Unicorn Computer ENDAT-LX301 User Manual

ENDAT-LX301 USERS MANUAL
UNICORN COMPUTER CORP.
ENDAT-LX301
User’s Manual
Rev . A3
10/29/2008
ENDAT-LX301 USERS MANUAL
UNICORN COMPUTER CORP.
Copyright Notice
The content of this manual has been checked for accuracy. The manufacturer assumes no responsibility for any inaccuracies that may be contained in this manual. The manufacturer reserves the right to make improvements or
modification to this document and/or the product at any time without prior notice. No part of this document may be reproduced, transmitted, photocopied or
translated into any language, in any form or by any means, electronic, mechanical, magnetic, optical or chemical, without the prior written permission of the manufacturer.
AMD is registered trademark of AMD Technology Incorporation GEODE LX is registered trademark of AMD T echnology Incorporation Realtek is registered trademark of Realtek Technologi es Inc. Multiscan is a trademark of Sony Corp of America IBM, EGA, VGA, PC/XT, PC/AT, OS/2 and PS/2 are registered trademarks of
International Business Machines Corporation Intel is a registered trademark of Intel Corporation VIA is registered trademark of VIA Technology Incorporation Plug and Play is registered trademarks of Intel Corporation Microsoft, Windows and MS-DOS are trademarks of Microsoft Co rporation Award is a trademark of Phoenix Software Inc. PCI is a registered trademark of PCI Special Interest Group Other product names mentioned herein are used for identification purpose only and
may be trademarks and/or registered trademarks of their respective companies.
Installation Notice
The manufacturer recommends using a grounded plug to ensure proper motherboard operation. Care should be used in pro per conjunction with a grounded power receptacle to avoid possible electrical shock. All integrated circuits on this motherboard are sensitive to static electricity. To avoid damaging components from electrostatic discharge, please do not remove the board from the anti-st atic packi ng before discharging any static electricity to your body, by wearing a wrist-grounding strap. The manufacturer is not responsible for any damage to the motherboard due to improper operation.
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ENDAT-LX301 USERS MANUAL
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ENDAT-LX301 USERS MANUAL
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Specification:
Model ENDAT-LX301
Form Factor
System Chipset
CPU
Supporting
Memory
Ethernet
VGA
LVDS LCD
panel
Serial / Parallel
RS-422/485
IDE Connector
CF card socket
AUDIO
Expansion Slot
MME module
Back Panel I/O
I/O on board
Digital IO
Power input
Mini-ITX 170 mm x 170 mm (6.69”x6.69”) with 6 layers PCB
AMD GEODE LX + CS5536
Onboard AMD GEODE LX 700/800/900 series CPU integrate L1
64KB / L2 128KB cache Processor
One DDR socket support 200/266/333/400MHz up to 1GB
VIA VT6122 for 10/100/1000 Ethernet
Integrated 2D graphic engine by AMD GEODE LX with
8/16/32/64/128/254MB frame buffer
On-board support 18/24 bit LVDS
2 + 4 (by UCM-S MME module; optional) Serial Ports with +5V,
+12V Power Selector / 1 Parallel port
Via CO M2 (Optional)
1 x 40pin IDE connector support UDMA 33/66/100,
1 x 44pin connector support Slim type HDD
Shared with IDE interface (Optional)
AMD CS5536 w/ AC’97 2.0 compliant
One PCI expansion up to 3 PCI slot via riser card
with PCI 2.2 compliant
Reserved 1 set (2 connectors) of MME module connector for
various features (COM ports, PCI device, or Display interfaces)
(Optional)
PS/2 Keyboard / Mouse Connector
2 USB port + 1 RJ-45 LAN Connector(10/100/1000)
VGA and COM1/COM2/LPT (LPT connector will be removed for
MME module) with D-Sub connectors
Audio jack for SPEAKER-OUT
LVDS with 2.54mm 16-pin connector
VGA/LPT (shared from D-SUB) with 2.00mm Box Header
FDD with 2.54mm Box Header
Pin Header for KB/MS, 4 x USB, CD-in, Mic-in, Line-in, Line-out,
Speaker-out, SM Bus, SPDIF, IRDA, KB/MS for external device
2.0mm Pin Header for 12-bits Digital I/O with CMOS/TTL level (Bi-direction without buffer)
ATX and DC +12V; Optional for Wide range DC (+5V to +27V)
TABLE OF CONTENTS
CHAPTER 1. INTRODUCTION.......................................................6
1-1. FEATURES ................................................................................................ 7
1-2. UNPACKING..............................................................................................8
1-3. ELECTROSTATIC DISCHARGE PRECAUTIONS....................................8
1-4. MOTHERBOARD LAYOUT........................................................................9
CHAPTER 2. SETTING UP THE MOTHERBOARD.....................10
2-1. JUMPERS AND CONNECTORS ............................................................. 10
2-2. INSTALLING MEMORY............................................................................ 20
2-3. SHARED VGA MEMOR Y.........................................................................20
2-4. IRQs MAPPING........................................................................................ 21
2-5. WATCH DOG TIMER ...............................................................................21
2-6. DIGITAL I/O…………………………………………………………………….23
CHAPTER 3. AWARD BIOS SETUP............................................ 25
3-1. STANDARD COMS FEATURES..............................................................26
3-2. ADV ANCED BIOS FEATURES................................................................27
3-3. ADV ANCED CHIPSET FEATURES.........................................................27
3-4. INTEGRATED PERIPHERALS ................................................................ 29
3-5. POWER MANAGEMENT SETUP............................................................31
3-6. PnP/PCI CONFIGURATIONS .................................................................. 32
3-7. PC HEALTH STATUS...............................................................................33
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CHPATER 4. VGA, L CD AND DRIVERS...................................... 34
4-1. VGA FEATURE.........................................................................................34
4-2. LCD FLAT PANEL....................................................................................35
4-3. DRIVER UTILITY INSTALLATION GUIDE...............................................37
CHPATER 5. LAN ADAPTER.......................................................38
5-1. FEATURES...............................................................................................38
5-2. UTP CABLE/RJ-45 JACK DEFINITION...................................................39
5-3. CONNECTING 100BASE-TX FAST ETHERNET NETWORK.................40
5-4. REMOTE BOOT ROM FUNCTION.......................................................... 40
APPENDIX A: FLASH MEMORY UTILITY................................... 41
APPENDIX B: LIMITED WARRANTY..........................................42
Chapter 1. Introduction
In order to cope with the challenges of the system heating issues and demand of much more diminutive embedded system in diverse application, ENDAT-LX301 system board provides the ultimate solution by integrating with AMD GEODE LX technology CPU. ENDAT-LX301 not only provide the ideal solution for Hi-End POS system, but also can be adapted in various applications such as kiosks, networking systems, control terminals and other embedded systems with FANLESS environment.
