COM Express Type 6 Stacking Carrier CTIM-00470 Revision 0.09 2020-12-16

COM Express Type 6 Stacking Carrier Users Guide www.connecttech.com

TABLE OF CONTENTS

Table of Contents ...... 2 Preface ...... 5 Disclaimer ...... 5 Customer Support Overview ...... 5 Contact Information ...... 5 Limited Product Warranty ...... 6 Copyright Notice ...... 6 Trademark Acknowledgment ...... 6 ESD Warning ...... 7 Revision History ...... 7 Introduction ...... 8 Product Features and Specifications ...... 8 Part Numbers / Ordering Information ...... 9 Product Overview ...... 10 Block Diagram ...... 10 Connector Summary & Locations ...... 11 DIP Switch Summary ...... 12 Detailed Feature Description ...... 13 COM Express ...... 13 Connectors ...... 13 COM Express Fan...... 14 Connect Tech High Density Breakout Connector ...... 15 Connector A – Bank A...... 15 Connector A – Bank B ...... 17 Connector A – Bank C ...... 18 Connector B – Bank A ...... 19 Connector B – Bank B ...... 20 Connector B – Bank C ...... 21 Display Outputs ...... 22 VGA Video Connector ...... 22 LVDS Connector ...... 23 DisplayPort/HDMI/DVI – HDC ...... 24 COM Express Module DisplayPort/HDMI/DVI ...... 24 HD Audio – HDC ...... 25 Software Support for the CS4207 ...... 25 10/100/1000 (GBE) – HDC ...... 26 Software Support for the 82574 ...... 26 Serial – HDC ...... 26 Serial Configuration ...... 27

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SW2 DIP Switch – Serial Transceiver Control ...... 27 Locked/Hardwired Configuration ...... 27 Dual RS-232 ...... 27 Serial 0 RS-232/Serial 1 RS-485 ...... 28 Dual RS-485 ...... 28 Dual Disable ...... 28 USB 2.0/3.0 – HDC ...... 29 microSD Card Slot ...... 30 SATA – HDC ...... 31 Mini-PCIe/mSATA Slots ...... 32 Dual Function Mini-PCIe/mSATA Slots ...... 32 Full and Half Length Mini-PCIe/mSATA Module Installation ...... 33 HDC and Mini-PCIe/mSATA ...... 33 SATA/PCI Express – HDC ...... 34 PCI Express – HDC ...... 35 PCI Express Graphics (PEG) – HDC ...... 36 PCI Express Bifurcation...... 36 Miscellaneous System Functions ...... 37 System Connector - I2C, SMB, System Control ...... 37 Switch Banks ...... 38 SW1 DIP Switch – Carrier Control ...... 38 Input Power and Control...... 38 Power Input – HDC ...... 38 ATX Power Functionality ...... 38 Locked/Hardwired Configuration ...... 39 RTC Battery ...... 39 Output Power...... 39 +12.0V Power Output – HDC ...... 39 +5V Power Output – HDC ...... 40 +3.3V Power Output – HDC ...... 40 Current Consumption ...... 40 Typical Installation ...... 41 On-Board Indicator LEDs ...... 41 Power Consumption ...... 42 Mechanical Drawings & Models ...... 42 Top View ...... 43 CTI Breakout Boards ...... 44 Available Breakout Boards ...... 44 Breakout Board XBG601 Technical Details ...... 45 Block Diagram ...... 45 Connector Locations ...... 46 Input Power Connector ...... 46 Serial RS-232/485 ...... 47 COM Express Fan...... 47 Mini-PCIe/mSATA ...... 48 Document: CTIM-00470 Page 3 of 55 Date: 2020-12-16 Revision: 0.09

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HDMI and Display Port ...... 49 M.2 Storage ...... 50 USB 2.0/3.0...... 50 Network Ports ...... 51 PCI Express ...... 52 PCI Express Power ...... 53 HD Audio ...... 53 Custom Breakout Board ...... 54 Reference Design Package - COM Express Type 6 Breakout Board ...... 54 Cables ...... 55

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PREFACE Disclaimer

The information contained within this user’s guide, including but not limited to any product specification, is subject to change without notice.

Connect Tech 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.

Customer Support Overview

If you experience difficulties after reading the manual and/or using the product, contact the Connect Tech reseller from which you purchased the product. In most cases the reseller can help you with product installation and difficulties.

In the event that the reseller is unable to resolve your problem, our highly qualified support staff can assist you. Our support section is available 24 hours a day, 7 days a week on our website : https://connecttech.com/support/resource-center/. See the contact information section below for more information on how to contact us directly. Our technical support is always free.

Contact Information

Contact Information Mail/Courier Connect Tech Inc. Technical Support 42 Arrow Road Guelph, Ontario Canada N1K 1S6 Contact Information [email protected] [email protected] www.connecttech.com

Toll Free: 800-426-8979 (North America only) Telephone: +1-519-836-1291 Facsimile: 519-836-4878 (on-line 24 hours) Support Please go to the Connect Tech Resource Center for product manuals, installation guides, device drivers, BSPs and technical tips.

Submit your technical support questions to our support engineers. Technical Support representatives are available Monday through Friday, from 8:30 a.m. to 5:00 p.m. Eastern Standard Time.

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Limited Product Warranty

Connect Tech Inc. provides a two-year Warranty for this product. Should this product, in Connect Tech Inc.'s opinion, fail to be in good working order during the warranty period, Connect Tech Inc. will, at its option, repair or replace this product at no charge, provided that the product has not been subjected to abuse, misuse, accident, disaster or non-Connect Tech Inc. authorized modification or repair.

You may obtain warranty service by delivering this product to an authorized Connect Tech Inc. business partner or to Connect Tech Inc. along with proof of purchase. Product returned to Connect Tech Inc. must be pre-authorized by Connect Tech Inc. with an RMA (Return Material Authorization) number marked on the outside of the package and sent prepaid, insured and packaged for safe shipment. Connect Tech Inc. will return this product by prepaid ground shipment service.

The Connect Tech Inc. Limited Warranty is only valid over the serviceable life of the product. This is defined as the period during which all components are available. Should the product prove to be irreparable, Connect Tech Inc. reserves the right to substitute an equivalent product if available or to retract the Warranty if no replacement is available.

The above warranty is the only warranty authorized by Connect Tech Inc. Under no circumstances will Connect Tech Inc. be liable in any way for any damages, including any lost profits, lost savings or other incidental or consequential damages arising out of the use of, or inability to use, such product.

Copyright Notice

The information contained in this document is subject to change without notice. Connect Tech Inc. shall not be liable for errors contained herein or for incidental consequential damages in connection with the furnishing, performance, or use of this material. This document contains proprietary information that is protected by copyright. All rights are reserved. No part of this document may be photocopied, reproduced, or translated to another language without the prior written consent of Connect Tech, Inc.

Copyright  2020 by Connect Tech, Inc.

Trademark Acknowledgment

Connect Tech, Inc. acknowledges all trademarks, registered trademarks and/or copyrights referred to in this document as the property of their respective owners. Not listing all possible trademarks or copyright acknowledgments does not constitute a lack of acknowledgment to the rightful owners of the trademarks and copyrights mentioned in this document.

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ESD Warning

Electronic components and circuits are sensitive to ElectroStatic Discharge (ESD). When handling any circuit board assemblies including Connect Tech COM Express carrier assemblies, it is recommended that ESD safety precautions be observed. ESD safe best practices include, but are not limited to:

• Leaving circuit boards in their antistatic packaging until they are ready to be installed. • Using a grounded wrist strap when handling circuit boards, at a minimum you should touch a

grounded metal object to dissipate any static charge that may be present on you. • Only handling circuit boards in ESD safe areas, which may include ESD floor and table mats, wrist strap stations and ESD safe lab coats. • Avoiding handling circuit boards in carpeted areas. • Try to handle the board by the edges, avoiding contact with components.

