MIC-3365
6U-sized Intel Pentium III/Celeron CPU
board for CompactPCI™
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Product warranty
Advantech warrants to you, the original purchaser, that each of its
products will be free from defects in materials and workmanship for
one year from the date of purchase.
This warranty does not apply to any products which have been
repaired or altered by persons other than repair personnel authorized
by Advantech, or which have been subject to misuse, abuse, accident
or improper installation. Advantech assumes no liability under the
terms of this warranty as a consequence of such events.
Because of Advantech’s high quality-control standards and rigorous
testing, most of our customers never need to use our repair service. If
an Advantech product is defective, it will be repaired or replaced at no
charge during the warranty period. For out-of-warranty repairs, you
will be billed according to the cost of replacement materials, service
time and freight. Please consult your dealer for more details.
If you think you have a defective product, follow these steps:
1. Collect all the information about the problem encountered. (For
example, CPU speed, Advantech products used, other hardware
and software used, etc.) Note anything abnormal and list any on-
screen messages you get when the problem occurs.
2. Call your dealer and describe the problem. Please have your
manual, product, and any helpful information readily available.
3. If your product is diagnosed as defective, obtain an RMA (return
merchandize authorization) number from your dealer. This allows
us to process your return more quickly.
4. Carefully pack the defective product, a fully-completed Repair
and Replacement Order Card and a photocopy proof of purchase
date (such as your sales receipt) in a shippable container. A
product returned without proof of the purchase date is not eligible
for warranty service.
5. Write the RMA number visibly on the outside of the package and
ship it prepaid to your dealer.
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Packing List
Before installing your board, ensure that the following materials have
been received:
• One MIC-3365 all-in-one single board computer
• One utility CD-ROM disc
• One 6-pin mini-DIN to PS/2 keyboard and PS/2 mouse cable
• One heat sink plate
• One optional bracket for mounting on-board hard disk drive and
floppy disk drive
• One hard disk drive (IDE) interface cable (44-pin)
• One 26-pin FPC for floppy drive
• One warranty certificate
• This user's manual
If any of these items are missing or damaged, contact your distributor
or sales representative immediately.
Technical Support and Sales Assistance
If you have any technical questions about the MIC-3365 or any other
Advantech products, please visit our support website at:
• http://www.advantech.com.tw/support
For more information about Advantech's products and sales informa-
tion, please visit:
• http://www.advantech.com
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Contents
Chapter 1 Hardware Configuration..................................... 1
1.1 Introduction ..................................................................................... 2
1.2 Specifications ................................................................................... 3
1.2.1 Standard SBC functions ........................................................................ 3
1.2.2 VGA interface ....................................................................................... 4
1.2.3 Ultra 2 SCSI Interface (MIC-3365 and MIC-3365F) ........................... 4
1.2.4 Mechanical and environmental specifications ....................................... 4
1.3 Safety Precautions ........................................................................... 5
1.4 Function Block Diagram ................................................................ 6
1.5 Board Dimensions ........................................................................... 7
1.6 Jumpers............................................................................................ 8
1.6.1 Jumper Locations .................................................................................. 8
1.6.2 Jumper Settings ..................................................................................... 9
1.6.3 Clear CMOS (JP5) .............................................................................. 10
1.7 Connectors .....................................................................................11
1.8 Front Panel Connectors and Indicators....................................... 13
1.9 Installing SDRAM (DIMMs) ......................................................... 14
1.10 Installing CPU heat sink and HDD, FDD brackets ..................... 16
1.11 Software Support ........................................................................... 18
CHapter 2 Connecting Peripherals .................................. 19
2.1 IDE Device (CN12) ........................................................................20
2.2 Floppy Drive (CN11) ..................................................................... 20
2.3 VGA Display Connector (CN2) .....................................................21
2.4 Parallel Port Connector (CN1) .....................................................21
2.5 PS/2 Keyboard and Mouse Connector (CN7) ..............................21
2.6 Serial Ports (CN13 and CN6) ........................................................21
2.7 Ethernet Configuration (CN4 and CN5) ......................................22
2.8 USB Connector (CN8) ...................................................................22
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2.9 Ultra 2 SCSI Interface ...................................................................23
2.10 Card Installation ........................................................................... 23
Chapter 3 Ethernet Software Configuration..................... 25
3.1 Introduction ...................................................................................26
3.2 Utility and Drivers.........................................................................26
3.3 Installation for Windows NT 4.0 ..................................................29
Chapter 4 AGP VGA Setup .................................................. 39
4.1 Introduction ...................................................................................40
4.2 Installation of SVGA Driver ......................................................... 40
4.3 Installation for Windows NT 4.0 ..................................................41
Chapter 5 SCSI Software Configuration .......................... 47
5.1 Introduction ...................................................................................48
5.2 Utility and Drivers.........................................................................48
5.3 Installation for Windows NT 4.0 ..................................................50
Chapter 6 Award BIOS Setup .............................................. 59
6.1 Introduction ...................................................................................60
6.2 Entering Setup ...............................................................................60
6.3 Standard CMOS Features .............................................................61
6.4 Advanced BIOS Features ..............................................................62
6.5 CHIPSET Features Setup .............................................................65
6.6 Integrated Peripherals ..................................................................65
6.7 Power Management Setup ............................................................66
6.8 PnP/PCI Configurations ............................................................... 67
6.9 Load Optimized Defaults ..............................................................68
6.10 Set Password .................................................................................. 69
6.11 Save & Exit Setup ........................................................................... 70
6.12 Exit Without Saving .......................................................................71
Appendix A Programming the Watchdog Timer ................ 73
A.1 Programming the Watchdog Timer.................................................74
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Appendix B Pin Assignments.............................................. 77
B.1 VGA Display Connector (CN2) ......................................................78
B.2 Keyboard and Mouse Connnector (CN7).....................................78
B.3 COM1 and COM2 Serial Port (CN13 and CN6) .........................79
B.4 USB Connector (CN8) ...................................................................80
B.5 Ethernet RJ-45 Connector (CN4 and CN5)..................................80
B.6 Parallel Port Connector (CN1) .....................................................81
B.7 IDE Connector (CN12) ..................................................................82
B.8 Floppy Drive Connnector (CN11) ................................................83
B.9 System I/O Ports ............................................................................84
B.10 DMA ChannelAssignments ...........................................................85
B.11 InterruptAssignments ...................................................................85
B.12 1st MB Memory Map ....................................................................86
B.13 J1 connector pin assignments .......................................................87
B.14 J2 connector pin assignments .......................................................88
B.15 J3 connector pin assignments .......................................................89
B.16 J4 connector pin assignments .......................................................90
B.17 J5 connector pin assignments .......................................................91
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Tables
Table 1-1: MIC-3365 jumper descriptions ..............................................8
Table 1-2: Clear CMOS....................................................................... 10
Table 1-3: MIC-3365 connector descriptions ....................................... 11
Table 1-4: Recommended SDRAM ..................................................... 15
Table 2-1: MIC-3365 serial port default settings .................................. 22
Table B-1: MIC-3365 CRT display connector....................................... 78
Table B-2: MIC-3365 keyboard connector ........................................... 78
Table B-3: MIC-3365 COM1 and COM2 serial port .............................. 79
Table B-4: MIC-3365 USB1/USB2 connector ...................................... 80
Table B-5: MIC-3365 Ethernet RJ-45 connector .................................. 80
Table B-6: MIC-3365 parallel port connector ....................................... 81
Table B-7: MIC-3365 IDE connector .................................................... 82
Table B-8: MIC-3351 floppy drive connector ........................................ 83
Table B-9: System I/O ports ............................................................... 84
Table B-10: DMA channel assignments .............................................. 85
Table B-11: Interrupt assignments ...................................................... 85
Table B-12: 1st MB memory map ....................................................... 86
Table B-13: J1 connector pin assignments ......................................... 87
Table B-14: J2 connector pin assignments ......................................... 88
Table B-15: J3 connector pin assignments ......................................... 89
Table B-16: J4 connector pin assignments ......................................... 90
Table B-17: J5 connector pin assignments ......................................... 91
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Figures
Figure 1-1: MIC-3365 function block diagram ........................................6
Figure 1-2: MIC-3365 board dimensions ...............................................7
Figure 1-3: MIC-3365 jumper locations .................................................8
Figure 1-4: MIC-3365 connector locations .......................................... 12
Figure 1-5: MIC-3365 front panel connector and indicator locations .... 13
Figure 1-6: Heat sink installation for 1 slot wide solution .................... 16
Figure 1-7: Heat sink installation for 2 slot wide solution .................... 17
Figure 2-1: Installing the card into the chassis ................................... 24
Figure 6-1: Initial Setup screen.......................................................... 60
Figure 6-2: Standard CMOS Features screen.................................... 61
Figure 6-3: Advanced BIOS Features screen ..................................... 62
Figure 6-4: Advanced Chipset Features screen ................................. 65
Figure 6-5: Integrated Peripherals screen ........................................... 66
Figure 6-6: Power Management Setup screen ................................... 67
Figure 6-7: PnP/PCI Configurations screen ....................................... 68
Figure 6-8: Load Optimized Defaults screen ....................................... 68
Figure 6-9: Set Password screen ....................................................... 69
Figure 6-10: Save & Exit Setup screen............................................... 70
Figure 6-11: Exit Without Saving screen ............................................. 71
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1
Hardware
Configuration
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1.1 Introduction
The MIC-3365 is a 6U-sized Intel® Pentium® III/CeleronTM CPU board
and complies with PICMG 2.0 R2.1 CompactPCITM specifications.
