at 675 nm.
The window should be optically flat and clear, and free of scratches,
pits, seeds etc.
•
This material is available through Metrologic.
Mounting
The window should be placed at an angle of 10 degrees with respect
to the plane of the scanner window (see figure 4 below).
Figure 4: Supplemental Window Angle
8
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DEFAULT SETTINGS
Many functions of the IS4125 decode scan engine can be configured or
enabled/disabled. The decode engine is shipped from the factory configured to a
set of default conditions. The default parameter of the decode scan engine has
an asterisk (*) in the charts on the following pages. If an asterisk is not in the
default column then the default setting is OFF or disabled. Every interface does
not support every parameter. If the interface supports a parameter, a check
mark (ꢀ) will appear in interface column.
RS232
OR
RS232
TTL
Light Keyboard
Parameter
Default
USB
Pen
Wedge
Enter Configuration Mode, After Any Scan
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*
Enter Configuration Mode, Only on First
Scan
Short Range Activation
Long Range Activation
Normal Scan
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*
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Pulsing Scan
Custom Scan
DTR Activation
DC2 Activation
Address Based Activation
“NOREAD” message Transmission
Turn on Green LED during “NOREAD”
Transmit
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*
*
Short Same Symbol Re-scan
Long Same Symbol Re-scan
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Green LED Identical Symbol
Re-Scan Indicator
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1 Vs 2 Scan Buffers
1
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2X Redundancy (MECCA
Double Border Requirement
(Large Intercharacter Space Requirement)
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Alternate Beeper Tone 1
Alternate Beeper Tone 2
Alternate Beeper Tone 3
No Beeper tone
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*
Two Second Timeout
9
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DEFAULT SETTINGS
RS232
OR
RS232
TTL
Light Keyboard
Parameter
Default
USB
Pen
Wedge
No Two Second Timeout
Razzberry Tone on Timeout
No Tone on Timeout
Three Beeps on Timeout
Beep Before Transmit
Beep After Transmit
Baud Rate
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*
*
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*
9600
Parity
Space ꢀ
8 Data Bits
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7 Data Bits
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*
RTS/CTS
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Character RTS/CTS
Message RTS/CTS
ACK/NAK
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*
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XON/XOFF
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*
No Intercharacter Delay
1 Millisecond Intercharacter Delay
5 Millisecond Intercharacter Delay
10 Millisecond Intercharacter Delay
25 Millisecond Intercharacter Delay
100 Millisecond Intercharacter Delay
DTR Input
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DTR Scan Disable
“DE” Disable Command
LRC Calc+ Transmit RS232
Start LRC on first RS232 Byte
Start LRC on Second RS232 Byte
Carriage Return
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*
*
*
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Line Feed
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STX Prefix
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ETX Suffix
Tab Prefix
Tab Suffix
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DEFAULT SETTINGS
RS232
OR
RS232
TTL
Light
Pen
Keyboard
Wedge
Parameter
Default
USB
Prefix ID for UPC/EAN
Suffix ID for UPC/EAN
Bars High
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*
*
Spaces High
Transmit as Scanned
Transmit as code 39
Poll Light Pen 5 volts
No Poll Light Pen
Reverse Polarity Idle for Light Pen
UPC
*
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*
*
EAN
Full ASCII code 39
Code 39
*
Codabar
Code 128
*
*
Code 93
Code 11
RSS14 Enable
RSS14 ID “]e0”
*
*
*
RSS14 App ID “01”
RSS14 Check Digit
RSS Expanded Enable
Expanded ID “]e0”
RSS Limited Enable
RSS Limited ID “]e0”
RSS Limited App ID “01”
