Transcript
COM Express™
PORTWELL PCOM-B633
COM Express™ PCOM-B633 User's Guide Revision 0.2
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
1
COM Express™
PORTWELL PCOM-B633
Revision History R0.1
Preliminary
R0.2
Add Memory resource contents and Troubleshooting
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COM Express™
PORTWELL PCOM-B633
Contents Preface ........................................................................................................................................................................................................................ 6 1 2
3 4
Introduction .......................................................................................................................................................................................................... 9 Specifications..................................................................................................................................................................................................... 10 2.1 Supported Operating Systems ............................................................................................................................................................... 12 2.2 Mechanical Dimensions ........................................................................................................................................................................... 13 2.3 Electrical Characteristics ......................................................................................................................................................................... 14 2.4 Environmental Specifications ................................................................................................................................................................. 14 Block Diagram ................................................................................................................................................................................................... 15 Switch / Connector & Interface Selection Guide .......................................................................................................................................... 16 4.1 J3 switch .................................................................................................................................................................................................... 16 4.2 J15 Fan connector .................................................................................................................................................................................... 17 4.2 LVDS/eDP Option (Default LVDS) ......................................................................................................................................................... 18 4.3 VGA/DP2 Option (Default VGA)............................................................................................................................................................. 21 4.4 GPIO/SDIO Option (Default GPIO) ....................................................................................................................................................... 23 4.5 PCIe for LAN/PCIe or Carrier Option (Default PCIe for LAN) ........................................................................................................... 25
5 6
Heat sink / Cooler.............................................................................................................................................................................................. 27 Signal Descriptions and Pin out Tables ......................................................................................................................................................... 28
7 8
Row connector A ..................................................................................................................................................................................... 34 Row connector B ..................................................................................................................................................................................... 43 Row connector C ..................................................................................................................................................................................... 52 Row connector D ..................................................................................................................................................................................... 59 System Resources ............................................................................................................................................................................................ 66 BIOS Setup Items ............................................................................................................................................................................................. 73 8.1 Entering Setup -- Launch System Setup .............................................................................................................................................. 73 8.2 Main ................................................................................................................................................................................................... 75
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8.3 Configuration .................................................................................................................................................................................... 77 8.4 Security ........................................................................................................................................................................................... 121 8.5 Boot ........................................................................................................................................................................................................ 123 8.6 Save & Exit ................................................................................................................................................................................................... 126 9 Troubleshooting .................................................................................................................................................................................................. 128 9.1 BIOS Setting .................................................................................................................................................................................. 128 9.2 FAQ.................................................................................................................................................................................................. 129 10 PORTWELL Software Service .................................................................................................................................................................... 132 11 Industry Specifications ................................................................................................................................................................................. 133
List of Tables Table 1-1 Pin-out Type table(PICMG COM.0 Rev2.1) ................................................9 Table 2-1 PCOM-B633 SPEC .......................................................................................11 Table 2-2 Electrical Characteristics ..............................................................................14 Table 4-1 Switch J3 ..........................................................................................................16 Table 4-2 Fan connector J15 ...........................................................................................17 Table 4-3 LVDS/eDP Option (Default LVDS) .............................................................18 Table 4-4 VGA/DP2 Option (Default VGA) .................................................................21 Table 4-5 GPIO/SDIO Option (Default GPIO) ............................................................23 Table 4-6 PCIe for LAN/PCIe or Carrier Option (Default PCIe for LAN) ................25 Table 6-1 Pin out description.........................................................................................28 Table 6-2 A-B / C-D Row connectors pin out .............................................................33 Table 6-3 Row connector A detail pin out ...................................................................42 Table 6-3 Row connector B detail pin out ...................................................................51 Table 6-3 Row connector C detail pin out ...................................................................58 Copyright © PORTWELL 2015
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Table 6-3 Row connector D detail pin out ...................................................................65 Table 7-1 Memory Map ..................................................................................................66 Table 7-2 I/O Address Assignment ..............................................................................67 Table 7-3 Interrupt Request (IRQ) Lines (APIC Mode) .............................................69 Table 7-4 PCI Configuration Space Map.....................................................................70 Table 7-5 PCI Interrupt Routing Map A .......................................................................71 Table 7-6 PCI Interrupt Routing Map B .......................................................................72
List of Figures Figure 2-1 Mechanical Dimensions .....................................................................13 Figure 3-1 Block Diagram....................................................................................15 Figure 4-1 Switch J3 .........................................................................................16 Figure 4-2 Fan connector J15 .............................................................................17 Figure 4-3 LVDS/eDP Option (Default LVDS) .....................................................19 Figure 4-4 LVDS/eDP Option (Default LVDS) .....................................................20 Figure 4-5 VGA/DP2 Option (Default VGA).........................................................22 Figure 4-6 GPIO/SDIO Option (Default GPIO) ....................................................24 Figure 4-7 PCIe for LAN/PCIe or Carrier Option (Default PCIe for LAN).............26 Figure 5-1 Heat sink / cooler mechanical dimensions .........................................27
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Preface This user‟s guide provides information about the components, features, connectors and BIOS Setup menus available on the PCOM-B633. This document should be referred to when designing a COM Express™ application. The other reference documents that should be used include the following: COM Express™ Design Guide COM Express™ Specification Please contact PORTWELL Sales Representative for above documents.
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Disclaimer The information contained within this user‟s guide, including but not limited to any product specification, is subject to change without notice. PORTWELL provides no warranty with regard to this user‟s guide or any other information contained herein and hereby expressly disclaims any implied warranties of merchantability or fitness for any particular purpose with regard to any of the foregoing. PORTWELL assumes no liability for any damages incurred directly or indirectly from any technical or typographical errors or omissions contained herein or for discrepancies between the product and the user‟s guide. In no event shall PORTWELL be liable for any incidental, consequential, special, or exemplary damages, whether based on tort, contract or otherwise, arising out of or in connection with this user‟s guide or any other information contained herein or the use thereof. Trademarks Product names, logos, brands, and other trademarks featured or referred to within this user‟s guide, or the PORTWELL website, are the property of their respective trademark holders. These trademark holders are not affiliated with PORTWELL, our products, or our website. Warranty PORTWELL makes no representation, warranty or guaranty, express or implied regarding the products except its standard form of limited warranty (“Limited Warranty”). PORTWELL may in its sole discretion modify its Limited Warranty at any time and from time to time. Beginning on the date of shipment to its direct customer and continuing for the published warranty period, PORTWELL represents that the products are new and warrants that each product failing to function properly under normal use, due to a defect in materials or workmanship or due to non conformance to the agreed upon specifications, will be repaired or exchanged, at PORTWELL‟s option and expense.
Certification PORTWELL is certified to DIN EN ISO 9001:2000 standard.
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Technical Support PORTWELL technicians and engineers are committed to providing the best possible technical support for our customers so that our products can be easily used and implemented. We request that you first visit our website at http://www.PORTWELL.com.tw/support/ for the latest documentation, utilities and drivers, which have been made available to assist you. If you still require assistance after visiting our website then contact our technical support department by email at
[email protected] for further assistance. Thank you!
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1 Introduction PCOM-B633 adopts Type 6 pin out definition and Compact 95mmX95mm size and comply with PICMG COM Express Rev2.1 Specification. PCOM-B633 is designed with Intel(R) 5th Generation Intel® Core™ i3-5010U , Intel® Core™i5-5350U, Intel® Core™ i7-5650U, Processor code name Broadwell U-series. PCOM-B633 is designed with low power platform to TDP 15W only but still owns Intel(R) Core processor performance. COM Express™ , an open industry standard defined specifically for COMs (computer on modules) by PICMG. COM Express™ provides the possibility and ability to make a smooth transition from legacy interfaces to the newest technologies for many application such as Automation, Networking, Military etc. COM Express™ modules are available in following form factors: Mini 84mm x 55mm Compact 95mm x 95mm Basic 125mm x 95mm
Table 1-1 Pin-out Type table(PICMG COM.0 Rev2.1)
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2 Specifications Product
PCOM-B633
Form Factor
COM Express™ standard pin out Type 6 Rev. 2.1 (Compact size 95 x 95mm / 3.74” x 3.74”).
Processor
Intel® Core™ i3-5010U , i5-5350U, i7-5650U- Intel® 5th Generation Core™ Processors ULT 2 cores / 2.1GHz Base Frequency / 3MB Cache / 15W TDP / Tj 105 ゚ C
Intel® Turbo Boost Technology, Intel® Hyper-Threading Technology (Intel® HT Technology), Intel® Advanced Vector Extensions 2.0 (Intel® AVX2), Intel® Advanced Encryption Standard New Instructions (Intel® AES-NI), Integrated dual channel memory controller, up to 25.6 GByte/sec. memory bandwidth, Integrated Intel® HD Graphics 6000 series, Intel® Clear Video HD Technology Intel® Virtualization Technology (Intel® VT), Intel® Trusted Execution Technology (Intel® TXT), Intel® PCLMULQDQ Instruction, Intel® Extensions (Intel® TSX)
Streaming SIMD Extensions 4.2 (Intel® SSE4.2), Secure Key, Intel® Transactional Synchronization
BIOS
AMI Aptio BIOS
Memory
SODIMM DDR3L Up to 8GB 1600MHz
Graphics Options
Next Generation Intel® HD Graphics with OpenCL 2.0, OpenGL 4.0 and DirectX11.1 support; up to three independent displays. High performance hardware MPEG-2 decoding, WMV9 (VC-1) and H.264 (AVC) support Blu-ray support @ 40 MBit/s Intel® HD Graphics 5500 Processor (300MHz~900MHz) VGA (DP to VGA) up to 1920x1200@60Hz LVDS (eDP to LVDS) up to 2 x 24bit
DP up to 3840x2160@60Hz
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Ethernet
Intel® I218-LM Gigabit LAN support AMT 10
Audio
Intel® High Definition Audio
Security
Atmel
I/O
3 x PCI Express x1 up to Gen2 (5.0 GT/s) 4x PCI Express x1 up to Gen2 (5.0 GT/s) (Optional) 1x PCI Express x4 up to Gen2 (5.0 GT/s)
8 x USB2.0 (480 Mbps) 2 x USB3.0 (5 Gbps) 4 x SATA3.0 (6Gbps) GPIO / I2C / UART / SMBus
Hardware Monitors
ITE8528 Embedded Controller, Voltage, Fan and Temperature
Power Management
ACPI 4.0 Operating Temperature 0 ゚ C ~ +60 ゚ C Storage Temperature -20 ゚ C ~ +80 ゚ C
Relative Humidity 5%~95%
Environment
Table 2-1 PCOM-B633 SPEC
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2.1 Supported Operating Systems The PCOM-B633 supports the following operating systems.
Windows* 8.1u (64 bit) * Windows* Embedded Industry 8.1 (64 bit) Windows* 7 (32/64 bit) Windows* 7 (POS ready 7 & WES7) (32/64 bit) Windows 10* (64 bit) Fedora* (19 or later) Distribution (64 bit) Ubuntu*, SuSe Enterprise*, Red hat* Enterprise (64 bit) ** Yocto* Tool-based Embedded Linux Distribution (64 bit) VxWorks* (RTOS) (64 bit)
* Microsoft* Windows* 7 does not natively support the LPSS bus on 5th Gen Intel® Core™ Processors (U-Series). ** Commercial Linux* Support provided by Wind River* Systems.
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2.2 Mechanical Dimensions
Figure 2-1 Mechanical Dimensions
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2.3 Electrical Characteristics
Table 2-2 Electrical Characteristics
Supply Voltage Battery Power 2.8V~3.3V D
2.4 Environmental Specifications Storage Temperature : -20~80°C Operation Temperature : 0~60°C Storage Humidity : 5~90% Operation Humidity: 10~90%
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3 Block Diagram
Figure 3-1 Block Diagram Copyright © PORTWELL 2015
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4 Switch / Connector & Interface Selection Guide 4.1 J3 switch
Figure 4-1 Switch J3
Switch J3
Function
1 (Default)
ATX_DETECT Disable (ATX Mode)
2 (Default)
BIOS_RECOVERY OFF
3
BIOS_RECOVERY ON
4
ATX_DETECT Enable (AT Mode)
Table 4-1 Switch J3 Copyright © PORTWELL 2015
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4.2 J15 Fan connector
Figure 4-2 Fan connector J15 Pin 1
GND
Pin 2
FAN1_PWR Vin 12V
Pin 3
CPU_FANIN
Table 4-2 Fan connector J15
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4.2 LVDS/eDP Option (Default LVDS)
Co-Lay Resistor
Part Reference
LVDS
eDP
RN2
Stuffed
NC
RN4
NC
Stuffed
RN3
Stuffed
NC
RN5
NC
Stuffed
RN6
Stuffed
NC
RN7
NC
Stuffed
RN8
Stuffed
NC
RN9
NC
Stuffed
RN10
Stuffed
NC
RN11
NC
Stuffed
RN12
Stuffed
NC
RN13
NC
Stuffed
RN14
Stuffed
NC
RN15
NC
Stuffed
RN16
Stuffed
NC
RN17
NC
Stuffed
R220
Stuffed
NC
R1002
NC
Stuffed
R558
Stuffed
NC
R1001
NC
Stuffed
Table 4-3 LVDS/eDP Option (Default LVDS) Copyright © PORTWELL 2015
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Figure 4-3 LVDS/eDP Option (Default LVDS)
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Figure 4-4 LVDS/eDP Option (Default LVDS)
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4.3 VGA/DP2 Option (Default VGA)
Co-Lay Resistor
Part Reference
VGA
DP2
R199
NC
Stuffed
R200
Stuffed
NC
R212
NC
Stuffed
R213
Stuffed
NC
Table 4-4 VGA/DP2 Option (Default VGA)
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Figure 4-5 VGA/DP2 Option (Default VGA)
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4.4 GPIO/SDIO Option (Default GPIO)
Co-Lay Resistor
Single Resistor
Part Reference
GPIO
SDIO
R1010
Stuffed
NC
R1011
NC
Stuffed
R1012
Stuffed
NC
R1013
NC
Stuffed
R1014
Stuffed
NC
R1015
NC
Stuffed
R1016
Stuffed
NC
R1017
NC
Stuffed
R1018
Stuffed
NC
R1019
NC
Stuffed
R1020
Stuffed
NC
R1021
NC
Stuffed
R1022
Stuffed
NC
R1023
NC
Stuffed
R1024
Stuffed
NC
Table 4-5 GPIO/SDIO Option (Default GPIO)
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Figure 4-6 GPIO/SDIO Option (Default GPIO)
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4.5 PCIe for LAN/PCIe or Carrier Option (Default PCIe for LAN)
Co-Lay Resistor
Part Reference
PCIe for LAN
PCIe for Carrier
RN18
Stuffed
NC
RN20
NC
Stuffed
RN19
Stuffed
NC
RN21
NC
Stuffed
Table 4-6 PCIe for LAN/PCIe or Carrier Option (Default PCIe for LAN)
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Figure 4-7 PCIe for LAN/PCIe or Carrier Option (Default PCIe for LAN)
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5 Heat sink / Cooler Heat sink Dimensions
Figure 5-1 Heat sink / cooler mechanical dimensions
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6 Signal Descriptions and Pin out Tables Signal Tables Terminology Descriptions I
Input to the Module
O
Output from the Module
I/O
Bi-direction input / output signal
OD
Open Drain output
CMOS
Logic input or output. Input thresholds and output levels shall be 80% of supply rail for high side and 20% of the relevant supply rail for low side.