The MIC-3365 supports both FC-PGA Intel® Pentium® III Copper-
mine processors and Intel® CeleronTM processors.
The MIC-3365 is available in three versions: MIC-3365, MIC-3365D,
and MIC-3365F.
PCI-to-PCI
bridge
On-board
HDD & FDD
Model
COM USB SCSI
width
MIC-3365
MIC-3365D
MIC-3365F
1
1
2
1
1
2
Yes
-
1
2
1
1-slot
1-slot
2-slot
-
-
Yes
Yes
Please check which version of the MIC-3365 you have on hand.
Some of the functions in this manual may not be applicable to some
versions. The MIC-3365 supports rear transition board and is best
performed with the MIC-3302. Please refer to the MIC-3302's manual
for more detailed information.
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1.2 Specifications
1.2.1 Standard SBC functions
• CPU: Intel® Socket 370 Pentium® III Coppermine CPU up to 700
MHz, Intel® Socket 370 CeleronTM CPU up to 566 MHz
• BIOS:Award BIOS (Intel® FWH 4 Mb)
• Chipset: Intel® 810
• System bus frequency: 100/66 MHz
• Bus interface: 32-bit, 33 MHz, PICMG 2.0 compliant
• L2 cache: CPU built-in 256 KB (Pentium® III) or 128 KB
(Celeron™) on die
• RAM: Two 168-pin DIMM sockets support up to 512 MB SDRAM
at 100 MHz, unbuffered
• EIDE interface: Handles up to 4 IDE HDDs or other IDE devices.
Supports PIO mode 4 and Ultra DMA/33, Ultra DMA/66 mode (via
J3 connector)
• FDD interface: Supports up to two floppy disk drives (via J3
connector)
• Parallel port: Configured to LPT1, LPT2, LPT3 or disabled.
Supports multi-mode parallel port (SPP/ECP/EPP)
• Serial ports: Two RS-232 ports with 16C550 UARTs. MIC-3365
and MIC-3365D provides one serial port, and MIC-3365F provides
two serial ports on the front panel
• PCI Watchdog timer (MIC-3365D only): Can generate a system
reset. Time interval is from 1 to 63 seconds, jumperless with run-
time setup. To program the watchdog timer, refer to Appendix A,
"Programming the Watchdog Timer".
• Ethernet: Dual Intel® 82559 Fast Ethernet Controller Chips, 10/
100 Base-TX with RJ-45 connectors
• Keyboard/mouse connector: One 6-pin mini-DIN connector on the
front panel
Chapter 1 Hardware Configuration
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• USB interface: Two USB connectors with fuse protection.
MIC-3365 and MIC-3365D provides one USB connector and
MIC-3365F provides two USB connectors on the front panel
• PCI-to-PCI bridge: One/Two Intel® DEC 21150 PCI bus controller
chips, drive up to 7/14 PCI bus master peripherals. MIC-3365 and
MIC-3365F support 7 PCI bus masters and MIC-3365D supports 14
PCI bus masters.
1.2.2 VGA interface
• Controller: Chipset built-in VGA display
• Display resolution: Supports non-interlaced CRT monitor
resolutions up to 1024 x 768 x 16-bit color for 3D graphics, and
1600 x 1200 x 8-bit color for 2D graphics. 24-bit color up to
1280 x 1024.
1.2.3 Ultra 2 SCSI Interface (MIC-3365 and MIC-3365F)
• Controller: Symbios SYM53C895
• Supports 16-bit Low Voltage Differential (LVD) and Single Ended
(SE) signaling
• Performs Ultra 2 SCSI LVD synchronous. Transfers as fast as
80 MB/s
• Available on the rear transition board (MIC-3302) via J5 connector
1.2.4 Mechanical and environmental specifications
• Board size: 233.35 x 160 mm (6U size), MIC-3365 and
MIC-3365D is 1-slot (4TE) wide, and MIC-3365F is 2-slot (8TE)
wide
• Max. power requirements: +5V (4.75 ~ 5.25 V) @ 6.38A (Intel®
CeleronTM 500 MHz)
• Operating temperature: 0 ~ 60° C (32 ~ 158° F)
• Storage temperature: -20° C ~ 80° C(-4 ~ 176° F)
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• Humidity (operating and storage): 5 ~ 95% (non-condensing)
• Board weight: 0.8 kg (1.8 lb)
• Shock: 20 G (operating); 50 G (storage/transit)
• Random vibration: 1.5 Grms
1.3 Safety Precautions
Follow these simple precautions to protect yourself from harm and the
products from damage.
1. To avoid electrical shock, always disconnect the power from your
PC chassis before you work on it. Don't touch any components on
the CPU card or other cards while the PC is on.
2. Disconnect power before making any configuration changes. The
sudden rush of power as you connect a jumper or install a card
may damage sensitive electronic components.
3. Always ground yourself to remove any static charge before you
touch your CPU card. Be particularly careful not to touch the chip
connectors. Modern integrated electronic devices, especially
CPUs and memory chips, are extremely sensitive to static electri-
cal discharges and fields. Keep the card in its antistatic packaging
when it is not installed in the PC, and place it on a static dissipa-
tive mat when you are working with it. Wear a grounding wrist
strap for continuous protection.