ENDAT-LX301 is designed and integrated with AMD GEODE LX processor and CS5536. Supports controller supports standard DDR200 Synchronous DRAM (DDR SDRAM).
ENDAT-LX301 is integrated 2D graphics controller. Based on integrated graphic controller , it support s TFT LCD p anel or CR T/LCD mo nitor (simultaneou s mode) as needs. The TFT LCD panels support through LVDS interface, which includes 9-bit, 12-bit, 18-bit, and 24-bit. All resolutions support up to 1024 x 768 for TFT LVDS panel or 1920 x 1440 for CRT monitor.
ENDAT-LX301 provides one standard PCI slot to support standard PCI adapter with PCI 2.2 compliant. More, this board offers more flexibility through a MME
module connector which is an optional feature.
The ideal solutions of ENDAT-LX301
- POS system
- KIOSK
- Vehicle system
- Interactive system
- Industrial controller
- Gaming system
- Medical system
- Fan-less system
- Network server
- Embedded system equipment
One DDR DIMM socket 200MHz up to 1GB DDR. The DRAM
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1-1. Features
Basic Feature:
z A cost effective platform with x86 architecture. z Embedded AMD GEODE LX 800 processor @ 1.8W power
consumption to offer a totally FANLESS solution.
z One DDR socket supports 200MHz (DDR400) up to 1GB DDR. z An internal 2D graphic controller with 8/16/32/64/128/254 MB frame
buffer share with system memory
z Integrated 2D graphics controller resolutions up to 1920 x 1440 for
CRT/LCD monitor.
z Direct Flat panel interface support 18/24-bit LVDS LCD panel, the
resolution up to 1024 x 768.
z 12 bits bi-directional I/O ports by standard on-board support. z Standard PCI slot to support standard PCI adapter with PCI 2.2
compliant (3 slots through PCI riser card). A by optional features.
z AC97’ Audio support with 1.2W amplifier built-in.
Software Support
z Drivers for major embedded operating systems: Linux, Windows XP,
Windows XP embedded and Windows CE 5.0/6.0.
Ordering information:
1. ENDAT-LX301: Standard version. (ATX and DC+12V)
2. ENDAT-LX301W: Support Wide range.(DC+5V~+27V)
3. ENDAT-LX301A: Support ATX Power only.
MME module connector
1-2. Unpacking
The motherboard comes securely packaged in a sturdy cardboard shipping carton. In addition to the User's Manual, the motherboard package includes the following items:
ENDAT-LX301 System Board
HDD/FDD Cables
LCD cable
CD with Driver utilities for on-board VGA and LAN adapter
If any of these items are missing or damage, please contact the dealer from whom you purchase the motherboard. Save the shipping material and carton in the event that you want to ship or store the board in the future.
Note:
Leave the motherboard in its original package until you are ready to install it!
(Optional)
1-3. Electrostatic Discharge Precautions
Make sure you properly ground yourself before handling the motherboard, or other system components. Electrostatic discharge can easily damage the components. Note: You must take special precaution when handling the motherboard in dry or air-conditioned environments.
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1-4. MOTHERBOARD LAYOUT.
Chapter 2. Setting up the Motherboard
2-1. Jumpers and Connectors
Connectors Overview:
Function Jumpers/Connectors ATX Power Connector
DC Input connector DC Output connector DDR SDRAM Socket LAN/USB Connector CRT Output Connector COM1/COM2 Connector SPEAKER OUT connector LPT connector IDE Connectors FDD Connector CF socket PCI, PCI Riser Slot MME Module Connectors Cooling Fan Connectors PS/2 MS/KB Connector LVDS Panel Header VGA Box Header TTL level serial port (COM1) Header LPT Box Header USB Port Headers PS/2 MS/KB Pin Header External PS/2 device Header SPDIF Pin Header IR Pin Header SM Bus Header DIGITAL I/O Pin Header MIC, CD IN, LINE IN, LINE OUT Header SPEAKER OUT Header
ATX1 DC-IN1 HDDPWR DDRDIMM CN2 VGA1 COM1, COM2 SPEKER LPT1 IDE1, IDELIM FDD1 CF1 PCI1, RISER1 PCIMM1, PCIMM2 FAN1, FAN2 CKBMS1 LVDS1 VGABH1 CM1TTL LPTBH1 JUSB1, JUSB2 CN6 JKB1 SPDIF1 IRDA1 SMB1 GPIO1 CN5 CN1
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Jumpers Overview:
Function Jumpers/Connectors Clear CMOS
COM Port Voltage Selector RS232 / 422/ 485 Selector for COM2 LVDS trigger edge selector LCD Voltage Selector Restore on AC power loss Header for Case Panel HDD active LED External Speaker Buzzer On/Off Hardware Reset Switch Power LED WDT Function Enable/Disable ATX Power Supply On/Off Switch CF card power / Master, Slaver selector
Please double-check the insertion and orientation of the LCD cable before applying power. Improper installation will result in permanent damage LC D pa n e l.