REVISION HISTORY

Revision Date Changes 0.00 2016-10-27 Initial Revision 0.01 2017-12-19 Updated RTC Battery Information, Formatting 0.02 2017-01-10 Updated Mini-PCIe/mSATA Information, Formatting 0.03 2017-02-13 Minor Formatting 0.04 2017-05-24 Specification corrections and Formatting, All Signals Now Described from HOST Perspective. 0.05 2017-07-11 Added cable drawing links, removed drawings from doc. 0.06 2017-09-20 Specification corrections, added power consumption 0.07 2017-10-31 Minor Formatting 0.08 2017-12-19 Specification corrections, added XBG601 details, updated block diagrams 0.09 2020-12-16 Updated format Updated M.2 B key description

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INTRODUCTION

The Connect Tech’s COM Express® Type 6 Carrier provides high density board to board connectors for use with either off-the-shelf or custom breakout boards, dramatically reducing the need for cabling.

With all of the complex circuitry already on the carrier, such as Gigabit Ethernet, USB 3.0, Serial, and Display, the design of a unique breakout board can be done with minimal effort using Connect Tech’s design services or by the user.

Use with off the shelf breakout boards, or easily design a custom breakout board to meet your needs. Access to the COM Express PCI Express x16 Bus enables high data throughout or bifurcation design options. In addition, both unused SATA Links and PCIe x1 Links with clocks are provided to the breakout board. All this allows for breakout board expansion to meet your design needs.

Product Features and Specifications

Specifications COM Express Compatibility COM Express® Type 6 (PICMG COM Express® COM.0 R2.1) PCB Size / Overall Size 125mm x 95mm (4.921” x 3.740”)

3D STEP Model: download here Display 2x DisplayPort/HDMI/DVI (COM Express Selection) Links 1x VGA Link 1x LVDS Link Ethernet 4x Gigabit Ethernet (10/100/1000) Links USB 4x USB 3.0 Links 4x USB 2.0 Links 3x USB 2.0 Links (Mini-PCIe) SATA 4x SATA Links Audio HD Audio Link: 1x Input, 1x Output Serial 2x RS-232/RS-485 Links Mini-PCIe/mSATA 3x Mini-PCIe/mSATA Full Sized (Unused PCI Express or SATA Links are Routed to High Density Connector for use on Breakout Board) SD Card 1x microSD Card Slot (Uses GPIO Pins) PCI Express 5x PCIe x1 Link with PCIe CLK Links (3x PCIe x1 Links from Unused Mini-PCIe Slots) 1x PCIe x16 Link with 4x PCIe CLK Links (For Bifurcation Use) Misc. 1x SMB Link 1x FAN Link 1x I2C Link Power Operation ATX Compliant Operation

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SUS_S3# Controlled (Default Option) SUS_S5# Controlled (Population Option) Power Requirements +12V DC Input RTC Battery Implemented on Breakout Board Operating Temperature -40°C to +85°C Accessories Breakout Boards Cable Kit Warranty and Support 2 Year Warranty and Free Support

Part Numbers / Ordering Information

Part Number CCG060 COM Express® Type 6 Stacking Carrier XBG601 COM Express® Type 6 Stacking Carrier Breakout Board

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PRODUCT OVERVIEW Block Diagram

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Connector Summary & Locations

Designator Connector Description P1 COM Express COM Express Module Connector P2 FAN Header FAN Header with +12V @ 0.5A, GND, PWM, and TACH P3 System Header System Header with SMB, I2C, and System Controls P4 VGA Header VGA Header P5 LVDS Header LVDS Header P6A/B/C Mini-PCIe/mSATA Slot Mini-PCIe/mSATA Half/Full Sized Card Slot P7 microSD Card Slot microSD Card Slot P8 High Density Board to Board Connect Tech High Density Board to Board Connector A Connector A with Output Power P9 High Density Board to Board Connect Tech High Density Board to Board Connector B Connector B with Input Power

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DIP Switch Summary

Designator Function Description SW1PWR ATX Power Bypass DIP Switch for Disabling ATX Power Functionality SW1A Mini-PCIe/mSATA DIP Switches for Selecting Mini-PCIe/mSATA Slot (P6A) Operation Selection (P6A) SW1B Mini-PCIe/mSATA DIP Switches for Selecting Mini-PCIe/mSATA Slot (P6B) Operation Selection (P6B) SW1C Mini-PCIe/mSATA DIP Switches for Selecting Mini-PCIe/mSATA Slot (P6C) Operation Selection (P6C) SW2A Serial Selection DIP Switches for Controlling Serial Format and Related Features SW2B Serial Selection DIP Switches for Controlling Serial Format and Related Features SW2C Serial Selection DIP Switches for Controlling Serial Format and Related Features SW2D Serial Selection DIP Switches for Controlling Serial Format and Related Features SW2E Serial Selection DIP Switches for Controlling Serial Format and Related Features SW2F Serial Selection DIP Switches for Controlling Serial Format and Related Features

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DETAILED FEATURE DESCRIPTION

In COM Express Systems, the processor and chipset are implemented on the COM Express Module. This connects to the COM Express Type 6 Carrier via a TE Board to Board Connector. There are various connector pin configurations, known as Types. Please ensure you are only connecting a Type 6 COM Express Module to the COM Express Type 6 Carrier.

Through this section there are mix of features that are fully implemented on this carrier and some that require the breakout board.

COM Express

The processor and chipset are implemented on the COM Express Type 6 Module, which connects to the COM Express Type 6 Carrier Board via a Tyco fine pitch stacking connector.

Connectors

Function COM Express Interface Location P1 Type TE Connectivity Board to Board Connector Carrier 3-6318491-6 Connector Manufacturer: TE Connectivity P/N Mating 3-1827231-6 Connector Manufacturer: TE Connectivity P/N Pinout Refer to COM Express R2.1 specification, Type 6

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COM Express Fan

If provided, the COM Express CPU Fan can be powered from the Carrier, or from a custom breakout board.

Function COM Express Fan Control Location P2

Type FCI Minitek Double Row 3 x 2 P/N 98414-G06-06LF Mating 10073599-006LF Pinout Pin Description 1 +12V 2 +12V 3 PWM 4 TACH 5 GND 6 GND Design No additional circuitry required Instructions Advanced fan control and isolation circuitry present on CCG060 Route direct to header/connector/device

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Connect Tech High Density Breakout Connector

The COM Express Type 6 Carrier main advantage is the Dual High-Density Connector (HDC) allowing for easy custom breakout boards. The HDC contains a large number of different signals that have been broken up into three primary banks. Please note that all signals are described from the HOST perspective.