Chapter 1 Hardware Configuration
5
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1.4 Function Block Diagram
Figure 1-1: MIC-3365 function block diagram
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1.5 Board Dimensions
160 mm
233.35 mm
Figure 1-2: MIC-3365 board dimensions
Chapter 1 Hardware Configuration
7
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1.6 Jumpers
1.6.1 Jumper Locations
The MIC-3365 provides jumpers for configuring your board for
specific applications other than the default settings.
Table 1-1 list the jumper functions. Figure 1-3 illustrates the jumper
locations. The default jumper setting is illustrated in Figure 1-3.
Table 1-1: MIC-3365 jumper descriptions
Number
Function
JP5
Clear CMOS
JP5
Figure 1-3: MIC-3365 jumper locations
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1.6.2 Jumper Settings
This section tells how to set the jumpers to configure your card. It
gives the card default configuration and your options for each jumper.
After you set the jumpers and install the card, you will also need to
run the BIOS Setup program (discussed in Chapter 6) to configure the
serial port addresses, floppy/hard disk drive types and system
operating parameters. Connections, such as hard disk cables, appear
in Chapter 2.
For the locations of each jumper, see the board layout diagram
depicted earlier in this chapter.
You configure your card to match the needs of your application by
setting jumpers. A jumper is a metal bridge that closes an electrical
circuit. It consists of two metal pins and a small metal cap (often
protected by a plastic cover) that slides over the pins to connect them.
To "close" a jumper you connect the pins with the cap. To "open" a
jumper you remove the cap. Sometimes a jumper will have three pins,
labeled 1, 2 and 3. In this case you connect either pins 1 and 2 or 2
and 3.
3
2
1
Open
Closed
Closed 2-3
The jumper settings are schematically depicted in this manual as
follows:
1
Open
Closed
Closed 2-3
You may find a pair of needle-nose pliers useful for setting the
jumpers.
If you have any doubts about the best hardware configuration for
your application, contact your local distributor or sales representative
before you make any changes.
Chapter 1 Hardware Configuration
9
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1.6.3 Clear CMOS (JP5)
This jumper is used to erase CMOS data and reset system BIOS
information. Follow the procedures below to clear the CMOS.
1. Turn off the system.
2. Close jumper JP5 (2-3) for about 2-3 seconds.
3. Close jumper JP5 (1-2).
4. Turn on the system. The BIOS is reset to its default setting.
Table 1-2: Clear CMOS
CMOS
JP5
3
2
1
1
Clear
3
2
Normal
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1.7 Connectors
On-board connectors link to external devices such as hard disk drives,
keyboards, or floppy drives, etc. Table 1-3 lists the function of each
connector and Figure 1-4 and Figure 1-5 illustrate each connector
location. Chapter 2 gives instructions for connecting external
devices to your card.
Table 1-3: MIC-3365 connector descriptions
Number Function
CN3
Reset switch
CN1
Parallel port
CN2
VGA connector
LED2
CN4
HDD LED and Power LED
Ethernet connector 1
Ethernet connector 2
COM2
CN5
CN6
CN7
PS/2 Keyboard and mouse connector
USB connector
CN8
CN10
CN11
CN12
CN13
DIM1
DIM2
J1/J2
Fan connector
Floppy disk drive connector
IDE connector
COM1
DIMM socket 1
DIMM socket 2
Primary CompactPCITM bus
J3/J4/J5 Rear I/O transition
CPU1 Socket 370 for CPU
Please refer to Appendix B for pin assignments.
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1 1
Figure 1-4: MIC-3365 connector locations
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1.8 Front Panel Connectors and Indicators
TM
LAN1
LAN2
USB
USB
USB
COM1
COM1
COM1
COM2
PRINTER
VGA
VGA
VGA
HDD
PWR
RESET
FDD
HDD
PWR
HDD
PWR
RESET
TM
RESET
TM
MIC-3365
MIC-3365D
MIC-3365F
Figure 1-5: MIC-3365 front panel connector and indicator locations
Chapter 1 Hardware Configuration
1 3
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1.9 Installing SDRAM (DIMMs)
The MIC-3365 provides two 168-pin DIMM sockets. Each socket
accepts either 16, 32, 64, 128 or 256 MB SDRAM. The sockets can
be filled in any combination with DIMMs of any size, giving a total
memory capacity between 16 and 512 MB.
Since the MIC-3365 can operate at 66 or 100 MHz, we recommend
using PC100-compliant DIMMs.
The procedure for installing DIMMs appears below. Please follow
these steps carefully.
1. Ensure that all power supplies to the system are switched Off.
2. Install the DIMM modules. Install the DIMM so that its gold pins
point down into the DIMM socket.
3. Slip the DIMM into the socket and carefully fit the bottom of the
card against the connectors.
4. Gently push the DIMM into the socket, until the clips on the ends
of the DIMM sockets snap into place.
5. Check to ensure that the DIMM is correctly seated and all connec-
tor contacts touch. The DIMM should not move around in its
socket.
Note:
The DIMM modules can only fit into sockets one way,
in accordance with the keyed notches along the
bottom edge of the modules. Their gold pins must
point down into the DIMM socket.
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Note:
To ensure compatibility between the MIC-3365 and
DRAMmodules, our R&D team has compiled a list of
recommended SDRAMs. Only those which have
passed the team’s strict and rigorous testing proce-
dures are included. Please refer to the table below.
You may order the SDRAMs locally or from Advan-
tech. If you want to buy from us, please contact
Advantech’s sales representatives for details.
Ordering
Number
Vendor
Chip Name
Capacity Specification
NEC
T0951F3365 D4564163G5-A80
D4564163G5-A10
Data
Specialties
64MB
PC-100
PC-100
NEC
T0952F3365 D45128163G5-A80 128MB
D45128163G5-A10
Data
Specialties
NEC
T0951U3365 D4564163G5-A80
D4564163G5-A10
Unigen
Unigen
64MB
PC-100
PC-100
NEC
T0952U3365 D45128163G5-A80 128MB
D45128163G5-A10
Table 1-4: Recommended SDRAM
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1 5
1.10 Installing CPU heat sink and HDD, FDD
brackets
The MIC-3365 accepts Intel® socket 370 Pentium® III Cuppermine
CPU or Intel® socket 370 CeleronTM CPU. In order to meet critical
environmental conditions and the physical space of the MIC-3365 at
the same time, Advantech designed a heat sink to fulfill both needs.
Please refer to Figure 1-6 for an illustration of the heat sink used for
the MIC-3365 and MIC-3365D, 1-slot wide solution. Figure 1-7
illustrates the installation method of the heat sink, HDD, and FDD
brackets used for the MIC-3365F.
Because the thickness of the Pentium® III and CeleronTM CPU are
different, Advantech provides a samll aluminum plate along with the
heat sink when installed with a Pentium® III CPU. The small alumi-
num plate is default fastened on the heat sink in the factory. If users
would like to use a CeleronTM CPU on the MIC-3365, please remove
the small aluminum plate from the heat sink.
Figure 1-6: Heat sink installation for 1 slot wide solution
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Figure 1-7: Heat sink installation for 2 slot wide solution
Chapter 1 Hardware Configuration
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1.11 Software Support
The MIC-3365 supports lots of operating systems, such as Microsoft
Windows family, Linux, SCO UNIX, QNX, etc.
Note:
At the beginning of QNX installation process, please
follow the system's installation guide shown on the
screen. Press anykey and F2 when asked, and then
choose VGA 16 Color Only, and press <space> to
continue. Otherwise, you won't be able to contiune
installing QNX.