JBAT1 JP1 JP2, JP3 JP4 JP5 JP6 JP7 JP7: Pin 1(-), Pin 2(+) JP7: Pin 3, Pin 6 JP7: Pin 4, Pin 5 JP7: Pin 10, Pin 11 JP7: Pin 12(+), Pin 13(-) JP7: Pin 14, Pin 15 JP7: Pin 16, Pin 17 JP8
Part 1: Onboard Jumpers
JBAT1: CMOS Data Clear (1x3 with 2.0mm)
Pin 1-2 *
Pin 2-3
JP1: COM Port Voltage Selector (2x6 with 2.0mm)
Voltage +12V(DC) R.I. * +5V(DC) COM1 1-2 3-4 5-6 COM2 7-8 9-10 11-12
JP2, JP3: RS232 / 422 / 485 Selector for COM2 (2.0mm)
TYPE JP2 (3x4 with 2mm) JP3 (2x7 with 2mm)
RS-232 *
RS-422/485
JP4: LVDS chip trigger edge selector (1x3 with 2.0mm)
Pin 1-2
Pin 2-3 *
Note: Change default location since A5 PCB version.
JP5: LCD Voltage Selector (2x3 with 2.0mm)
Pin 1-2 *
Pin 3-4 Pin 5-6
Caution: Improper setting will damage LCD panel.
JP6: Restore on AC power loss (1x2 with 2.54mm)
Close
Open*
When JP6 was been closed, the system power will turn on automatically when AC power applied.
Close for clear CMOS
Rising edge
Falling edge
+3.3V
Enable
Disable
Normal
1-2, 4-5, 7-8, 10-11 1-2 2-3, 5-6, 8-9, 11-12 3-4, 5-6
+5V
+12V
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JP7: Box Header for Case Panel (1x17 with 2.54mm)
Pin No. Function
1(-), 2(+)
3,6
4,5 *
7,8
8,9 *
10,11
12(+), 13(-)
14,15 16,17
JP8: CF card power / Master, Slaver selector (2x3 with 2.0mm)
Pin 1-3 * Slaver Pin 3-5 Master Pin 2-4 * +5V CF card Pin 4-6 +3.3V CF card
HDD active LED
External Speaker
Buzzer On/Off
Reserved Reserved
Hardware Reset Switch
Power LED
Close: Enable WDT function
ATX Power On/Off
Part 2: Onboard Connectors and Headers
VGABH1: CRT Box Header Connector (2x8 with 2.0mm)
Pin No. Description Pin No. Description
1 2 3
4
5 6 7 8
TTL1: TTL LCD Panel Box Header (2x22 with 2.0mm)
Pin No. Signal Pin No. Signal
1 3 5 7
9 11 13 15 17 19 21 23 25 27 29 31 33 35 37 39 41 43
RED
GREEN
BLUE
N.C. GND GND GND GND
VBL (+12V)
GND
LCD-PWR
ENBKLT
B0 B2 B4 B6 G0 G2 G4 G6 R0 R2 R4 R6
GND
CLK
DE
GND LCD-PWR LCD-PWR
9 10 11 12 13 14 15
N.C / +5V
GND
N.C.
DDC DAT
H-Sync
V-Sync
DDC CLK
2 4 6
8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 38 40 42 KEY 44
VBL (+12V)
GND
LCD-PWR
GND
B1 B3 B5 B7 G1 G3 G5 G7 R1 R3 R5 R7
GND V-SYNC H-SYNC
LCD-PWR LCD-PWR
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LVDS1: LVDS LCD Pin Header (2x8 with 2.54mm)
Pin No. Description Pin No. Description
1 3 5 7
9 11 13 15
Please make sure the Pin 1 location before inserting the LCD connector.
Y0-
Y0+
Y1-
GND
Y1+
CK-
CK+
VBL (+12V)
2 4 6
8 10 12 14 16
IDE1 Box Header (2x20 with 2.54mm)
Pin No. Description Pin No. Description
1 3 5 7
9 11 13 15 17 19 21 23 25 27 29 31 33 35 37 39
IDE Reset#
IDE data7 IDE data6 IDE data5 IDE data4 IDE data3 IDE data2 IDE data1 IDE data0
GND
IDE REQ
IDE IOW#
IDE IOR#
IDE Ready
IDE ACK#
IDE IRQ
IDE A1 IDE A0
IDECS1#
HDLED#
2 4 6
8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 38 40
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Y2-
Y2+
LCD-PWR
Y3-
Y3
LCD-PWR
ENBKLT
GND
GND IDE data8 IDE data9
IDE data10 IDE data11 IDE data12 IDE data13 IDE data14 IDE data15
N.C. GND GND GND GND GND
N.C.
P66DET
IDE A2
IDESC3#
GND
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IDELIM: Slim IDE Connector (Shared IDE1, 2x22 with 2.0mm)
Pin No. Description Pin No. Description
1 3 5 7
9 11 13 15 17 19 21 23 25 27 29 31 33 35 37 39 41 43
IDE Reset#
IDE data7 IDE data6 IDE data5 IDE data4 IDE data3 IDE data2 IDE data1 IDE data0
GND
IDE REQ
IDE IOW#
IDE IOR#
IDE Ready
IDE ACK#
IDE IRQ
IDE A1 IDE A0
IDECS1#
HDLED#
VCC (+5V)
GND
2 4 6
8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 38 40 42 44
16
GND IDE data8 IDE data9
IDE data10 IDE data11 IDE data12 IDE data13 IDE data14 IDE data15
N.C. GND GND GND GND GND
N.C.
P66DET
IDE A2
IDESC3#
GND
VCC (+5V)
N.C.
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FDD1: FDD Box Header (2x17 with 2.54mm)
Pin No. Description Pin No. Description
1,3,5,7
9,11,13 15,17,19 21,23,25 27,29,31
33
2
4,6
8 10 12
CN6: PS/2 Keyboard / Mouse Pin Header (2x5 with 2.54mm)
Pin No. Signal (KB) Pin No. Signal (MS)
1 3 5 7 9
JKB1: External PS/2 Device Header (1x7 with 2.0mm)
Pin No. Signal (KB) Pin No. Signal (MS)
1 3 5 7
Note: Change to 2 hard wire jumpers (close pin 1 and 2, 3 and 4) from pin
header since A5 PCB version.