RSS Limited Check Digit
Interleaved 2 of 5
Hong Kong Matrix 2 of 5
Airline 2 of 5
*
*
*
*
*
Minimum 1 Character Code Length
Minimum 3 Character Code Length
Minimum 6 character Code Length
*
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DEFAULT SETTINGS
RS232
OR
RS232
TTL
Light Keyboard
Parameter
Default
USB
Pen
Wedge
Set Minimum Character Length
Set Character Lock Length
Transmit UPC-A Number Sys
UPC-A Check Digit Transmit
Convert UPC-A to EAN-13
Expand UPC-E
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*
*
UPC-E Check Digit Transmit
UPC-E Leading 0 Transmit
EAN-8 Check Digit Transmit
EAN-13 Check Digit Transmit
Convert EAN-8 to EAN-13
“$” Prefix ID for UPC/EAN
2 Digit Supplements (Scan)
5 Digit Supplements (Scan)
Bookland (Scan)
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*
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Supplement Required
Bookland to ISNB
Transmit ISBN CD
Mod 43 Check digit-Code 39
Transmit Mod 43 Check Digit Code 39
Transmit Start/Stop-Code 39
CLSI Editing (Enable)
*
ITF Check Digit
Transmit Mod 10 ITF Check Digit
2 of 5 Symbol Lengths
Variable ꢀ
ISBN Reformatting
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Coupon Code 128
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]C1 Transmit Coupon C128
Coupon 128 Group Separator
Italian Pharmaceutical
Codabar Start & Stop Class
ITF Minimum Symbol Length Test
Matrix 2 of 5
12
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DEFAULT SETTINGS
RS232
OR
RS232
TTL
Light Keyboard
Parameter
Default
USB
Pen
Wedge
Matrix 2 of 5 Check Digit
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Hong Kong Matrix 2 of 5
MSI-Plessy Test of Check Digit
Enable MSI-Plessy Mod 10 Check Digit
*
*
Enable MSI-Plessy Mod 10/10
Check Digit
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Transmit MSI-Plessy Check Digit
UK Plessy
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UK Plessey Check Digit
UK Plessey Special Format
A to X conversion (UK)
Scan Count Test Mode
Scanability Test Mode
Normal Scan/Operating Test Mode
Default to ScanPal Communication
parameters Code ID
Code ID
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Sanyo 635 ECR Protocol
Post Software ID characters
“Newcode” Mode A
“Newcode” Mode B
SNI Beetle Mode
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BIO DATA Mode
Golden Bountiful Formatting
Enable Sineko Mode
Enable Caps Lock Mode
(for MI951 external wedge)
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Enable French Wyse 120V PC Term
Intermec Polling Mode D (limited function)
Rochford Thompson Mode
RTS Counter Toggle
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Beep on BEL RS232
13
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DEFAULT SETTINGS
RS232
OR
RS232
TTL
Light Keyboard
Parameter
Default
USB
Pen
Wedge
Bancomer Mode
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FedEx parsing
Retransmit of Same Code
1st Configurable Prefix ID
2nd Configurable Prefix ID
1st Configurable Suffix ID
2nd Configurable Suffix ID
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Clear all Configurable Prefixes and
Suffixes
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SNI Beetle Mode
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AT Keyboard
*
*
Type XT Keyboard
Type PS2 Keyboard
USA Keyboard
Belgium Keyboard
France Keyboard
Germany Keyboard
Spain Keyboard
Italy Keyboard
UK Keyboard
IBM KDB4700 Financial Keyboard
Alt Mode
Auto Detection or Caps Lock
User-Defined Caps Lock
F0H Break Code Transmission
800 Microsecond Delay-Enter Scan Code
15 Millisecond Delay-Enter Scan Code
7-5 Millisecond delay-Enter Scan Code
*
*
14
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SCANNER TERMINATIONS
IS4125-17 Connector Pin Assignments
Metrologic provides a low profile ZIF 12-pin
connector to connect to a 1 mm x 12 position
FFC/FPC cable. The pin assignments are as follows:
1
12
Figure 5
Pin
Signal Name
Function
Input. 5VDC (± 0.25V)
This requires 25 mA in standby and 130 mA peak.
1
VCC
2
Ground
Receive
PC Data
PCClock
KB Clock
Transmit
KB Data
Signal and power ground.
3
Input. Keyboard Wedge receive data from host.
4*
5*
6*
7
PCData
PCClock
KB Clock
Output. RS232 transmit data from the scan engine.
