Aplex | ACS-2701A IP67 | User manual | Aplex ACS-2701A IP67 User manual

ACS-2701A IP67 Waterproof
Box PC
User Manual
Release Date
Revision
Jun. 2011
V1.0
®2011 Aplex Technology, Inc.
All Rights Reserved.
Published in Taiwan
Aplex Technology, Inc.
15F-1, No.186, Jian Yi Road, Zhonghe District, New Taipei City 235, Taiwan
Tel: 886-2-82262881
ACS-2701A User Manual
Fax: 886-2-82262883
E-mail: aplex@aplex.com.tw
URL: www.aplex.com.tw
1
Warning!____________________________________
This equipment generates, uses and can radiate radio frequency energy and if not installed and
used in accordance with the instructions manual, it may cause interference to radio
communications.
It has been tested and found to comply with the limits for a Class A computing device pursuant to
FCC Rules, which are designed to provide reasonable protection against such interference when
operated in a commercial environment. Operation of this equipment in a residential area is likely
to cause interference in which case the user at his own expense will be required to take whatever
measures may be required to correct the interference.
Electric Shock Hazard – Do not operate the machine with its back cover removed. There are
dangerous high voltages inside.
Disclaimer
This information in this document is subject to change without notice. In no event shall
Aplex Technology Inc. be liable for damages of any kind, whether incidental or
consequential, arising from either the use or misuse of information in this document or in
any related materials.
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Table of Contents______________________
Warning!…………………………………………………………………………….……..….2
Disclaimer………………………………………………………………….…………………2
Chapter 1
1.1
1.2
1.3
1.4
Getting Started
Features…....………………….………………………….…………..…...…4
Specifications………………………………………….………….……...…..4
Dimensions…………………………………...……………….…………......6
Brief Description……………………………………….…………………7
Chapter 2
Hardware Installation
2.1 Mainboard.....…...………………………………….…………………………8
2.2 Component Locations...…...………………………………….……………17
Chapter 3
Installations of BIOS
3.1 System Test and Initialization……………………………….……………26
3.2 Award BIOS Setup………………………………………………………….26
Chapter 4
Installations of Drivers
4.1 Intel Chipset Software Installation…………………….….….……………28
4.2 VGA Driver installation..........................................................................32
4.3 Intel PRO LAN Drivers installation.........................................................35
4.4 Realtek Audio Driver installation............................................................38
Figures
Figure 1.1: Dimensions ……………………………………………………...6
Figure 1.2: Front View of ACS-2701A…………….……………………...7
Figure 1.3: ASB- S700 Top- view connectors………………..…………8
Figure 1.4: ASB- S700 Bottom- view LED and Connectors………………10
Figure 1.5: PB-703 Baseboard Overview…………………………………….17
Figure 1.6: PB-703 R1.10 Board overview………………………………...…23
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Chapter 1_____________________________
1.1 Features