CM1TTL: COM1 TTL interface Pin Header (2x5 with 2.0mm)
Pin No. Function Pin No. Function
1
3
5
7
9
GND GND GND GND GND GND
RWC#
N.C
INDEX#
MOA#
DSB#
KB Data
KEY
GND
+5V(DC)
KB_CLK
KB Data Out
KB Clk Out
Key
GND
DCD
SIN
SOUT
DTR
GND
14 16 18 20 22 24 26 28 30 32 34
2 4 6 8
10
2 4 6
2 4 6 8
10
DSA#
MOB#
DIR
STEP#
WD# WE#
TRAK0
WP#
RDATA#
HEAD#
DSKCHG#
MS Data
KEY
GND
+5V(DC)
MS_CLK
KB Data In
KB Clk In
+5V(DC)
DSR
RTS CTS
RI
+5V
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JUSB1, JUSB2: Pin Header for USB port (2x5 with 2.54mm)
Pin No. Function Pin No. Function
1 3 5 7 9
FAN1, FAN2: Cooling Fan Connector
Pin No. Function
1 2 3
CN1: SPEAKER OUT (1x4 with 2.54mm)
Pin No. Function Pin No. Function
1 3
CN4: LINE OUT, LINE IN (2x4 with 2.54mm)
Pin No. Function Pin No. Function
1 2 3 4
CN5: MIC IN, CD IN Pin Header (2x4 with 2.54mm)
Pin No. Function Pin No. Function
1 2 3 4
SPDIF1: SPDIF Pin Header (1x5 with 2.54mm)
Pin No. Signal (KB) Pin No. Signal (MS)
1 2 3
USB_VCC
USBD2/4­USBD2/4+ USB_GND USB_GND
GND
+12V
Sensor Pin
SPEAKER OUT-R
GND
LINE OUT-R
GND GND
LINE OUT-L
MIC POWER
GND GND
MIC IN
+5V N.C
SPDIF-OUT
2 4 6 8
10
4 5
2 4
5 6 7 8
5 6 7 8
USB_VCC
USBD3/5­USBD3/5+ USB_GND USB_GND
GND
SPEAKER OUT-L
LINE IN-L
GND GND
LINE IN-R
CD IN-R
GND GND
CD IN-L
GND
SPDIF-IN
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SMB1: SM Bus Pin Header (1x4 with 2.54mm)
Pin No. Function Pin No. Function
1 2
IRDA1: IR Pin Header (1x5 with 2.54mm)
Pin No. Function Pin No. Function
1 2 3
GPIO1: DIGITAL I/O Pin Header (2x9 with 2.0mm)
Pin No. Function Pin No. Function
1 3 5 7
9 11 13 15 17
D-SUB Type Connector for COM2 port (RS-422Æ 4 Wire)
Pin No. Function Pin No. Function
1
2
3
4
5
D-SUB Type Connector for COM2 port (RS-485Æ 2 Wire)
Pin No. Function Pin No. Function
1
2
3
4
5
SMBCK SMBDT
+5V
N.C
IRRX
+5V DIO-P0-0 DIO-P0-2 DIO-P0-4 DIO-P0-6
GND DIO-P1-0 DIO-P1-2
+3.3V
–TXD
+RXD
+TXD
NA NA
Data –
NA
Data +
NA NA
3 4
4 5
2 4 6
8 10 12 14 16 18
6
7
8
9
6
7
8
9
+3.3V
GND
GND IRTX
+3.3V DIO-P0-1 DIO-P0-3 DIO-P0-5 DIO-P0-7
GND DIO-P1-1 DIO-P1-3
+5V
NA NA NA
–RXD
NA NA NA NA
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A TXPWR: ATX Power connector
ATX
3.3V 11 1 3.3V –12V 12 2 3.3V GND 13 3 GND
PS ON 14 4 +5V
GND 15 5 GND GND 16 6 +5V GND 17 7 GND
–5V 18 8 POWER OK +5V 19 9 5V SB +5V 20 10 +12V
DC-IN1: DC Input Power
Pin No. Function
1 2
HDDPWR: DC Output Power for IDE device
Pin No. Function
1 2 3 4
2-2. Installing Memory
The ENDA T -LX301 CPU board offers one 184pin DDR DIMM socket supporti ng up to 1GB of memory. The speed of DDR memory can be DDR200, DDR266, DDR333 or DDR400.
2-3. Shared VGA Memory
The ENDAT-LX301 is using built-in graphic controller with Unified Memory Architecture (UMA) ­determines the number of colors and the video graphic resolution.
up to 254MB
+V
GND
+12V
GND GND
+5V
of system memory. The amount of video memory on motherboard
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2-4. IRQs Mapping
The IRQ number is automatically assigned to PCI expansion cards after those used by onboard device. To install a PCI riser card, you need to set the correct "ADSEL" and "INT" (interrupt) assignment.
IRQ Status Assignment
0 Occupied Timer 1 Occupied Keyboard 2 Occupied Second 8259 3 Occupied COM2/COM4 shared 4 Occupied COM1/COM3 shared 5 Occupied LPT1 6 Occupied Floppy Disk 7 8 Occupied RTC
9 10 11 12 13 Occupied Coprocessor 14 15 Occupied Reserved
2-5. Watch Dog Timer
Watchdog Timer (WDT) is a special design for system monitoring to secure the system work normally . WDT has an independent clock from the oscillator an d could set time and clear/refresh WDT counter function. When time is up, WDT will send hardware RESET signal to reset system.