8*
KB Data
Output. 5V high with a 2 kHz pulse. This drain is the pin
of a PFET type transistor that can source approximately
100 mA of current. This output is the connection for an
LED or other indicator (i.e. beeper+). It is recommended
that the indicator is terminated directly to ground.
Good Read
Indicator
9
Input. Collector of an NPN transistor that can sink
approximately 100 mA of current. A current limiting pull-
up resistor and Piezo type transducer (QMB- 111PXN or
equivalent) is recommended.
10
Beeper -
Input. Do not connect to this pin, Metrologic internal use
only.
11
12
Reserved Input
LED -
Negative connection for scan mode indicator.
An external pull-up and LED are suggested. Maximum
current is limited to 25 mA. This line is active low when
the scanner is in the scanner mode (i.e. scan line is
present).
* Pins 4, 5, 6 and 8 main function is to transmit scan codes between the
Keyboard Wedge and PC.
15
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SCANNER TERMINATIONS
IS4125-38 Connector Pin Assignments
Metrologic provides a low profile ZIF 12-pin
connector to connect to a 1 mm x 12 position
FFC/FPC cable. The pin assignments are as follows:
1
12
Figure 6
Pin
Signal Name
Function
Input. 5 VDC (± 0.25V)
This requires 25 mA in standby and 130 mA peak.
1
VCC
2
3
Ground
Receive
Signal and power ground.
Input. RS232 receive data from host.
Nominal ±12V signals.
Data terminal ready signal from host.
Nominal ±12V signals.
4
DTR
5
6
D-
USB D- Data Line
USB D+ Data Line
D+
Output. RS232 transmit data from the scan engine.
Nominal ±12V signals.
7
8
Transmit
+USB_V
+USB power from terminal defined per USB specification
Output. 5V high with a 2 kHz pulse. This drain is the pin
of a PFET type transistor that can source approximately
100 mA of current. This output is the connection for an
LED or other indicator (i.e. beeper+). It is recommended
that the indicator is terminated directly to ground.
Good Read
Indicator
9*
Input. Collector of an NPN transistor that can sink
approximately 100 mA of current. A current limiting pull-
up resistor and Piezo type transducer (QMB- 111PXN or
equivalent) is recommended.
10*
Beeper -
Input. Do not connect to this pin, for Metrologic internal
use only.
11
12
Reserved Input
LED -
Negative connection for LED. An external pull-up and
LED are suggested. Maximum current is limited to
25 mA. This line is active low when the laser diode is
active.
* Pins 9 and 10 can be used together to form a push-pull type circuit. Pin 9
becomes the Beeper + and Good - Read source whereas Pin 10 supplies the
pathway to ground.
16
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SCANNER TERMINATIONS
IS4125-41 Connector Pin Assignments
Metrologic provides a low profile ZIF 12-pin
connector to connect to a 1 mm x 12 position
FFC/FPC cable. The pin assignments are as follows:
1
12
Figure 7
Pin
Signal Name
Function
Input. 5 VDC (± 0.25V)
This requires 25 mA in standby and 130 mA peak.
1
VCC
2
3
Ground
Receive
Signal and power ground.
Input. RS232 receive data from host.
Nominal ±12V signals.
Input. Either light pen source voltage (typical:+5VDC) when
configured for wand emulation or RS232 Data Terminal
Ready signal from host. Nominal ±12V signals.
Light Pen
Source/DTR IN
4
Output.
5
6
7
8
RTS
Light Pen DATA
Transmit
RS232 Ready to send signal from the scan engine.
Output. Wand emulation data, open collector output from
the scan engine.
Output. RS232 transmit data from the scan engine.
Nominal ±12V signals.
Input. RS232 Clear to send signal from host.
Nominal ±12V signals.
CTS
Output. 5V high with a 2 kHz pulse. This drain is the pin of a
PFET type transistor that can source approximately 100 mA
of current. This output is the connection for an LED or other
indicator (i.e. beeper+). It is recommended that the indicator
is terminated directly to ground.