PCIE
PCI Express compatible differential signal. Please refer to the PCI Express Specification for details. PCIE transmit pins (Module outputs) shall be AC coupled on the Module. PCIE receive pins (Module inputs) shall be DC coupled on the COM Express® Module and shall be assumed to be AC coupled off Module, close to the signal source. If the target PCI Express device resides on the Carrier Board, the Module PCIE receive lanes (target PCIE device transmit lanes)
shall be AC coupled near the device on the Carrier Board. If the Carrier Board
implements a PCIE slot, then these signals shall be AC coupled on the add-in card, not on the Carrier Board.
SATA
SATA compatible differential signal. Please refer to the SATA Specification for details. All COM Express® SATA signals shall be AC coupled on the Module.
LVDS
Low Voltage Differential Signal – 330mV nominal; 450mV maximum differential signal.
Analog
Inputs and Outputs used for LAN, and VGA are analog signals.
PU
Pull-up resistor on PCOM-B633
PD
Pull-down resistor on PCOM-B633 Table 6-1 Pin out description
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PCOM-B633VG
PCOM-B633VG
PCOM-B633VG
PCOM-B633VG
A1
GND (FIXED)
B1
GND (FIXED)
C1
GND (FIXED)
D1
GND (FIXED)
A2
GBE0_MDI3-
B2
GBE0_ACT#
C2
GND
D2
GND
A3
GBE0_MDI3+
B3
LPC_FRAME#
C3
USB_SSRX0-
D3
USB_SSTX0-
A4
GBE0_LINK100#
B4
LPC_AD0
C4
USB_SSRX0+
D4
USB_SSTX0+
A5
GBE0_LINK1000#
B5
LPC_AD1
C5
GND
D5
GND
A6
GBE0_MDI2-
B6
LPC_AD2
C6
USB_SSRX1-
D6
USB_SSTX1-
A7
GBE0_MDI2+
B7
LPC_AD3
C7
USB_SSRX1+
D7
USB_SSTX1+
A8
GBE0_LINK#
B8
LPC_DRQ0#
C8
GND
D8
GND
A9
GBE0_MDI1-
B9
LPC_DRQ1#
C9
USB_SSRX2-(NC)
D9
USB_SSTX2-(NC)
A10
GBE0_MDI1+
B10
LPC_PCLK
C10
USB_SSRX2+(NC)
D10
USB_SSTX2+(NC)
A11
GND (FIXED)
B11
GND (FIXED)
C11
GND (FIXED)
D11
GND (FIXED)
A12
GBE0_MDI0-
B12
PWRBTN#
C12
USB_SSRX3-(NC)
D12
USB_SSTX3-(NC)
A13
GBE0_MDI0+
B13
SMB_CLK
C13
USB_SSRX3+(NC)
D13
USB_SSTX3+(NC)
A14
GBE0_CTREF
B14
SMB_DAT
C14
GND
D14
GND
A15
SUS_S3#
B15
SMB_ALERT#
C15
DP1_LANE6(NC)
D15
DP1_CTRLCLK_AUX
A16
SATA0_TX+
B16
SATA1_TX+
C16
DP1_LANE6#(NC)
D16
DP1_CTRLDATA_AUX#
A17
SATA0_TX-
B17
SATA1_TX-
C17
RSVD(NC)
D17
RSVD(NC)
A18
SUS_S4#
B18
SUS_STAT#
C18
RSVD(NC)
D18
RSVD(NC)
A19
SATA0_RX+
B19
SATA1_RX+
C19
PCIE_RX6+(NC)
D19
PCIE_TX6+(NC)
A20
SATA0_RX-
B20
SATA1_RX-
C20
PCIE_RX6-(NC)
D20
PCIE_TX6-(NC)
A21
GND (FIXED)
B21
GND (FIXED)
C21
GND (FIXED)
D21
GND (FIXED)
A22
SATA2_TX+
B22
SATA3_TX+
C22
PCIE_RX7+(NC)
D22
PCIE_TX7+(NC)
A23
SATA2_TX-
B23
SATA3_TX-
C23
PCIE_RX7-(NC)
D23
PCIE_TX7-(NC)
A24
SUS_S5#
B24
PWROK
C24
DP1_HDP
D24
RSVD(NC)
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A25
SATA2_RX+
B25
SATA3_RX+
C25
DP1_LANE4(NC)
D25
RSVD(NC)
A26
SATA2_RX-
B26
SATA3_RX-
C26
DP1_LANE4#(NC)
D26
DP1_LANE0
A27
BATLOW#
B27
WDT
C27
RSVD(NC)
D27
DP1_LANE0#
A28
ATA_ACT#
B28
HDA_SDIN2
C28
RSVD(NC)
D28
RSVD(NC)
A29
HDA_SY(NC)
B29
HDA_SDIN1
C29
DP1_LANE5(NC)
D29
DP1_LANE1
A30
HDA_RST#
B30
HDA_SDIN0
C30
DP1_LANE5#(NC)
D30
DP1_LANE1#
A31
GND (FIXED)
B31
GND (FIXED)
C31
GND (FIXED)
D31
GND (FIXED)
A32
HDA_BITCLK
B32
SPKR
C32
DP2_CTRLCLK_AUX
D32
DP1_LANE2
A33
HDA_SDOUT
B33
I2C_CLK
C33
DP2_CTRLDATA_AUX#
D33
DP1_LANE2#
A34
BIOS_DIS0#
B34
I2C_DAT
C34
DP2_AUX_SEL
D34
DP1_AUX_SEL
A35
THRMTRIP#
B35
THRM#
C35
RSVD(NC)
D35
RSVD(NC)
A36
USB6-
B36
USB7-
C36
DP3_CTRLCLK_AUX(NC)
D36
DP1_LANE3
A37
USB6+
B37
USB7+
C37
DP3_CTRLDATA_AUX#(NC) D37
DP1_LANE3#
A38
USB_6_7_OC#
B38
USB_4_5_OC#
C38
DP3_AUX_SEL(NC)
D38
RSVD(NC)
A39
USB4-
B39
USB5-
C39
DP3_LANE0(NC)
D39
DP2_LANE0
A40
USB4+
B40
USB5+
C40
DP3_LANE0#(NC)
D40
DP2_LANE0#
A41
GND (FIXED)
B41
GND (FIXED)
C41
GND (FIXED)
D41
GND (FIXED)
A42
USB2-
B42
USB3-
C42
DP3_LANE1(NC)
D42
DP2_LANE1
A43
USB2+
B43
USB3+
C43
DP3_LANE1#(NC)
D43
DP2_LANE1#
A44
USB_2_3_OC#
B44
USB_0_1_OC#
C44
DP3_HPD(NC)
D44
DP2_HPD
A45
USB0-
B45
USB1-
C45
RSVD(NC)
D45
RSVD(NC)
A46
USB0+
B46
USB1+
C46
DP3_LANE2(NC)
D46
DP2_LANE2
A47
VCC_RTC
B47
EXCD1_PERST#
C47
DP3_LANE2#(NC)
D47
DP2_LANE2#
A48
EXCD0_PERST#
B48
EXCD1_CPPE#
C48
RSVD(NC)
D48
(NC)
A49
EXCD0_CPPE#
B49
SYS_RST#
C49
DP3_LANE3(NC)
D49
DP2_LANE3
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A50
LPC_SERIRQ
B50
CB_RESET#
C50
DP3_LANE3#(NC)
D50
DP2_LANE3#
A51
GND (FIXED)
B51
GND (FIXED)
C51
GND (FIXED)
D51
GND (FIXED)
A52
PCIE_TX5+(NC)
B52
PCIE_RX5+(NC)
C52
PEG_RX0+
D52
PEG_TX0+
A53
PCIE_TX5-(NC)
B53
PCIE_RX5-(NC)
C53
PEG_RX0-
D53
PEG_TX0-
A54
GPI0
B54
GPO1
C54
TYPE0#(NC)
D54
PEG_LANE_RV#(NC)
A55
PCIE_TX4+(NC)
B55
PCIE_RX4+(NC)
C55
PEG_RX1+
D55
PEG_TX1+
A56
PCIE_TX4-(NC)
B56
PCIE_RX4-(NC)
C56
PEG_RX1-
D56
PEG_TX1-
A57
GND
B57
GPO2
C57
TYPE1#(NC)
D57
TYPE2#
A58
PCIE_TX3+
B58
PCIE_RX3+
C58
PEG_RX2+
D58
PEG_TX2+
A59
PCIE_TX3-
B59
PCIE_RX3-
C59
PEG_RX2-
D59
PEG_TX2-
A60
GND (FIXED)
B60
GND (FIXED)
C60
GND (FIXED)
D60
GND (FIXED)
A61
PCIE_TX2+
B61
PCIE_RX2+
C61
PEG_RX3+
D61
PEG_TX3+
A62
PCIE_TX2-
B62
PCIE_RX2-
C62
PEG_RX3-
D62
PEG_TX3-
A63
GPI1
B63
GPO3
C63
RSVD(NC)
D63
RSVD(NC)
A64
PCIE_TX1+
B64
PCIE_RX1+
C64
RSVD(NC)
D64
RSVD(NC)
A65
PCIE_TX1-
B65
PCIE_RX1-
C65
PEG_RX4+(NC)
D65
PEG_TX4+(NC)
A66
GND
B66
WAKE0#
C66
PEG_RX4-(NC)
D66
PEG_TX4-(NC)
A67
GPI2
B67
WAKE1#
C67
RSVD(NC)
D67
GND
A68
PCIE_TX0+
B68
PCIE_RX0+
C68
PEG_RX5+(NC)
D68
PEG_TX5+(NC)
A69
PCIE_TX0-
B69
PCIE_RX0-
C69
PEG_RX5-(NC)
D69
PEG_TX5-(NC)
A70
GND (FIXED)
B70
GND (FIXED)
C70
GND (FIXED)
D70
GND (FIXED)
A71
LVDS_A0+
B71
LVDS_B0+
C71
PEG_RX6+(NC)
D71
PEG_TX6+(NC)
A72
LVDS_A0-
B72
LVDS_B0-
C72
PEG_RX6-(NC)
D72
PEG_TX6-(NC)
A73
LVDS_A1+
B73
LVDS_B1+
C73
GND
D73
GND
A74
LVDS_A1-
B74
LVDS_B1-
C74
PEG_RX7+(NC)
D74
PEG_TX7+(NC)
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PCOM-B633 User's Guide
31
COM Express™
PORTWELL PCOM-B633
A75
LVDS_A2+
B75
LVDS_B2+
C75
PEG_RX7-(NC)
D75
PEG_TX7-(NC)
A76
LVDS_A2-
B76
LVDS_B2-
C76
GND
D76
GND
A77
LVDS_VDDEN
B77
LVDS_B3+
C77
RSVD(NC)
D77
RSVD(NC)
A78
LVDS_A3+
B78
LVDS_B3-
C78
PEG_RX8+(NC)
D78
PEG_TX8+(NC)
A79
LVDS_A3-
B79
LVDS_BKLT_EN
C79
PEG_RX8-(NC)
D79
PEG_TX8-(NC)
A80
GND (FIXED)
B80
GND (FIXED)
C80
GND (FIXED)
D80
GND (FIXED)
A81
LVDS_CLKA+
B81
LVDS_CLKB+
C81
PEG_RX9+(NC)
D81
PEG_TX9+(NC)
A82
LVDS_CLKA-
B82
LVDS_CLKB-
C82
PEG_RX9-(NC)
D82
PEG_TX9-(NC)
A83
LVDS_I2CCK
B83
LVDS_BKLT_CTRL
C83
RSVD(NC)
D83
RSVD(NC)
A84
LVDS_I2CDAT
B84
VCC_5V_SBY
C84
GND
D84
GND
A85
GPI3
B85
VCC_5V_SBY
C85
PEG_RX10+(NC)
D85
PEG_TX10+(NC)
A86
RSVD(NC)
B86
VCC_5V_SBY
C86
PEG_RX10-(NC)
D86
PEG_TX10-(NC)
A87
eDP_HPD
B87
VCC_5V_SBY
C87
GND
D87
GND
A88
PCIE0_CK_REF+
B88
BIOS_DIS1#
C88
PEG_RX11+(NC)
D88
PEG_TX11+(NC)
A89
PCIE0_CK_REF-
B89
VGA_RED
C89
PEG_RX11-(NC)
D89
PEG_TX11-(NC)
A90
GND (FIXED)
B90
GND (FIXED)
C90
GND (FIXED)
D90
GND (FIXED)
A91
SPI_POWER
B91
VGA_GRN
C91
PEG_RX12+(NC)
D91
PEG_TX12+(NC)
A92
SPI_MISO
B92
VGA_BLU
C92
PEG_RX12-(NC)
D92
PEG_TX12-(NC)
A93
GPO0
B93
VGA_HSY(NC)
C93
GND
D93
GND
A94
SPI_CLK
B94
VGA_VSY(NC)
C94
PEG_RX13+(NC)
D94
PEG_TX13+(NC)
A95
SPI_MOSI
B95
VGA_DDC_CLK
C95
PEG_RX13-(NC)
D95
PEG_TX13-(NC)
A96
TPM_PP(NC)
B96
VGA_DDC_DAT
C96
GND
D96
GND
A97
TYPE10#(NC)
B97
SPI_CS#
C97
RSVD(NC)
D97
RSVD(NC)
A98
SER0_TX
B98
RSVD(NC)
C98
PEG_RX14+(NC)
D98
PEG_TX14+(NC)
A99
SER0_RX
B99
RSVD(NC)
C99
PEG_RX14-(NC)
D99
PEG_TX14-(NC)
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PCOM-B633 User's Guide
32
COM Express™
PORTWELL PCOM-B633
A100 GND (FIXED)
B100 GND (FIXED)
C100 GND (FIXED)
D100 GND (FIXED)
A101 SER1_TX
B101 FAN_PWNOUT
C101 PEG_RX15+(NC)
D101 PEG_TX15+(NC)
A102 SER1_RX
B102 FAN_TACHIN
C102 PEG_RX15-(NC)
D102 PEG_TX15-(NC)
A103 LID#
B103 SLEEP#
C103 GND
D103 GND
A104 VCC_12V
B104 VCC_12V
C104 VCC_12V
D104 VCC_12V
A105 VCC_12V
B105 VCC_12V
C105 VCC_12V
D105 VCC_12V
A106 VCC_12V
B106 VCC_12V
C106 VCC_12V
D106 VCC_12V
A107 VCC_12V
B107 VCC_12V
C107 VCC_12V
D107 VCC_12V
A108 VCC_12V
B108 VCC_12V
C108 VCC_12V
D108 VCC_12V
A109 VCC_12V
B109 VCC_12V
C109 VCC_12V
D109 VCC_12V
A110 GND (FIXED)
B110 GND (FIXED)
C110 GND (FIXED)
D110 GND (FIXED)
Table 6-2 A-B / C-D Row connectors pin out
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
33
COM Express™
PORTWELL PCOM-B633
Row connector A Row A
Pin
Description
I/O & Power
PU/PD
Power
GND(FIXED)
A1
GND
GND
N/A
GND
GBE0_MDI3-
A2
Gigabit Ethernet Controller 0: Media Dependent Interface Differential
I/O Analog
N/A
3.3V max
Pairs 0,1,2,3. The MDI can operate in 1000, 100 and 10 Mbit / sec modes. Some pairs are unused in some modes, per the following: 1000BASE-T
100BASE-TX
10BASE-T
MDI[0]+/-
B1_DA+/-
TX+/-
TX+/-
MDI[1]+/-
B1_DB+/-
RX+/-
RX+/-
MDI[2]+/-
B1_DC+/-
-
-
MDI[3]+/-
B1_DD+/-
-
-
Note: Gigabit Ethernet port 1 does not have a CTREF input from the Carrier Board. GBE0_MDI3+
A3
Refer to Pin A2
I/O Analog
N/A
3.3V max
GBE0_LINK100#
A4
Gigabit Ethernet Controller 0 100 Mbit / sec link indicator, active low.