Timeout Value Range
-1 to 255
-Second or Minute
Free Any
Shareable ACPI controller
Free Any Free Any Free When PS/2 mouse absent
Free When IDE device absent
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Sample code (using TurboC/C++ 3.0):
#include <stdio.h> #include <dos.h> #include <dir.h> void show_ver(); void main() { unsigned int tt; clrscr(); show_ver(); tt=0; while((tt==0)||(tt>255)) { printf("\n\nPlease key in how many seconds you want to reset system (1~255):"); scanf("%d",&tt); } outportb(0x2e,0x87); //Unlock register outportb(0x2e,0x87); //Unlock register outportb(0x2e,0x07); //Set Logic Device number pointer outportb(0x2f,0x08); //Set Logic Device number outportb(0x2e,0xF5); //Set WDT mode outportb(0x2f,0x00); // bit2 : Enable the rising edgw of keyboard Reset to force Time-out event. ( 0=Disable / 1= Enable). / bit3 : Select WDTO count mode (0 = second / 1= minute). outportb(0x2e,0xf6); //Set Watch Dog Timer Time-out value. outportb(0x2f,tt); //Set time out value of WDT } void show_ver() { unsigned char tmp0; printf("Designed by ROBERT LIOU of UNICORN computer corp. \n2008/05/12 release version:1.0a\n"); printf("This program is design for test Watch Dog Timer for ENADT-LX301(W83627).\n"); }
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2-6. Digital I/O
Pin definition:
GPIO1: DIGITAL I/O Pin Header (2x9 with 2.0mm)
Pin No. Function Pin No. Function
1 3 5 7
9 11 13 15 17
This function is supported by onboard super I/O chip; it can be control easily by change the register of super I/O chip via I/O port “2Eh” “2Fh”. Please see the sample code of below for implement. Voltage tolerance: +/- 5% with 0V to +5V.
DIGITAL I/O Pin (DIO-P0)Register configuration:
Bit No 7 6 5 4 3 2 1 0
Map
Sample code for input (using Turbo C/C++ 3.0)
#define input_port 0x2f // Read digital input data define. outportb(0x2e,0x87); //Unlock register outportb(0x2e,0x87); //Unlock register outportb(0x2e,0x07); //Set Logic Device number pointer outportb(0x2f,0x07); //Set Logic Device number outportb(0x2e,0xF0); //Set Digital I/O(DIO-P0) Input/Output outportb(0x2f,0xFF); //Set register value (FF for Input / 00 for output ). outportb(0x2e,0xF2); //Set Read digital input data read_data=inportb(input_port); // Read digital input data printf("DIO-Input=%02X\n",read_data); //Show digital input data on screen
+5V DIO-P0-0 DIO-P0-2 DIO-P0-4 DIO-P0-6
GND DIO-P1-0 DIO-P1-2
+3.3V
P0-7 P0-6 P0-5 P0-4 P0-3 P0-2 P0-1 P0-0
2 4 6
8 10 12 14 16 18
+3.3V DIO-P0-1 DIO-P0-3 DIO-P0-5 DIO-P0-7
GND DIO-P1-1 DIO-P1-3
+5V
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Sample code for output (using Turbo C/C++ 3.0):
outportb(0x2e,0x87); //Unlock register outportb(0x2e,0x87); //Unlock register outportb(0x2e,0x07); //Set Logic Device number pointer outportb(0x2f,0x07); //Set Logic Device number outportb(0x2e,0xF0); //Set Digital I/O(DIO-P0) Output outportb(0x2f,0x00); //Set register value (FF for Input / 00 for output ).
outportb(0x2e,0xF1); //Set active register is CRF1 outportb(0x2f,0x00); //Write data to digital output
DIGITAL I/O Pin (DIO-P1)Register configuration:
Bit No 3 2 1 0
Map
Sample code for input (using Turbo C/C++ 3.0)
#define input_port 0x2f // Read digital input data define. outportb(0x2e,0x87); //Unlock register outportb(0x2e,0x87); //Unlock register outportb(0x2e,0x07); //Set Logic Device number pointer outportb(0x2f,0x09); //Set Logic Device number outportb(0x2e,0xF0); //Set Digital I/O(DIO-P0) Input/Output outportb(0x2f,0x0F); //Set register value (FF for Input / 00 for output ).
printf("DIO-Input=%02X\n",read_data); //Show digital input data on screen
Sample code for output (using Turbo C/C++ 3.0)
outportb(0x2e,0x87); //Unlock register outportb(0x2e,0x87); //Unlock register outportb(0x2e,0x07); //Set Logic Device number pointer outportb(0x2f,0x09); //Set Logic Device number outportb(0x2e,0xF0); //Set Digital I/O(DIO-P0) Input/Output outportb(0x2f,0x0F); //Set register value (FF for Input / 00 for output ).
P1-3 P1-2 P1-1 P1-0
outportb(0x2e,0xF2); //Set Read digital input data read_data=inportb(input_port); // Read digital input data
outportb(0x2e,0xF1); //Set active register is CRF1 outportb(0x2f,0x00); //Write data to digital output
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Chapter 3. AWARD BIOS SETUP
Phoenix – Award BIOS CMOS Setup Utility
> Standard CMOS Featu res > Advanced BIOS Features > Advanced Chipset Features > Integrated Peripherals > Power Management Setup > PnP/PCI Configurations
Use the BIOS CMOS setup program to modify the system parameters to reflect the environment installed in your system and to customize the system as desired. Press the <DEL> key to enter into the BIOS CMOS setup program when you turn on the power. Settings can be accessed via arrow keys. Press <Enter> to choose an option to configure the system properly.
In the main menu, press F10 or “SAVE & EXIT SETUP” to save your changes and reboot the system. Choose “EXIT WITHOUT SAVING” to ignore the changes and exit the setup procedure. Pressing <ESC> at anywhere during the setup will return to the main menu.
All of the above CMOS BIOS items require board knowledge on PC/AT system architecture. Incorrect setup could cause system malfunctions.
> PC Health Status
Load Optimized Defaults Set Supervisor Password Set Password Save & Exit Setup Exit Without Saving
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3-1. Standar d CMOS Features
The Stand ard Setup is used for the basic ha rdware system configuration. The main function is for Data/Time and Hard Disk Drive settings.
Item Optimized defaults
Date (mm:dd:yy) Time (hh:mm:ss) IDE Primary Master Press Enter IDE Primary Slave Press Enter Driver A Driver B Video Halt On
1.44M, 3.5 in.