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2
Connecting
Peripherals
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2.1 IDE Device (CN12)
The MIC-3365 provides two IDE (Integrated Device Electronics)
channels via the J3 connector to the rear transition board MIC-3302.
Four IDE drives can be connected to the MIC-3365 through the rear
transition board MIC-3302.
The MIC-3365F provides a mounting bracket to mount a 2.5" hard
disk drive on board. Users can connect this 2.5" hard disk drive to the
on-board 44-pin IDE connector (CN12).
Users can connect two IDE drives to each IDE channel. If two drives
are installed on one channel, remember to set one as the master and
the other one as the slave. You may do this by setting the jumpers on
the drives. Refer to the documentation that came with your drive for
more information. A jumper diagram usually appears on the top side
of a hard disk drive.
Warning: Plug the other end of the cable into the drive with pin
1 on the cable corresponding to pin 1 on the drive.
Improper connection will damage the drive.
Note:
We don't recommend connection to the following
Seagate brand IDE HDD models: ST 31276A, ST
31720A, ST 32531A, ST 33240A or ST 34340A
2.2 Floppy Drive (CN11)
The MIC-3365 supports two floppy disk drives via the J3 connector
to the rear transition board MIC-3302. Users can connect up to two
floppy drives to the connector on the MIC-3302.
The MIC-3365F provides a mounting bracket to mount a slim-type
floppy disk drive on board. Users can connect this slim-type FDD to
the CN11 connector.
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2.3 VGA Display Connector (CN2)
The MIC-3365 provides an VGA chipset built-in display for high
performance application. The MIC-3365's CN2 is a DB-15 connector
for VGA monitor input. Pin assignments for the VGA display are
detailed in Appendix A.
2.4 Parallel Port Connector (CN1)
The parallel port is normally used to connect the CPU board to a
printer. The MIC-3365 includes an on-board parallel port, accessed
through a DB 25-pin connector, CN1, on the front panel.
The parallel port is designated as LPT1 and can be disabled or
changed to LPT2 or LPT3 from the system BIOS setup.
2.5 PS/2 Keyboard and Mouse Connector (CN7)
The MIC-3365 provides a 6-pin mini-DIN connector (CN7) on the
front panel for connection of PS/2 keyboard and PS/2 mouse. The
MIC-3365 comes with a cable to convert from the single 6-pin mini-
DIN connector to a double PS/2 keyboard connector and PS/2 mouse
connector. Since these two connectors are identical, please follow the
icons on the cable to plug the keyboard and the mouse into their
correct connectors.
2.6 Serial Ports (CN13 and CN6)
The MIC-3365 offers two serial ports: COM1 and COM2 in
MIC-3365F version, both in RS-232. These ports allow users to
connect to serial devices (a mouse, printers, etc.) or a communication
network.
You can select the address for each port ( For example, 3F8H [COM1],
2F8H [COM2]) or disable it, using the BIOS Advanced Setup pro-
gram, covered in Chapter 6.
Different devices implement the RS-232 standard in different ways. If
you are having problems with a serial device, be sure to check the pin
assignments for the connector.
Chapter 2 Connecting Peripherals
2 1
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The IRQ and address range for both ports are fixed. However, if you
wish to disable the port or change these parameters later, you can do
this in the system BIOS setup. The table below shows the settings for
the MIC-3365 board's ports:
Table 2-1: MIC-3365 serial port default settings
Port
Address
3F8, 3E8
2F8, 2E8
Default
COM1
COM2
3F8/IRQ4
2F8/IRQ3
2.7 Ethernet Configuration (CN4 and CN5)
The MIC-3365 is equipped with dual high performance 32-bit PCI-
bus Fast Ethernet interfaces which are fully compliant with IEEE
802.3u 10/100Base-TX specifications. It is supported by all major
network operating systems and is 100% Novell NE-2000 compatible.
Two on-board RJ-45 jacks provide convenient connection to the
network.
The medium type can be configured via the software program
included on the utility CD-ROM disc. (See Chapter 3 for detailed
information.)
2.8 USB Connector (CN8)
The MIC-3365 provides one USB (Universal Serial Bus) interface on
the front panel, and the MIC-3365F provides two USB interfaces on
the front panel. The USB interface gives complete plug and play, hot
attach/detach for up to 127 external devices. The MIC-3365 USB
interfaces comply with USB specification rev. 1.0 and are fuse
protected.
The USB interfaces can be disabled in the system BIOS setup. The
USB controller default is "Enabled" but the USB keyboard support
default is "Disabled".
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2.9 Ultra 2 SCSI Interface
The MIC-3365 and MIC-3365F provides an Ultra 2 SCSI interface on
the rear transition board MIC-3302 via the J5 connector. The
MIC-3302 has a 68-pin, dual in-line connector for Ultra 2 SCSI
devices. Connection of SCSI devices requires special attention,
especially when determining the last drive on the SCSI chain. Refer
to Chapter 5 and your device's operating manual for detailed installa-
tion advice.
2.10 Card Installation
The CompactPCI connectors are firm and rigid, and require careful
handling while plugging and unplugging. Improper installation of a
card can easily damage the backplane of the chassis.
The inject/eject handles of MIC-3365 help you install and remove
the card easily and safely. Follow the procedure below to install the
MIC-3365 into a chassis:
To install a card:
1. Hold the card vertically. Be sure that the card is pointing in the
correct direction. The components of the card should be pointing
to the right-hand side.
2. Holding both handles, pull out the red portion in the middle of the
handle to unlock it.
Caution:
Keep your fingers away from the hinge to prevent your
fingers from getting pinched.
3. Insert the card into the chassis by sliding the upper and lower
edges of the card into the card guides.
4. Push the card into the slot gently by sliding the card along the card
guide until the handles meet the rectangular holes of the cross
rails.
Note:
If the card is correctly positioned and has been slid
all the way into the chassis, the handle should match
the rectangular holes. If not, remove the card from
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2 3
the card guide and repeat step 3 again. Do not try to
install a card by forcing it into the chassis.
5. Pull the upper handle down and lift the lower handle up to push
the card into place.
6. Secure the card by pushing in the red handle to lock it into place.
To remove a card:
1. Unscrew the screws on the front panel. Pull out the red portion in
the middle of the handle to unlock the handle.
2. Lift the upper handle up and press the lower handle down to
release the card from the backplane.
3. Slide the card out.
K eep y ou r fin gers
aw ay fro m this area.
Figure 2-1: Installing the card into the chassis
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3
Ethernet Software
Configuration
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3.1 Introduction
The MIC-3365 has two on-board high-performance fast Ethernet
interfaces which comply with IEEE 802.3/802.3u for 10Base-T and 100
Base-TX data rates.
The module uses two Intel® 82559 fast Ethernet controllers with
integrated PHY and is compatible with the Intel® PRO/100+ Server and
Client Adapter. The dual Ethernet channel design provides several
options for increasing throughput and fault tolerance when running
Windows NT 4.0 or NetWare 4.1x and newer versions of these,
includes:
•Adapter Fault Tolerance (AFT) - provides automatic redundancy for
your Ethernet channel. If the primary channel fails, the secondary
takes over.
• Adaptive Load Balancing (ALB) - creates a team of 2 channels to
increase transmission throughput. Also includes AFT and ALB.
This function works with any 100BASE-TX switch.
• Fast EtherChannel (FEC) - creates a team of 2 to 4 channels to
increase transmission and reception throughput. Also includes AFT.
This function requires a Cisco switch with FEC capability.
