# AmITX-RZ-G

# User’s Manual

Mini-ITX Embedded Motherboard with

AMD® Embedded V1000/R1000 Series APU

![Close-up of a green printed circuit board with various electronic components and connectors (no readable text or symbols)](.amitx-rz-g-50m-00035-1010-20/414d466fb2882cd2382dfbbb4e1f9a958790f180617af289a8742bf7cd52e65a.jpg)

Manual Rev.: 2.0

Revision Date: July 16, 2021

Part Number: 50M-00035-1010

# Preface

# Copyright

Copyright © 2021 ADLINK Technology, Inc. This document contains proprietary information protected by copyright. All rights are reserved. No part of this manual may be reproduced by any mechanical, electronic, or other means in any form without prior written permission of the manufacturer.

# Disclaimer

The information in this document is subject to change without prior notice in order to improve reliability, design, and function and does not represent a commitment on the part of the manufacturer. In no event will the manufacturer be liable for direct, indirect, special, incidental, or consequential damages arising out of the use or inability to use the product or documentation, even if advised of the possibility of such damages.

# Environmental Responsibility

ADLINK is committed to fulfill its social responsibility to global environmental preservation through compliance with the European Union's Restriction of Hazardous Substances (RoHS) directive and Waste Electrical and Electronic Equipment (WEEE) directive. Environmental protection is a top priority for ADLINK. We have enforced measures to ensure that our products, manufacturing processes, components, and raw materials have as little impact on the environment as possible. When products are at their end of life, our customers are encouraged to dispose of them in accordance with the product disposal and/or recovery programs prescribed by their nation or company.

![Symbol of a trash bin crossed with a diagonal line and a horizontal bar below (no text or labels)](.amitx-rz-g-50m-00035-1010-20/091ca322ccfaf3e6aea61663edcfe38845ea62fe3f84f05194c4d57e89fe4bdf.jpg)

Battery Labels (for products with battery)

![Symbol of a trash bin crossed out by two diagonal lines (no text or labels)](.amitx-rz-g-50m-00035-1010-20/f567fb63c5cc16116b773575173c10b426a64e0a3eaf5096060421dbac2b7dab.jpg)

![Li-ion](.amitx-rz-g-50m-00035-1010-20/202c23bc8dd693d01642256f4b33905b55a8256c7996eead711080a3f988cb2a.jpg)

![RECYCLE RBRC Li-ion 7.800.822.8837](.amitx-rz-g-50m-00035-1010-20/a6f27afc3c65dfde1c068f80f4824a0d5562e4fd34a07befd901f845e038f399.jpg)

![廢電池請回收](.amitx-rz-g-50m-00035-1010-20/eb39ece3dcf6495554021762befc8c6b5ad972e26d37264c0c177bbe34cc2235.jpg)

# California Proposition 65 Warning

![A yellow triangle with a thick black border containing a large black exclamation point in the center.](.amitx-rz-g-50m-00035-1010-20/632f846d78ef340db84a05956e09764c2a4cf513433c96807db22b2359ba845c.jpg)

WARNING: This product can expose you to chemicals including acrylamide, arsenic, benzene, cadmium, Tris(1,3-dichloro-2-propyl)phosphate (TDCPP), 1,4-Dioxane, formaldehyde, lead, DEHP, styrene, DINP, BBP, PVC, and vinyl materials, which are known to the State of California to cause cancer, and acrylamide, benzene, cadmium, lead, mercury, phthalates, toluene, DEHP, DIDP, DnHP,

DBP, BBP, PVC, and vinyl materials, which are known to the State of California to cause birth defects or other reproductive harm. For more information go to www.P65Warnings.ca.gov.

# Trademarks

Product names mentioned herein are used for identification purposes only and may be trademarks and/or registered trademarks of their respective companies.