All , But Keyboard
˙Video
Select the type of primary video subsystem. <Choice: EGA / VGA, CGA 40, CGA 80, MONO>
˙Halt On
Set the system’s response to specific boot errors. <Choice: All Errors, No Errors, All, But Keyboard,
All, But Diskette, All, But Disk/Key >
IDE Primary Master/Slaver
Item Optimized defaults
IDE HDD Auto-Detection Press Enter IDE Channel Auto Access Mode Auto
The specifications of your drive must match with the drive table. The hard disk will not work properly if you enter incorrect information in this category. Select “Auto” whenever possible. If you select “Manual”, make sure the information is from your hard disk vendor or system manufacturer.
None
EGA/VGA
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3-2. Advanced BIOS Features
This section allows you configuring your system for basic operation. You have the opportunity to select the system’s default speed, boot-up priority, keyboard operation and security.
Item Optimized defaults
Virus Warning Disabled CPU Internal Cache Enabled External Cache Enabled First Boot Device HDD-0 Second Boot Device CDROM Third Boot Device LS120 Boot Other Device Enabled Swap Floppy Drive Disabled Boot Up Floppy Seek Enabled Boot Up NumLock Status On Gate A20 Option Normal Typematic Rate Setting Disabled Typematic Rate (Chars/Sec) 6 Typematic Delay (Msec) 250 Security Option Setup OS Select For DRAM > 64MB Non-OS2 HDD S.M.A.R.T. Capability Disabled
3-3. Advanced Chipset Features
This section allows you to configure the system based on the specific features of the installed chipset. This chipset manages bus speeds and the access to the system memory resources, such as DRAM and the external cache. It also coordinates the communications with the PCI bus. items should never be altered. The default settings have been chosen because they provide the best operating conditions for your system. You might consider making any changes only if you discover that the data has been lost while using your system.
Item Optimized defaults
CPU Frequency Auto Memory Frequency Auto CAS Latency Auto Interleave Select LOI XOR BA0 Disable
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Item Optimized defaults
XOR BA1 XOR MB0 XOR Bit Select 18 Video Memory Size Output display CRT Flat Panel Configuration Press Enter Onboard Audio Enable Onboard USB1.1 Enable Onboard USB2.0 Enable Onboard IDE Enable Memory Hole At 15M-16M
˙Video Memory Size
This field is used to select the onboard VGA’s frame buffer size that is shared from the system memory. <Choice: Disabled, 8M,12M,16M,32M,64M,128M,254M>
˙Flat Panel Configuration
Item Optimized defaults
Flat Panel Type LVDS Resolution 800x600 Data Bus Type 9-24 bits, 1 ppc Refresh Rate 60 Hz HSYNC Polarity Normal low VSYNC Polarity Active Normal low SHFCLK Active Period Free runing LP Activ e Period Free runing
˙Resolution
This field is used to select the resolution of LCD panel. <Choice:320x240/640x480/800x600/1024x768/1152x864/1280x1024/ 1600x1200>.
˙Data Bus Type
This field is used to select the data type of LCD panel. Generally is “Normal”. <9-24 bits, 1 ppc and 18,24 bits, 2 ppc>.
˙Refresh Rate
This field is used to select the refresh rate (VSYNC frequency) to LCD panel. Default is “60 Hz”. <Choice: 60/65/70/72/75/85>
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Disable Disable
64M
Disable
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˙HSYNC Polarity
This field is used to select the polarity of HSYNC for LCD. Default is “Normal Low”. <Choice: Normal Low/Normal High>
˙VSYNC Polarity Active
This field is used to select the polarity of VSYNC for LCD. Default is “Normal Low”. <Choice: Normal Low/ Normal High>
˙SHFCLK Active Period
This field is used to select the working period of shift clock. Generally is “Free running”. <Choice: Free running/Active only>
˙LP Active Period
This field is used to select the working period of line pulse. Generall y is “Normal”. <Choice: Free running/Active only>
If you apply one of the standard panels shown above, select the appropriate option according to the type of panel that you apply. Or, please contact your dealer or sales representative for custom-made BIOS that will suit the p anel that you apply.
3-4. Integrated Peripherals
The IDE hard drive controllers support up to two separate hard drives. These driv es have a master/slave relationship that is determined by the cabling configuration used to attach them to the controller. Your system supports two IDE controllers--a primary and a secondary--so you can install up to four separate hard disks.
Integrated Peripherals
Item Optimized defaults
Master Drive PIO Mode Auto Slave Drive PIO Mode Auto IDE Primary Master UDMA Auto IDE Primary Slave UDMA Auto IDE DMA transfer access Enabled IDE HDD Block Mode Enabled Onboard Lan Boot ROM Disabled Onboard FDC Controller: Enabled Onboard Serial Port 1 3F8/IRQ4 Onboard Serial Port 2 2F8/IRQ3
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UART Mode Select Normal RxD , TxD Active Hi,Lo IR Transmission Enable UR2 Duplex Mode: Half Use IR Pins: IR-Rx2Tx2 Onboard Parallel 378/IRQ7 Parallel Port Mode: SPP EPP Mode Select: EPP1.7 ECP Mode Use DMA 3
˙Master/Slave PIO Mode
The two IDE PIO (programmed Input/Output) fields let you set a PIO mode (0-4) for each IDE device that the internal PCI IDE interface supports. Modes 0 through 4 provide successively increased performance. In Auto mode, the system automatically determines the best mode for each device.
˙IDE Primary Master/Slave UDMA
These fields allow you to set the Ultra DMA in use. When Auto is selected, the BIOS will select the best available option after checking your hard drive or CD-ROM.
IDE HDD Block Mode
˙
Block mode is also called block transfer , multiple commands, or mu ltiple sectors read/write.
˙Onboard LAN Boot ROM
By default, this field is disabled. Enable this field if you wish to use the boot ROM (instead of a disk drive) to boot-up the system and access the local area network directly.
˙UART Mode Select
Select an operating mode for the serial port 2. <Choice: IrDA, ASKIR, Normal>
˙Parallel Port Mode
Set the parallel port mode. <Choice: Standard/SPP/EPP1.7/EPP1.9/ECP/ECP+EPP>
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3-5. Power Management Setup
The Power Management Setup allows users configuring the system to save energy in a most effective way while operating in a manner consistent with their own style of computer use.