OD CMOS
N/A
3.3V
GBE0_LINK1000#
A5
Gigabit Ethernet Controller 0 1000 Mbit / sec link indicator, active low.
OD CMOS
N/A
3.3V
GBE0_MDI2-
A6
Refer to Pin A2
I/O Analog
N/A
3.3V max
GBE0_MDI2+
A7
Refer to Pin A2
I/O Analog
N/A
3.3V max
GBE0_LINK#
A8
Gigabit Ethernet Controller 0 link indicator, active low.
OD CMOS
N/A
3.3V
GBE0_MDI1-
A9
Refer to Pin A2
I/O Analog
N/A
3.3V max
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PCOM-B633 User's Guide
34
COM Express™
PORTWELL PCOM-B633
GBE0_MDI1+
A10
Refer to Pin A2
I/O Analog
N/A
3.3V max
GND(FIXED)
A11
GND
GND
N/A
GND
GBE0_MDI0-
A12
Refer to Pin A2
I/O Analog
N/A
3.3V max
GBE0_MDI0+
A13
Refer to Pin A2
I/O Analog
N/A
3.3V max
GBE0_CTREF
A14
Reference voltage for Carrier Board Ethernet channel 0 magnetics
REF
N/A
GND min
center tap. The reference voltage is determined by the requirements of
3.3V max
the Module PHY and maybe as low as 0V and as high as 3.3V. The reference voltage output shall be current limited on the Module. In the case in which the reference is shorted to ground, the current shall be limited to 250 mA or less. SUS_S3#
A15
Indicates system is in Suspend to RAM state. Active low output. An inverted copy of SUS_S3# on the Carrier Board
O CMOS
N/A
3.3V
O SATA
N/A
AC coupled
maybe used to
enable the non-standby power on a typical ATX supply. SATA0_TX+
A16
Serial ATA or SAS Channel 0 transmit differential pair.
on Module SATA0_TX-
A17
Serial ATA or SAS Channel 0 transmit differential pair.
O SATA
N/A
AC coupled on Module
SUS_S4#
A18
Indicates system is in Suspend to Disk state. Active low output.
O
N/A
CMOS SATA0_RX+
A19
Serial ATA or SAS Channel 0 receive differential pair.
I
3.3V N/A
SATA SATA0_RX-
A20
Serial ATA or SAS Channel 0 receive differential pair.
Copyright © PORTWELL 2015
I
PCOM-B633 User's Guide
3.3VSuspend/
AC coupled on Module
N/A
AC coupled
35
COM Express™
PORTWELL PCOM-B633 SATA
on Module
GND(FIXED)
A21
GND
GND
N/A
GND
SATA2_TX+
A22
Serial ATA or SAS Channel 2 transmit differential pair.
O
N/A
AC coupled
SATA SATA2_TX-
A23
Serial ATA or SAS Channel 2 transmit differential pair.
O
on Module N/A
AC coupled
SATA SUS_S5#
A24
Indicates system is in Soft Off state.
O
on Module N/A
3.3VSuspend/
CMOS SATA2_RX+
A25
Serial ATA or SAS Channel 2 receive differential pair.
I
3.3V N/A
AC coupled
SATA SATA2_RX-
A26
Serial ATA or SAS Channel 2 receive differential pair.
I
on Module N/A
AC coupled
SATA BATLOW#
A27
on Module
Indicates that external battery is low. This port provides a battery-low
I
PU
10K
3.3VSuspend/
signal to the Module for orderly transitioning to power saving or power
CMOS
3.3VSB
3.3V
I/O
N/A
3.3V
N/A
3.3V/ 3.3V
N/A
3.3V Suspend/
cut-off ACPI modes. (S)ATA_ACT#
A28
ATA (parallel and serial) or SAS activity indicator, active low.
CMOS AC/HDA_SYNC
A29
Sample-synchronization signal to the CODEC(s).
O CMOS
AC/HDA_RST#
A30
Reset output to CODEC, active low.
O CMOS
3.3V
GND(FIXED)
A31
GND
GND
N/A
GND
AC/HDA_BITCLK
A32
Serial data clock generated by the external CODEC(s).
I/O
N/A
3.3V/ 3.3V
N/A
3.3V/ 3.3V
CMOS AC/HDA_SDOUT
A33
Serial TDM data output to the CODEC.
O CMOS
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
36
COM Express™ BIOS_DIS0#
THRMTRIP#
USB6-
PORTWELL PCOM-B633 A34
A35
A36
Selection straps to determine the BIOS boot device.
I
PU
10K
The Carrier should only float these or pull them low.
CMOS
3.3VSB
Active low output indicating that the CPU has entered thermal
O
PU
shutdown.
CMOS
3.3V
USB differential pairs, channel 6
I/O
N/A
10K
N/A
3.3V/ 3.3V
3.3V
USB
Suspend/ 3.3V
USB6+
A37
USB differential pairs, channel 6
I/O
N/A
3.3V
USB
Suspend/ 3.3V
USB_6_7_OC#
A38
USB over-current sense, USB channels 6 and 7. A pull-up for this line
I
PU
10K
shall be present on the Module. An open drain driver from a USB
CMOS
3.3VSB
current monitor on the Carrier Board may drive this line low. Do not pull
3.3V Suspend/ 3.3V
this line high on the Carrier Board. USB4-
A39
USB differential pairs, channel 4
I/O
N/A
3.3V Suspend/
USB USB4+
A40
USB differential pairs, channel 4
I/O
3.3V N/A
3.3V Suspend/
USB
3.3V
GND(FIXED)
A41
GND
GND
N/A
GND
USB2-
A42
USB differential pairs, channel 2
I/O
N/A
3.3V Suspend/
USB USB2+
A43
USB differential pairs, channel 2
I/O
3.3V N/A
3.3V Suspend/
USB USB_2_3_OC#
A44
3.3V
USB over-current sense, USB channels 2 and 3. A pull-up for this line
I
PU
10K
shallbe present on the Module. An open drain driver from a USB
CMOS
3.3VSB
3.3V Suspend/ 3.3V
current monitor on the Carrier Board maydrive this line low. Do not pull
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
37
COM Express™
PORTWELL PCOM-B633 this line high on the Carrier Board.
USB0-
A45
USB differential pairs, channel 0
I/O
N/A
3.3V Suspend/
USB USB0+
A46
USB differential pairs, channel 0
I/O
3.3V N/A
3.3V Suspend/
USB VCC_RTC
A47
Real-time clock circuit-power input. Nominally +3.0V. Refer to Section
3.3V
N/A
N/A
O
PU
CMOS
3.3V
PCI Express Card: PCI Express capable card request, active low, one
I
PU
per card
CMOS
3.3V
LPC serial interrupt
I/O
PU
CMOS
3.3V
Power
7“Electrical Specifications“ for details. EXCD0_PERST#
EXCD0_CPPE#
LPC_SERIRQ
A48
A49
A50
PCI Express Card: reset, active low, one per card
10K
3.3V/ 3.3V
10K
3.3V/ 3.3V
10K
3.3V/ 3.3V
GND(FIXED)
A51
GND
GND
N/A
GND
PCIE_TX5+
A52
PCI Express Differential Transmit Pairs 5
O
N/A
AC coupled
PCIE PCIE_TX5-
A53
PCI Express Differential Transmit Pairs 5
O
on Module N/A
AC coupled
PCIE GPI0
PCIE_TX4+
A54
A55
General purpose input pins. Pulled high internally on the Module.
PCI Express Differential Transmit Pairs 4
on Module
I
PU
CMOS
3.3V
O
N/A
PCIE PCIE_TX4-
A56
PCI Express Differential Transmit Pairs 4
O
10K
3.3V/ 3.3V
AC coupled on Module
N/A
PCIE
AC coupled on Module
GND
A57
GND
GND
N/A
GND
PCIE_TX3+
A58
PCI Express Differential Transmit Pairs 3
O
N/A
AC coupled
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PCOM-B633 User's Guide
38
COM Express™
PORTWELL PCOM-B633 PCIE
PCIE_TX3-
A59
PCI Express Differential Transmit Pairs 3
O
on Module N/A
AC coupled
PCIE
on Module
GND(FIXED)
A60
GND
GND
N/A
GND
PCIE_TX2+
A61
PCI Express Differential Transmit Pairs 2
O
N/A
AC coupled
PCIE PCIE_TX2-
A62
PCI Express Differential Transmit Pairs 2
O
on Module N/A
AC coupled
PCIE GPI1
PCIE_TX1+
A63
A64
General purpose input pins. Pulled high internally on the Module.
PCI Express Differential Transmit Pairs 1
on Module
I
PU
CMOS
3.3V
O
N/A
10K
AC coupled
PCIE PCIE_TX1-
A65
PCI Express Differential Transmit Pairs 1
O
on Module N/A
AC coupled
PCIE
on Module
GND
A66
GND
GND
N/A
GPI2
A67
General purpose input pins. Pulled high internally on the Module.
I
PU
CMOS
3.3V
O
N/A
PCIE_TX0+
A68
PCI Express Differential Transmit Pairs 0
PCIE PCIE_TX0-
A69
PCI Express Differential Transmit Pairs 0
O
3.3V/ 3.3V
GND 10K
3.3V/ 3.3V
AC coupled on Module
N/A
PCIE
AC coupled on Module
GND(FIXED)
A70
GND
GND
N/A
GND
LVDS_A0+
A71
LVDS Channel A differential pairs
O
N/A
LVDS
N/A
LVDS
LVDS LVDS_A0-
A72
LVDS Channel A differential pairs
O LVDS
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
39
COM Express™ LVDS_A1+
PORTWELL PCOM-B633 A73
LVDS Channel A differential pairs
O
N/A
LVDS
N/A
LVDS
N/A
LVDS
N/A
LVDS
PD 10K
3.3V/ 3.3V
N/A
LVDS
N/A
LVDS
LVDS LVDS_A1-
A74
LVDS Channel A differential pairs
O LVDS
LVDS_A2+
A75
LVDS Channel A differential pairs
O LVDS
LVDS_A2-
A76
LVDS Channel A differential pairs
O LVDS
LVDS_VDD_EN
A77
LVDS panel power enable
O CMOS
LVDS_A3+
A78
LVDS Channel A differential pairs
O LVDS
LVDS_A3-
A79
LVDS Channel A differential pairs
O LVDS
GND(FIXED)
A80
GND
GND
N/A
GND
LVDS_A_CK+
A81
LVDS Channel A differential clock
O
N/A
LVDS
N/A
LVDS
LVDS LVDS_A_CK-
A82
LVDS Channel A differential clock
O LVDS
LVDS_I2C_CK
LVDS_I2C_DAT
GPI3
RSVD19
A83
A84
A85
A86
I2C clock output for LVDS display use
I2C data line for LVDS display use
General purpose input pins. Pulled high internally on the Module.
NC
Copyright © PORTWELL 2015
I/O OD
PU
CMOS
3.3V
I/O OD
PU
CMOS
3.3V
I
PU
CMOS
3.3V
N/A
N/A
PCOM-B633 User's Guide
2.2K
3.3V/ 3.3V
2.2K
3.3V/ 3.3V
10K
3.3V/ 3.3V
N/A
40
COM Express™ eDP_HPD
PORTWELL PCOM-B633 A87
Detection of Hot Plug / Unplug and notification of the link layer
I
N/A
3.3V / 3.3V
N/A
PCIE
N/A
PCIE
CMOS PCIE_CLK_REF+
PCIE_CLK_REF-
A88
A89
Reference clock output for all PCI Express and PCI Express Graphics
O
lanes.
PCIE
Reference clock output for all PCI Express and PCI Express Graphics
O
lanes.
PCIE
GND(FIXED)
A90
GND
GND
N/A
GND
SPI_POWER
A91
Power supply for Carrier Board SPI – sourced from Module – nominally
O
N/A
3.3V Suspend/
3.3V. The Module shall provide a minimum of 100mA on SPI_POWER.
3.3V
Carriers shall use less than 100mA of SPI_POWER. SPI_POWER shall only be used to power SPI devices on the Carrier SPI_MISO
A92
Data in to Module from Carrier SPI
I
N/A
CMOS GPO0
SPI_CLK
A93
A94
General purpose output pins. Upon a hardware reset, these outputs
I
should be low.