Revision History

<table><tr><td>Revision</td><td>Description</td><td>Date</td></tr><tr><td>1.0</td><td>Initial release</td><td>March 18, 2020</td></tr><tr><td>2.0</td><td>General update, added support for further processors</td><td>July 16, 2021</td></tr></table>

# Table of Contents

# Preface ...

# Table of Contents....

# List of Figures ....

# List of Tables ...... ..vi

# 1. Introduction...

1.1. Packing List..
1.2. Optional Accessories .

# 2. Specifications ....

2.1. Core System . 3
2.2. Rear I/O Connectors .. 3
2.3. Internal Headers and Connectors . 3
2.4. Form Factor...
2.5. Board Management Controller.. 4
2.6. Debug Header.. 4
2.7. Video.. .4
2.8. Audio.. 4
2.9. LAN . 4

2.10. Trusted Platform Module (TPM). 4

2.11. Power Specifications.... 5

2.12. Power Consumption. 5

2.13. Temperatures..

2.14. Environmental .

2.15. Operating Systems..

2.16. Functional Block Diagram . .8

# 3. Mechanical Layout .............. C

3.1. Rear I/O Connectors ... 9
3.2. Component-Side Connectors.. ..10
3.3. Mechanical Dimensions . ..11
3.4. Thermal Solutions . .12

# 4. Connectors and Jumpers .... .13

4.1. Rear IO Connectors .. ..13
4.2. Internal Connectors. .15
4.3. Jumper and Switch Settings. ..25
4.4. Onboard Connector Information.. ..28

# 5. Driver Installation .. .29

# 6. Smart Embedded Management Agent (SEMA) ...... ..31

6.1. Board Specific SEMA Functions . ..31

# 7. System Resources .............. .35

7.1. System Memory Map .35

7.2. I/O Map . .. 35
7.3. Interrupt Request (IRQ) Lines.. .36
7.4. PCI Configuration Space Map.. . 38
7.5. PCI Interrupt Routing Map . . 39
7.6. SMBus Slave Address .. .. 39

# 8. BIOS Setup..... .41

8.1. Menu Structure.. ..41
8.2. Main . .. 42
8.3. Advanced .. ..44
8.4. Security .. .. 58
8.5. Boot.. .. 58
8.6. Save & Exit . .. 61

# Safety Instructions........ .62

# Getting Service..... .63

# List of Figures

Figure 1: AmITX-RZ-G Functional Block Diagram . .8
Figure 2: AmITX-RZ-G with V1000 Series Processor Rear I/O ...
Figure 2: AmITX-RZ-G with R1000 Series Processor Rear I/O.. 9
Figure 3: AmITX-RZ-G Component-Side Connectors.. ..10
Figure 4: AmITX-RZ-G Mechanical Dimensions . ..11
Figure 5: AmITX-RZ-G Jumper and Switch Locations . ..25

# List of Tables

Table 1: Available Models .

Table 2: AmITX-RZ-G Onboard Connector Information.. ..28

Table 3: SEMA Onboard Voltage Monitor.. ...31

Table 4: SEMA BMC Status .. ...32

Table 5: SEMA Exception Codes ... ..33

Table 6: SEMA BMC Flags. ..33

Table 7: System Memory Map .. ..35

Table 8: I/O Map.. ..35

Table 9: IRQ Lines PIC Mode.. ...36

Table 10: IRQ Lines APIC Mode . ...37

Table 11: PCI Configuration Space Map. ...38

Table 12: PCI Interrupt Routing Map.. ...39

Table 13: SMBus Slave Address.

# 1. Introduction

The AmITX-RZ-G is a Mini-ITX motherboard supporting the AMD Ryzen™ Embedded V1000/R1000 processor family, bringing together the breakthrough performance of the pioneering AMD “Zen” APU and “Vega” GPU architectures in a seamlessly integrated SoC solution that sets a new standard in processing power for nextgeneration embedded designs. Delivering superior graphics and multimedia processing, and compute performance up to 3.6 TFLOPS with thermal design power (TDP) as low as 12W and as high as 54W, AMD Ryzen™ Embedded V1000/R1000 SoCs achieve new levels of processing efficiency and design versatility. With a comprehensive set of advanced, integrated security features, AMD Ryzen™ Embedded V1000/R1000 SoCs enable sophisticated system protections complemented by an expansive breadth of I/O interconnect options.