Good Read
Indicator
9*
Input. Collector of an NPN transistor that can sink
approximately 100 mA of current. A current limiting pull-up
resistor and Piezo type transducer (QMB- 111PXN or
equivalent) is recommended.
10*
Beeper -
Input. Do not connect to this pin. This pin is for Metrologic
internal use only.
11
12
Reserved Input
LED -
Negative connection for LED. An external pull-up and LED
is suggested. Maximum current is limited to 25 mA. This line
is active low when the laser diode is active.
* Pins 9 and 10 can be used together to form a push-pull type circuit. Pin 9
becomes the Beeper + and Good - Read source whereas Pin 10 supplies the
pathway to ground..
17
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SCANNER TERMINATIONS
IS4125-103 Connector Pin Assignments
Metrologic provides a low profile ZIF 12-pin
connector to connect to a 1 mm x 12 position
FFC/FPC cable. The pin assignments are as follows:
1
12
Figure 8
Pin
Signal Name
Function
Input. 5VDC (± 0.25V)
This requires 25 mA in standby and 130 mA peak.
1
VCC
2
3
4
Ground
Receive
Signal and power ground.
Input. RS232 receive data from host.
Nominal ±12V signals.
TTL Receive
Input. +5/0V
Output, RS232 Ready to send signal from the scan engine.
Nominal ±12V signals.
5
6
7
RTS
TTL Transmit
Transmit
Output. +5/0V
Output. RS232 transmit data from the scan engine.
Nominal ±12V signals.
Input. RS232 clear to send signal from host.
Nominal ±12V signals.
8
CTS
Output. 5V high with a 2 kHz pulse. This drain is the pin of
a PFET type transistor that can source approximately
100 mA of current. This output is the connection for an
LED or other indicator (i.e. beeper+). It is recommended
that the indicator is terminated directly to ground.
Good Read
Indicator
9*
Input. Collector of an NPN transistor that can sink
approximately 100 mA of current. A current limiting pull-up
resistor and Piezo type transducer (QMB- 111PXN or
equivalent) is recommended.
10*
11
Beeper -
Reserved Input
LED -
Input. Do not connect to this pin. This pin is for Metrologic
internal use only.
Negative connection for LED. An external pull-up and LED
are suggested. Maximum current is limited to 25 mA.
This line is active low when the laser diode is active.
12
* Pins 9 and 10 can be used together to form a push-pull type circuit. Pin 9
becomes the Beeper + and Good - Read source whereas Pin 10 supplies the
pathway to ground.
18
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SCANNER TERMINATIONS
IS4110 Connector Pin Assignments
Metrologic provides a low profile ZIF 10-pin connector
that accepts an FPC/FFC cable with a 1.0 mm Pitch
and a 0.3 mm end thickness. This cable is available
from Metrologic in various lengths.
Figure 9
The pin assignments are as follows:
Pin
Signal Name
Function
+5V +/-.25V supplied from terminal
(100 mA minimum supply)
1
VCC
Open collector output. A black bar is indicated by a low
signal. A 5K ohm pull-up resistor is recommended.
2
3
4
5
Data Out
Range Select
Scan Sense
Open collector input. A low on this line will put the scanner
in long range (9” – 13”) activation mode. This line may be
left unterminated for short range (4” – 7”) activation mode.
TTL output. The signal pulses high once for each scan
cycle (i.e. one scan in each direction). There are 35 scan
pulses per second.
Open collector active low output. This pin will go low
whenever the scan mode is activated. It is capable of
sinking 15 mA and can be used to activate an indicator
light.
Scan Mode
Indicator
6
7
IR Enable
Ground
Do not connect to this pin.
Power ground
TTL output. A low signal indicates an object is within the
scan field. The signal remains low until the object is
removed.
8
Object Detect
TTL low input. A low signal applied to this pin will activate
the scan mode. High or open deactivates the scan mode.*
9*
Scan Enable
Scan Enable
TTL high input. A high signal applied to this pin will activate
the scan mode. Low or open deactivates the scan mode.*
10*
* Use either pin 9 or pin 10 to activate the scan engine.