CMOS
Clock from Module to Carrier SPI
O
3.3V N/A
3.3V/ 3.3V
N/A
3.3V Suspend/
CMOS SPI_MOSI
A95
Data out from Module to Carrier SPI
O
3.3V Suspend/
3.3V N/A
CMOS
3.3V Suspend/ 3.3V
TPM_PP
A96
Trusted Platform Module (TPM) Physical Presence pin. Active
I
high.TPM chip has an internal pull down. This signal is used to indicate
CMOS
N/A
3.3V / 3.3V
Physical Presence to the TPM. TYPE10#
A97
NC
N/A
N/A
PDS
SER0_TX
A98
General purpose serial port transmitter
O
N/A
5V / 12V
CMOS
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
41
COM Express™ SER0_RX
PORTWELL PCOM-B633 A99
General purpose serial port receiver
I
N/A
5V / 12V
CMOS GND(FIXED)
A100
GND
GND
N/A
GND
SER1_TX
A101
General purpose serial port transmitter
O
N/A
5V / 12V
This pin is shared with CAN_TX (refer to Section 4.3.30'CAN Bus')
CMOS
General purpose serial port receiver
I
N/A
5V / 12V
This pin is shared with CAN_RX (refer to Section 4.3.30'CAN Bus')
CMOS
LID button. Low active signal used by the ACPI operating system for a
I OD
PU
LID switch.
CMOS
3.3VSB
12V
SER1_RX
A102
LID#
A103
10K
3.3VSuspend/
VCC_12V
A104
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
A105
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
A106
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
A107
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
A108
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
A109
VCC_12V
VCC_12V
N/A
VCC_12V
GND(FIXED)
A110
GND
GND
N/A
GND
Table 6-3 Row connector A detail pin out
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
42
COM Express™
PORTWELL PCOM-B633
Row connector B Row B
Pin
Description
I/O & Power
PU/PD
Power
GND(FIXED)
B1
GND
GND
N/A
GND
GBE0_ACT#
B2
Gigabit Ethernet Controller 0 activity indicator, active low.
LPC_FRAME#
B3
LPC frame indicates the start of an LPC cycle
LPC_AD0
B4
LPC multiplexed address, command and data bus
LPC_AD1
B5
LPC multiplexed address, command and data bus
LPC_AD2
B6
LPC multiplexed address, command and data bus
LPC_AD3
B7
LPC multiplexed address, command and data bus
LPC_DRQ0#
B8
LPC serial DMA request
LPC_DRQ1#
B9
LPC serial DMA request
LPC_CLK
B10
LPC clock output - 33MHz nominal
GND(FIXED)
B11
GND
PWRBTN#
B12
Power button to bring system out of S5 (soft off), active on falling edge.
Copyright © PORTWELL 2015
OD CMOS O CMOS I/O CMOS I/O
N/A
3.3V/ 3.3V
N/A
3.3V/ 3.3V
N/A
N/A
CMOS I/O
N/A
CMOS I
N/A
CMOS I
N/A
CMOS O
N/A
CMOS GND I CMOS
PCOM-B633 User's Guide
3.3V
N/A
CMOS I/O
3.3V Suspend/
N/A N/A
3.3V/ 3.3V
3.3V/ 3.3V
3.3V/ 3.3V
3.3V/ 3.3V
3.3V/ 3.3V
3.3V/ 3.3V GND 3.3VSuspend/ 3.3V
43
COM Express™
PORTWELL PCOM-B633
SMB_CK
B13
System Management Bus bidirectional clock line.
SMB_DAT
B14
System Management Bus bidirectional data line.
SMB_ALERT#
B15
I/O OD
PU
CMOS
3.3VSB
I/O OD
PU
CMOS
3.3VSB
B16
PU
generate an SMI# (System Management Interrupt) or to wake the CMOS
3.3VSB
SATA1_TX-
B17
SUS_STAT#
B18
SATA1_RX+
B19
SATA1_RX-
B20
GND(FIXED)
B21
SATA3_TX+
B22
SATA3_TX-
B23
Serial ATA or SAS Channel 1 transmit differential pair.
B24
Serial ATA or SAS Channel 1 transmit differential pair.
B25
10K
3.3VSuspend/ 3.3V AC coupled
O SATA
N/A
AC coupled on Module
Indicates imminent suspend operation; used to notify LPC devices. Serial ATA or SAS Channel 1 receive differential pair.
O
N/A
CMOS I SATA
3.3VSuspend/ 3.3V
N/A
AC coupled on Module
Serial ATA or SAS Channel 1 receive differential pair.
I SATA
N/A
AC coupled on Module
GND
GND
N/A
GND
Serial ATA or SAS Channel 3 transmit differential pair.
O SATA
N/A
AC coupled on Module
Serial ATA or SAS Channel 3 transmit differential pair.
O SATA
N/A
AC coupled on Module
is good. This signal can be used to hold off Module startup to allow carrier based FPGAs or other configurable devices time to be programmed.
SATA3_RX+
N/A
3.3V
on Module
Power OK from main power supply. A high value indicates that the power PWR_OK
O SATA
3.3V
2.2K 3.3VSuspend/
System Management Bus Alert – active low input can be used to I
system. SATA1_TX+
2.2K 3.3VSuspend/
Serial ATA or SAS Channel 3 receive differential pair.
Copyright © PORTWELL 2015
I CMOS I SATA
PCOM-B633 User's Guide
N/A
3.3V/ 3.3V
N/A
AC coupled
44
COM Express™
PORTWELL PCOM-B633 on Module Serial ATA or SAS Channel 3 receive differential pair.
SATA3_RX-
B26
WDT
B27
AC/HDA_SDIN2
B28
Serial TDM data inputs 2.
AC/HDA_SDIN1
B29
Serial TDM data inputs 1.
AC/HDA_SDIN0
B30
Serial TDM data inputs 0.
GND(FIXED)
B31
GND
B32
N/A
AC coupled on Module
Output indicating that a watchdog time-out event has occurred. Refer to O Section 5.9'Watchdog Timer' on page 113for details.
I/O
General purpose I2C port clock output
I2C_DAT
B34
General purpose I2C port data I/O line
THRM#
B35
USB7-
B36
I/O
USB7+
B37
USB_4_5_OC#
B38
3.3V N/A
N/A
3.3V Suspend/
GND
3.3V N/A
GND
N/A
3.3V/ 3.3V
I/O OD
PU
2.2K 3.3V Suspend/
CMOS
3.3VSB
I/O OD
PU
CMOS
3.3VSB
I
PU
CMOS
3.3V
I/O
N/A
O CMOS
I/O
USB over-current sense, USB channels 4 and 5. A pull-up for this line I
PCOM-B633 User's Guide
3.3V
2.2K 3.3V Suspend/ 3.3V 10K
3.3V/ 3.3V 3.3V Suspend/ 3.3V
N/A
USB
Copyright © PORTWELL 2015
3.3V Suspend/ 3.3V
USB USB differential pairs, channel 7
3.3V Suspend/
CMOS
Input from off-Module temp sensor indicating an over-temp situation. USB differential pairs, channel 7
N/A
CMOS
purposes. B33
3.3V/ 3.3V
CMOS
provides the PC beep signal and is mostly intended for debugging
I2C_CK
N/A
CMOS I/O
Output for audio enunciator - the "speaker" in PC-AT systems. This port SPKR
I SATA
3.3V Suspend/ 3.3V
PU
10K 3.3V Suspend/
45
COM Express™
PORTWELL PCOM-B633 shall be present on the Module. An open drain driver from a USB current CMOS
3.3VSB
3.3V
N/A
3.3V Suspend/
monitor on the Carrier Board may drive this line low. Do not pull this line high on the Carrier Board. USB5-
B39
USB differential pairs, channel 5
I/O
USB differential pairs, channel 5 USB5+
B40
USB
3.3V
I/O
3.3V
USB
N/A
Suspend/ 3.3V
GND(FIXED)
B41
USB3-
B42
USB3+
B43
USB_0_1_OC#
B44
GND
GND
N/A
GND
USB differential pairs, channel 3
I/O
N/A
3.3V Suspend/
USB USB differential pairs, channel 3
I/O
3.3V N/A
3.3V Suspend/
USB
3.3V
USB over-current sense, USB channels 4 and 5. A pull-up for this line I
PU
shall be present on the Module. An open drain driver from a USB current CMOS
3.3VSB
monitor on the Carrier Board may drive this line low. Do not pull this line
10K 3.3V Suspend/ 3.3V
high on the Carrier Board. USB1-
B45
USB1+
B46
EXCD1_PERST#
B47
EXCD1_CPPE#
B48
SYS_RESET#
B49
USB differential pairs, channel 1
I/O
N/A
USB USB differential pairs, channel 1
I/O
3.3V N/A
USB PCI ExpressCard: reset, active low, one per card
PU
CMOS
3.3V
PCI ExpressCard: PCI Express capable card request, active low, one per I
PU
card
3.3V
Reset button input. Active low request for module to reset and reboot. I
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
3.3V Suspend/ 3.3V
I
CMOS
3.3V Suspend/
PU
10K 3.3V/ 3.3V 10K 3.3V/ 3.3V 10K 3.3V Suspend/
46
COM Express™
PORTWELL PCOM-B633 May be falling edge sensitive. For situations when SYS_RESET# is not CMOS
3.3VSB
3.3V
able to reestablish control of the system, PWR_OK or a power cycle may be used. Reset output from Module to Carrier Board. Active low. Issued by Module O CB_RESET#
B50
PD 100K
chipset and may result from a low SYS_RESET# input, a low PWR_OK CMOS
3.3V Suspend/
input, a VCC_12Vpower input that falls below the minimum specification,
3.3V
a watchdog timeout, or maybe initiated by the Module software. GND(FIXED)
B51
GND
GND
N/A
GND
PCIE_RX5+
B52
PCI Express Differential Transmit Pairs 5
I PCIE
N/A
AC coupled
PCIE_RX5-
B53
GPO1
B54
PCIE_RX4+
B55
PCIE_RX4-
B56
GPO2
B57
PCIE_RX3+
B58
PCIE_RX3-
B59
GND(FIXED)
B60
GND
GND
N/A
GND
PCIE_RX2+
B61
PCI Express Differential Transmit Pairs 2
I PCIE
N/A
AC coupled
on Module PCI Express Differential Transmit Pairs 5
I PCIE
N/A
AC coupled on Module
General purpose output pins. Upon a hardware reset, these outputs I should be low.
CMOS
PCI Express Differential Transmit Pairs 4
I PCIE
N/A
3.3V/ 3.3V
N/A
AC coupled on Module
PCI Express Differential Transmit Pairs 4
I PCIE
N/A
AC coupled on Module
General purpose output pins. Upon a hardware reset, these outputs I should be low.
CMOS
PCI Express Differential Transmit Pairs 3
I PCIE
N/A
3.3V/ 3.3V
N/A
AC coupled on Module
PCI Express Differential Transmit Pairs 3
I PCIE
N/A
AC coupled on Module
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
47
COM Express™
PORTWELL PCOM-B633 on Module
PCIE_RX2-
B62
GPO3
B63
PCIE_RX1+
B64
PCIE_RX1-
B65
WAKE0#
B66
WAKE1#
B67
PCIE_RX0+
B68
PCIE_RX0-
B69
GND(FIXED)
B70
LVDS_B0+
B71
LVDS_B0-
B72
LVDS_B1+
B73
LVDS_B1-
B74
PCI Express Differential Transmit Pairs 2
I PCIE
N/A
AC coupled on Module
General purpose output pins. Upon a hardware reset, these outputs I should be low.
CMOS
PCI Express Differential Transmit Pairs 1
I PCIE
N/A
3.3V/ 3.3V
N/A
AC coupled on Module
PCI Express Differential Transmit Pairs 1
I PCIE
N/A
AC coupled on Module
PCI Express wake up signal. General purpose wake up signal.
I
PU
CMOS
3.3VSB
Maybe used to implement wake-up on I
PU
10K 3.3VSuspend/ 3.3V 10K 3.3VSuspend/
PS2 keyboard or mouse activity.
CMOS
3.3VSB
3.3V
PCI Express Differential Transmit Pairs 0
I PCIE
N/A
AC coupled on Module
PCI Express Differential Transmit Pairs 0
I PCIE
N/A
AC coupled on Module
GND
GND
N/A
GND
LVDS Channel B differential pairs
O
N/A
LVDS
N/A
LVDS
N/A
LVDS
N/A
LVDS
LVDS LVDS Channel B differential pairs
O LVDS
LVDS Channel B differential pairs
O LVDS
LVDS Channel B differential pairs
Copyright © PORTWELL 2015
O LVDS
PCOM-B633 User's Guide
48
COM Express™
PORTWELL PCOM-B633 LVDS Channel B differential pairs
LVDS_B2+
B75
LVDS_B2-
B76
LVDS_B3+
B77
LVDS_B3-
B78
LVDS_BKLT_EN
B79
LVDS panel backlight enable
GND(FIXED)
B80
GND
LVDS_B_CK+
B81
LVDS Channel B differential clock
LVDS_B_CK-
B82
LVDS Channel B differential clock
LVDS_BKLT_CTRL
B83
LVDS panel backlight brightness control
O
N/A
LVDS
N/A
LVDS
N/A
LVDS
N/A
LVDS
PD 10K
3.3V/ 3.3V
GND
N/A
GND
O
N/A
LVDS LVDS Channel B differential pairs
O LVDS
LVDS Channel B differential pairs
O LVDS
LVDS Channel B differential pairs
O LVDS O CMOS
O
B84
N/A
LVDS
LVDS O
N/A
3.3V/ 3.3V
CMOS
Standby power input: +5.0V nominal. If VCC5_SBY is used, all available VCC_5V_SBY VCC_5V_SBY
LVDS
LVDS
N/A
VCC_5V_SBY
VCC_5V_SBY pins on the connector(s) shall be used. Only used for standby and suspend functions. Maybe left unconnected if these functions are not used in the system design.
VCC_5V_SBY
B85
VCC_5V_SBY
VCC_5V_SBY
N/A
VCC_5V_SBY
VCC_5V_SBY
B86
VCC_5V_SBY
VCC_5V_SBY
N/A
VCC_5V_SBY
VCC_5V_SBY
B87
VCC_5V_SBY
VCC_5V_SBY
N/A
VCC_5V_SBY
BIOS_DIS1#
B88
Selection straps to determine the BIOS boot device.
I
PU
The Carrier should only float these or pull them low.
CMOS
3.3VSB
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
10K
N/A
49
COM Express™
PORTWELL PCOM-B633 Red for monitor. Analog DAC output, designed to drive a 37.5Ω O
VGA_RED
B89
GND(FIXED)
B90
VGA_GRN
B91
VGA_BLU
B92
VGA_HSYNC
B93
Horizontal sync output to VGA monitor
VGA_VSYNC
B94
Vertical sync output to VGA monitor
VGA_I2C_CK
B95
DDC clock line (I2C port dedicated to identify VGA monitor capabilities)
VGA_I2C_DAT
B96
DDC data line.