Intel Atom Z510 1.1 GHz CPU built-in, upgrade to Z530 1.6 GHz CPU

Intel US15W chipset

1GB DDR2 400 MHz DRAM on board

Support 1 x 2.5” SATA HDD

1 x Mini PCIe slot

Fanless design

IP67 Waterproof

Long life backup battery
1.2 Specifications
System
CPU:
Intel Atom Z510 1.1 GHz CPU built-in, upgrade to Z530 1.6 GHz CPU
Chipset:
Intel US15W chipset
System Memory:
1GB DDR2 400 MHz DRAM on board
Storage:
1 x 2.5” SATA HDD space
1 x CF slot (Internal)
I/O Port: totally IP65 rating connector
1 x RJ45 LAN port
1 x DB15 port for RS-232 and RS-422/485 (Default RS-485)
1 x VGA port
1 x USB port
1 x DC 11~32V
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Mechanical
Construction:
Aluminum Dei casting chassis (Top Cover : heat sink design)
Color:
Black
Dimensions:
223(W) x 62(D) x 147(H) mm
Power Supply:
DC 11~32V Input
Environment
Operating temperature:
-20 ~ 60∘C
Storage temperature:
-20 ~ 70∘C
Relative humidity:
10~90% @ 40∘C non-condensing
Certificate
CE/FCC Class A
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1.3 Dimensions
Figure 1.1: Dimensions of the ACS-2701A
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1.4 Brief Description of the ACS-2701A
The ACS-2701A is a Fanless IP67 Waterproof Solution and ultra-compact standalone embedded
controller, powered by onboard Intel Atom Z510 1.1GHz, and supporting 1 x USB Port, 1 x DB 15
Port for RS-232 and RS-485, 1 x VGA Port , 1 x LAN Port and totally IP67 rating connectors. It is ideal
for Industrial Automation & Outdoor Automation, etc. and running factory operations from small visual
interface and maintenance applications to large control process applications. The ACS-2701A works
very well along with any of our Display Monitor series. It absolutely can provide an easy way to
perform control and field maintenance. It comes with a DC11~32V wide-ranging power input.
Figure 1.2: Front View of ACS-2701A
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Chapter 2
Hardware Installation
2.1 Mainboard
Figure 1.3: ASB- S700 Top- view connectors
2.1.1 JTAG1
2.1.2 TPM1
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2.1.3 LVDS1
2.1.4 LVDS2
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Figure 1.4: ASB- S700 Bottom- view LED and Connectors
2.1.5 LED1~ LED4
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2.1.6 CN1 pins- assignment
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2.1.6.1 NC- Pin
Means non- connected pin, part of the pins of CN1/ CN2 (left or right) are not connected for
reservation
Purpose
2.1.6.2 RSV- Pin
This pin was reserved for specific function and definition maybe different from CN1 or CN3 (top or
down)
2.1.6.3 GND ground pin
2.1.6.4 Power Supply Source Class
There are four pins for power supply sources on CN1:
12V_S5, is defined for 12V standby power, connected Pin 1, 3, 5, 7, 9, 11 of total six pins, can
secure transmission current up to 2.4 Amp.
3P3V_S5, is defined for 3.3V standby power, connected Pin 17, 19, 21, 23 of total four pins, can
secure transmission current up to 1.6 Amp.
3P3V_S0, is defined for 3.3V system power source, connected Pin 44, 46, 48, 50, 52, 54 of total
six pins, can secure transmission current up to 2.4Amp.
5V_S0, is defined for 5V system power source, connected Pin 22, 24, 26, 28, 29, 31, 33, 35 of
total eight pins, can secure transmission current up to 3.2 Amp.
2.1.6.5 IDE bus signal
Pin 37 and the odd pin- number in between #41 ~ # 97 are defined for IDE bus signals.
2.1.6.6 PCIE (PCI-Express) bus- signals
ASB-S700 supports two PCI-E 1x bus. (1x lanes)
Pin 4, 6 are defined for the PCIE1 differential negative as positive input signal, Pin16, 18 are defined
for the PCIE1 differential negative as positive output signal, and Pin10, 12 are defined for the
differential negative as the clockwise output signal.
Pin 58, 60 are defined for the PCIE2 differential positive as negative output signal, Pin88, 90 are
defined for the PCIE2 differential positive as negative input signals, Pin82, 84 are defined for the
differential positive as counterclockwise output signal
2.1.6.7 SDIO bus signal
Pin 68, 70, 72, 74, 78, 94, 96 are for the SDIO bus signals, can support 4 bit SDIO devices.
Pin 32, 34, 64, 66 are reserved and malfunction.
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2.1.6.8 Other Signals
Pin36, US15W's GPIO3 signal (the initial status is defined as the output);
Pin38, US15W's GPIOSUS0 signal (the initial status is defined as the input);
Pin40, PCIE_PME # signal, the external device wake-up signal (#, said active-low);
Pin42, US15W's GPIO8 signal; (can be defined for LAN disable signal)
Pin92, US15W the GPIO6 signal;
Pin98, SCH_SLP3 # signal, control system power supply;
Pin100, SIO_PSON # signal, SIO transferred switching ON/ OFF power supply signal.
2.1.7 CN2 pins- assignment (R1.30)
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2.1.7.1 NC- Pin
Means non- connected pin, part of the pins of CN1/ CN2 (left or right) are not connected for
reservation
purpose.
RSV- Pin
This pin was reserved for specific function and definition maybe different from CN1 or CN3 (top or
down)
GND ground pin
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2.1.7.2 Power Supply Pin
CN2, CN4 defined two kinds of power supply sources.
VCC_RTC, is defined for the Real-Time-Clock power supply, ASB-S700 is equipped with a
lithium battery (CR2032) also the onboard battery is also for the baseboard used.
5V_S5, is defined for 5V Standby power source, connected Pin63, 65, 67, 69, 71, 73 of total of