Connector A – Bank A

Function Connect Tech High Density Connector A Location P8 Type Samtec Qstrip High Speed Ground Plane Socket CCG060 P/N QSH-090-01-L-D-A Mating P/N QTH-090-XX-L-D-A Pinout Bank A Description Pin Pin Description GBE_D_LINK1000# 1 2 GND GBE_D_LINK100# 3 4 SATA_RX_N GBE_D_LINK# 5 6 SATA_RX_P GBE_D_ACT# 7 8 GND - 9 10 SATA_TX_N GBE_D_MDI0_P 11 12 SATA_TX_P GBE_D_MDI0_N 13 14 GND GBE_D_MDI1_P 15 16 GND GBE_D_MDI1_N 17 18 USB3D_VBUS GBE_D_MDI2_P 19 20 GND GBE_D_MDI2_N 21 22 USB3D_SS_RX_P GBE_D_MDI3_P 23 24 USB3D_SS_RX_N GBE_D_MDI3_N 25 26 GND - 27 28 USB3D_SS_TX_P GBE_D_GND 29 30 USB3D_SS_TX_N GBE_C_GND 31 32 GND - 33 34 USB3D_DATA_N GBE_C_MDI0_P 35 36 USB3D_DATA_P GBE_C_MDI0_N 37 38 GND GBE_C_MDI1_P 39 40 USB3C_VBUS GBE_C_MDI1_N 41 42 GND GBE_C_MDI2_P 43 44 USB3C_SS_RX_P GBE_C_MDI2_N 45 46 USB3C_SS_RX_N GBE_C_MDI3_P 47 48 GND

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GBE_C_MDI3_N 49 50 USB3C_SS_TX_P - 51 52 USB3C_SS_TX_N GBE_C_ACT# 53 54 GND GBE_C_LINK# 55 56 USB3C_DATA_N GBE_C_LINK100# 57 58 USB3C_DATA_P GBE_C_LINK1000# 59 60 GND

+12V_CCG060 BLADE_A +12V_CCG060

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Connector A – Bank B

Pinout Description Pin Pin Description Bank B RESET# 61 62 DDI_B_PWR GND 63 64 GND HP_OUT_LEFT 65 66 DDI_B_CONFIG HP_OUT_RIGHT 67 68 DDI_B_HPD# GND 69 70 GND MIC_IN_LEFT 71 72 DDI_B_LANE0_P MIC_IN_RIGHT 73 74 DDI_B_LANE0_N GND 75 76 GND USB3B_VBUS 77 78 DDI_B_LANE3_P GND 79 80 DDI_B_LANE3_N USB3B_SS_RX_P 81 82 GND USB3B_SS_RX_N 83 84 DDI_B_LANE1_P GND 85 86 DDI_B_LANE1_N USB3B_SS_TX_P 87 88 GND USB3B_SS_TX_N 89 90 DDI_B_LANE2_P GND 91 92 DDI_B_LANE2_N USB3B_DATA_N 93 94 GND USB3B_DATA_P 95 96 DDI_B_AUX_P GND 97 98 DDI_B_AUX_N USB3A_VBUS 99 100 GND GND 101 102 USB2D_VBUS USB3A_SS_RX_P 103 104 GND USB3A_SS_RX_N 105 106 USB2D_DATA_N GND 107 108 USB2D_DATA_P USB3A_SS_TX_P 109 110 GND USB3A_SS_TX_N 111 112 USB2C_VBUS GND 113 114 GND USB3A_DATA_N 115 116 USB2C_DATA_N USB3A_DATA_P 117 118 USB2C_DATA_P GND 119 120 GND

+5V_CCG060 BLADE_B +5V_CCG060

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Connector A – Bank C

Pinout Description Pin Pin Description Bank C GND 121 122 DDI_A_PWR PCIE_CLK_AA_N 123 124 GND PCIE_CLK_AA_P 125 126 DDI_A_CONFIG GND 127 128 DDI_A_HPD# A_SATA_TX_P/PCIE_TX_P 129 120 GND A_SATA_TX_N/PCIE_TX_N 131 132 DDI_A_LANE0_P GND 133 134 DDI_A_LANE0_N A_SATA_RX_N/PCIE_RX_P 135 136 GND A_SATA_RX_P/PCIE_RX_N 137 138 DDI_A_LANE3_P GND 139 140 DDI_A_LANE3_N GND 141 142 GND PCIE_CLK_AB_N 143 144 DDI_A_LANE1_P PCIE_CLK_AB_P 145 146 DDI_A_LANE1_N GND 147 148 GND B_SATA_TX_P/PCIE_TX_P 149 150 DDI_A_LANE2_P B_SATA_TX_N/PCIE_TX_N 151 152 DDI_A_LANE2_N GND 153 154 GND B_SATA_RX_N/PCIE_RX_P 155 156 DDI_A_AUX_P B_SATA_RX_P/PCIE_RX_N 157 158 DDI_A_AUX_N

GND 159 160 GND GND 161 162 USB2A_VBUS PCIE_CLK_AC_N 163 164 GND PCIE_CLK_AC_P 165 166 USB2A_DATA_N GND 167 168 USB2A_DATA_P C_SATA_TX_P/PCIE_TX_P 169 170 GND C_SATA_TX_N/PCIE_TX_N 171 172 USB2B_VBUS GND 173 174 GND C_SATA_RX_N/PCIE_RX_P 175 176 USB2B_DATA_N C_SATA_RX_P/PCIE_RX_N 177 178 USB2B_DATA_P GND 179 180 GND

+3.3V_CCG060 BLADE_C +3.3VV_CCG060

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Connector B – Bank A

Function Connect Tech High Density Connector B Location P9 Type Samtec Qstrip High Speed Ground Plane Socket CCG060 P/N QSH-090-01-L-D-A Mating P/N QTH-090-XX-L-D-A Pinout Bank A Description Pin Pin Description GBE_B_LINK1000# 1 2 GND GBE_B_LINK100# 3 4 UART1_RX_N GBE_B_LINK# 5 6 UART1_RX_P GBE_B_ACT# 7 8 UART1_TX_N - 9 10 UART1_TX_P GBE_B_MDI0_P 11 12 GND GBE_B_MDI0_N 13 14 UART0_RX_N GBE_B_MDI1_P 15 16 UART0_RX_P GBE_B_MDI1_N 17 18 UART0_TX_N GBE_B_MDI2_P 19 20 UART0_TX_P GBE_B_MDI2_N 21 22 GND GBE_B_MDI3_P 23 24 PCIE_CLK_BB_P GBE_B_MDI3_N 25 26 PCIE_CLK_BB_N - 27 28 GND GBE_B_GND 29 30 PCIE_B_RX_P GBE_A_GND 31 32 PCIE_B_RX_N - 33 34 GND GBE_A_MDI0_P 35 36 PCIE_B_TX_P GBE_A_MDI0_N 37 38 PCIE_B_TX_N GBE_A_MDI1_P 39 40 GND GBE_A_MDI1_N 41 42 GND GBE_A_MDI2_P 43 44 PCIE_CLK_BA_P

GBE_A_MDI2_N 45 46 PCIE_CLK_BA_N GBE_A_MDI3_P 47 48 GND GBE_A_MDI3_N 49 50 PCIE_A_RX_P - 51 52 PCIE_A_RX_N GBE_A_ACT# 53 54 GND GBE_A_LINK# 55 56 PCIE_A_TX_P GBE_A_LINK100# 57 58 PCIE_A_TX_N GBE_A_LINK1000# 59 60 GND

+VIN (+12V) BLADE_A +VIN (+12V)

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Connector B – Bank B

Pinout Description Pin Pin Description Bank B GND 61 62 GND PCIE_CLK_XD_P 63 64 PCIE_CLK_XC_P PCIE_CLK_XD_N 65 66 PCIE_CLK_XC_N GND 67 68 GND GND 69 70 GND PEG_RX0_P 71 72 PEG_TX0_P PEG_RX0_N 73 74 PEG_TX0_N GND 75 76 GND PEG_RX1_P 77 78 PEG_TX1_P PEG_RX1_N 79 80 PEG_TX1_N GND 81 82 GND PEG_RX2_P 83 84 PEG_TX2_P PEG_RX2_N 85 86 PEG_TX2_N GND 87 88 GND PEG_RX3_P 89 90 PEG_TX3_P PEG_RX3_N 91 92 PEG_TX3_N GND 93 94 GND GND 95 96 GND PEG_RX4_P 97 98 PEG_TX4_P PEG_RX4_N 99 100 PEG_TX4_N GND 101 102 GND PEG_RX5_P 103 104 PEG_TX5_P PEG_RX5_N 105 106 PEG_TX5_N GND 107 108 GND PEG_RX6_P 109 110 PEG_TX6_P PEG_RX6_N 111 112 PEG_TX6_N GND 113 114 GND PEG_RX7_P 115 116 PEG_TX7_P PEG_RX7_N 117 118 PEG_TX7_N GND 119 120 GND