SPI_CS#
B97
RSVD19
equivalent load.
Analog
GND
GND
Green for monitor. Analog DAC output, designed to drive a 37.5Ω O equivalent load.
PD 150R
N/A
GND
PD 150R
Analog
Blue for monitor. Analog DAC output, designed to drive a 37.5Ω O equivalent load.
PD 150R
Analog O
N/A
N/A
PU
CMOS
3.3V
I/O OD
PU
CMOS
3.3V
Chip select for Carrier Board SPI - maybe sourced from chipset SPI0 or O
Analog
3.3V/ 3.3V
CMOS I/O OD
Analog
3.3V/ 3.3V
CMOS O
Analog
2.2K
2.2K
3.3V/ 3.3V
3.3V/ 3.3V 3.3V
N/A
SPI1
CMOS
B98
NC
NC
NC
NC
RSVD19
B99
NC
NC
NC
NC
GND(FIXED)
B100
GND
GND
N/A
GND
FAN_PWNOUT
B101
FAN_TACHIN
B102
SLEEP#
B103
Fan speed control. Uses the Pulse Width Modulation (PWM) technique to O OD
PU
control the fan‟s RPM.
CMOS
3.3V
O OD
PU
CMOS
3.3V
Fan tachometer input for a fan with a two pulse output.
Sleep button.Low active signal used by the ACPI operating system to I OD
PU
bring the system to sleep state or to wake it up again.
3.3VSB
Copyright © PORTWELL 2015
CMOS
PCOM-B633 User's Guide
Suspend/3.3V
10K
10K
3.3V / 12V
3.3V / 12V
10K 3.3VSuspend/ 12V
50
COM Express™
PORTWELL PCOM-B633
VCC_12V
B104
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
B105
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
B106
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
B107
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
B108
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
B109
VCC_12V
VCC_12V
N/A
VCC_12V
GND(FIXED)
B110
GND
GND
N/A
GND
Table 6-3 Row connector B detail pin out
Copyright © PORTWELL 2015
PCOM-B633 User's Guide
51
COM Express™
PORTWELL PCOM-B633
Row connector C Row C
Pin
Description
I/O
PU/PD
Power
GND(FIXED)
C1
GND
GND
N/A
GND
GND
C2
GND
GND
N/A
GND
USB_SSRX0-
C3
N/A
AC coupled
USB_SSRX0+
C4
GND
C5
USB_SSRX1-
C6
USB_SSRX1+
C7
GND
C8
USB_SSRX2-
C9
USB_SSRX2+
C10
GND(FIXED)
C11
USB_SSRX3-
C12
USB_SSRX3+
C13
GND
C14
Additional receive signal differential pairs for the SuperSpeed USB data I path.
PCIE
Additional receive signal differential pairs for the SuperSpeed USB data I path.
PCIE
GND
GND
Additional receive signal differential pairs for the SuperSpeed USB data I path.
path.
PCIE
GND
GND
Additional receive signal differential pairs for the SuperSpeed USB I
data path.
PCIE
GND
GND
Additional receive signal differential pairs for the SuperSpeed USB I
data path.
PCIE
GND
GND
Copyright © PORTWELL 2015
N/A
GND
N/A
AC coupled Off Module
N/A
PCOM-B633 User's Guide
AC coupled Off Module
N/A
GND
N/A
AC coupled Off Module
N/A
AC coupled Off Module
N/A
GND
N/A
AC coupled
PCIE
Additional receive signal differential pairs for the SuperSpeed USB I
AC coupled Off Module
PCIE
Additional receive signal differential pairs for the SuperSpeed USB I
data path.
N/A
PCIE
Additional receive signal differential pairs for the SuperSpeed USB data I
data path.
Off Module
Off Module N/A
AC coupled Off Module
N/A
GND
52
COM Express™
PORTWELL PCOM-B633
DDI1_PAIR6+
C15
NC
NC
NC
NC
DDI1_PAIR6-
C16
NC
NC
NC
NC
RSVD19
C17
N/A
NC
NC
NC
RSVD19
C18
N/A
NC
NC
NC
PCIE_RX6+
C19
I PCIE
NC
AC coupled
PCIE_RX6-
C20
GND(FIXED)
C21
PCIE_RX7+
C22
PCIE_RX7-
C23
DDI1_HPD
C24
Detection of Hot Plug / Unplug and notification of the link layer
DDI1_PAIR4 +
C25
NC
DDI1_PAIR4-
C26
RSVD19
PCI Express Differential Transmit Pairs 6
on Module PCI Express Differential Transmit Pairs 6
I PCIE
NC
AC coupled on Module
GND PCI Express Differential Transmit Pairs 7
GND
N/A
GND
I PCIE
NC
AC coupled on Module
PCI Express Differential Transmit Pairs 7
I PCIE
NC
AC coupled on Module
I
PD 100K
3.3V / 3.3V
NC
NC
NC
NC
NC
NC
NC
C27
NC
NC
NC
NC
RSVD19
C28
NC
NC
NC
NC
DDI1_PAIR5+
C29
NC
NC
NC
NC
DDI1_PAIR5-
C30
NC
NC
NC
NC
GND(FIXED)
C31
GND
GND
N/A
GND
Half-duplex bi-directional AUX channel for services such as link
I/O
PD 100K
AC coupled
configuration or maintenance and EDID access
PCIE
Half-duplex bi-directional AUX channel for services such as link
I/O
PU
configuration or maintenance and EDID access
PCIE
3.3V
DDI2_CTRLCLK_AUX+ C32
DDI2_CTRLDATA_AUX- C33
Copyright © PORTWELL 2015
CMOS
PCOM-B633 User's Guide
on Module 100K AC coupled on Module
53
COM Express™
PORTWELL PCOM-B633 Selects
the
function
of
DDI[2]_CTRLCLK_AUX+
and
DDI[1:3]_CTRLDATA_AUX-. This pin shall have a 1M pull-down to logic DDI2_DDC_AUX_SEL
C34
ground on the Module. If this input is floating the AUX pair is used for the DP AUX+/- signals. If pulled-high the AUX pair contains the CRTLCLK
I CMOS
PD 1M
3.3V / 3.3V
and CTRLDATA signals. RSVD19
C35
NC
N/A
N/A
N/A
DDI3_CTRLCLK_AUX+ C36
NC
N/A
N/A
N/A
DDI3_CTRLDATA_AUX- C37
NC
N/A
No Port3
N/A
DDI3_DDC_AUX_SEL
C38
NC
N/A
No Port3
N/A
DDI3_PAIR0+
C39
NC
N/A
No Port3
N/A
DDI3_PAIR0-
C40
NC
N/A
N/A
N/A
GND(FIXED)
C41
GND
GND
N/A
GND
DDI3_PAIR1+
C42
NC
N/A
N/A
N/A
DDI3_PAIR1-
C43
NC
N/A
N/A
N/A
DDI3_HPD
C44
NC
N/A
No Port3
N/A
RSVD19
C45
NC
N/A
N/A
N/A
DDI3_PAIR2+
C46
NC
N/A
N/A
N/A
DDI3_PAIR2-
C47
NC
N/A
N/A
N/A
RSVD19
C48
NC
N/A
N/A
N/A
DDI3_PAIR3+
C49
NC
N/A
N/A
N/A
DDI3_PAIR3-
C50
NC
N/A
N/A
N/A
GND(FIXED)
C51
GND
GND
N/A
GND
PEG_RX0+
C52
PCI Express Graphics receive differential pairs.
PEG_RX0-
C53
PCI Express Graphics receive differential pairs.
Copyright © PORTWELL 2015
I PCIE I PCIE
PCOM-B633 User's Guide
N/A
N/A
AC coupled off Module AC coupled off Module
54
COM Express™
PORTWELL PCOM-B633
TYPE0#
C54
PEG_RX1+
C55
PCI Express Graphics receive differential pairs.
PEG_RX1-
C56
PCI Express Graphics receive differential pairs.
TYPE1#
C57
PEG_RX2+
C58
PCI Express Graphics receive differential pairs.
PEG_RX2-
C59
PCI Express Graphics receive differential pairs.
GND(FIXED)
C60
GND
PEG_RX3+
C61
PCI Express Graphics receive differential pairs.
PEG_RX3-
C62
PCI Express Graphics receive differential pairs.
RSVD19
C63
NC
N/A
N/A
N/A
RSVD19
C64
NC
N/A
N/A
N/A
PEG_RX4+
C65
PCI Express Graphics receive differential pairs.
I
N/A
AC coupled
PEG_RX4-
NC
NC
C66
N/A
N/A
I
N/A
AC coupled
PCIE I
PCI Express Graphics receive differential pairs.
C67
NC
PEG_RX5+
C68
PCI Express Graphics receive differential pairs.
PEG_RX5-
C69
PCI Express Graphics receive differential pairs.
off Module N/A
PCIE
AC coupled off Module
N/A
N/A
N/A
I
N/A
AC coupled
PCIE I
off Module N/A
PCIE GND
RSVD19
Copyright © PORTWELL 2015
N/A
I PCIE I
off Module N/A N/A N/A
PCIE
GND AC coupled off Module AC coupled off Module
PCIE I
AC coupled
off Module N/A
AC coupled
PCIE
off Module
N/A
N/A
N/A
I
N/A
AC coupled
PCIE I
PCOM-B633 User's Guide
off Module N/A
AC coupled
55
COM Express™
PORTWELL PCOM-B633 PCIE
GND(FIXED)
C70
GND
GND
PEG_RX6+
C71
PCI Express Graphics receive differential pairs.
PEG_RX6-
C72
PCI Express Graphics receive differential pairs.
GND
C73
PEG_RX7+
C74
PCI Express Graphics receive differential pairs.
PEG_RX7-
C75
PCI Express Graphics receive differential pairs.
GND
C76
GND
RSVD19
C77
NC
PEG_RX8+
C78
PCI Express Graphics receive differential pairs.
PEG_RX8-
C79
PCI Express Graphics receive differential pairs.
GND(FIXED)
C80
PEG_RX9+
C81
PCI Express Graphics receive differential pairs.
PEG_RX9-
C82
PCI Express Graphics receive differential pairs.
RSVD19
C83
NC
GND
C84
GND
PEG_RX10+
C85
GND
GND
Copyright © PORTWELL 2015
I PCIE I PCIE
off Module N/A N/A
N/A
GND AC coupled off Module AC coupled off Module
GND
N/A
GND
I
N/A
AC coupled
PCIE I
off Module N/A
PCIE
AC coupled off Module
GND
N/A
GND
N/A
N/A
N/A
I
N/A
AC coupled
PCIE I
off Module N/A
PCIE GND I PCIE I
AC coupled off Module
N/A N/A N/A
PCIE
GND AC coupled off Module AC coupled off Module
N/A
PCI Express Graphics receive differential pairs.
GND
N/A
GND
I
N/A
AC coupled
PCIE
PCOM-B633 User's Guide
off Module
56
COM Express™ PEG_RX10-
PORTWELL PCOM-B633 C86
GND
C87
PEG_RX11+
C88
PEG_RX11-
PCI Express Graphics receive differential pairs.
GND
PCI Express Graphics receive differential pairs.
GND(FIXED)
C90
GND
PEG_RX12+
C91
PCI Express Graphics receive differential pairs.
PEG_RX12-
C92
PCI Express Graphics receive differential pairs.
GND
C93
PEG_RX13+
C94
PCI Express Graphics receive differential pairs.
PEG_RX13-
C95
PCI Express Graphics receive differential pairs.
GND
C96
GND
RSVD19
C97
NC
PEG_RX14+
C98
PCI Express Graphics receive differential pairs.
PEG_RX14-
C99
PCI Express Graphics receive differential pairs.
GND(FIXED)
C100
Copyright © PORTWELL 2015
AC N/A
PCIE I PCIE
I PCIE I PCIE
coupled off Module
N/A
I
GND
GND
GND
PCIE GND
PCI Express Graphics receive differential pairs.
C89
I
GND AC coupled
N/A
off Module AC
N/A
coupled off Module
N/A N/A
N/A
GND AC coupled off Module AC coupled off Module
GND
N/A
GND
I
N/A
AC coupled
PCIE I
off Module N/A
PCIE
AC coupled off Module
GND
N/A
GND
N/A
N/A
N/A
I
N/A
AC coupled
PCIE I
off Module N/A
PCIE GND
PCOM-B633 User's Guide
AC coupled off Module
N/A
GND
57
COM Express™
PORTWELL PCOM-B633 I
C101
PCI Express Graphics receive differential pairs.
PEG_RX15-
C102
PCI Express Graphics receive differential pairs.
GND
C103
GND
GND
N/A
GND
VCC_12V
C104
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
C105
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
C106
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
C107
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
C108
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
C109
VCC_12V
VCC_12V
N/A
VCC_12V
GND(FIXED)
C110
GND
GND
N/A
GND
PCIE I PCIE
N/A
AC coupled
PEG_RX15+
N/A
off Module AC coupled off Module
Table 6-3 Row connector C detail pin out
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COM Express™
PORTWELL PCOM-B633
Row connector D Row D
Pin
Description
I/O & Power
PU/PD
Comment
GND(FIXED)
D1
GND
GND
N/A
GND
GND
D2
GND
GND
N/A
GND
USB_SSTX0-
D3
N/A
AC coupled
USB_SSTX0+
D4
GND
D5
USB_SSTX1-
D6
USB_SSTX1+
D7
GND
D8
USB_SSTX2-
D9
USB_SSTX2+
D10
GND(FIXED)
D11
USB_SSTX3-
D12
USB_SSTX3+
D13
GND
D14
Additional transmit signal differential pairs for the SuperSpeed USB data O path.
PCIE
Additional transmit signal differential pairs for the SuperSpeed USB data O path.
PCIE
GND
GND
Additional transmit signal differential pairs for the SuperSpeed USB data O path.
path.
PCIE
GND
GND
Additional transmit signal differential pairs for the SuperSpeed USB O
data path.
PCIE
GND
GND
Additional transmit signal differential pairs for the SuperSpeed USB O
data path.
PCIE
GND
GND
Copyright © PORTWELL 2015
N/A
GND
N/A
AC coupled Off Module
N/A
PCOM-B633 User's Guide
AC coupled Off Module
N/A
GND
N/A
AC coupled Off Module
N/A
AC coupled Off Module
N/A
GND
N/A
AC coupled
PCIE
Additional transmit signal differential pairs for the SuperSpeed USB O
AC coupled Off Module
PCIE
Additional transmit signal differential pairs for the SuperSpeed USB O
data path.