The AmITX-RZ-G features four DisplayPorts, dual Gigabit Ethernet port, USB 3.0 ports, USB 2.0 ports, SATA 6 Gb/s ports, and High Definition Audio with 7.1 channels. Support is provided for one PCIe x16, one PCIe x1, one Mini PCIe slot and one M.2 (M Key) socket. A feature connector provides access to GPIO, SMBus, and I2C signals. The board is equipped with dual SPI AMI EFI BIOS sockets, supporting embedded features such as hardware monitor and watchdog timer.

Table 1: Available Models

<table><tr><td>Model Number</td><td>Core Speed</td><td>TDP</td></tr><tr><td>AmITX-RZ-G-V1202B</td><td>2.3GHz</td><td>12-25W</td></tr><tr><td>AmITX-RZ-G-V1605B</td><td>2.0GHz</td><td>12-25W</td></tr><tr><td>AmITX-RZ-G-V1756B</td><td>3.25GHz</td><td>35-54W</td></tr><tr><td>AmITX-RZ-G-V1807B</td><td>3.35GHz</td><td>35-54W</td></tr><tr><td>AmITX-RZ-G-R1505G</td><td>2.4GHz</td><td>12-25W</td></tr><tr><td>AmITX-RZ-G-R1606G</td><td>2.6GHz</td><td>12-25W</td></tr><tr><td>AmITX-RZ-G-R1305G</td><td>1.5GHz</td><td>8-10W</td></tr><tr><td>AmITX-RZ-G-R1102G</td><td>1.2GHz</td><td>6W</td></tr></table>

# 1.1. Packing List

• AmITX-RZ-G Mini-ITX motherboard
• ATX/AT power cable (P/N: 30-20872-1000)
• SATA dual power cable (P/N: 30-20875-0000)
• SATA cable (P/N: 30-10057-0600)
• Rear I/O shield

o V1000 processors rear I/O shield (P/N: 34-25329-0000-A0)
o R1000 processors rear I/O shield (P/N: 34-25329-0100-A0)

# 1.2. Optional Accessories

• COM port cable, 1 port (P/N: 30-20876-0000)
• USB 2.0 cable, 2 ports (P/N: 30-20874-1000)

This page intentionally left blank.

# 2. Specifications

# 2.1. Core System

<table><tr><td>Processor</td><td>AMD® RyzenTM Embedded V1000/R1000 Processors• AMD® RyzenTM Embedded V1807B 3.33GHz (3.8GHz Boost), 54W (4C/11CU)• AMD® RyzenTM Embedded V1756B 3.25GHz (3.6GHz Boost), 54W (4C/8CU)• AMD® RyzenTM Embedded V1605B 2.0GHz (3.6GHz Boost), 25W (4C/8CU)• AMD® RyzenTM Embedded V1202B 2.3GHz (3.2GHz Boost), 25W (2C/3CU)• AMD® RyzenTM Embedded R1606G 2.6GHz (3.5GHz Boost), 25W (2C/3CU)• AMD® RyzenTM Embedded R1505G 2.4GHz (3.3GHz Boost), 25W (2C/3CU)• AMD® RyzenTM Embedded R1305G 1.5GHz (2.8GHz Boost), 8-10W (2C/3CU)• AMD® RyzenTM Embedded R1102G 1.2GHz (2.6GHz Boost), 6W (2C/3CU)</td></tr><tr><td>Memory</td><td>Dual channel ECC 3200/2400MHz DDR4 memory up to 32 GB in dual vertical SODIMM sockets</td></tr><tr><td>Embedded BIOS</td><td>AMI EFI in 16MB SPI BIOS</td></tr></table>

# 2.2. Rear I/O Connectors

<table><tr><td>Display</td><td>DisplayPort with resolution up to 4096 x 2160 @ 60HzV1000 processors: 4x DisplayPortR1000 processors: 3x DisplayPort</td></tr><tr><td>Ethernet</td><td>GbE RJ-45V1000 processors: 2x GbER1000 processors: 1x GbE</td></tr><tr><td>USB</td><td>4x USB 3.0; 4x USB 2.0</td></tr><tr><td>Audio</td><td>7.1 channel audio via 5 jacks and S/PDIF output on rear I/O</td></tr></table>