+VIN (+12V) BLADE_B +VIN (+12V)

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Connector B – Bank C

Pinout Description Pin Pin Description Bank C GND 121 122 GND PCIE_CLK_XB_P 123 124 PCIE_CLK_XA_P PCIE_CLK_XB_N 125 126 PCIE_CLK_XA_N GND 127 128 GND GND 129 120 GND PEG_RX8_P 131 132 PEG_TX8_P PEG_RX8_N 133 134 PEG_TX8_N GND 135 136 GND PEG_RX9_P 137 138 PEG_TX9_P PEG_RX9_N 139 140 PEG_TX9_N GND 141 142 GND PEG_RX10_P 143 144 PEG_TX10_P PEG_RX10_N 145 146 PEG_TX10_N GND 147 148 GND PEG_RX11_P 149 150 PEG_TX11_P PEG_RX11_N 151 152 PEG_TX11_N GND 153 154 GND GND 155 156 GND PEG_RX12_P 157 158 PEG_TX12_P PEG_RX12_N 159 160 PEG_TX12_N GND 161 162 GND PEG_RX13_P 163 164 PEG_TX13_P PEG_RX13_N 165 166 PEG_TX13_N GND 167 168 GND PEG_RX14_P 169 170 PEG_TX14_P PEG_RX14_N 171 172 PEG_TX14_N GND 173 174 GND PEG_RX15_P 175 176 PEG_TX15_P PEG_RX15_N 177 178 PEG_TX15_N GND 179 180 GND

+VIN (+12V) BLADE_C +VIN (+12V)

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Display Outputs

VGA Video Connector

To allow for greater flexibility, the COM Express Type 6 Carrier provides a VGA Video Output. Routed directly from the COM Express Type-6 Module, this provides additional video output formats for operation. The VGA can be connected either to a mating cable, or linked to a breakout board by using the board mating connector.

Function VGA Video Location P4

Type FCI Minitek Double Row 5 x 2 P/N 98414-G06-10LF Board ESQT-105-02-L-D-XXX Mating Cable Mating 10073599-010LF Cable CBG120 Pinout Pin Description Pin Description 1 DAC RED 2 GND 3 DAC GREEN 4 - 5 DAC BLUE 6 SC DDC 7 HSYNC 8 SD DDC 9 VSYNC 10 GND Design No additional circuitry required Instructions Route direct to header/connector/device

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LVDS Connector

To allow for greater flexibility, the COM Express Type 6 Carrier provides a VGA Video Output. Routed directly from the COM Express Type-6 Module, this provides additional video output formats for operation. The VGA can be connected either to a mating cable, or linked to a breakout board by using the board mating connector.

Function LVDS/Embedded DisplayPort Connector Location P5

Type Hirose Low Profile Board to Cable Connector P/N DF20G-40DP-1V(56) Mating DF20A-40DS Cable Mating 10073599-010LF Cable CBG125 Pinout Pin Description Pin Description 1 LVDS B0- 2 PANEL VCC[1] 3 LVDS B0+ 4 PANEL VCC[1] 5 GND 6 GND 7 LVDS B1- 8 GND 9 LVDS B1+ 10 LVDS A0- 11 GND 12 LVDS A0+ 13 LVDS B2- 14 GND 15 LVDS B2+ 16 LVDS A1- 17 GND 18 LVDS A1+ 19 LVDS B CLK- 20 GND 21 LVDS B CLK+ 22 LVDS A2- 23 GND 24 LVDS A2+ 25 LVDS B3- 26 GND

27 LVDS B3+ 28 LVDS A CLK- 29 GND 30 LVDS A CLK+ 31 GND 32 GND 33 LVDS PPEN 34 LVDS A3- 35 - 36 LVDS A3+ 37 LVDS BLT 38 LVDS BLC CLK CTRL 39 LVDS BLEN 40 LVDS BLC DAT Note [1] PANEL VCC is Default Configured to +3.3V. There are Population Options to change this to +5V or +12V. Please contact [email protected] or [email protected] for details.

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DisplayPort/HDMI/DVI – HDC

The COM Express Type 6 Carrier features multiple display output format capabilities with the assistance of the Digital Display Interface (DDI) available from the COM Express Module.

Function DisplayPort/HDMI/DVI Location P8 HDC Bank B and C Pins DisplayA – 122, 126, 128, 132, 134, 138, 140, 144, 146, 150, 152, 156, 158 DisplayB – 62, 66, 68, 72, 74, 78, 80, 84, 86, 90, 92, 96, 98 Design Instruction CONFIG Pin (DDI_DDC_AUX_SEL Pin): Pull Up to +3.3V for HDMI or DVI Use (1K Ohm Resistor) Pull Down to GND or Float for DisplayPort Use

1M Ohm Pull Down on DDI_DDC_AUX_SEL Pin on COM Express Module (Refer to Table 4-17 in PCIMG COM.0 COM Express Base Specification R2.1)

10K Ohm Pull Down on CONFIG Pin on CCG060

ESD protection placed upon CCG060 Route direct to header/connector/device

COM Express Module DisplayPort/HDMI/DVI The COM Express Specification has multiple display output formats, including DisplayPort, HDMI, and DVI as part of the Digital Display Interface (DDI). The COM Express Type 6 Carrier HDC allows access to display all of these formats. The COM Express DDI may require a change to the COM Express BIOS to swap output formats. Please refer to your COM Express Module Manual/BIOS Instructions for additional details.

Control of Digital Display Interface Auto Selection (DisplayPort/HDMI/DVI) is done via the DDI_DDC_AUX_SEL Pin on the COM Express Module. This is connected to the CONFIG Pin on the HDC Connector. There is a 1M Ohm Pull Down on the DDI_DDC_AUX_SEL Pin on the COM Express Module (Refer to Table 4-17 in PCIMG COM.0 COM Express Base Specification R2.1) as well as a 10K Ohm Pull Down on CONFIG Pin on CCG060. Connect the CONFIG Pin to the CONFIG1 or CONFIG2 Pin on a DisplayPort Connector.

To hard select DisplayPort or HDMI or DVI, appropriate Pull Ups or Pull Downs are required on the CONFIG Pin provided from the HDC. See the design instructions above.

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HD Audio – HDC

The COM Express Type 6 Carrier features HD Audio capabilities with the assistance of the Cirrus Logic CS4207 Codec device. From the Codec, 1 Microphone Input and 1 Headphone Output are available on the HDC.

Function HD Video Location P8 HDC Bank B Pins 65, 67, 71, 73 Design Instruction No additional circuitry required Route direct to header/connector/device

Software Support for the CS4207

The audio codec used on the COM Express Type 6 Carrier is the CS4207 from Cirrus Logic.

Additional drivers will be needed to properly operate audio on the COM Express Type 6 Carrier. Some downloadable links can be found below.

Windows XP Driver: https://www.cirrus.com/support/software/lic3/?uri=/pubs/software/CS4207_WinXP_1-0-0-38.zip

Windows 7/8 Driver: https://www.cirrus.com/support/software/lic3/?uri=/pubs/software/CS4207_LogoedDriverPackage_6- 6001-1-39.zip

Linux Driver: Included in kernels 2.6.30 and up.

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10/100/1000 Ethernet (GBE) – HDC

Function Gigabit Ethernet Location P8/P9 HDC Bank A/A Pins GBE_A – 35, 37, 39, 41, 43, 45, 47, 49, 53, 55, 57, 59 GBE_B – 1, 3, 5, 7, 11, 13 ,15, 17, 19, 21, 23, 25 GBE_C – 35, 37, 39, 41, 43, 45, 47, 49, 53, 55, 57, 59 GBE_D – 1, 3, 5, 7, 11, 13 ,15, 17, 19, 21, 23, 25 Design Instruction An in-line buffer (Recommended Part: NC7WZ16P6X) with Resistors for the GBE_A, GBE_B, and GBE_C LED Pins (ACT#, LINK#, LINK100#, LINK1000#) is required

An in-line buffer (Recommended Part: NC7WZ04P6X) with Resistors for the GBE_D LED Pins (ACT#, LINK#, LINK100#, LINK1000#) is required

No additional circuitry required for MDI pins Route MDI connections direct to header/connector/device Feature Note LINK1000# is not connected on the CCG060 for GBE_A, GBE_B, and GBE_C. The CTI Default Programmed Intel 82574 does not provide LINK1000# LED capabilities.