The MIC-3365 comes with drivers for a wide variety of networks and
operating systems. The MIC-3365 is an excellent choice for operation
in standalone and harsh industrial environments.
3.2 Utility and Drivers
The MIC-3365's on-board Ethernet interface supports all major network
operating systems. The installation instructions and drivers for
different operating systems are located in the following directories of
the utility CD-ROM disc:
General Information:
• \MIC3365\LAN\README.TXT: General information about the
drivers
For Microsoft Windows:
• \MIC3365\LAN\INFO\MS\MS.TXT: Installation instructions for
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Microsoft Windows
• \MIC3365\LAN\E100BNT.SYS (NDIS 4.0), \MIC3365\LAN\
OEMSETUP.INF: Drivers for Windows NT 4.0
• \MIC3365\LAN\E100B.SYS (NDIS 3), \MIC3365\LAN\
OEMSETUP.INF: Drivers for Windows NT 3.51
• \MIC3365\LAN\NET82557.INF: Drivers for Windows 98
• \MIC3365\LAN\E100BNT.SYS (NDIS 4.0), \MIC3365\LAN\
NET82557.INF: Drivers for Windows 95
• MIC3365\LAN\WFW\E100B.38_, \MIC3365\LAN\WFW\
OEMSETUP.INF: Drivers for Windows 3.1
For Novell NetWare
• \MIC3365\LAN\INFO\NETWARE\NETWARE.TXT: Installation
instructions for Novell NetWare
• \MIC3365\LAN\NWSERVER\3X4X.OLD\E100B.LAN: Drivers for
NetWare 3.12 and 4.10
• \MIC3365\LAN\NWSERVER\311LAN\E100B.LAN: Drivers for
NetWare 3.11
• \MIC3365\LAN\OS2\E100BODI.SYS: Drivers for NetWare OS/2
ODI Client
• \MIC3365\LAN\DOS\E100BODI.COM: Drivers for DOS ODI Client
ForUNIX
• \MIC3365\LAN\INFO\UNIX\UNIX.TXT: Installation instructions for
UNIX
For Other Operating Systems
• \MIC3365\LAN\INFO\OTHER\OTHER.TXT: Installation instruc-
tions for other operating systems
• \MIC3365\LAN\DOS\E100B.DOS: Drivers for IBM LAN support
for AS/400 and NetWare (for LANSUP)
• \MIC3365\LAN\DOS\E100BODI.COM: Drivers for IBM LAN
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support for AS/400 and NetWare (for ODINSUP)
• \MIC3365\LAN\OS2\E100B.OS2: Drivers for LAN server
(OS/2 driver)
• \MIC3365\LAN\DOS\E100B.DOS: Drivers for LAN server
(DOS driver)
• \MIC3365\LAN\DOS\E100B.DOS: Drivers for BANYAN NDIS
workstation
• \MIC3365\LAN\DOS\E100B.DOS: Drivers for LANTASTIC 6.0
• \MIC3365\LAN\DOS\E100B.DOS: Drivers for general NDIS 2.X
(DOS driver)
• \MIC3365\LAN\OS2\E100B.OS2: Drivers for general NDIS 2.X
(OS/2 driver)
Before installing drivers, please refer to the installation instructions of each
operating system.
Note:
Note:
Do not use the driver recommended by the Windows
95/98/NT Add New Hardware wizard. Choose the
driver from the utility CD-ROM disc.
Operating system vendors may post driver updates
on their web sites. Please visit the web sites of OS
vendors to download updated drivers.
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3.3 Installation for Windows NT 4.0
Before installing; create a new folder [!] ,\MIC3365\LAN\, in your
"E:" drive on your hard disk drive, and download all files from the
directory, \MIC3365\LAN\, on the utility CD-ROM to it.
1. In the Windows NT screen, select "Start", click "Settings".
Click the "Control Panel" item and choose "Network".
2. Click "Yes".
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3. Click "Wired to the Network", or users may choose "Remote
access to the network" if applicable.
4. Click "Select from list".
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5. Click "Have Disk".
6. Type in "E:\MIC3365\LAN" in the blank column and click "OK".
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7. Click "OK".
8. Click "Next".
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9. Click "Next".
10. Click "Next".
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3 3
11. Click "Next".
12. Insert Windows NT source disc in drive E. Type "E:\I386" in
the blank column or any other directory that contains the
Windows NT files. Click "Continue".
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13. Wait for the installation to finish.
14. Complete the settings with users' network settings. Click "OK".
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15. Click "Next".
16. Click "Next".
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17. Click "Yes" to restart the computer and enable the changes to
take effect.
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4
AGP VGA Setup
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4.1 Introduction
The MIC-3365 uses chipset built-in AGP VGA display. This chapter
describes how to install the VGA drivers to the MIC-3365.
4.2 Installation of SVGA Driver
The MIC-3365 is supplied with a utility CD-ROM disc that holds the
necessary files for setting up the VGA display under the directory
\MIC-3365\VGA. The contents and path names of this directory are
listed below:
• MIC3365\VGA\Win311: VGA utility for Windows 3.1
• MIC3365\VGA\Win9x: VGA utility for Windows 95/98
• MIC3000\VGA\Nt351: Utility for Windows NT 3.51
• MIC3365\VGA\Nt40: VGA utility for Windows 4.0
Complete the following steps to install the VGA driver. Follow the
procedures in the flow chart that apply to the operating system you
are using with your MIC-3365.
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4.3 Installation for Windows NT 4.0
1. Insert the utility CD-ROM disc in the CD-ROM drive and wait for the
auto-run screen to pop up. Click "Install Drivers".
2. Click "MIC-3000 Series".
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3. Click "MIC-3365".
4. Under VGA Drivers menu, click "Browse" to choose the operating
system used.
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5. Click "Nt40".
6. Click "Graphics".
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43
7. Click "Setup.exe".
8. Click "Next".
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9. Click "Yes".
10. Click "Next" to install drivers.
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45
11. Wait for installation to finish.
12. Click "Finish" to restart the computer and enable the changes to
take effect.
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5
SCSI Software
Configuration
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5.1 Introduction
The MIC-3365 uses the Symbios SYM53C895 SCSI processor to
provide an Ultra 2 SCSI interface on the rear transition board MIC-3302
via the J5 connector. The Ultra 2 SCSI interface has a data transfer rate
up to 80 MB/s. The device can support cables up to 12-meter long and
up to 16 LVD devices on a wide LVD ( Low Voltage Differential) SCSI
bus. Device drivers and utilities for DOS, Windows 95/98/NT, OS/2,
SCO UNIX, UnixWare and NetWare are included in the utility CD-ROM
disc.
5.2 Utility and Drivers
The utility user's guide and installation instructions are provided in the
utility CD-ROM disc. The instructions are located in the directory
\MIC3365\SCSI and include:
For DOS:
• \MIC3365\SCSI\DOS\DOS.TXT: Installation instructions for DOS
• \MIC3365\SCSI\DOS\INSTALL.EXE: Drivers for DOS
For Windows 95/98:
• \MIC3365\SCSI\WIN9X\WIN9598.TXT: Installation instructions
for Windows 95/98
• \MIC3365\SCSI\WIN9X\SYMC8XX.INF: Drivers for Windows 95/
98
For Windows NT:
• \MIC3365\SCSI\WINNT\WINNT.TXT: Installation instructions for
Windows NT 4.0
• \MIC3365\SCSI\WINNT\OEMSETUP.INF: Drivers for Windows NT
4.0
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For OS/2:
• \MIC3365\SCSI\OS2\OS2.TXT: Installation instructions for OS2
• \MIC3365\SCSI\OS2\SYM8XXPC.EXE,
\MIC3365\SCSI\OS2\SYM_HIPC.EXE: Drivers for OS2
Note:
The installation procedures below assume users' CD-
ROM drive name is E.