Item Optimized defaults
ACPI function Enabled ACPI Suspend Type S1(POS) Power Management ACPI
** PM Timers ** Standby Mode Disabled Suspend Mode Disabled HDD Power Down Disabled Soft-Off by PWRBTN Instant-Off Power-On by Alarm Disabled Time (hh:mm:ss) Alarm 0 0 0 IRQ Wakeup Events Press Enter
˙
ACPI Suspend Type
This field is used to select the type of Suspend mode.
S1(POS)
IRQ1 (KeyBoard) ON IRQ3 (COM 2) OFF IRQ4 (COM 1) OFF IRQ5 (LPT 2) OFF IRQ6 (Floppy Disk) OFF IRQ7 (LPT 1) OFF IRQ8 (RTC Alarm) OFF IRQ9 (IRQ2 Redir) OFF IRQ10 (Reserved) OFF IRQ11 (Reserved) OFF
Enables the Power On Suspend function.
IRQ Wakeup Events
Item Optimized defaults
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Item Optimized defaults
IRQ12 (PS/2 Mouse) OFF IRQ13 (Coprocessor) OFF IRQ14 (Hard Disk) OFF IRQ15 (Reserved) OFF
3-6. PnP/PCI Configurations
This section describes the configuration of the PCI bus system. PCI is a system that allows I/O device to operate at speeds nearing the speed of the CPU itself, when communicating with its own special components. This section covers some very technical items. It is strongly recommended that only experienced users make any changes to the default settings.
Item Optimized defaults
PNP OS Installed No Init Display First PCI Slot Reset Configuration Data Disabled Resources Controlled By Auto(ESCD) IRQ Resources Press Enter DMA Resources Press Enter Memory Resources Press Enter PCI/VGA Palette Snoop Disabled
˙ ˙
Reset Configuration Data
The BIOS will reset the Extended System Configuration
Enabled Disabled
˙Resources Controlled By
Auto(ESCD) Manual
˙PCI/VGA Palette Snoop
When set to [Enabled], multiple VGA devices operating on different buses can handle data from the CPU on each set of palette registers on every video device. Bit 5 of the command register in the PCI device configuration space is the VGA Palette Snoop bit (0 is disabled).
Data (ESCD) once automatically. It will then recreate a new set of configuration data. The BIOS will not reset the configuration data.
The system will automatically detect the settings for you. Choose the specific IRQ in the “IRQ Resources” field.
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3-7. PC Health Status
This screen shows the information of temperature, Fan speed and Vcore etc. It also can set CPU warning temperature to protect CPU.
PC Health Status
Item Optimized defaults
CPU Warning Temperature Disable Current System Temp Current CPU T empera ture Fan1 Speed Fan2 Speed +3.3 V +5 V +12 V
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Chapter 4. VGA, LCD and drivers
4-1. Graphic controller Feature
The ENDAT-LX301 integrated a high performance with low power consumption 2D
graphics engine. The graphics controller is full compliance and compatibility with IBM® VGA and VESA™ extended VGA.
The display controller is integrated video DACs and TFT LCD interface for various embedded application. The display operation support CRT or TFT LCD only; the simultaneous operation mode is not supported by this graphics controller.
The on-board Graphics Controller’s main system features include:
- High Performance 2D graphics controller
- Alpha BLT
- Hardware frame buffer compression improves UMA (Unified Memory Architecture) memory efficiency
- Support up to 1920 x 1440 running at 85 HZ (CRT/LCD monitor)
- Hardware based VGA (Video Graphics Array)
- Hardware video up/down scalar
- Graphics/video alpha blending
- Integrated dot clock PLL (Phase Lock Loop) up to 230 MHZ
- Direct TFT LCD support up to 1024 x 768.
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4-2. LCD Flat Panel
z Flat Panel Interface
The on-board graphics controller also supports indust ry standard LVDS TFT LCD: LVDS interface: 18 and 24bit by standard feature support. LVDS interface provides a low voltage, high speed and low EMI serial
DC-balanced differential data via optional onboard LVDS. The flat panel interface provides or supports the following functions for various
panels:
- Generates flat panel interface signals like FLM, LP, SCLK, and DE
- Generates different video data formats to directly drive different types of panels
- Vertical and horizontal expansion of video displays to LCD panel resolution
- Vertical and horizontal centering
- Panel power sequence
BIOS setting:
Flat Panel Type
˙
This field is used to select the type of display to use when the system boot. <Choice: CRT/LCD>
˙Resolution
This field is used to select the resolution of LCD panel. <Choice: 640x480/800x600/1024x768/1152x864/1280x1024/1600x1200>
˙Bus Width
This field is used to select the bus width of LCD panel. Generally is “24bits”. <Choice: 8/9/12/16/18/24>
˙Data type
This field is used to select the data type of LCD panel. Generally is “Normal”. <Choice: Normal/2 X>
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˙Refresh Rate
This field is used to select the refresh rate (VSYNC frequency) to LCD panel. Default is “60 Hz”. <Choice: 60/65/70/72/75/85>
˙HSYNC Polarity
This field is used to select the polarity of HSYNC for LCD. Default is “Low”. <Choice: Low/High>
˙VSYNC Polarity Active
This field is used to select the polarity of VSYNC for LCD. Default is “Low”. <Choice: Low/High>
˙SHFCLK Active Period
This field is used to select the working period of shift clock. Generally is “Free running”. <Choice: Free running/Active only>
˙LP Active Period
This field is used to select the working period of line pulse. Generally is “Normal”. <Choice: Free running/Active only>
Please note that the default setting is with “CRT only”. If the LCD display feature is required, the setting will need to be revised in the system BIOS setting: “Select Display Device” under “Advanced Chipset Features
”;
unless it is specified at the time of order.
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4-3. Driver Utility Installation Guide
1.
When finishing the installation of Windows XP, please install the relative AMD display and AUDIO driver manually for compliance compatibility of hardware environment.
2. Please contact sales department of UNICORN for Embedded OS user driver (Windows CE and Windows XP embedded). All of embedded OS driver is not be included in any versions of driver CD-ROM from UNICORN.