Software Support for the Intel 82574

Additional drivers will be needed to properly operate the GBE Port A, B and C on the COM Express Type 6 Carrier.

These drivers can be downloaded directly from Intel website from the below link:

http://downloadcenter.intel.com/SearchResult.aspx?lang=eng&ProductFamily=Ethernet+Components& ProductLine=Ethernet+Controllers&ProductProduct=Intel%C2%AE+82574+Gigabit+Ethernet+Controller

Serial – HDC

Function Serial Location P9 HDC Bank A Pins UART0 – 14, 16, 18, 20 UART1 – 4, 6, 8, 10 Design Instruction No additional circuitry required Transceiver placed upon CCG060 Route direct to header/connector/device

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Serial Configuration

All of the Serial UART Links from the COM Express Type 6 Module are routed into an Exar SP336E Transceiver. This enables the various selectable serial outputs (RS-232/RS-485). To configure the setting, the appropriate configuration of the Serial Selection DIP Switch (SW2) is required. Please refer to the Exar SP336E datasheet for additional details.

SW2 DIP Switch – Serial Transceiver Control Function Serial Transceiver Control Location SW2 Pinout Switch Description

A SP336E Mode 0 Selection – RS-232/RS-485 B SP336E Serial Link 0 – RX+ BIAS C SP336E Mode 1 Selection – RS-232/RS-485 D SP336E Serial Link 0 – RX- BIAS

E SP336E Serial Link 1 – RX+ BIAS F SP336E Serial Link 1 – RX- BIAS

Locked/Hardwired Configuration

The COM Express Type 6 Carrier come default populated with a Control DIP Switch (SW2). For harsher environments such as Military, Aerospace, and Industrial, the COM Express Type 6 Carrier Control DIP Switch can be removed and replaced with resistors. Please contact [email protected] for additional details.

Dual RS-232 Switch SW2 Position Description A OFF Mode 0 Selection - RS-232 Selection B OFF Serial Link 0 - RX+ BIAS C OFF Mode 1 Selection - RS-232 Selection D OFF Serial Link 0 - RX- BIAS E OFF Serial Link 1 - RX+ BIAS F OFF Serial Link 1 – RX- BIAS

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Serial 0 RS-232/Serial 1 RS-485 Switch SW2 Position Description A OFF Mode 0 Selection - RS-232 Selection B OFF Serial Link 0 - RX+ BIAS C ON Mode 1 Selection - RS-485 Selection D OFF Serial Link 0 - RX- BIAS E USER Serial Link 1 - RX+ BIAS F USER Serial Link 1 – RX- BIAS

Dual RS-485 Switch SW2 Position Description A ON Mode 0 Selection - RS-485 Selection B USER Serial Link 0 - RX+ BIAS C OFF Mode 1 Selection - RS-485 Selection D USER Serial Link 0 - RX- BIAS E USER Serial Link 1 - RX+ BIAS F USER Serial Link 1 – RX- BIAS

Dual Disable Switch SW2 Position Description A ON Mode 0 Selection - Disable Selection B XX Serial Link 0 - RX+ BIAS C ON Mode 1 Selection - Disable Selection D XX Serial Link 0 - RX- BIAS E XX Serial Link 1 - RX+ BIAS F XX Serial Link 1 – RX- BIAS

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USB 2.0/3.0 – HDC

The maximum configuration for a Type 6 COM Express Module allows for four external USB 3.0 Ports with integrated USB 2.0 Ports, and four external USB 2.0 Ports. The USB 3.0 signals are sourced from the COM Express Module, and run through a Pericom Semiconductor PI3EQX7502AIZDE re-driver.

Function USB 2.0 Location P8 HDC Bank B, C Pins USB_A – 166, 168 USB_B – 176, 178 USB_C – 116, 118 USB_D – 106, 108 Design Instruction If power is required, please note that the USB2_VBUS (Pins 102, 112, 162, and 172) supply +5V @ 0.5A

USB Magnetics/Choke recommended upon breakout design (Recommended Part: DLP11SA900HL2L) USB ESD Device recommended upon breakout design (Recommended Part: TPD2EUSB30ADRT) Route to header/connector/device

Function USB 2.0 (Integrated into USB 3.0) Location P8 HDC Bank A, B Pins USB_A – 115, 117 USB_B – 93, 95 USB_C – 56, 58 USB_D – 34, 36 Design Instruction The USB 2.0 integrated into USB 3.0 can be utilized as independent USB 2.0 connections if USB 3.0 dual-bus architecture is not required

If power is required, please note that the USB3_VBUS (Pins 18, 40, 77, and 99) supply +5V @ 0.9A

USB Magnetics/Choke recommended upon breakout design (Recommended Part: DLP11SA900HL2L) USB ESD Device recommended upon breakout design (Recommended Part: TPD2EUSB30ADRT) Route to header/connector/device

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Function USB 3.0 Location P18 HDC Bank A, B Pins USB_A – 103, 105, 109, 111 USB_B – 81, 83, 87, 89 USB_C – 44, 46, 50 ,52 USB_D – 22, 24, 28, 30 Design Instruction If power is required, please note that the USB3_VBUS (Pins 18, 40, 77, and 99) supply +5V @ 0.9A

USB Magnetics/Choke recommended upon breakout design (Recommended Part: DLP11TB800UL2) USB ESD Device recommended upon breakout design (Recommended Part: TPD2EUSB30ADRT) Route to header/connector/device microSD Card Slot

The COM Express Type 6 Carrier features a microSD Card Slot for system purposes. It is connected to the COM Express Type 6 Module utilizing GPIO.

Function microSD Card Slot Location P7 Type Molex microSD Memory Card Connector P/N 5025700893 Pinout Pin Description

1 SD_D2

2 SD_D3

3 SD_CMD 4 SD_VDD

5 SD_CLK

6 GND

7 SD_D0 8 SD_D1

9 GND

10 SD_CD#

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SATA – HDC

The COM Express Type 6 Carrier is designed to allow access to unused features from the COM Express Type 6 Module. One such feature is the SATA 3 Link (COM Express Pins B22, B23, B25, and B26). The SATA 3 Link can be routed to a mSATA, External SATA Connector, or any other header/connector/device that is required. Ensure that the selected COM Express Type 6 Module has a SATA 3 Link available.

Function SATA Location P8 HDC Bank A Pins 4, 6, 10, 12 Design Instruction No additional circuitry required In line AC Capacitors place on COM Express Module (Refer to Figure 5-3 in PCIMG COM.0 COM Express Base Specification R2.1) Route direct to header/connector/device

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Mini-PCIe/mSATA Slots

Dual Function Mini-PCIe/mSATA Slots

The COM Express Type 6 Carrier has special dual purpose functional Mini-PCIe/mSATA slots. These slots can accept either a Mini-PCIe module or an mSATA SSD module. These slots have circuitry that allow for the selection between connecting PCIe lanes or SATA lanes to the Connector. Finally, these slots also contain a USB 2.0 link as per the Mini-PCIe specification.

See the block diagram for the Mini-PCIe/mSATA switching functionality.

Mini-PCIe/mSATA Switching Functionality Diagram If a Mini-PCIe Card is placed into the Mini-PCIe/mSATA slot (P6A/B/C), then the Carrier Control DIP Switch (SW1A/B/C) will select the SATA link routed to the Mini-PCIe/mSATA slot to be routed to the HDC instead.