N/A
PCIE
Additional transmit signal differential pairs for the SuperSpeed USB data O
data path.
Off Module
Off Module N/A
AC coupled Off Module
N/A
GND
59
COM Express™
PORTWELL PCOM-B633
DDI1_CTRLCLK_AUX+ D15
DDI1_CTRLDATA_AUX- D16
Half-duplex bi-directional AUX channel for services such as link
I/O
PD 100K
AC coupled
configuration or maintenance and EDID access
PCIE
Half-duplex bi-directional AUX channel for services such as link
I/O
PU
configuration or maintenance and EDID access
PCIE
3.3V
on Module
on Module 100K AC coupled
RSVD19
D17
NC
N/A
N/A
N/A
RSVD19
D18
NC
N/A
N/A
N/A
PCIE_TX6+
D19
PCI Express Differential Transmit Pairs 6
O PCIE
N/A
AC coupled
PCIE_TX6-
D20
GND(FIXED)
D21
PCIE_TX7+
D22
PCIE_TX7-
D23
RSVD19
D24
NC
N/A
N/A
N/A
RSVD19
D25
NC
N/A
N/A
N/A
DDI1_PAIR0+
D26
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
DDI1_PAIR0-
D27
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
RSVD19
D28
DDI1_PAIR1+
D29
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
DDI1_PAIR1-
D30
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
on Module PCI Express Differential Transmit Pairs 6
O PCIE
N/A
AC coupled on Module
GND PCI Express Differential Transmit Pairs 7
GND
N/A
GND
O PCIE
N/A
AC coupled on Module
PCI Express Differential Transmit Pairs 7
O PCIE
N/A
AC coupled on Module
NC
Copyright © PORTWELL 2015
O PCIE O PCIE N/A O PCIE O PCIE
PCOM-B633 User's Guide
N/A
N/A N/A N/A
N/A
AC coupled off Module AC coupled off Module N/A AC coupled off Module AC coupled off Module
60
COM Express™
PORTWELL PCOM-B633
GND(FIXED)
D31
GND
GND
DDI1_PAIR2+
D32
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
DDI1_PAIR2-
D33
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
DDI1_DDC_AUX_SEL
D34
RSVD19
D35
DDI1_PAIR3+
D36
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
DDI1_PAIR3-
D37
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
RSVD19
D38
DDI2_PAIR0+
D39
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
DDI2_PAIR0-
D40
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
GND(FIXED)
D41
GND
DDI2_PAIR1+
D42
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
DDI2_PAIR1-
D43
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
DDI2_HPD
D44
Detection of Hot Plug / Unplug and notification of the link layer
RSVD19
D45
DDI2_PAIR2+
D46
O PCIE O PCIE
N/A N/A
N/A
GND AC coupled off Module AC coupled off Module
PD 1M NC
NC
N/A
N/A
O
N/A
AC coupled
PCIE O
O PCIE O PCIE GND
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
off Module N/A
PCIE N/A
NC
Copyright © PORTWELL 2015
N/A
O PCIE O PCIE I
AC coupled off Module
N/A N/A
N/A N/A N/A
N/A
N/A AC coupled off Module AC coupled off Module GND AC coupled off Module AC coupled off Module
PD 100K
3.3V / 3.3V
N/A
N/A
N/A
O
N/A
AC coupled
CMOS
PCIE
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off Module
61
COM Express™
PORTWELL PCOM-B633
DDI2_PAIR2-
D47
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
RSVD19
D48
DDI2_PAIR3+
D49
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
DDI2_PAIR3-
D50
Digital Display Interface 1 to 3 Pair[0:3] differential pairs
GND(FIXED)
D51
GND
PEG_TX0+
D52
PCI Express Graphics transmit differential pairs.
PEG_TX0-
D53
PCI Express Graphics transmit differential pairs.
PEG_LANE_RV#
D54
PEG_TX1+
D55
PCI Express Graphics transmit differential pairs.
PEG_TX1-
D56
PCI Express Graphics transmit differential pairs.
TYPE2#
D57
PEG_TX2+
D58
PCI Express Graphics transmit differential pairs.
PEG_TX2-
D59
PCI Express Graphics transmit differential pairs.
GND(FIXED)
D60
GND
PEG_TX3+
D61
PCI Express Graphics transmit differential pairs.
PEG_TX3-
D62
PCI Express Graphics transmit differential pairs.
NC
NC
GND
Copyright © PORTWELL 2015
O
N/A
PCIE
AC coupled off Module
N/A
N/A
N/A
O
N/A
AC coupled
PCIE O
off Module N/A
PCIE
AC coupled off Module
GND
N/A
GND
O
N/A
AC coupled
PCIE O PCIE
off Module N/A
AC coupled off Module
N/A
No PEG
N/A
O
N/A
AC coupled
PCIE O
off Module N/A
PCIE
AC coupled off Module
GND
N/A
GND
O
N/A
AC coupled
PCIE O
off Module N/A
PCIE GND O PCIE O
PCOM-B633 User's Guide
AC coupled off Module
N/A N/A N/A
GND AC coupled off Module AC coupled
62
COM Express™
PORTWELL PCOM-B633 PCIE
off Module
RSVD19
D63
NC
N/A
N/A
N/A
RSVD19
D64
NC
N/A
N/A
N/A
PEG_TX4+
D65
PCI Express Graphics transmit differential pairs.
O
N/A
AC coupled
PEG_TX4-
D66
PCI Express Graphics transmit differential pairs.
GND
D67
PEG_TX5+
D68
PCI Express Graphics transmit differential pairs.
PEG_TX5-
D69
PCI Express Graphics transmit differential pairs.
GND(FIXED)
D70
PEG_TX6+
D71
PCI Express Graphics transmit differential pairs.
PEG_TX6-
D72
PCI Express Graphics transmit differential pairs.
GND
D73
PEG_TX7+
D74
PCI Express Graphics transmit differential pairs.
PEG_TX7-
D75
PCI Express Graphics transmit differential pairs.
GND
D76
GND
RSVD19
D77
NC
PEG_TX8+
D78
PCI Express Graphics transmit differential pairs.
GND
GND
O
off Module N/A
PCIE
AC coupled off Module
GND
N/A
GND
O
N/A
AC coupled
PCIE O
off Module N/A
PCIE GND
GND
Copyright © PORTWELL 2015
PCIE
O PCIE O PCIE
AC coupled off Module
N/A N/A
N/A
GND AC coupled off Module AC coupled off Module
GND
N/A
GND
O
N/A
AC coupled
PCIE O
off Module N/A
PCIE
AC coupled off Module
GND
N/A
GND
N/A
N/A
N/A
O
N/A
AC coupled
PCIE
PCOM-B633 User's Guide
off Module
63
COM Express™
PORTWELL PCOM-B633
PEG_TX8-
D79
GND(FIXED)
D80
PEG_TX9+
D81
PCI Express Graphics transmit differential pairs.
PEG_TX9-
D82
PCI Express Graphics transmit differential pairs.
RSVD19
D83
NC
GND
D84
GND
PEG_TX10+
PCI Express Graphics transmit differential pairs. GND
D85
PEG_TX10-
D86
PCI Express Graphics transmit differential pairs.
GND
D87
PEG_TX11+
D88
PCI Express Graphics transmit differential pairs.
PEG_TX11-
D89
PCI Express Graphics transmit differential pairs.
GND(FIXED)
D90
PEG_TX12+
D91
PCI Express Graphics transmit differential pairs.
PEG_TX12-
D92
PCI Express Graphics transmit differential pairs.
GND
D93
PEG_TX13+
D94
GND
GND
O PCIE O
PCI Express Graphics transmit differential pairs.
AC coupled off Module
N/A N/A N/A
PCIE
GND AC coupled off Module AC coupled off Module
N/A
N/A
N/A
GND
N/A
GND
O PCIE O
AC N/A
coupled off Module
N/A
PCIE
AC coupled off Module
GND
N/A
GND
O
N/A
AC coupled
PCIE O
off Module N/A
PCIE GND
GND
N/A
PCIE GND
PCI Express Graphics transmit differential pairs.
Copyright © PORTWELL 2015
O
O PCIE O PCIE
AC coupled off Module
N/A N/A
N/A
GND AC coupled off Module AC coupled off Module
GND
N/A
GND
O
N/A
AC coupled
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COM Express™
PORTWELL PCOM-B633 PCIE
PEG_TX13-
D95
PCI Express Graphics transmit differential pairs.
GND
D96
GND
RSVD19
D97
NC
PEG_TX14+
D98
PCI Express Graphics transmit differential pairs.
PEG_TX14-
D99
PCI Express Graphics transmit differential pairs.
GND(FIXED)
D100
GND
O
off Module N/A
PCIE
AC coupled off Module
GND
N/A
GND
N/A
N/A
N/A
O
N/A
AC coupled
PCIE O
off Module N/A
PCIE GND O
AC coupled off Module
N/A
GND AC coupled
PEG_TX15+
D101
PCI Express Graphics transmit differential pairs.
PEG_TX15-
D102
PCI Express Graphics transmit differential pairs.
GND
D103
GND
GND
N/A
GND
VCC_12V
D104
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
D105
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
D106
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
D107
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
D108
VCC_12V
VCC_12V
N/A
VCC_12V
VCC_12V
D109
VCC_12V
VCC_12V
N/A
VCC_12V
GND(FIXED)
D110
GND
GND
N/A
GND
PCIE O PCIE
N/A
N/A
off Module
AC coupled off Module
Table 6-3 Row connector D detail pin out
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COM Express™
PORTWELL PCOM-B633
7 System Resources Memory Map Address Range (Decimal)
Address Range (Hex)
Size
Description
917504 - 983039
E0000h - EFFFFh
64KB
Legacy 64KB range
983040 - 1048575
F0000h - FFFFFh
64KB
Legacy 64KB range
4143972352 - 4144103424
F7000000h - F7020000h
128KB
Integrated LAN Controller ( Memory Base Address A )
4144209920 - 4144214016
F703A000h - F703B000h
4KB
Integrated LAN Controller ( Memory Base Address B )
4144205824 - 4144206847
F7039000h - F70393FFh
1KB
USB EHCI Controller
4144168960 - 4144185344
F7030000h - F7034000h
16KB
Intel High Definition Audio Host Controller
4275372031 - 4275372031
FED40000h - FED4FFFFh
64KB
TPM on LPC
4275044352 - 4275045375
FED00000h - FED003FFh
1KB
High Precision Event Timers
4144205824 - 4144207872
F7039000h - F7039800h
2KB
SATA Host Controller
Table 7-1 Memory Map
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COM Express™
PORTWELL PCOM-B633
I/O Address Assignment Address Range (Hex)
Size
Available
Description
2E/2F
2 Bytes
Super IO IT8721F
3F0h
8 Bytes
Floppy (IT8721F)
3F8h
8 Bytes
Serial Port 1 (IT8721F)
2F8h
8 Bytes
Serial Port 2 (IT8721F)
60h/64h
2 Bytes
Keyboard/Mouse
A45h/A46h
2 Bytes
Hardware Monitor (IT8721F)
6E/6F
2 Bytes
IT8528
1C00h
128 Bytes
GPIO
F000h
64 Bytes
VGA Controller
F040h
16 Bytes
SMBus
F060h
32 Bytes
Integrated LAN Controller
Table 7-2 I/O Address Assignment
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COM Express™
PORTWELL PCOM-B633
Interrupt Request (IRQ) Lines (APIC Mode) IRQ#
Available
Typical Interrupt Source
Connect to Pin / Function
0
No
System Timer
Not applicable
1
No
Keyboard
Not applicable
2
No
Cascade Interrupt from Slave PIC
Not applicable
3
Yes
Serial Port 2 (IT8721F)
IRQ3 via SERIRQ
4
Yes
Serial Port 1 (IT8721F)
IRQ4 via SERIRQ
8
No
Real-time Clock
Not applicable
9
No
SCI
Not applicable
12
No
Mouse
Not applicable
13
No
Math processor
Not applicable
5 6 7
10 11
14 15 16
PIRQA, VGA Controller, EHCI#2
17
PIRQB,
18
PIRQC, SMBus
19
PIRQD,SATA#1,SATA#2
20
PIRQE,
21 Copyright © PORTWELL 2015
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COM Express™
PORTWELL PCOM-B633
22
PIRQG, Intel High Definition Audio Controller
23
PIRQH, EHCI#1
Table 7-3 Interrupt Request (IRQ) Lines (APIC Mode)
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COM Express™
PORTWELL PCOM-B633
PCI Configuration Space Map Bus Number (Hex)
Device Number (Hex)
Function Number (Hex)
PCI Interrupt Routing
Description
00h
00h
00h
Host Bridge
00h
02h
00h
VGA Controller
00h
03h
00h
Multimedia(PCI Express)
00h
14h
00h
Serial Bus Controller
00h
16h
00h
Communication Device
00h
19h
00h
Ethernet Controller
00h
1Bh
00h
Multimedia
00h
1Dh
00h
USB2 EHCI
00h
1Fh
00h
ISA Bridge
00h
1Fh
03h
SMBUS
Table 7-4 PCI Configuration Space Map
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COM Express™
PORTWELL PCOM-B633
PCI Interrupt Routing Map A IRQ
PCI BUS INT
APIC VGA HDA XHCI EHCI EHCI SM Mode 1 2 Bus IRQ
LAN SATA1 SATA2 PEG Root Port1
PEG PEG Root Port 0 Port3
PEG PEG Port 1 Port 2
LINE A
INTA
16
B
INTB 17
C
INTC 18
D
INTD 19
E
20
F
21
G
22
H
23
x
x
x x x
x
x x
Table 7-5 PCI Interrupt Routing Map A
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COM Express™
PORTWELL PCOM-B633
PCI Interrupt Routing Map B IRQ
PCIE PCIE PCIE PCIE PCIE PCIE PCIE PCIE PCIE Root Root Root Root Root Root Root Root Port0 Port 0 Port 1 Port 2 Port 3 Port 4 Port 5 Port 6 Port 7
PCIE PCIE PCIE PCIE Port 1 Port 2 Port 3 Port 4
PCIE PCIE Port 5 Port 6
A
x (2)
x (3)
x (4)
x (5)
x (2)
x (2)
x (4)
B
x (3)
x (4)
x (5)
x (2)
x (3)
x (3)
x (5)
C
x (4)
x (5)
x (2)
x (3)
x (4)
x (4)
x (2)
D
x (5)
x (2)
x (3)
x (4)
x (5)
x (5)
x (3)
E F G H Table 7-6 PCI Interrupt Routing Map B Note : 2. Interrupt used by single function PCI Express devices (INTA). 3. Interrupt used by multifunction PCI Express devices (INTB). 4. Interrupt used by multifunction PCI Express devices (INTC). 5. Interrupt used by multifunction PCI Express devices (INTD).
