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.
5.1 Introduction to Touch Screen Controller Board......................................43
5.2 Windows 2000/XP/2003/Vista Universal Driver Installation…………..43
Figures
Figure 1.1: Dimensions ………………………………………………………...6
Figure 1.2: Front View of APC-3081…………………….……………………...7
Figure 1.3: Rear View of APC-3081……………………..……………………...7
Figure 2.1: ASB- S700 Top-view connectors……………..………..…………10
Figure 2.2: ASB- S700 Bottom-view LED and Connectors…………………12
Figure 2.3: PB-703 Baseboard Overview…………………………………….19
Figure 2.4: PB-703 R1.10 Board overview………………………………...…25
Figure 5.1: Bird’s Eye View of Control Board..............................................43
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Chapter 1_____________________________
1.1 Features
8” LED backlight TFT LCD with resolution of 800x600, 400 cd/m2
Rugged Panel PC / Fan-less Design / totally IP-65 rating
Intel ATOM Z510 1.1G, Optional Z530 1.6GHz Processor
1GB DDR2 SDRAM on board
9-32V DC power input
5-wire resistive touch screen
1.2 Specifications
Model No.
Specs
AHM-6086A
System
Processor Intel Atom Z510 1.1GHz processor, optional Z530 1.6GHz
processor
System Chipset Intel US15W
System Memory 1GB DDR2 400 MHz SDRAM on board
Storage 1 x 2 .5" SATA HDD or SSD Space
1 x CF Slot (on board)
External I/O Port 1 x DC power input
1 x Gigabit LAN
1 x COM1 RS-232
2 x USB ports
Expansion Slots None
OS support Windows CE 5.0, Windows XP, XP Embedded
LCD
Display Type
Max. Resolution 800x600
8” TFT -LCD
Max. Color 262K
Luminance (cd/m2) 350, 800nits for option
View Angle H:140° / V:100°
Backlight Lifetime 40,000 hrs
Touch Screen
Type Resistive Touch (Optional)
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Light Transmission 80%
Power Supply
Power Input DC 9~32V
Mechanical
Construction Aluminum die casting housing
IP Rating IP65
Mounting VESA 75x75 Mount
Dimensions (WxHxD) 251 (W) x 201 (H) x 63 (D) mm
Environmental
Operating Temperature
Storage Temper ature
Storage Humidity
Certificate Meet CE/FCC Class A
0~50 ゚ C / -20~70 ゚ C (Wide temperature model)
-20~60 ゚ C / -30~85 ゚ C (Wide temperature model)
10~90% @40 ゚ C non-condensing
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1.3 Dimensions
Figure 1.1: Dimensions of the APC-3081
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1.4 Brief Description of the APC-3081
The APC-3081 is a Fanless IP65 Waterproof Solution rugged Panel PC, powered by Intel Atom Z510
1.1GHz, and supporting 2 x USB Port, 1 x COM port, 1 x LAN Port, 1 x DC power input and totally
IP65 rating connectors. It comes with Wi-Fi, Bluetooth, GPS module for option. It features in the
design of full IP65, Anti-vibration and shock resistant. It's an excellent choice for harsh industrial and
outdoor Automation.
Figure 1.2: Front View of APC-3081
APC-3081 User Manual
Figure 1.3 Rear View of APC-3081
7
1.5 Installation of Brackets
Step 1
There are 4 screws to deal with when fixing the
base estimated location.
Step 2
Get the Side bracket screwed to the model
with the four screws as shown by the arrows in
the picture.
Step 3
Fix the model to the base as shown in the
picture, making sure the two screws is rightly
positioned.
Get the two screws as circled tightened to
secure the base. As shown in the picture
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Step 4
That’s how it should look after it has been
installed.
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Chapter 2 Hardware Installation
2.1 Mainboard
2.1.1 JTAG1
2.1.2 TPM1
Figure 2.1:
ASB- S700 Top- view connectors
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2.1.3 LVDS1
2.1.4 LVDS2
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Figure 2.2: 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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