If however an mSATA Card is placed into the Mini-PCIe/mSATA slot (P6A/B/C), then the Carrier Control DIP Switch (SW1A/B/C) will select the PCIe link routed to the Mini-PCIe/mSATA slot to be routed to the HDC instead.

On the COM Express Type 6 this allows for the following maximum configurations: A. 3x Mini-PCIe Full Sized Modules, with 0x Full Sized mSATA Modules B. 2x Mini-PCIe Full Sized Modules, with 1x Full Sized mSATA Modules C. 1x Mini-PCIe Full Sized Modules, with 2x Full Sized mSATA Modules D. 0x Mini-PCIe Full Sized Modules, with 3x Full Sized mSATA Modules

Carrier Control DIP Switch Selection Switch Location Switch ON Switch OFF SW1A Slot A Mini-PCIe Slot A mSATA SW1B Slot B Mini-PCIe Slot B mSATA SW1C Slot C Mini-PCIe Slot C mSATA

See SW1 DIP Switch – Carrier Control.

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Full and Half Length Mini-PCIe/mSATA Module Installation

The COM Express Type 6 Carrier is designed with mounting holes to allow for the population of full length modules. To install a half-length module you must use a Mini-PCIe Half to Full Size Extension Bracket.

HDC and Mini-PCIe/mSATA

Unused PCI Express and SATA signals are routed away from the Mini-PCIe/mSATA slots to the HDC Connectors. Due to the circuitry, trace length, and multiple connection points used to achieve this feature, SATA Gen 3.0 and PCIe Gen 3.0 Speeds may not be achievable on the HDC routed signals. Please refer to the SATA/PCI Express – HDC Section for additional details.

Function Mini-PCIe/mSATA Slots Location P6A/B/C Type Molex Card Edge Connector P/N 48338-0065 Pinout Pin Mini-PCIe Description mSATA Description 1 WAKE# - 2 +3.3V +3.3V 3 - - 4 GND GND 5 - - 6 +1.5V +1.5V 7 CLKREQ# - 8 - - 9 GND GND 10 - - 11 PCIe CLK- - 12 - - 13 PCIe CLK+ - 14 - - 15 GND GND 16 - - 17 - - 18 GND GND 19 - - 20 W_DISABLE# - 21 RESV RESV 22 PERST# - 23 PCIe RX- SATA TX+ 24 +3.3V +3.3V

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25 PCIe RX+ SATA TX- 26 GND GND 27 GND GND 28 +1.5V +1.5V 29 GND GND 30 SMB_CLK - 31 PCIe TX- SATA RX- 32 SMB_DATA - 33 PCIe TX+ SATA RX+ 34 GND GND 35 GND GND 36 USB D- - 37 GND GND 38 USB D+ - 39 +3.3V +3.3V 40 GND GND 41 +3.3V +3.3V 42 - - 43 RESV RESV 44 - - 45 - - 46 - - 47 - - 48 +1.5V +1.5V 49 - - 50 GND GND 51 - - 52 +3.3V +3.3V

SATA/PCI Express – HDC

The COM Express Type 6 Carrier is designed to allow access to unused features from the COM Express Type 6 Module. This extends the features utilized on the COM Express Type 6 Carrier. The Mini- PCIe/mSATA slots can only utilize either the SATA or the PCI Express at one time. To that end, the unused SATA or PCI Express Link is routed to the HDC for use on a Breakout Board. In addition, PCI Express Clock Signals have been provided with each SATA/PCI Express Link to enable ease of PCI Express device design.

IMPORTANT: The Pins used in the HDC for the SATA/PCI Express are dual functionality. If Mini- PCIe/mSATA Slot A has a Mini-PCIe Module inserted, then SATA signals will be present on the HDC Pins. However if Mini-PCIe/mSATA Slot A is changed to have an mSATA Module inserted, then PCI Express signals will be present on the HDC Pins. Take special care to prevent critical features on the Breakout Board becoming unusable due to Mini-PCIe/mSATA Module swapping. Also due to the circuitry, trace Document: CTIM-00470 Page 34 of 55 Date: 2020-12-16 Revision: 0.09

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length, and multiple connection points used to achieve this feature, SATA Gen 3.0 and PCIe Gen 3.0 Speeds may not be achievable on the HDC routed signals.

Function SATA/PCI Express Location P8 HDC Bank C Pins SATA/PCIE_A – 123, 125, 129, 131, 135, 137 SATA/PCIE_B – 143, 145, 149, 151, 155, 157 SATA/PCIE_C – 163, 165, 169, 171, 175, 177 Design Instruction No additional circuitry required In line AC Capacitors place on COM Express Module (Refer to Figure 5-1 and Figure 5-3 in PCIMG COM.0 COM Express Base Specification R2.1) Route direct to header/connector/device

PCI Express – HDC

The COM Express Type 6 Carrier is designed to allow access to unused features from the COM Express Type 6 Module. One such feature is the PCI Express 6 and 7 Links (COM Express Pins D19, D20, C19, C20, D22, D23, C22, and C23). These PCI Express Links can be routed to Mini-PCIe Modules, Gigabit Ethernet Controllers, or any other header/connector/device that is required. Ensure that the selected COM Express Type 6 Module has the PCI Express 6 and 7 Links available. In addition, PCI Express Clock Signals have been provided with each PCI Express Link to enable ease of PCI Express device design.

Function PCI Express Location P9 HDC Bank A Pins PCIE_A – 44, 46, 50, 52, 56, 58 PCIE_B – 24, 26, 30, 32, 36, 38 Design Instruction No additional circuitry required In line AC Capacitors place on COM Express Module (Refer to Figure 5-1 in PCIMG COM.0 COM Express Base Specification R2.1) Route direct to header/connector/device

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PCI Express Graphics (PEG) – HDC

The COM Express Type 6 Carrier is designed to allow access to unused features from the COM Express Type 6 Module. One important feature is the PCI Express Graphics (PEG) Link, also known as a PCI Express x16 Bus (Refer to PCIMG COM.0 COM Express Base Specification R2.1 for Pin Details). This PEG Link can be routed to Graphic Processing Unit’s (GPU’s), Image Capture Devices, or any other header/connector/device that is required.

Function PCI Express Location P9 HDC Bank B, C Pins 71, 72, 73, 74, 77, 78, 79, 80, 83, 84, 85, 86, 89, 90, 91, 92, 97, 98, 99, 100, 103, 104, 105, 106, 109, 110, 111, 112, 115, 116, 117, 118, 131, 132, 133, 134, 137, 138, 139, 140, 143, 144, 145, 146, 149, 150, 151, 152, 157, 158, 159, 160, 163, 164, 165, 166, 169, 170, 171, 172, 175, 176, 177, 178 Design Instruction No additional circuitry required In line AC Capacitors place on COM Express Module (Refer to Figure 5-1 in PCIMG COM.0 COM Express Base Specification R2.1) Route direct to header/connector/device

PCI Express Bifurcation

The COM Express Type 6 Carrier has been designed with multiple use cases in mind. As some COM Express Type 6 Modules allow for Bifurcation (Splitting the PCI Express x16 Link into two PCI Express x8 Links or four PCI Express x4 Links), the COM Express Type 6 has included four PCI Express Clock Links to accompany any Bifurcation design needs. Ensure that the selected COM Express Type 6 Module has a Bifurcation option available to utilize this functionality.

Function PCI Express Clock Location P9 HDC Bank B, C Pins PCIE_CLK_A – 124, 126 PCIE_CLK_B – 123, 125 PCIE_CLK_C – 64, 66 PCIE_CLK_D – 63, 65 Design Instruction No additional circuitry required In line AC Capacitors place on COM Express Module (Refer to Figure 5-1 in PCIMG COM.0 COM Express Base Specification R2.1) Route direct to header/connector/device

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Miscellaneous System Functions

System Connector - I2C, SMB, System Control

The System pins can be used to connect the power button, reset button, and LED’s required to monitor the system performance or state. It also allows access to the COM Express Module via I2C and SMB.