19
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SCAN SENSE TIMING
IS4110 Timing Diagram
The SCAN SENSE pulse occurs once for each flip cycle. A flip cycle represents
one scan in each direction (right to left then left to right from the scanner
perspective). The HIGH to LOW transition of the SCAN SENSE signal initiates
the start of the flip cycle.
The frequency of the SCAN SENSE pulses is dependent on the frequency of the
internal flipper. This varies from unit to unit from 26 Hz to 30 Hz. Therefore, the
period of the SCAN SENSE pulses will vary from 33 ms to 39 ms.
Figure 10: Timing Diagram
20
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REGULATORY REQUIREMENTS AND WARNINGS
Regulatory Requirements
The IS4100 Series ScanQuest Laser Scan engines are designed to meet the
requirements of CDRH Class II and IEC Class 2 laser products. CDRH Class
II/IEC Class 2 are defined as follows:
Emission Duration:
Greater than 0.25 seconds
Accessible Emission Limit: Less than 0.001 W (1.0 milliwatts) average
radiant power
The IS4100 series ScanQuest laser scan engine is registered with the Center for
Devices and Radiological Health as a laser “component”. The addition of
emission indicators, shut-down control, labeling and informational requirements
are necessary to achieve compliance with the performance standard published in
the Code of Federal Regulations (CFR), Title 21 Parts 1040.10 and 1040.11.
Therefore, it is the responsibility of the manufacturer who incorporates the scan
engine into their product to provide the additional performance, labeling and
informational requirements necessary to comply with all federal laser safety
regulations.
Federal law requires that all laser products introduced into commerce in the
United States be registered with the CDRH, US Food and Drug Administration
through submittal of a Laser Safety Report. The manufacturer of the end
equipment must obtain approval and certification from agencies such as the
FDA.
The specifications required for agency approval are not obtainable until the
ScanQuest engine is used in its final configuration. Metrologic is unable to fulfill
these requirements because the scan engine will operate differently depending
upon where it is used as a component. The following information concerning the
scan engine appears on the shipping label:
THIS DEVICE DOES NOT COMPLY WITH 21 CFR 1040.
USE ONLY AS A COMPONENT.
Manufacturers incorporating unmodified ScanQuest engines into their product may
reference the following accession number on items in their Laser Product Report
that request information concerning features inherent in the ScanQuest engine
design.
Accession Number: 8820576-14, -19
If the product is to be used in another country, they must fulfill the requirements
for that country. Refer to one of the following sections Europe on page 22,
United States on page 23 or Canada on page 24 for further explanation.
21
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REGULATORY REQUIREMENTS AND WARNINGS
Europe
The CE Mark is required on products with IS4110 and IS4125 Scan Engines if
the products are to be imported into European Economc Area (EEA) countries.
Use of the CE Mark requires compliance with Directives and standards
dependent upon the type of product. Information may be found at
Laser Safety
EN60825-1:1994+A1+A2 “Safety of Laser products”.
Compliance with this standard is required for the product to bear the CE mark.
Note: Non EEA countries may impose additional testing/certification
requirements.
EMC
Certain combinations of ScanQuest scan engines and associated electronics
may require certification of compliance with the European EMC Directive. EMC
compliance of finished products in Europe can be accomplished by the following
method:
•
The manufacturer may certify to the EC’s Electromagnetic Compatibility
Directive 89/336/EEC. Compliance is required for the product to bear the
CE Mark.
Note: Non EEA countries may impose additional testing/certification
requirements.
Electrical Safety
The scan engines are built to conform to the European Low Voltage Directive
73/23/ EEC.
22
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REGULATORY REQUIREMENTS AND WARNINGS
United States
Laser Safety
To assist with the FDA filing requirements (refer to Regulatory Requirements on
page 21), Metrologic has registered the scan engine with the FDA as a
component. Customers can contact CDRH at the following address:
Food and Drug Administration
Center for Devices and Radiological Health
Light Products Branch (HFX-312)
Office of Compliance
2098 Gaither Road
Rockville, MD 20850
Tel: 301-594-4654
Requirements for laser products are described in CFR (Code of Federal
Regulation) Title 21, part 1040.10 & 1040.11 from the Government Printing Office.