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8 BIOS Setup Items PCOM-B633VG is equipped with the AMI BIOS stored in Flash ROM. These BIOS has a built-in Setup program that allows users to modify the basic system configuration easily. This type of information is stored in CMOS RAM so that it is retained during power-off periods. When system is turned on, PCOM-B633VG communicates with peripheral devices and checks its hardware resources against the configuration information stored in the CMOS memory. If any error is detected, or the CMOS parameters need to be initially defined, the diagnostic program will prompt the user to enter the SETUP program. Some errors are significant enough to abort the start up.
8.1 Entering Setup -- Launch System Setup Power on the computer and the system will start POST (Power On Self Test) process. When the message below appears on the screen, press
key will enter BIOS setup screen. Press to enter SETUP If the message disappears before responding and still wish to enter Setup, please restart the system by turning it OFF and On or pressing the RESET button. It can be also restarted by pressing , , and keys on keyboard simultaneously. Press to Run General Help or Resume The BIOS setup program provides a General Help screen. The menu can be easily called up from any menu by pressing . The Help screen lists all the possible keys to use and the selections for the highlighted item. Press to exit the Help screen.
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PORTWELL PCOM-B633
P.S: The “★“ mark means the BIOS default settings.
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COM Express™
PORTWELL PCOM-B633
8.2 Main Use this menu for basic system configurations, such as time, date etc.
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COM Express™
PORTWELL PCOM-B633
System Date The date format is , . Use [+] or [-] to configure system Date. System Time The time format is . Use [+] or [-] to configure system Time.
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COM Express™
PORTWELL PCOM-B633
8.3 Configuration Use this menu to set up the items of special enhanced features.
CPU configuration CPU Configuration Parameters
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COM Express™
PORTWELL PCOM-B633
Hyper-threading Enabled for Windows XP and Linux (OS optimized for Hyper-Threading Technology) and Disabled for other OS (OS not optimized for Hyper- Threading Technology). When disabled only one thread per enabled core is enabled. Copyright © PORTWELL 2015
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COM Express™
PORTWELL PCOM-B633
The choice: Disabled,★ Enabled. Active Processor Cores Number of cores to enable in each processor package The choice: ★All, 1. Limit CPUID Maximum Disabled for Windows XP The choice: ★Disabled, Enabled. Execute Disable Bit XD can prevent certain classes of malicious buffer overflow attacks when combined with a supporting OS (Windows Server 2003 SP1, Windows XP SP2, SuSE Linux 9.2, RedHat Enterprise 3 Update 3.) The choice: Disabled, ★Enabled. Intel Virtualization Technology When enabled, a VMM can utilize the additional hardware capabilities provided by Vanderpool Technology. Choices: Disabled, ★Enabled. EIST Enable/Disable Intel SpeedStep. Choices: Disabled, ★Enabled. CPU C states Enable or disable CPU C states Copyright © PORTWELL 2015
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Choices: ★Disabled, Enabled.
Enhanced C1 states (CPU C states Enabled) Enhance C1 state Choices: Disabled, ★Enabled.
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COM Express™
PORTWELL PCOM-B633
CPU C3 Report (CPU C states Enabled) Enable/Disable CPU C3 Report to OS Choices: Disabled, ★Enabled. CPU C6 Report (CPU C states Enabled) Enable/Disable CPU C6 Report to OS Choices: Disabled, ★Enabled. C6 Latency (CPU C states Enabled) Configure Short/Long latency for C6 Choices: ★Short, Long. CPU C7 Report (CPU C states Enabled) Enable/Disable CPU C7 Report to OS Choices: Disabled, CPU C7, ★CPU C7s. C7 Latency (CPU C states Enabled) Configure Short/Long latency for C7 Choices: Short, ★Long. CPU C8 Report (CPU C states Enabled) Enable/Disable CPU C8 Report to OS Choices: Disabled, ★Enabled. CPU C9 Report (CPU C states Enabled) Enable/Disable CPU C9 Report to OS Copyright © PORTWELL 2015
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Choices: Disabled, ★Enabled. CPU C10 Report (CPU C states Enabled) Enable/Disable CPU C10 Report to OS Choices: Disabled, ★Enabled. C1 State auto demotion (CPU C states Enabled) Processor will conditionally demote C3/C6/C7 requests to C1 based on uncore auto-demote information Choices: Disabled, ★Enabled. C3 State auto demotion (CPU C states Enabled) Processor will conditionally demote C6/C7 requests to C3 based on uncore auto-demote information Choices: Disabled, ★Enabled. Package C state demotion (CPU C states Enabled) Enable Package C state demotion. Choices: ★Disabled, Enabled. C1 state auto undemotion (CPU C states Enabled) Un-demotion from Demoted C1. Choices: Disabled, ★Enabled. C3 state auto undemotion (CPU C states Enabled) Un-demotion from Demoted C3. Choices: Disabled, ★Enabled. Package C state undemotion (CPU C states Enabled) Copyright © PORTWELL 2015
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Enable Package C state undemotion. Choices: ★Disabled, Enabled. C state Pre-Wake (CPU C states Enabled) Enable or disable C state Pre-Wake feature Choices: Disabled, ★Enabled. CFG lock (CPU C states Enabled) Configure MSR 0xE2 [15], CFG lock bit. Choices: Disabled, ★Enabled.
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PORTWELL PCOM-B633 Chipset Configuration Configuration Chipset feature.
ECC Support Enable or disable DDR Ecc Support The choice: Disabled, ★Enabled. Copyright © PORTWELL 2015
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VT-d Check to enable VT-d function on MCH. The choice: Disabled, ★Enabled. Above 4GB MMIO BIOS assignment Enable/Disable above 4GB MemoryMappedIO BIOS assignment The choice: ★Disabled, Enabled. Azalia Control Detection of the Azalia device. Disabled = Azalia will be unconditionally disabled. Enabled = Azalia will be unconditionally Enabled. Auto= Azalia will be enabled if present, disabled otherwise. The choice: Disabled, ★Enabled. Serial IRQ Mode Configure Serial IRQ Mode. The choice: Quiet, ★Continuous. Port 80h Redirection Control where the Port 80h cycles are sent. The choice: ★LPC Bus, PCIE Bus.
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PORTWELL PCOM-B633 AMT Configuration Configure Active Management Technology Parameters.
Intel AMT Enable/Disable Intel (R) Active Management Technology BIOS Extension Note: iAMT H/W is always enabled. The option just controls the BIOS extension execution. If enabled, this requires additional firmware in the SPI device.
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The choice: ★Disabled, Enabled. Un-Configure ME (Intel AMT Enabled) OEMF lag Bit 15: Un-Configure ME without password. The choice: ★Disabled, Enabled. Disable ME (Intel AMT Enabled) Set ME to Soft Temporary Disabled. The choice: ★Disabled, Enabled.
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PORTWELL PCOM-B633 LAN Configuration Configuration On Board LAN device.
PCH LAN Controller Enable or Disable onboard NIC. The choice: Disabled, ★Enabled. Copyright © PORTWELL 2015
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Launch Legacy PXE ROM Launch Legacy PXE Rom. [Disable] Not launch Rom, [Enable] Force launch Rom, [Auto] Auto detect LAN cable status to Enable/Disable Rom initial. x-AMI The choice: ★Disabled, Enabled, Auto.
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PORTWELL PCOM-B633 Graphics Configuration Configure Graphics Settings
Primary Display Select which of IGFX/PEG/PCI Graphics device should be Primary Display or select SG for Switchable Gfx. Choices: ★Auto, IGFX, PCIE. Copyright © PORTWELL 2015
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Primary PEG Select PEG0/ PEG1/PEG2/PEG3 Graphics device should be Primary PEG. Choices: ★Auto, PEG1, PEG2. Primary PCIE Select PCIE0/PCIE1/PCIE2/PCIE3/PCIE4/PCIE5/PCIE6/PCIE7 Graphics device should be Primary PCIE. Choices: ★Auto, PCIE1, PCIE2, PCIE3, PCIE4, PCIE5, PCIE6, PCIE7. Internal Graphics Keep IGD Enabled based on the setup options. Choices: ★Auto, Disabled, Enabled. GTT Size Select the GTT Size Choices: 2MB, 4MB, ★8MB. Aperture Size Select the Aperture Size. Note: Above 4GB MMIO BIOS assignment is automatically enabled when selecting 2048 aperture. To use this feature, please disable CSM support. Choices: 128MB, ★256MB, 512MB, 1024MB, 2048MB, 4096MB. DVMT Pre-Allocated Select DVMT 5.0 Pre-Allocated (Fixed) Graphics Memory size used by the internal Graphics Device. Choices: ★32M, 64M, 96M, 128M, 160M, 192M, 224M, 256M, 288M, 320M, 352M, 384M, 416M, 448M, 480M, 512M, 1024M, Copyright © PORTWELL 2015
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2016M. DVMT Total Gfx Mem Select DVMT 5.0 Total Graphic Memory size used by the Internal Graphic Device. Choices: 128M, ★256M, MAX. Primary IGFX Boot Display Select the Video Device which will be activated during POST. This has no effect if external graphics present. Secondary boot display selection will appear based on your selection. VGA modes will be supported only on primary display. Choices: ★VBIOS Default, CRT, EFP, LFP, EFP3, EFP2, LFP2. Secondary IGFX Boot Display (Primary IGFX Boot Display set CRT) Select Secondary Display Device. Choices: ★Disabled, CRT, EFP, LFP, EFP3, EFP2, LFP2. LCD Panel Type Select LCD panel used by Internal Graphics Device by selecting the appropriate setup item. Choices: ★VBIOS Default, 640x480 LVDS, 800x600 LVDS, 1024x768 LVDS1, 1280x1024 LVDS, 1400x1500(RB) LVDS1, 1400x1050 LVDS2, 1600x1200 LVDS, 1366x768 LVDS, 1680x1050 LVDS, 1920x1200 LVDS, 1440x900 LVDS, 1600x900 LVDS, 1024x768 LVDS2, 1280x800 LVDS, 1920x1080 LVDS, 2048x1536 LVDS. SDVO-LFP Panel Type Select SDVO panel used by Internal Graphics Device by selecting the appropriate setup item. Choices: ★VBIOS Default, 1024x768 SDVO-LFP, 1280x1024 SDVO-LFP, 1400x1050 SDVO-LFP, 1600x1200 SDVO-LFP. Panel Scaling Copyright © PORTWELL 2015
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Select the LCD panel scaling option used by the Internal Graphics Device. Choices: ★Auto, Off, Force Scaling. Backlight Control Back Light Control Setting Choices: PWM inverted, ★PWM Normal, GMBus Inverted, GMBus Normal. Spread Spectrum clock Chip Hardware: Spread is controlled by chip; Software: Spread is controlled by BIOS. Choices: ★Off, Hardware, Software. Active LFP Select the Active LFP Configuration. NO LVDS: VBIOS does not enable LVDS. eDP Port A: LFP Driven by Int-DisplayPort encoder from Port-A. Choices: ★No LVDS, eDP Port-A. Panel Color Depth Select the LFP Panel Color Depth Choices: ★18 Bit, 24 Bit.
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PORTWELL PCOM-B633 PCI/PCIE Configuration PCI, PCI –X and PCI Express Settings.
PCI Express Clock Gating Enable or disable PCI Express Clock Gating for each root port. The choice: ★Disabled, Enabled. Copyright © PORTWELL 2015
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DMI Link ASPM Control The control of Active State Power Management on both NB side and SB side of the DMI Link. The choice: ★Disabled, Enabled. DMI Link Extended Synch Control The control of Extended Synch on SB side of the DMI Link. The choice: ★Disabled, Enabled. PCIE Root Port Function Swapping Enable of disable PCI Express PCI Express Root Port Function Swapping. The choice: Disabled, ★Enabled. Subtractive Decode Enable of disable PCI Express Subtractive Decode. The choice: ★Disabled, Enabled. Subtractive Decode Port# (Subtractive Decode Enabled) Select PCI Express Subtractive Decode Root Port. User to ensure port availability. The choice: ★0, 0-7 PCI Express Root Port 1-3, 5-6 Enable or Disable the PCI Express Root Port 1-3, 5-6. Choices: ★Enabled, Disabled. ASPM PCI Express Active State Power Management settings. Copyright © PORTWELL 2015
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Choices: ★Disabled, L0s, L1, L0sL1, Auto. PCIe Speed Select PCI Express port speed. Choices: ★Auto, Gen1, Gen2.
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PORTWELL PCOM-B633 SATA Configuration SATA Device Options Settings.
SATA Controller (s) Enable or disable SATA Device. Choices: Disabled, ★Enabled. Copyright © PORTWELL 2015
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SATA Mode Selection Determines how SATA controllers (s) operate. Choices: ★AHCI, RAID. Pcie Nand Configuration (SATA Mode Selection RAID) Enable/Disable Pcie Nand Choices: ★Disabled, Enabled. SATA Controller Speed Indicates the maximum speed the SATA controller can support. Choices: ★Default, Gen1, Gen2, Gen3.
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Software Feature Mask Configuration Raid OROM/RST driver will refer to the SWFM configuration to enable or disable the storage features.
RAID 0 Enable or disable RAID0 feature. Choices: Disabled, ★Enabled. Copyright © PORTWELL 2015
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RAID 1 Enable or disable RAID1 feature. Choices: Disabled, ★Enabled. RAID 10 Enable or disable RAID10 feature. Choices: Disabled, ★Enabled. RAID 5 Enable or disable RAID5 feature. Choices: Disabled, ★Enabled. Intel Rapid Recovery Technology Enable or disable Intel Rapid Recovery Technology. Choices: Disabled, ★Enabled. OROM UI and BANNER If enabled, then the OROM UI is shown. Otherwise, no OROM banner or information will be displayed if all disks and RAID volumes are Normal. Choices: Disabled, ★Enabled. HDD Unlock If enabled, indicates that the HDD password unlock in the OS is enabled. Choices: Disabled, ★Enabled.
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LED Locate If enabled, indicates that LED/SGPIO hardware is attached and ping to locate feature is enabled on the OS. Choices: Disabled, ★Enabled. IRRT Only on eSATA If enabled, then only IRRT volumes can span internal and eSATA drives. If disabled, then any RAID volume can span internal and eSATA drives. Choices: Disabled, ★Enabled. Smart Response Technology Enable or disable Smart Response Technology. Choices: Disabled, ★Enabled. OROM UI Delay If enabled, indicates the delay of the OROM UI Splash Screen in a normal status. Choices: ★2 Seconds, 4 Seconds, 6 Seconds, 8 Seconds. Alternate ID (SATA Mode Selection RAID) Report alternate Device ID Choices: Enabled, ★Disabled.