Function System, I2C, SMB Location P3 Type FCI Minitek Double Row 8 x 2 P/N 98414-G06-16LF Board ESQT-108-02-L-D-XXX Mating Cable 10073599-016LF Mating Cable CBG186 Pinout Pin Description Pin Description 1 SYS_RST# 2 +5V_SB 3 PWRBTN# 4 +5V_SB 5 BATLOW# 6 RTC_BAT_EXT 7 SUS_S3# 8 I2C_CLK 9 SUS_S5# 10 I2C_DATA 11 SMB_DATA 12 SPEAKER_N 13 SMB_CLK 14 GND 15 SMB_ALERT# 16 GND Design An in-line buffer (Part: NC7WZ16P6X) has been placed on the CCG060 for the SUS_SX# Instructions signals

No additional circuitry required Route direct to header/connector/device

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Switch Banks

SW1 DIP Switch – Carrier Control Function Carrier Control Location SW1 Pinout Switch Description

PWR ATX Power Bypass Control

A Mini-PCIe/mSATA A Selection

B Mini-PCIe/mSATA B Selection

C Mini-PCIe/mSATA C Selection

Input Power and Control

The COM Express Type 6 Carrier accepts a single power input to power all on-board devices. A single +12V input for operation is required.

Power Input – HDC

Function Power Input Location P9 HDC Bank A, B, C Signal Name +VIN (+12V) Pins BLADE_A, BLADE_B, BLADE_C Design Instruction Reverse Polarity protection recommended on Breakout Board Design Reverse Polarity protection placed upon CCG060

ATX Power Functionality

The COM Express Type 6 Carrier has on-board ATX Functionality. The default configuration is to have this controlled by Suspend State S3 (Standby/Sleep), however it is possible to have this changed to Suspend State S5 (Soft Off) at the time of order.

The COM Express Type 6 Carrier is shipped in an ATX Power Mode. There is an on-board ATX Override, which is controlled with the SW1PWR DIP Switch. In Override Mode, the COM Express Module can still be placed into S3 or S5 State; however the rest of the Carrier will remain fully powered.

Carrier ATX Power Jumper Selection Switch Location Switch ON Switch OFF SW1PWR ATX Override Mode ATX Mode

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Locked/Hardwired Configuration

The COM Express Type 6 Carrier come default populated with a DIP Switch (SW1). For harsher environments such as Military, Aerospace, and Industrial, the COM Express Type 6 Carrier has a hardwired resistor population option to enable ATX Override Mode. Please contact [email protected] for additional details.

RTC Battery

The RTC battery is implemented on the breakout board. The battery should be appropriately sized to meet the lifetime requirements of the application.

For further information about RTC battery selection and life time estimation, see Application Note 00009: CTIN-00009 https://connecttech.com/pdf/CTIN-00009.pdf

Output Power

+12.0V Power Output – HDC

The COM Express Type 6 Carrier provides the +12.0V rail that has been ATX controlled for Breakout Board Design usage.

Function +12.0V Power Input Location P8 HDC Bank A Signal Name +12V_CCG060 Pins BLADE_A Design Instruction The provided +12.0V is intended for powering LED’s or Low Power Devices on Breakout Boards

4A of Current is available for design use

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+5V Power Output – HDC

The COM Express Type 6 Carrier generates a +5.0V rail that is available for use on Breakout Board Designs.

Function +5.0V Power Input Location P8 HDC Bank B Signal Name +5V_CCG060 Pins BLADE_B Design Instruction The provided +5V is intended for powering LED’s or Low Power Devices on Breakout Boards

2A of Current is available for design use

+3.3V Power Output – HDC

The COM Express Type 6 Carrier generates a +3.3V rail that is available for use on Breakout Board Designs.

Function +3.3V Power Input Location P8 HDC Bank C Signal Name +3.3V_CCG060 Pins BLADE_C Design Instruction The provided +3.3V is intended for powering LED’s or Low Power Devices on Breakout boards

1.5A of Current is available for design use

Current Consumption

The COM Express Type 6 Carrier provides the listed above power rails and current limits for Breakout Board Designs. If additional current is required, then additional power rails should be added to the Breakout Board Design. For additional inquiries please contact [email protected].

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TYPICAL INSTALLATION

1. Ensure all external system power supplies are off.

2. Install the COM Express Module onto the TE Connector P1. Be sure to follow the manufacturer’s directions for proper installation of mounting hardware, heatsink/heatspreader, and any other applicable requirements from the manufacturer.

3. Install any Mini-PCIe/mSATA Module(s) for application.

4. Install a Breakout Board and any required cables. At a minimum this would include:

a. Power cable to the input power connector b. Connect a video display cable c. Keyboard and mouse via USB

5. Switch ON the Power Supply. DO NOT power up your system by plugging in live power.

• To Override the ATX Power Configuration, ensure that the DIP Switch SW1PWR is ON • For Normal ATX Operation, if the system does not automatically start, toggle SYS_PWRBTN# ON-BOARD INDICATOR LEDS

The COM Express Type 6 Carrier has 11 on-board indicator LEDs.

LED Description D1 RESET# D2 SUS_STAT# D3 SATA_ACT# D5 SUS_S3# D7 SUS_S5# D18 +1.5V D19 +VIN D20 +12V D21 +5V D22 +5V_SB D23 +3.3V

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POWER CONSUMPTION

Below are the maximum ratings of the COM Express Type 6 Carrier.

Absolute Maximum Amps Watts Theoretical absolute maximum total draw of all functionality on the board 18.5 222

Below are measurements taken with the COM Express Type 6 Carrier running in various configurations with the XBG601 Breakout Board. Values will change depending on what COM Express Module and Breakout Board is installed. Please refer to the module manufacturer’s manual for full details on the current consumption of the particular module you are using.

Absolute Maximum Amps Watts Carrier standalone no module installed, powered ON, with no loads 0.5 5.8 Module Installed[4], DisplayPort video output, USB keyboard, and system 2.6 31.3 sitting in BIOS Module Installed[4], DisplayPort video output, USB keyboard/mouse, 1x 1.4 16.3 mSATA, and system sitting at Linux Desktop (GUI) Module Installed[4], DisplayPort video output, USB keyboard/mouse, 4.1 49.2 2 x Mini-PCIe installed, 1 x mSATA, audio in/out running, 2 x GBE running, system in Linux running 1080p Video Test

Note [4]: COM Express Type 6 Module with Intel Core i7-4700EQ, 4GB DDR3

MECHANICAL DRAWINGS & MODELS

A complete 3D STEP Model file of COM Express Type 6 Carrier can be downloaded here: https://www.connecttech.com/ftp/3d_models/CCG060_3D_MODEL.zip

2D Mechanical Dimensioned Drawing (Top View) - PCB and Mounting Hole Dimension are in mil.

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Top View

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CTI BREAKOUT BOARDS

The following table summarizes the COM Express Type 6 Breakout Boards that are available from Connect Tech Inc.