six pins, can secure transmission current up to 2.4 Amp.
2.1.7.3 LPC Bus Signal
Pin36, 48 and odd-number of pin 19 ~ 29 are defined for LPC Bus signals.
2.1.7.4 USB Bus Signal
Pin77, 79, Pin56, 58, Pin62, 64, Pin68, 70, Pin74, 76, Pin80, 82, are defined set of differential pairs of
negative as positive signals of USB. Pin83, 85, 87 are defined as over-current protection signal for
relevant USB ports.
2.1.7.5 SMB Bus Signal
Pin2, 4 are defined for the SMB Bus signals
2.1.7.6 SDVO Bus Signal
The even-number of Pin8 ~ 52 are defined for SDVO Bus signals
2.1.7.7 HDA Bus Signal
The even-number of Pin84 ~ 94 are defined for High Definition Audio Bus signals of Intel.
2.1.7.8 Clock Signals
Pin7 is defined for 32.768 KHz clock signal, output from CPU board, core-module of mini-Express.
Pin37 is defined for the 33MHz clock signal, output from CPU board, core-module of mini-Express.
Pin41 is defined for the 48MHz clock signal, output from CPU board, core-module of mini-Express.
2.1.7.9 Other Signals
Pin3, A20GATE, is defined for A20 GATE signal as issued by SIO. (Serial Input/ Output)
Pin5, KB_RST #, is defined for Keyboard Reset as issued by SIO. (#, said active-low);
Pin9, FP_RST #, is defined as forced Reset signal from external input;
Pin11, RST_OUT1 #, CPU board, core-module send-out reset signal #1 to the adapted IO baseboard.
Pin13, RST_OUT2 #, CPU board, core-module send-out reset signal #2 to the adapted IO baseboard.
Pin15, IO_THRM #, IO baseboard send the system thermal- overheat signal to CPU board.
Pin31, RSM_RST #, IO baseboard send system reboot ready signal to CPU board.;
Pin33, CPU_CORE_SENSE, CPU core- power supply voltage detection;
Pin42, multiplexed signal can be used for LPC_PME # and GPIO;
Pin45, EN_3V_5V_S0 #, CPU board send the main power system signal to IO baseboard for
operating
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Pin47, EN_3V_5V_S5, CPU board send an auxiliary power supply signal to IO baseboard for
operating.
Pin49, SMC_ONOFF #, IO baseboard send to CPU board to issue a system ON/ OFF signal;
Pin51, 3V_5V_S5_OK, IO baseboard issued confirmed auxiliary power OK signal to CPU board;
Pin53, SMC_LATCH #, CPU board sent disable system signal to the IO baseboard;
Pin57, CPU_THERMDA, Defined the thermal diode positive signal to CPU board;
Pin59, CPU_THERMDC, Defined the thermal diode negative signal to CPU board;
Pin89, SIO_PWROK, IO baseboard send to the power OK signal to CPU board;
Pin91, USB2_CLIENT_EN, USB2_CLIENT signal enable, but also can be defined as GPIO;
Pin93, from the US15W access via CPLD out as defined GPIO;
Pin95, Software Reset signal, active low;
Pin97, AT Power Mode allows signal, active low;
Pin100, SCH_SPKR, CPU board sent to the buzzer signal- sound to IO baseboard
2.1.7.10 LVDS panel backlight signal
The main different functions of Rev: 1.20 version and Rev: 1.30 version is the CN2 added LVDS
backlight
control screen signals.
Pin 96 L_BKLEN, is defined for Backlight start signal;
Pin 98 L_BKLCTRL, is defined for backlight brightness control signal.
2.2 Component Locations
Figure 1.5: PB-703 Baseboard Overview
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2.2.1 PWR1/PWR2
The power input of PCB was co-designed with PWR1or PWR2 for pre-selection。
PWR1 will use CJT brand like A3963WV-2P type connectors,PWR2 may use DINKLE brand like
DT-126RP-02P type connectors。PWR1/PWR2 are different housing design but same pin defined:
2.2.2 USB4/5
2.2.3 JP3
JP3 is designed for auto-on switch jumper with 2xPin-header as pitch 2.0mm type.
JP3 defaulted with closed jumper, system will be on when DC power input.
If JP3is open jumper, system power-on will be controlled by firmware of ASB-S700.
2.2.4 BAT1
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2.2.5 MPCIE1 [ mini- PCI express ]
Mini PCI Express slot for full-/ half- size add-in card,initial designed for full-size mPCIe could be fixed
on A1 and B1,optional designed for half-size mPCIe could be fixed on C1 and D1
2.2.6 JP1
2.2.7 JP4
2.2.8 IDE_CF1
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2.2.9 INVERTER
2.2.10 JP2
2.2.11 SATA
2.2.12 SATA_P1
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2.2.13 JP5
2.2.14 J1 Port
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2.2.15 J2 port
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Figure 1.6: PB-703 R1.10 Board overview
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2.2.16 CN3
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2.2.17 CN4
2.2.18 PB-703 assembly
PCB dimension:115mm × 70mm ×1.6mm
Main assembly holes like A,B,C,D of PB-703 may adapt to A、B、C、Dholes of ASB-S700 (SOM)
and
baseboard (PB-703) could be fixed by 4x 6mm +/- 0.1mm height nuts
Mini-PCI express card could be fixed by A1,B1,C1,D1:default A1,B1 for full-size mPCIe add-on
card
and C1,D1 for half-size mPCIe add-on card.
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Chapter 3
BIOS Setup
3.1 System Test and Initialization
These routines test and initialize board hardware. If the routines encounter an error during the tests,
you will either hear a few short beeps or see an error message on the screen. There are two kinds of
errors: fatal and non-fatal. The system can usually continue the boot up sequence with non-fatal errors.
Non-fatal error messages usually appear on the screen along with the following instructions:
Press <F1> to RESUME
Write down the message and press the F1 key to continue the boot up sequence.
System configuration verification