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49
5.3 Installation for Windows NT 4.0
1. In the Windows NT screen, select "Start", click "Settings".
Click the "Control Panel" item and choose "SCSI Adapters".
2. Click "Add".
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3. Click "Have Disk".
4. Click "Browse".
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51
5. Click "Cancel".
6. Click "My Computer".
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7. Click "Drv_Bank (E)".
8. Click "MIC3365".
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53
9. Click "SCSI".
10. Click "Winnt".
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11. Click "Oemsetup".
12. Click "OK".
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55
13. Click "OK".
14. Click "Continue".
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13. Click "Yes" to restart the computer and enable the changes to take
effect.
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6
Award BIOS Setup
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6.1 Introduction
Award's BIOS ROM has a built-in Setup program that allows users to
modify the basic system configuration. This type of information is
stored in battery-backed CMOS so that it retains the Setup information
when the power is turned off.
6.2 Entering Setup
Turn on the computer and check for the "patch code". If there is a
number assigned to the patch code, it means that the BIOS supports
your CPU.
If there is no number assigned to the patch code, please contact
Advantech's application engineer to obtain an up-to-date patch code
file. This will ensure that your CPU's system status is valid.
After ensuring that you have a number assigned to the patch code,
press <DEL> and you will immediately be allowed to enter Setup.
Figure 6-1: Initial Setup screen
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6.3 Standard CMOS Features
Choose the "STANDARD CMOS FEATURES" option from the
INITIAL SETUP Menu, and the screen below will be displayed. This
standard setup menu allows users to configure system components
such as date, time, hard disk drive, floppy drive, display, and memory.
Figure 6-2: Standard CMOS Features screen
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6.4 Advanced BIOS Features
The "ADVANCED BIOS FEATURES" screen will appear after choos-
ing the ADVANCED BIOS FEATURES item from the INITIAL SETUP
Menu. This screen allows users to configure the MIC-3365 according
to their particular requirements.
Below are some major items that are provided in the ADVANCED BIOS
FEATURES screen:
Figure 6-3: Advanced BIOS Features screen
Virus Warning
During and after the system boots up, any attempt to write to the boot
sector or partition table of the hard disk drive will halt the system. If
this happens, a warning message will be displayed. You can run the
anti-virus program to locate the problem.
If Virus Warning is Disabled, no warning message will appear if
anything attempts to access the boot sector or hard disk partition.
CPU Internal Cache/External Cache
Depending on the CPU/chipset design, these options can speed up
memory access when enabled.
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CPU L2 Cache ECC Checking
This option controls the ECC capability in the CPU level 2 cache.
Quick Power On Self Test
This option speeds up the Power-On Self Test (POST) conducted as
soon as the computer is turned on. When enabled, the BIOS shortens
or skips some of the items during the test. When disabled, normal
POST procedures resume.
First/Second/Third Boot Devices
These options determines the boot up sequence. The default value for
the first, second, and third devices options are "Floppy, HDD-0, and
LS/ZIP" respectively. The following options are available:
Floppy:
LS/ZIP:
HDD-0:
SCSI:
Computer will boot from the floppy disk drive
Computer will boot from the LS or ZIP drive
Computer will boot from the primary master hard disc drive
Computer will boot from the SCSI drive
CD-ROM: Computer will boot from the CD-ROM drive
HDD-1:
HDD-2:
HDD-3:
Computer will boot from the primary slave hard disk drive
Computer will boot from the secondary master hard disk drive
Computer will boot from the secondary slave hard disk drive
Disabled: Computer will boot from other devices such as DOC 2000 or
CompactFlash
Boot Other Devices
This option allows users to boot from other connected devices such
as DOC 2000 or CompactFlash®
Swap Floppy Drive
If the system has two floppy disk drives, choose enable to assign
physical drive B to logical drive A, and vice versa.
Gate A20 option
Normal The A20 signal is controlled by the keyboard controller
or chipset hardware
Fast
Default: Fast. The A20 signal is controlled by Port 92 or
by a specific chipset method.
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63
Typematic Rate Setting
The typematic rate determines the characters per second accepted by
the computer. Typematic Rate setting enables or disables the typematic
rate.
Typematic Rate (Char/Sec)
BIOS accepts the following input values (character/second) for
Typematic Rate: 6, 8, 10, 12, 15, 20, 24, 30.
Typematic Delay (msec)
When holding down a key, the Typematic Delay is the time interval
between the appearance of the first and second characters. The input
values (msec) for this category are: 250, 500, 750, 1000.
Security Option
This setting determines whether the system will boot if the password
is denied, while limiting access to Setup.
System The system will not boot, and access to Setup will be
denied if the correct password is not entered at the
prompt.
Setup
The system will boot, but access to Setup will be
denied if the correct password is not entered at the
prompt.
Note: To disable security, select SET PASSWORD in the
INITIAL SETUP menu. At this point, you will be
asked to enter a password. Simply hit the <ENTER>
key to disable security. When security is disabled,
the system will boot, and you can enter Setup freely.
OS Select for DRAM>64 MB
This setting is for use under the OS/2 operating system.
Report No FDD For WIN 95
This option allows the MIC-3365 to report a warning message if the
system detected no FDD in Windows 95 environment.
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6.5 CHIPSET Features Setup
Choose the "ADVANCED CHIPSET FEATURES" option from the
INITIAL SETUP Menu, and the screen below will be displayed. This
sample screen contains the manufacturer's default values for the
MIC-3365.
6.6 Integrated Peripherals
Figure 6-4: Advanced Chipset Features screen
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6.7 Power Management Setup
The power management setup controls the CPU cards' "green"
features. The following screen shows the manufacturer's default
values.
Figure 6-5: Integrated Peripherals screen
Note:
If you enable the IDE HDD block mode, the en-
hanced IDE driver will be enabled.
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6.8 PnP/PCI Configurations
Figure 6-6: Power Management Setup screen
Power Management
This option allows you to determine if the values in power manage-
ment are disabled, user-defined, or predefined.
HDD Power Management
You can choose to turn the HDD off after one of the time intervals
listed, or when the system is in Suspend mode. If in a power saving
mode, any access to the HDD will wake it up.
Note:
The HDD will not power down if the Power Manage-
ment option is disabled.
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6.9 Load Optimized Defaults
"LOAD OPTIMIZED DEFAULTS" loads the most appropriate values
of the system parameters for maximum performance.
Figure 6-7: PnP/PCI Configurations screen
Figure 6-8: Load Optimized Defaults screen
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6.10 Set Password
To change, confirm, or disable the password, choose the "SET
PASSWORD" option from the INITIAL SETUP menu, and press
[Enter]. The password can be at most 8 characters long.
Remember to enable this feature. You must first select the "SECURITY
OPTION" in the ADVANCED BIOS FEATURES to be either "Setup" or
"System." Pressing [Enter] again without typing any characters can
disable the password setting function.
Figure 6-9: Set Password screen
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6.11 Save & Exit Setup
If you select this and press the [Enter] key, the values entered in the
setup utilities will be recorded in the CMOS memory of the chipset.
The microprocessor will check this every time you turn your system on
and compare this to what it finds as it checks the system. This record
is required for the system to operate.