Copies can be ordered by calling 202-512-1800, ordering on line from
www.access.gpo.gov/su_docs or writing to:
Superintendent of Documents
PO Box 371954
Pittsburgh, PA 15250-7954
Note: State and local governments may regulate the use products containing
lasers. The manufacturer should consult the applicable government
regulations for more information.
EMC
Certain combinations of scan engines and associated electronics may require
testing to insure compliance with the following Federal Communications
Commission regulation: 47 CFR Part 15
Note: When using the scan engine with RF equipment, modems, etc. may
require examination(s) to the standard(s) for the specific equipment
combination. It is the manufacturers’ responsibility to comply with the
applicable federal regulation(s).
23
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REGULATORY REQUIREMENTS AND WARNINGS
Canada
Laser Safety
The Radiation Protection Bureau currently accepts products meeting the FDA
standards in Canada. For more information contact:
Radiation Protection Bureau
775 Brookfield Road
Ottawa, Ontario K1A 1C1
EMC
Products meeting FCC 47 CFR Part 15 will meet Industry Canada interference-
causing equipment standard for digital apparatus. Additional testing is not
required.
A written notice indicating compliance must accompany the apparatus to the end
user. The notice shall be in the form of a label that is affixed to the apparatus.
The notice may be in the form of a statement included in the user’s manual if,
because of insufficient space or other restrictions, it is not feasible to affix a label
to the apparatus.
Warnings
United States
WARNING:
IS4110 scan engines do not include control circuitry and therefore do not incorporate a
laser beam timeout. This feature is necessary for compliance to CDRH Class II and /or
IEC Class 2 unless laser product modifications that change the requirement are made.
German
WARNUNG:
Die Scanner IS4110 verfügen über keinen Steuerungsschaltkreis und daher auch nicht
über einen Timeout des Laserstrahls. Diese Eigenschaft ist jedoch nötig zur Konformität
mit den Normen CDRH Class II und/oder IEC Class 2, außer es werdenn Modifikationen
des Laserprodukts vorgenommen, die zugleich die Anforderungen erfüllen.
French
AVERTISSEMENT:
Comme les scanner IS4110 ne sont pas équipés d'un circuit de commande, il n'y a pas
de temps imparti pour le faisceau du laser. La conformité aux normes CDRH ClassII
et/ou IEC Class 2 exige cependant cette propriété, sauf si les produits laser sont
modifiés de facon à ce que ces exigences shangent aussi.
Italian
ATTENZIONE!
Gli scanner IS4110 non dispongono di un circuito di regolazione e quindi neanche di un
timeout del raggio laser. Tuttavia questa caratteristica è necessaria ai fini della
conformità con le norme CDRH Class II e/o IEC Class 2, a meno che non vengano
effettuate modifiche del prodotto laser che mutino a loro volta I requisiti da soddisfare.
24
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LIMITED WARRANTY
The IS4110 and the IS4125 ScanQuest scanners are manufactured by Metrologic at its
Blackwood, New Jersey, USA facility. The ScanQuest scanners have a two (2) year limited
warranty from the date of manufacture. Metrologic warrants and represents that all ScanQuest
scanners are free of all defects in material, workmanship and design, and have been produced
and labeled in compliance with all applicable US Federal, state and local laws, regulations and
ordinances pertaining to their production and labeling.
This warranty is limited to repair, replacement of product or refund of product price at the sole
discretion of Metrologic. Faulty equipment must be returned to one of the following Metrologic
repair facilities: Blackwood, New Jersey, USA; Madrid, Spain; or Suzhou, China. To do this,
contact the appropriate Metrologic Customer Service/Repair Department to obtain a Returned
Material Authorization (RMA) number.