These routines check the current system configuration against the values stored in the CMOS
memory. If they do not match, the program outputs an error message. You will then need to run the
BIOS setup program to set the configuration information in memory.
There are three situations in which you will need to change the CMOS settings:
1. You are starting your system for the first time
2. You have changed the hardware attached to your system
3. The CMOS memory has lost power and the configuration information has been erased.
3.2 Award BIOS Setup
Awards 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 RAM so that it retains the
Setup information when the power is turned off.
Entering Setup
Power on the computer and press <Del> immediately. This will allow you to enter Setup.
Standard CMOS Features
Use this menu for basic system configuration. (Date, time, IDE, etc.)
Advanced BIOS Features
Use this menu to set the advanced features available on your system.
Advanced Chipset Features
Use this menu to change the values in the chipset registers and optimize your system performance.
Integrated Peripherals
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Use this menu to specify your settings for integrated peripherals. (Primary slave, secondary slave,
keyboard, mouse etc.)
Power Management Setup
Use this menu to specify your settings for power management. (HDD power down, power on by ring,
KB wake up, etc.)
PnP/PCI Configurations
This entry appears if your system supports PnP/PCI.
PC Health Status
This menu allows you to set the shutdown temperature for your system.
Frequency/Voltage Control
Use this menu to specify your settings for auto detect DIMM/PCI clock and spread spectrum.
Load Fail-Safe Defaults
Use this menu to load the BIOS default values for the minimal/stable performance for your system to
operate.
Load Optimized Defaults
Use this menu to load the BIOS default values that are factory settings for optimal performance
system operations. While AWARD has designated the custom BIOS to maximize performance, the
factory has the right to change these defaults to meet their needs.
Set Supervisor/User Password
Use this menu to set Supervisor/User Passwords.
Save and Exit Setup
Save CMOS value changes to CMOS and exit setup.
Exit Without Saving
Abandon all CMOS value changes and exit setup.
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Chapter 4
Installation of Drivers
This chapter describes the installation procedures for software and drivers under the windows XP. The
software and drivers are included with the motherboard. The contents include Intel chipset driver,
VGA driver, LAN driver, Audio driver
Installation instructions are given below.
Important Note:
After installing your Windows operating system (Windows 98SE/ME/2000/XP),
you must install first the Intel Chipset Software Installation Utility before
proceeding with the installation of drivers.
4.1 Intel Chipset Software Installation
The Intel Chipset Drivers should be installed first before the software drivers to enable Plug & Play
INF support for Intel chipset components. Follow the instructions below to complete the installation
Under Windows XP
1. Insert the Aplex product CD that comes with the board.
2. Click “ Intel® Chipset software installation Utility “
3.
When the Welcome screen appears, please click “ Next “ to Continue.
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4. Click Yes to accept the software license agreement and proceed with the installation process.
5.
On Readme Information screen, click Next to continue the installation.
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6. The Setup process is now complete. Click Finish to restart the computer and for changes to take
effect.
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4.2 VGA Driver installation
To install the VGA Driver follow the steps below to proceed with the installation.
Step 1. Insert the Aplex product CD That comes with the board.
Step 2. Click “ Intel® VGA Chipset “
Step 3. When the Welcome screen appears , click “Next” to continue.
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Step 4. Click YES to agree with the license agreement and continue the installation.
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Step 5. The Setup process is now complete. Click Finish to restart the computer as promoted and for
changes to take effect. When the computer has restarted, the system will be able to find some devices.
Restart your computer when prompted.
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4.3 Intel PRO LAN Drivers installation
Follow the steps below to complete the installation of the Intel PRO LAN drivers.
Step 1. Insert the Aplex product CD That comes with the board.
Step 2. Click “Intel® Ethernet Driver“
Step 3. When the Welcome screen appears , click “Next” to continue.
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Step 4. Click “Finish” to restart the computer and for changes to take effect
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4.4 Realtek Audio Driver installation
To install the Realtek codec Driver follow the steps below to proceed with the installation.
Step 1. Insert the Aplex product CD That comes with the board.
Step 2. Click “Realtek ‘ Codec Sound system “
Step 3. When the Welcome screen appears, click “Next” to continue.
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Step 4. Click “Finish” to restart the computer and for changes to take effect.
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