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PORTWELL PCOM-B633 Serial ATA Port 0 - Serial ATA Port 3 Display the identity of the device attached.
Port 0 – Port 3 Enable or Disable SATA Port Choices: Disabled, ★Enabled. Copyright © PORTWELL 2015
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Hot Plug Designates this port as Hot Pluggable. Choices: ★Disabled, Enabled. External SATA External SATA Support. Choices: ★Disabled, Enabled. SATA Device Type Identify the SATA port is connected to solid state Drive or Hard Disk Driver. Choices: ★Hard Disk Drive, Solid State Drive.
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PORTWELL PCOM-B633 USB Configuration USB Configuration Parameters.
Legacy USB Support Enables Legacy USB support. AUTO option disables legacy support if no USB devices are connected. DISABLE option will keep USB devices available only for EFI applications. Copyright © PORTWELL 2015
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Choices: ★Enabled, Disabled, Auto. XHCI Legacy Support Enable/Disable XHCI Controller Legacy Support. Choices: ★Enabled, Disabled. XHCI Hand-off This is a workaround for OSes without XHCI hand-off support. The XHCI ownership change should be claimed by XHCI driver. Choices: ★Enabled, Disabled. EHCI Hand-off This is a workaround for OSes without EHCI hand-off support. The EHCI ownership change should be claimed by EHCI driver. Choices: ★Disabled, Enabled. USB Mass storage Driver Support Enable/Disable USB Mass storage Driver Support. Choices: ★Enabled, Disabled.
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PORTWELL PCOM-B633 PCH USB Configuration PCH USB Configuration
USB Precondition Precondition work on USB host controller and root ports for faster enumeration. Copyright © PORTWELL 2015
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Choices: ★Disabled, Enabled. XHCI Mode Mode of operation of xHCI controller. Choices: ★Smart Auto, Auto, Enabled, Disabled. EHCI1 (XHCI Mode Disabled) Control the USB EHCI (USB2.0) functions. One EHCI controller must always be enabled. Choices: ★Disabled, Enabled. BTCG Enabling/disabling trunk clock gating. Choices: ★Enabled, Disabled. USB Ports Per-Port Disable Control Control each of the USB Ports (0~13) disabling. Choices: ★Disabled, Enabled. USB Port #0~#8 (USB Ports Per-Port Disable Control Enabled) Enable/Disable USB port0-8 Choices: ★Enabled, Disabled.
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PORTWELL PCOM-B633 Power Control Configuration System Power Control Configuration Parameters.
Enable Hibernation Enables or disables System ability to Hibernate (OS/S4 Sleep State). This option may be not effective with some OS. Choices: Disabled, ★Enabled. Copyright © PORTWELL 2015
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ACPI Sleep State Select the highest ACPI sleep state the system will enter when the SUSPEND button is pressed. Choices: Suspend Disabled, S1 (Suspend to RAM), ★S3 (Suspend to RAM), Both S1 and S3 available for OS to choose from. Restore AC Power Loss Select AC Power state when power is re-applied after a power failure. Choices: Power off, Power on, ★Last State.
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PORTWELL PCOM-B633 TPM Configuration Trusted Computing Settings
Security Device Support Enables or Disables BIOS support for security device. O.S. will not show Security Device. TCG EFI protocol and INT1A interface will not be available. Choices: ★Disable, Enable. Copyright © PORTWELL 2015
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PORTWELL PCOM-B633 Super IO Configuration System Super IO Chip Parameters.
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Watch Dog Timer Enable/Disable Watch Dog Timer Choices: ★Disabled, Enabled. Time Unit (Watch Dog Timer Enabled) Select Timer count unit of WDT. Choices: ★Second, Minute. Timer value (Watch Dog Timer Enabled) Select WDT Timer values seconds/minutes Choices: ★20, 10-255 Seconds. Serial Port 1 Enable or Disable Serial Port (COM) Choices: Disabled, ★Enabled.
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PORTWELL PCOM-B633 Hardware Monitor Monitor hardware status.
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PORTWELL PCOM-B633 Serial Port Console Redirection Serial port Console Redirection.
Console Redirection Console Redirection Enable or Disable. Choices: Enabled, ★Disabled Copyright © PORTWELL 2015
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Console Redirection Settings (Console Redirection Enabled) The Settings specify how the host computer and the remote computer (which the user is using) will exchange data. Both computers should have the same or compatible settings.
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Terminal Type Emulation: ANSI: Extended ASCII char set. VT100: ASCII char set. VT100+: Extends VT100 to support color, function keys, etc. VT-UTF8: Uses UTF8 encoding to map Unicode chars onto 1 or more bytes. Choices: VT100, VT100+, VT-UTF8, ★ANSI. Bits per second Selects serial port transmission speed. The speed must be matched on the other side. Long or noisy lines may require lower speeds. Choices: 9600, 19200, 38400 ,57600, ★115200. Data Bits Console Redirection Enable or Disable. Choices: 7, ★8 Parity A parity bit can be sent with the data bits to detect some transmission errors. Even : parity bit is 0 if the num of 1 „s in the data bits is even. Odd : parity bit is 0 if the num of 1 „s in the data bits is odd. Mark : parity bit is always 1. Space : parity bit is always 0. Mark and Space parity do not allow for error detection. Choices: ★None, Even, Odd, Mark, Space. Stop Bits Stop bits indicate the end of a serial data packet. (A start bit indicate the beginning). The standard setting is 1 stop bit. Communication with slow devices may require more than 1 stop bit. Choices: ★1, 2. Flow control Flow control can prevent data loss from buffer overflow. When sending data, if the receiving buffers are full, a „stop‟ signal can be sent to atop the data flow. Once the buffers are empty, a „start‟ signal can be sent to re-start the flow. Hardward flow control uses two Copyright © PORTWELL 2015
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wires to send start/stop signals. Choices: ★None, Hardware RTS/CTS. VT-UTF8 Combo Key Support Enabled VT-UTF8 Combination Key Support for ANSI/VT100 teminals Choices: Disabled, ★Enabled. Recorder Mode With this mode enabled only text will be sent. This is to capture terminal data. Choices: ★Disabled, Enabled. Resolution 100x31 Enables or Disables extended terminal resolution. Choices: ★Disabled, Enabled. Legacy OS Redirection Resolution On Legacy OS, the Number of Rows and Columns supported redirection. Choices: ★80X24, 80X25. Putty keyPad Select Functionkey and keyPad on Putty. Choices: ★VT100, LINUX, XTERMR6, SCO, ESCN, VT400. Redirection After BIOS POST The Settings specify if Bootloader is selected then Legacy console redirection is disabled before booting to Legacy OS. Default value is Alawys Enable which means Legacy console Redirection is enabled for Legacy OS. Copyright © PORTWELL 2015
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Choices: ★Always Enable, Bootloader. Intel(R) Ethernet Connection (3) I218-LM- 88 :88 :88 :88 :87 :88 Configure Gigabit Ethernet device parameters
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PORTWELL PCOM-B633 NIC Configuration Click to configure the network device port.
Link Speed Specifies the port speed used for the selected boot protocol. Copyright © PORTWELL 2015
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Choices: ★Auto Negotiated, 10 Mbps Half, 10 Mbps Full, 100 Mbps Half, 100Mbps Full. Wake On LAN Enables the server to be powered on using an in-band magic packet. Choices: Disabled, ★Enabled. Blink LEDs Identify the physical network port by blinking the associated LED. Choices: ★0, 0-15 Link Status Link Status Choices: ★Disconnected.
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8.4 Security
Administrator Password Set Setup Administrator Password Copyright © PORTWELL 2015
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User Password Set User Password
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8.5
PORTWELL PCOM-B633
Boot
Setup Prompt Timeout Number of seconds to wait for setup activation key. 65535 (0xFFFFF) means indefinite waiting. Choices: ★1, 1-65535. Copyright © PORTWELL 2015
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Bootup NumLock state Select the keyboard NumLock state. Choices: ★On, Off. GateA20 Active UPON REQUEST – GA20 can be disabled using BIOS services. ALWAYS – do not allow disabling GA20; this option is useful when any RT code is executed above 1MB. Choices: ★Upon Request, Always. Option ROM Messages Set display mode for Option ROM. Choices: ★Force BIOS, Keep Current Storage Controls the execution of UEFI and Legacy Storage OpROM Choices: Do not launch, UEFI, ★Legacy. Full screen Logo Enables or disables boot with initialization of a minimal set of devices required to launch active boot option. Has no effect for BBS boot options. Choices: Disabled, ★Enabled. Fast Boot Enables or disables boot with initialization of a minimal set of devices required to launch active boot option. Has no effect for BBS boot options. Copyright © PORTWELL 2015
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Choices: ★Disable Link, Enabled. SATA Support (Fast Boot Enabled) Choices: Last Boot HDD only, ★All Sata Devices. VGA Support (Fast Boot Enabled) If Auto, only install Legacy OpRom with Legacy OS and logo would NOT be shown during post. Efi driver will still be installed with EFI OS. Choices: Auto, ★EFI Driver. USB Support (Fast Boot Enabled) If Disabled, all USB devices will NOT be available until after OS boot. If Partial Initial, USB Mass Storage and specific USB port/device will NOT be available before OS boot. If Enabled, all USB devices will be available in OS and Post. Choices: Disable Link, Full Initial , ★Partial Initial. PS2 Devices Support (Fast Boot Enabled) If Disabled, PS2 devices will be skipped. Choices: Disable Link, ★Enabled. Network Stack Driver Support (Fast Boot Enabled) If Disabled, Network Stack Driver will be skipped. Choices: ★Disable Link, Enabled. Boot Option #1 Sets the system boot order Choices: ★UEFI: Built-in EFI Shell, Disabled. Copyright © PORTWELL 2015
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8.6 Save & Exit
Save Changes and Reset Reset the system after saving the changes. Copyright © PORTWELL 2015
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Pressing on this item asks for confirmation: Save configuration and reset. Discard Changes and Exit Reset system setup without saving any changes. Restore Defaults Restore/Load Default values for all the setup options. UEFI: Built-in EFI Shell Choices: ★Yes, No. Launch EFI Shell from filesystem device Arrempts to Launch EFI Shell application (Shell.efi) from one one of the available filesystem devices Boot into the initial shell environment, it can debug and dump the PCI Resource or jump to next bootable device. If it doesn‟t have boot device, it will return to BIOS setup menu. If you want to know the shell command, you can visit the Intel official hyperlink as below.
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9 Troubleshooting This section provides a few useful tips to quickly get PCOM-B633 running with success. This section will primarily focus on system integration issues, in terms of BIOS setting, and OS diagnostics.
9.1 BIOS Setting It is assumed that users have correctly adopted modules and connected all the devices cables required before turning on ATX power. 204-pin DDR3L Memory, keyboard, mouse, SATA hard disk, VGA connector, power cable of the device, ATX accessories are good examples that deserve attention. With no assurance of properly and correctly accommodating these modules and devices, it is very possible to encounter system failures that result in malfunction of any devices. To make sure that you have a successful start with PCOM-B633, it is recommended, when going with the boot-up sequence, to hit “del ” or ” Esc” key and enter the BIOS setup menu to tune up a stable BIOS configuration so that you can wake up your system far well.
Loading the default optimal setting When prompted with the main setup menu, please scroll down to “Restore Defaults”, press “Enter” and select “Yes” to load default optimal BIOS setup. This will force your BIOS setting back to the initial factory configurations. It is recommended to do this so you can be sure the system is running with the BIOS setting that PORTWELL has highly endorsed. As a matter of fact, users can load the default BIOS setting at any time when system appears to be unstable in boot up sequence. Copyright © PORTWELL 2015
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9.2 FAQ Information & Support Question: How to update the BIOS file of PCOM-B633? Answer: 1. Please visit web site of PORTWELL download center as below hyperlink http://www.PORTWELL.com.tw/support/download_center.php Registering an account in advance is a must. (The E-Mail box should be an existing Company email address that you check regularly.) http://www.PORTWELL.com.tw/member/newmember.php 2. Type in your User name and password and log in the download center. 3. Select “Search download” and type the keyword “PCOM-B633”. 4. Find the “BIOS “page and download the ROM file and flash utility. 5. Unzip file to bootable USB flash drive which can boot to dos mode. Then execute the “update.bat”. It will start to update BIOS.
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6. When you see the “FPT Operation Passed” message, which means the BIOS update processes finished. Please cut the AC power off and wait for 10 seconds before powering on.
7. Press “del” key into the BIOS setup menu and switch to “Save & Exit” page then select “Restore Defaults” option and press “Yes” then select “Save Changes and Reset” to finish all BIOS update processes.
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Note: Please visit our Download Center to get the Catalog, User manual, BIOS, and driver files. http://www.PORTWELL.com.tw/support/download_center.php If you have other additional technical information or request which is not covered in this manual, please fill in the technical request form as below hyperlink. http://www.PORTWELL.com.tw/support/problem_report.php We will do our best to provide a suggestion or solution for you. Thanks
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10 PORTWELL Software Service PORTWELL Evaluation Tool (PET) The PORTWELL Evaluation Tool (PET) is an API which PORTWELL's customers can access the GPIO, I2C, SMBus, etc under Windows and Linux OS. For more information please contact PORTWELL. PORTWELL BIOS web Tool (PBT) The PORTWELL BIOS web Tool (PBT) is a brand new on-line utility which innovated by PORTWELL. PBT now is available for PORTWELL's premiere customers who are able to add customized BIOS logo and change BIOS default settings on American Megatrends (AMI) BIOS. Please contact PORTWELL for more information. PORTWELL EC Auto Test Tool (PECAT) The PORTWELL EC Auto Test Tool (PECAT) is a brand new utility which innovated by PORTWELL. PECAT now is available for PORTWELL's premiere customers, who are able to Test Embedded Controller Function in UEFI Mode. Please contact PORTWELL for more information.
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11 Industry Specifications The list below provides links to industry specifications that apply to PORTWELL modules. Low Pin Count Interface Specification, Revision 1.0 (LPC) http://www.intel.com/design/chipsets/industry/lpc.htm Universal Serial Bus (USB) Specification, Revision 2.0 http://www.usb.org/home PCI Specification, Revision 2.3 https://www.pcisig.com/specifications Serial ATA Specification, Revision 3.0 http://www.serialata.org/ PICMG® COM Express Module™ Base Specification http://www.picmg.org/ PCI Express Base Specification, Revision 2.0 https://www.pcisig.com/specifications
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