In the event that it is determined that the equipment failure is covered under the warranty,
Metrologic shall, as its sole option, repair the Product or replace the Product with a functionally
equivalent unit and return such repaired or replaced Product without charge for service or
return freight, whether distributor, dealer/reseller, or retail consumer, or refund an amount
equal to the original purchase price.
This limited warranty does not extend to any Product which, in the sole judgment of Metrologic,
has been subjected to abuse, misuse, neglect improper installation, or accident, nor any
damage due to use or misuse produced from integration of the Product into any mechanical,
electrical or computer system. The warranty is void if the case of Product is opened by anyone
other than Metrologic’s repair department or authorized repair centers.
THIS LIMITED WARRANTY, EXCEPT AS TO TITLE, IS IN LIEU OF ALL OTHER WARRANTIES
OR GUARANTEES, EITHER EXPRESS OR IMPLIED, AND SPECIFICALLY EXCLUDES,
WITHOUT LIMITATION, WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A
PARTICULAR PURPOSE UNDER THE UNIFORM COMMERCIAL CODE, OR ARISING OUT OF
CUSTOM OR CONDUCT. THE RIGHTS AND REMEDIES PROVIDED HEREIN ARE EXCLUSIVE
AND IN LIEU OF ANY OTHER RIGHTS OR REMEDIES. IN NO EVENT SHALL METROLOGIC BE
LIABLE FOR ANY INDIRECT OR CONSEQUENTIAL DAMAGES, INCIDENTAL DAMAGE,
DAMAGES TO PERSON OR PROPERTY, OR EFFECT ON BUSINESS OR PROPERTY, OR
OTHER DAMAGES OR EXPENSES DUE DIRECTLY OR INDIRECTLY TO THE PRODUCT,
EXCEPT AS STATED IN THIS WARRANTY. IN NO EVENT SHALL ANY LIABILITY OF
METROLOGIC EXCEED THE ACTUAL AMOUNT PAID TO METROLOGIC FOR THE PRODUCT.
METROLOGIC RESERVES THE RIGHT TO MAKE ANY CHANGES TO THE PRODUCT
DESCRIBED HEREIN.
CORPORATE HEADQUARTERS,
NORTH AMERICA
METROLOGIC EUROPEAN REPAIR CENTER
(MERC)
Metrologic Instruments, Inc.
90 Coles Rd.
Blackwood, NJ 08012-4683
Customer Service Department
Tel: 1-800-ID-METRO
Fax: 856-228-6673
Metrologic Eria Ibérica, SL
C/Alfonso Gomez, 38-40, 1D
28037 Madrid
Tel: +34 913 751 249
Fax: +34 913 270 437
Email: [email protected]
MTLG AUTO ID INSTRUMENTS (SHANGHAI) CO., LTD
Suzhou Sales Office
BLK A, Room# 03/03-04
No.5 Xinghan Street, Xinsu Industrial Square
China-Singapore Suahou Industrial Park, Suzhou, PRC
Tel: 86-512-67622550
Fax: 86-512-67622560
Email: [email protected]
25
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PATENTS
This Metrologic product may be covered by, but is not limited to, one or more of
the following US Patents:
U.S. Patent No.: 5,260,553; 5,340,971; 5,340,973; 5,424,525; 5,468,951;
5,484,992; 5,525,789; 5,528,024; 5,627,359; 5,661,292; 5,777,315; 5,789,730;
5,789,731; 5,811,780; 5,825,012; 5,886,337; 5,925,870; 5,925,871; 5,939,698;
6,029,894; 6,189,793; 6,209,789; 6,227,450; 6,874,689;
4,360,798; 4,369,361; 4,387,297; 4,460,120; 4,496,831; 4,593,186; 4,607,156;
4,673,805; 4,736,095; 4,758,717; 4,816,660; 4,845,350; 4,896,026; 4,923,281;
4,933,538; 4,992,717; 5,015,833; 5,017,765; 5,059,779; 5,117,098; 5,124,539;
5,130,520; 5,132,525; 5,140,144; 5,149,950; 5,180,904; 5,200,599; 5,229,591;
5,247,162; 5,250,790; 5,250,791; 5,250,792; 5,262,628; 5,280,162; 5,280,164;
5,304,788; 5,321,246; 5,324,924; 5,396,053; 5,396,055; 5,408,081; 5,410,139;
5,436,440; 5,449,891; 5,468,949; 5,479,000; 5,532,469; 5,545,889
No license right or sublicense is granted, either expressly or by implication,
estoppel, or otherwise, under any METROLOGIC or third party intellectual
property rights (whether or not such third party rights are licensed to
METROLOGIC), including any third party patent listed above, except for an
implied license only for the normal intended use of the specific equipment,
circuits, and devices represented by or contained in the METROLOGIC products
that are physically transferred to the user, and only to the extent of Metrologic’s
license rights and subject to any conditions, covenants and restrictions therein.