Please download or check from AMD Web site: versions of driver as needs!
www.amd.com
for more information or last
Chapter 5. LAN Adapter
5-1. FEATURES.
The on-board VIA Velocity VT6122 Gigabit Ethernet Controller
The VIA Velocity™ VT6122 Gigabit Ethernet controller enables leading-edge performance in a small 14x14mm 128-pin LQFP package, optimized for 32-bit PCI applications in space-constrained systems. Integrating a feature laden MAC and Cicada's patented SimpliPHY™ transceiver, the VT6122 Controller is optimized for space constrained systems with a low power, low profile design.
Supporting 10/100/1000 Mbps triple-speed and full/half-duplex capability at all speeds, the integrated Cicada PHY is fully compliant to IEEE 802.3 (10BASE-T),
802.3u (100BASE-TX), and 802.3ab (1000BASE-T) standards. With Cicada's proven SimpliPHY design, VIA Networking's Velocity controllers feature leading narrow band noise tolerance that delivers superior performance for real world PCBs and cables.
To minimize host-side CPU utilization, VIA Velocity Gigabit Ethernet Controllers adopt an adaptive interrupt scheme to reduce interrupts made to the processor, and maximize the use of packet bursts for efficient PCI bandwidth usage. The Velocity controllers can further offload tasks from the host CPU to improve the overall system performance with TCP/UDP/IP checksum, and TCP segmentation offloading.
Applications The Velocity VT6122 controller is optimized for 32-bit PCI client-end applications. Its small form factor 14x14mm, 0.4mm pin-pitch, 128-pin LQFP p ackage provides a low pin count body size that helps simplify signal routing, minimize board routing area, resulting in a cost-effective board implementation. Furthermore, to allow a flexible Gigabit Ethernet (10/100/1000-Mbps) or Fast Ethernet (10/100-Mbps) implementations on the same board, VIA Networking offers a number of configuration options integrating our wide range of Ethernet IC options.
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5-2. UTP Cable / RJ-45 Jack Definition
Straight through twisted pair cable is typically used to connect a hub to a server or workstation. In a straight through connection, Pin 1 at the server, Pin 2 at the hub connects to Pin 2 at the server, and so on. Figure A-1 shows the locations of pins on a standard RJ-45 plug on a twisted-pair cable.
Table A-1 shows the wiring in a straight-through twisted-pair cable (Pins 4, 5, 7 and 8 are not used).
Twisted Pair
Number
1 2
Pin Number
1 2 3 6
Signal
Description
TD+
TD– RD+ RD–
T able A-1
To Pin Number
Æ Æ
1 2 3 6
Signal
Description
TD+ TD– RD+ RD–
5-3. Connecting 100Base-TX Fast Ethernet Network
To connect the adapter to 100Base-TX Fast Ethernet Network, you need a twisted-pair Category 5 cable with RJ-45 modular jacks at both ends. This cable can have a maximum length of 300 feet (100 meters).
5-4. Remote BOOT ROM function
This function is available with the BIOS programming for indicated operation system. The remote boot function allows the computer to boot up over the network, instead of using the local operating system device. This enables the system to be a diskless workstation environment.
Figure A-1
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Appendix A: FLASH Memory Utility
Using this utility to update the system BIOS from a disk file to the on board Flash memory. Be aware the improper change of the system BIOS will cause the system to malfunction.
Using utility as follows:
1. Insert the FLASH memory utility distribution floppy diskette in drive A:
2. At the DOS prompt, type A:>AWDFLASH and press <Enter> AwardBIOS FLASH Utility V8.24G
C>Phoenix Technologies Ltd. All Rights Reserved
Flash Type –
File Name to Program:
Message:
3. Enter the name of the system BIOS disk file into the "File Name to Program" field.
The following message appears in the "Message" field
4. Do you want to save BIOS (y/n)?
5. To update the FLASH memory from the system BIOS disk file, type Y
6. After complete updating, please re-boot the system (press “
7.
For upgrade BIOS procedure, please refer to our web site: http://www.uni corn-computer.com.tw
* Please turn off system and clear CMOS data by JBAT1. * Please restart your system and load setup default
/
F1
” key)
Appendix B: LIMITED WARRANTY
Standard Two years limited warranty on all our ENDAT series all-in-one motherboards and embedded board. Products that become defective during the warranty period shall be repaired, or subject to manufacturer’s option, replaced. The limited warranty applies to normal proper usage of the hardware and does not cover products that have been modified or subjected to unusual electrical or physical stress. Unicorn Computer Corp is not liable to repair or replace defective goods caused by improper using or use of unauthorized parts. The following situations will be charged:
1. The products during the warranty but defective caused by improper using or artificial external pressure and result in the components damages. According to the damage situation, the manufacturer has the rights to decide to repair or not. The manufacturer will charge the parts/repair cost and the returning shipping charge.
2. The products out of warranty will charge the parts/repair cost and the returning shipping charge as per the repair status.
3. The manufacturer has the rights to decide to rep air or not based on the stock of parts for the products which are phased out of the production.
4. Please e-mail or fax the RMA Service Request Form when have the defective products.
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RMA SERVICE REQUEST FORM
When requesting RMA service, please fill out this “RMA Service Request Form”. This form needs to be shipped with your returns. Service cannot begin until we have this information.
RMA NO.:
Company: Person to Contact: Phone No: Purchase Date : Fax No. : Applied Date : Return Shipping Address:
Model No. Serial No. Problem Code Remark
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z Issue Code of defect.
01 Second Times R.M.A. 11 Memory Socket Bad 02 No Screen (No Boot) 12 Hang Up Hardware 03 VGA (Display) Fail 13 Hang Up Software 04 CMOS Data Lost 14 PCB Problem 05 FDC Fail 15 CPU Socket Bad 06 HDC Fail 16 LAN Fail 07 Bad Slot 17 Audio Fail 08 BIOS Problem 18 Serial Port Fail 09 Keyboard Controller Fail 19 Parallel Port Fail
10 Cache RAM Problem 20 Others Please specify the following when returning the RMA boards: (1) Hardware Configuration (2) OS or Software (3) Testing Program
___________________ Authorized Signature
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