Figure 6-10: Save & Exit Setup screen
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6.12 Exit Without Saving
Selecting this option and pressing the [Enter] key lets you exit the
Setup program without recording any new values or changing old
ones.
Figure 6-11: Exit Without Saving screen
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A
Programming the
Watchdog Timer
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A.1 Programming the Watchdog Timer
To program the watchdog timer, you must write a program which writes
a value to I/O port address 444 (hex). This output value represents time
interval. The value range is from 01 (hex) to 3F (hex), and the related
time interval is 1 sec. to 63 sec.
Data
01
02
03
04
•
Time Interval
1 sec.
2 sec.
3 sec.
4 sec.
•
•
•
•
•
3F
63 sec.
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After data entry, your program must refresh the watchdog timer by
rewriting the I/O port 444 (hex) while simultaneously setting it. When
you want to disable the watchdog timer, your program should read I/O
port 444 (hex).
The following example shows how you might program the watchdog
timer in BASIC:
10
20
30
40
50
60
70
80
REM Watchdog timer example program
OUT &H443, data REM Start and restart the watchdog
GOSUB 1000 REM Your application task #1,
OUT &H443, data REM Reset the timer
GOSUB 2000 REM Your application task #2,
OUT &H443, data REM Reset the timer
X=INP (&H443) REM, Disable the watchdog timer
END
1000
REM Subroutine #1, your application task
•
•
•
•
•
•
1070
RETURN
2000
REM Subroutine #2, your application task
•
•
•
•
•
•
2090
RETURN
Appendix A Programming the Watchdog Timer
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B
Pin Assignments
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B.1 VGA Display Connector (CN2)
1
5
6
10
15
11
Table B-1: MIC-3365 CRT display connector
Pin
1
2
3
4
5
6
7
8
Signal
RED
GREEN
BLUE
N/C
GND
GND
GND
GND
Pin
9
Signal
VGAVCC
GND
N/C
SDA
HSYNC
VSYNC
SCL
10
11
12
13
14
15
B.2 Keyboard and Mouse Connnector (CN7)
6
5
3
4
2
1
Table B-2: MIC-3365 keyboard connector
Pin
Signal
1
2
3
4
5
6
KDAT
MDAT
GND
VCC
KCLK
MCLK
7 8
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B.3 COM1 and COM2 Serial Port (CN13 and
CN6)
5
9
4
8
3
7
2
6
1
Table B-3: MIC-3365 COM1 and COM2 serial port
COM1
COM2
Pin
1
Signal
NRLSD1
Pin
1
Signal
NRLSD2
2
3
NRX1
NTX1
2
3
NRX2
NTX2
4
5
NDTR1
GND
4
5
NDTR2
GND
6
7
8
9
NDSR1
NRTS1
NCTS1
NRI1
6
7
8
9
NDSR2
NRTS2
NCTS2
NRI2
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79
B.4 USB Connector (CN8)
1
4
USB2
USB1
Table B-4: MIC-3365 USB1/USB2 connector
USB1
USB2
Pin
1
Signal
VCC
Pin
1
Signal
VCC
2
3
4
USBD0-
USBD0+
GND
2
3
4
USBD1-
USBD1+
GND
B.5 Ethernet RJ-45 Connector (CN4 and
CN5)
Table B-5: MIC-3365 Ethernet RJ-45 connector
Pin
1
2
Signal
TX+
TX-
3
4
5
6
RX+
N/C
N/C
RX-
7
8
N/C
N/C
8 0
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B.6 Parallel Port Connector (CN1)
13
1
25
14
Table B-6: MIC-3365 parallel port connector
Pin
1
2
3
4
5
6
7
8
Signal
STB#
PTD0
PTD1
PTD2
PTD3
PTD4
PTD5
PTD6
PTD7
ACK#
BUSY
PE
SLCT
AFD#
ERR#
INIT#
SLIN#
GND
GND
GND
GND
GND
GND
GND
GND
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
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81
B.7 IDE Connector (CN12)
43 41 .... 3
1
44 42 .... 4
2
Table B-7: MIC-3365 IDE connector
Pin Signal
Pin Signal
1
IDE RESET#
2
GND
3
5
7
9
DATA 7
DATA 6
DATA 5
DATA 4
DATA 3
DATA 2
DATA 1
DATA 0
4
6
8
DATA 8
DATA 9
DATA 10
DATA 11
DATA 12
DATA 13
DATA 14
DATA 15
N/C
GND
GND
GND
N/C
10
12
14
16
18
20
22
24
26
28
30
32
34
36
11
13
15
17
19
21
23
25
27
29
31
33
35
37
39
41
43
GND
N/C
IO WRITE#
IO READ#
IO CHANNEL READY
HDACK#
IRQ14
ADDR 1
ADDR 0
HARD DISK SELECT 0# 38
GND
N/C
P66DET
ADDR 2
HARD DISK SELECT 1#
GND
VCC
N/C
IDE ACTIVE#
VCC
GND
40
42
44
# low active
Note: The MIC-3665 supports DMA/66 HDD.
8 2
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B.8 Floppy Drive Connnector (CN11)
1
2
.... 25 26
Table B-8: MIC-3351 floppy drive connector
Pin
Signal
Pin
Signal
1
3
5
7
VCC
VCC
VCC
N/C
2
4
6
8
INDEX#
DSA#
DSKCHG
N/C
9
11
13
15
17
19
21
23
N/C
N/C
10
12
14
16
18
20
22
24
26
MOA#
DIR#
DEVSEL#
GND
GND
GND
GND
GND
GND
STEP#
WDATA#
WGATE#
TRAK0#
WPT#
RDATA#
HEAD#
25
# low active
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83
B.9 System I/O Ports
Table B-9: System I/O ports
Addr. range (Hex) Device
000 - 00F
020 - 021
040 - 043
060
DMA controller
Interrupt controller
8254 timer
IBM Enhanced keyboard
Speaker
061
070 -0 71
081 - 083
087
Real-time clock
DMA controller
DMA controller
DMA controller
DMA controller
Interrupt controller
DMA controller
Math coprocessor
IDE controller
IDE controller
UM2
089 - 08B
08F - 091
0A0 - 0A1
0C0 - 0F0
0F0 - 0FF
170 - 177
1F0 - 1F7
2F8 - 2FF
376
378 - 37A
3B0 - 3BB
3C0 - 3DF
3F0 - 3F5
3F6
IDE controller
LPT1
VGA adapter
VGA adapter
FDD controller
IDE controller
FDD controller
Serial port 1
PCI bus
PCI bus
ELP printer port
PCI bus
PCI bus
PCI bus
PCI-to-PCI bridge
USB controller
IDE controller
3F7
3F8 - 3FF
480 - 48F
4D0 - 4D1
778 - 77F
CF8 - CFF
4000 - 40F7
5000 - 501F