Other worldwide patents pending.
26
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INDEX
A
H
Adapter Cable ...............................2
Applications and Protocols ............5
Assignments
Host ........................................ 1, 14
I
pin .............................................3
IEC................................................ 6
Indicators
LED............................... 2, 15–19
Interfaces ...................................... 6
Introduction ................................... 1
IR Sensor.............................. 1, 3, 5
B
Beam Width...................................6
Beeper.........................9–14, 15–19
C
K
Cable
adapter ..................................2, 8
FFC/FPC ...............................3, 7
flex ribbon..................2, 3, 15–19
CDRH............................................6
Clean.............................................6
Communication Protocols..............5
Compliance .....................22, 23, 24
Connector..........................2, 15–19
Contrast.........................................6
Current ..........................................7
Customer Service........................25
Keyboard Wedge .......... 5, 9–14, 15
Kit
demo......................................... 2
L
Labels ........................................... 4
LED............................................... 2
Light Pen Emulation.. 5, 6, 9–14, 17
Light Source.................................. 6
Limited warranty.......................... 25
Long Range Mode ............ 5, 14, 19
D
M
Data.......................................15–19
Decode..............................1, 2, 5, 6
Default Setting.........................9–14
Dimensions....................................7
Maintenance ............................. 4, 6
Mechanical.................................... 7
N
E
Non-Decode.......................... 1, 2, 5
NPN ...................................... 15, 16
Electrical
safety...................................7, 22
Electrical Specifications.................7
O
OEM.......................................... 1, 8
Operating Current ......................... 7
Operation ...................................... 1
Operational ................................... 6
Output Window ................. 3, 4, 5, 6
F
Faulty equipment.........................25
FDA...................................1, 23, 24
Flex Ribbon Cable.....................2, 3
Functions.................................9–14
P
G
Parameter ............................... 9–14
PC................................................. 2
PFET......................... 15, 16, 17, 18
Green LED ....................................2
Ground ..................................15–19
27
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INDEX
Pin Assignments....................15–19
Pinout ....................................15–19
Protocols .......................................5
Supplemental Window .................. 8
System Interfaces ................. 1, 5, 6
T
R
Termination................................... 7
Transducer.................................... 2
TTL ......................... 5, 9–14, 18, 19
Red LED........................................2
Regulatory Requirements
Canada Laser Safety...............24
Europe Laser Safety................22
United States Laser Safety......23
Repair..........................................25
Ribbon Cable.............................2, 3
RMA ............................................25
RS232 .................2, 5, 9–14, 17, 18
U
UL ................................................. 6
USB ........................................ 5, 16
V
VCC ...................................... 15–19
Voltage.......................................... 7
S
Scan Field .................................1, 5
Scan Lines.....................................6
Scan Pattern..................................6
Scan Sense.................................19
Scan Sense Timing .....................20
Scan Speed...................................6
Service ........................................25
Short Range Mode ........................5
Specifications ........................6, 7, 8
Standby
W
Warnings..................................... 24
Warranty ..................................... 25
Weight........................................... 7
Window..................................... 6, 8
Z
ZIF ................................ 2, 7, 15–19
current .......................................7
28
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November 2006 Version 01
Printed in USA
0 0 - 0 2 2 5 7 C
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