Available Breakout Boards

Breakout Board COM Express Type 6 Maximized Breakout Board (XBG601) Compatibility CCG060 Compatibility CCG060 Dimensions 185mm x 137.5mm (7.284” x 5.414”) Mini-PCIe/mSATA 3x Mini-PCIe/mSATA Full Size (No USB) M.2 1x M.2 Key B (PCIe x4 or SATA) SATA - Display 1x DisplayPort 1x HDMI 1x VGA Serial 2x RS-232/RS-485 USB 4x USB 3.0 4x USB 2.0 Ethernet 4x RJ-45 Gigabit Ethernet (10/100/1000) Audio HD Audio 3.5mm Stereo Jack PCI Express 1x PCI Express x16 Card Slot with Additional +12.0V Power Misc. 1x FAN Header 1x RESET Button 1x PWR Button Power Requirements +12V to +48V DC Input RTC Battery External Battery Header Operating Temperature -40oC to +85oC Image

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Breakout Board XBG601 Technical Details

Block Diagram

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Connector Locations

Input Power Connector

Function Input Power Connector Location P17 Type FCI Pluggable Terminal Block P/N 20020111-G041A01LF Mating 20020003-G041B01LF (Or Equivalent) Pinout Pin Description

1 +12V

2 +12V

3 GND

4 GND

Input Voltage Range: +18V to +48V The positive and negative terminals are clearly labelled on the PCB silkscreen Document: CTIM-00470 Page 46 of 55 Date: 2020-12-16 Revision: 0.09

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Serial RS-232/485

Function Dual Serial (RS-232/RS-485) Location P8 Type FCI Minitek Double Row 5 x 2 P/N 98414-G06-10LF Mating 10073599-010LF Cable CBG104 Pinout Pin Description

1 Serial 0 - RS-232TX/RS-485TX+

2 Serial 0 - RS-232RX/RS-485RX+ 3 Serial 0 - RS-485TX-

4 Serial 0 - RS-485RX-

5 GND 6 GND

7 Serial 1 - RS-232TX/RS-485TX+ 8 Serial 1 - RS-232RX/RS-485RX+

9 Serial 1 - RS-485TX-

10 Serial 1 - RS-485RX-

COM Express Fan

Function COM Express Fan Control Location P10 Type Molex KK 100 Right Angle Header P/N 22-28-1040 Mating 22-01-2041 (Or Equivalent) Pinout Pin Description

1 PWM

2 TACH

3 +12V (500mA Fuse)

4 GND

Document: CTIM-00470 Page 47 of 55 Date: 2020-12-16 Revision: 0.09

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Mini-PCIe/mSATA

Function Mini-PCIe/mSATA Slots Location P3A/B/C Type Molex Card Edge Connector P/N 48338-0065 Pinout Pin Mini-PCIe Description mSATA Description 1 WAKE# - 2 +3.3V +3.3V 3 - - 4 GND GND 5 - - 6 +1.5V +1.5V 7 CLKREQ# - 8 - - 9 GND GND 10 - - 11 PCIe CLK- - 12 - - 13 PCIe CLK+ - 14 - - 15 GND GND 16 - - 17 - - 18 GND GND 19 - - 20 W_DISABLE# - 21 RESV RESV 22 PERST# - 23 PCIe RX- SATA TX+ 24 +3.3V +3.3V 25 PCIe RX+ SATA TX- 26 GND GND 27 GND GND 28 +1.5V +1.5V 29 GND GND 30 SMB_CLK - 31 PCIe TX- SATA RX- 32 SMB_DATA - 33 PCIe TX+ SATA RX+ 34 GND GND Document: CTIM-00470 Page 48 of 55 Date: 2020-12-16 Revision: 0.09

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35 GND GND 36 USB D- - 37 GND GND 38 USB D+ - 39 +3.3V +3.3V 40 GND GND 41 +3.3V +3.3V 42 - - 43 RESV RESV 44 - - 45 - - 46 - - 47 - - 48 +1.5V +1.5V 49 - - 50 GND GND 51 - - 52 +3.3V +3.3V

HDMI and Display Port

Function HDMI and Display Port Location P2 Type Multicomp P/N MCH6BDSB2AN Pinout Standard HDMI and Display Port

Document: CTIM-00470 Page 49 of 55 Date: 2020-12-16 Revision: 0.09

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M.2 Storage

The M.2 slot can support either a M.2 x4 PCIe based NVMe or SATA based. The carrier board automatically handles the switching, however S1A (Rev B, J1) can be used to force the selection. (OFF = PCIe based, ON = SATA based). There should be a M.2 Key B label near the connector. For further information regarding this, see the following Product Change Notice CTIU-00016.

Function M.2, Key B Location P7 Type JAE P/N SM3ZS067U410AMR1000 Pinout Refer to PCISIG PCI Express M.2 Specification

USB 2.0/3.0

The carrier provides 2x Dual USB3.0 connectors. Both connectors have USB3.0 directly from the COM Express module. All connectors are industry standard USB3.0 right angle.

Function USB 3.0 Location P16A,B Type TE Connectivity P/N 1932355-1 Pinout Refer to Universal Serial Bus 3.0 Specification

Document: CTIM-00470 Page 50 of 55 Date: 2020-12-16 Revision: 0.09

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The carrier provides 2x Dual USB2.0 connectors. One connector has USB2.0 directly from the COM Express module. The other connector has USB2.0 supplied by a Hub. All connectors are industry standard USB2.0 right angle.

Function USB 2.0 Location P15A,B Type Molex P/N 067298-3091 Pinout Refer to Universal Serial Bus 2.0 Specification

Network Ports

Function USB RJ-45 Location P11 Ports 0,1,2,3 Type Amphenol Quad RJ-45 Connector P/N RJSAE-538x-04x Pinout Refer to IEEE 802.3

Document: CTIM-00470 Page 51 of 55 Date: 2020-12-16 Revision: 0.09

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PCI Express

Function PCIe x16 Location P4 Type Molex P/N 87715-9306 Pinout Refer to PCI Express Electromechanical Spec Revision 3.0

Document: CTIM-00470 Page 52 of 55 Date: 2020-12-16 Revision: 0.09

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PCI Express Power

Function PCI Express PWR Location P18 Type FCI Minitek Double Row 6 x 2 P/N 98464-F61-12LF Pinout Pin Description Pin Description 1 +12V 2 GND 3 +12V 4 GND 5 +12V 6 GND 7 +12V 8 GND

9 +12V 10 GND 11 +12V 12 GND

HD Audio

The COM Express Type 6 Carrier features HD Audio capabilities with the assistance of the Cirrus Logic CS4207 Codec device. From the Codec, 1 Microphone Input and 1 Headphone Output are available.

Function Audio Input Audio Output Location P1 (Bottom) P1 (Top) Type 3.5mm Stereo Jacks P/N CTP-JD-3502-GB-2

Document: CTIM-00470 Page 53 of 55 Date: 2020-12-16 Revision: 0.09

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Custom Breakout Board

If a user wishes to create their own breakout board to connect to the COM Express Type 6 Carrier, Connect Tech Inc. has prepared a reference design package that can be downloaded below. In addition, Connect Tech Inc. also offers a quick turn, low-cost design service to create your custom breakout board. Please contact sales for more information at [email protected].

Reference Design Package - COM Express Type 6 Breakout Board

Reference Design Package

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CABLES

The following table summarizes the COM Express Type 6 Carrier cables available. Some of these cables are required for operation of features on the XBG601. Other cables are for future breakout board designs, or for customer use.

Drawing No. Part No. Description CTIC-00347 CBG090 SATA HDD Signal and Power Cable CTIC-00430 CBG111 Dual DB-9 Panel Mount to 10-Pin Minitek Cable CTIC-00432 CBG113 DisplayPort to 20-Pin Minitek Cable CTIC-00433 CBG117 RJ-45 to 10-Pin Minitek Cable CTIC-00434 CBG118 Dual Audio to 8-Pin Minitek Cable CTIC-00379 CBG120 VGA to 10-Pin Minitek Cable OEM CBG125 LVDS (DP20A-40DS) to Un-Terminated Wires OEM CBG131 Dual USB 3.0 to 20-Pin Cable CTIC-00461 CBG145 HDMI Female to 20-Pin Minitek Cable CTIC-00533 CBG186 COM Express 16-Pin Minitek System Cable

Document: CTIM-00470 Page 55 of 55 Date: 2020-12-16 Revision: 0.09