C000 - CFFF
D000 - D01E
F000 - F00E
8 4
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B.10 DMA Channel Assignments
Table B-10: DMA channel assignments
Channel
Function
0
1
2
3
4
5
6
7
Available
Available
Floppy disk (8-bit transfer)
LPT1
Cascade for DMA controller 1
Available
Available
Available
B.11 Interrupt Assignments
Table B-11: Interrupt assignments
Interrupt#
IRQ 0
Interrupt source
Interval timer
IRQ 1
Keyboard
IRQ 2
IRQ 8
Interrupt from controller 2 (cascade)
Real-time clock
IRQ 9
Cascaded to INT 0A (IRQ 2)
Available
Available
IRQ 10
IRQ 11
IRQ 12
IRQ 13
IRQ 14
IRQ 15
IRQ 3
PS/2 mouse
INT from co-processor
Fixed disk controller
Available
Serial communication port 2
Serial communication port 1
Available
IRQ 4
IRQ 5
IRQ 6
IRQ 7
Diskette controller (FDC)
Parallel port 1 (print port)
Appendix B Pin Assignments
85
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B.12 1st MB Memory Map
Table B-12: 1st MB memory map
Addr. range (Hex) Device
F000h - FFFFh
CC00h - EFFFh
CA00h - CBFFh
C000h - C7FFh
B800h - BFFFh
B000h - B7FFh
A000h - AFFFh
0000h - 9FFFh
System ROM
Unused
Used
Expansion ROM
CGA/EGA/VGA text
Unused
EGA/VGA graphics
Base memory
8 6
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B.13 J1 connector pin assignments
Table B-13: J1 connector pin assignments
Pin Row A
Row B
Row C
Row D
Row E
25
24
23
22
21
20
19
18
17
16
15
14
13
12
11
10
9
+5V
REQ64#
ENUM#
N/C
+5V
AD1
N/C
+5V
N/C
AD0
+5V
ACK64#
AD2
AD4
AD3
N/C
AD7
N/C
GND
AD6
GND
AD11
GND
PAR
AD5
AD9
AD8
N/C
C/BE0#
AD10
AD12
N/C
GND
AD15
GND
AD14
N/C
AD13
SERR#
N/C
C/BE1#
PERR#
LOCK#
TRDY#
SDONE
GND
SBO#
N/C
GND
STOP#
GND
DEVSEL#
N/C
FRAME#
IRDY#
KEY
AREA
AD18
AD21
C/BE3#
AD26
AD30
REQ#
N/C
AD17
GND
N/C
AD16
N/C
GND
AD20
GND
AD25
GND
CLK
C/BE2#
AD19
AD22
AD24
AD27
AD31
GNT#
INTS
AD23
N/C
8
GND
AD29
GND
N/C
7
AD28
N/C
6
5
RST#
N/C
GND
INTP
+5V
4
N/C
GND
INTB#
+5V
N/C
3
INTA#
TCK
INTC#
TMS
INTD#
TDI
2
N/C
1
+5V
TRST#
+12V
+5V
# low active
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87
B.14 J2 connector pin assignments
Table B-14: J2 connector pin assignments
Pin Row A
Row B
Row C
Row D
Row E
47
46
45
44
43
42
41
40
39
38
37
36
35
34
33
32
31
30
29
28
27
26
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
N/C
CLK4
CKL2
CLK1
N/C
N/C
N/C
N/C
GND
N/C
N/C
N/C
N/C
N/C
GND
N/C
N/C
GND
N/C
N/C
N/C
N/C
GND
REQ6#
GND
REQ5#
GND
N/C
N/C
GND
N/C
PRST#
DEG#
FAL#
N/C
GNT6
N/C
GND
N/C
GNT5
N/C
GND
N/C
N/C
N/C
N/C
GND
N/C
N/C
GND
N/C
N/C
N/C
N/C
GND
N/C
N/C
GND
N/C
N/C
N/C
N/C
GND
N/C
N/C
GND
N/C
N/C
N/C
N/C
GND
N/C
N/C
GND
N/C
N/C
N/C
N/C
GND
REQ4#
GNT2
GNT1
N/C
GND
CLK3
GND
GNT3
N/C
GNT4
REQ3#
REQ2#
REQ1#
8 8
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B.15 J3 connector pin assignments
Table B-15: J3 connector pin assignments
Pin Row A
Row B
HDBD6
HDBD5
HDBD4
ICSOB#
IDACKB#
NDSR1
NCTS1
ID2
Row C
HDBD2
HDBD1
HDBD0
IIORB#
HDBSA2
HDBSA1
NTX1
Row D
Row E
19
18
17
16
15
14
13
12
11
10
9
HDBD3
HDBD8
HDBD9
HDBD7
HDBDRQ
NRTS1
NRI1
HDBD10 HDBD14
HDBD11 HDBD15
HDBD12 HDBD13
ICS1B#
HDBIRQ
GND
HDRDY8
IIOWB#
HDBSA0
NRLSD1
NDTR1
ID12
NRX1
ID7
ID0
ID4
ID1
ID3
ID8
ID6
ID5
ID9
ID10
ID11
ID13
ID15
ID14
HDRQ#
VCC
HCS3#
HDA2
HRDY
HDA0
N/A
HIOR#
HIOW#
HCS1#
HDA1
8
HIRQ
N/A
HACK#
GND
7
HRST1#
GND
6
N/A
VCC
5
VCC
N/A
S66DET
MDAT
N/A
4
KDAT
KCLK
MCLK
HEAD#
RDATA#
WE#
P66DET
TRAK0#
WP#
3
DSKCHG# MOA#
STEP#
RWC#
DIR#
2
DSA#
MOB#
DSB#
1
INDEX#
WD#
# : Low active
Appendix B Pin Assignments
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89
B.16 J4 connector pin assignments
Table B-16: J4 connector pin assignments
Pin
25
24
23
22
21
20
19
18
17
16
15
12-14
11
10
9
Row A
Row B
Row C
Row D
Row E
LANTX-2
LANTX-
USBV1 USBV0
UD1+
LANTX+2 LANTX+
GND GND
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
Key Area
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
HS
UD1-
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
UD0-
UD0+
LANRX-2 LANRX-
LANRX+2 LANRX+
COMDTR2
COMRTS2
COMCTS2
COMTX2
COMLSD2
COMDSR2
COMRI2
COMRX2
GND
N/A
N/A
N/A
N/A
N/A
GND
N/A
N/A
N/A
N/A
N/A
VCC
VCC
VCC
VCC
N/A
N/A
N/A
N/A
N/A
B
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
G
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
8
N/A
7
FFVFC
6
PDDCCLK PDDCDAT
5
DCK
VS
PEDGE
TX2+
TX2-
4
3
DAT
TX0-
TXC+
2
R
TX0+
TXC-
1
TX1+
TX1-
GND
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B.17 J5 connector pin assignments
Table B-17: J5 connector pin assignments
Pin
22
21
20
19
18
17
16
15
14
13
12
11
10
9
Row A
Row B
Row C
Row D
Row E
LANRX+ LANRX-
LANTX+
LANTX-
LANRX+2
VCC
VCC
N/A
LANTX+2 LANTX-2 LANRX-2
N/A
N/A
N/A
VCC
N/A
N/A
VCC
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
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
N/A
N/A
N/A
N/A
N/A
SDP+1
SDP-1
SD-15
SD-0
SD+1
SD-3
SD+4
SD-7
SATN-
SMSG-
SSEL-
SREQ+
SIO+
SD+12
SD-12
DIFS
SD-5
SD+6
TPWEX
SACK+
SACK-
SD+10
SD-10
SD-11
SD+11
N/A
SD+14
SD-13
TPWEX
SD+2
SD-2
TPWEX
SDP-0
SBSY-
SRST-
SCD+
SD-8
SD+8
SD-14
SD+15
SD+0
SD-1
SD+3
SD-4
SD+7
SATN+
SMSG+
SSEL+
SREQ-
SIO-
SD+13
AUTO
SD+5
SD-6
TPWEX
SDP+0
SBSY+
SRST+
SCD-
SD+9
SD-9
8
7
6
5
4
3
2
1
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