# 2.3. Internal Headers and Connectors

<table><tr><td>PCI Express Slots</td><td>1x PCIe x16 Gen3 slot (PCIe x8 signal)1x PCIe x1 Gen3 slot (PCIe 3.0)1x full-size Mini PCIe slot (for MSATA device, V1000 processors only)</td></tr><tr><td>USB</td><td>2x USB 2.0 on header1x USB 2.0 on vertical connector with space for dongle</td></tr><tr><td>SATA</td><td>2x SATA 6 Gbps portsPorts 0 and 1 provide clearance for SATADOMs</td></tr><tr><td>Serial</td><td>1x RS-232/422/485 on internal header3x RS-232 on internal headers1x CCTALK x2</td></tr><tr><td>Other</td><td>1x M.2 (M key, 2242/2260/2280)V1000 processors: supports NVMe, PCIe x2 signal , SATA x1 signalR1000 processors: supports NVMe, PCIe x2 signalAudio HeaderSPI Header for external BIOSFront Panel HeaderFeature Connector HeaderATX Power Connector (14-pin)</td></tr></table>

# 2.4. Form Factor

Mini-ITX: 170mm x 170mm

# 2.5. Board Management Controller

# Supports:

• voltage monitoring
• system and CPU temperature monitoring
• smart fan control
• logistics and forensic information
• general purpose I2C
• watchdog timer

# 2.6. Debug Header

40-pin Multipurpose Flat Cable Connector: used in combination with DB-40 debug module providing BIOS POST code LED, BMC access, SPI BIOS flashing, Power Testpoints, Debug LEDs

# 2.7. Video

<table><tr><td>Graphics Core</td><td>“Vega” GPU with up to 11 Compute Units</td></tr><tr><td>Display Interface Support</td><td>DisplayPort with resolution up to 4096 x 2160 @ 60HzV1000 processors: 4x DisplayPortR1000 processors: 3x DisplayPort</td></tr></table>

# 2.8. Audio

<table><tr><td>Audio Codec</td><td>Realtek ALC892 / 888S</td></tr><tr><td>Interfaces</td><td>7.1 channel audio via 5 jacks and S/PDIF output on rear I/O7.1 channel audio signals and S/PDIF output via internal header</td></tr></table>

# 2.9. LAN

<table><tr><td>Controller</td><td>2x Intel® i211AT Ethernet controller, supports Wake On LAN</td></tr><tr><td>Interface</td><td>PCI Express x1 Bus</td></tr><tr><td>Connector</td><td>GbE RJ-45V1000 processors: 2x GbER1000 processors: 1x GbE</td></tr></table>

# 2.10. Trusted Platform Module (TPM)

<table><tr><td>TPM 2.0</td><td>TPM 2.0: Infineon SLB9665</td></tr></table>

2.11. Power Specifications

<table><tr><td>Power Modes</td><td>AT and ATX mode (AT mode start controlled by BMC)</td></tr><tr><td>Standard Voltage Input</td><td>ATX: 12VDC ±5%, 5Vsb ±5% from internal headerAT: 12V ±5% from internal header</td></tr><tr><td>Power Management</td><td>ACPI 4.0 compliant</td></tr><tr><td>Power States</td><td>Supports S0, S4, S3, S5, (Wake-on-USB S3/S4, WoL S3/S4/S5)</td></tr></table>

2.12. Power Consumption

<table><tr><td>AMD® RyzenTM Embedded Processor</td><td>V1202B 2.3GHz</td><td>V1605B 2.0GHz</td><td>V1756B 3.25GHz</td><td>V1605B 2.0GHz</td><td>R1606G 2.6GHz</td><td>R1505B 2.4GHz</td></tr><tr><td>Memory</td><td colspan="6">Transcend TS1GSH64V6B 8BG DDR4 2666 (x2)</td></tr><tr><td>Graphics</td><td colspan="6">NVIDIA Quadro P1000 PCIe graphics card</td></tr><tr><td>SSD</td><td colspan="6">Phison 2.5"SSD 128GB S11 C-TEMP</td></tr><tr><td>BIOS</td><td colspan="6">1.01.10 (1V7)</td></tr><tr><td>OS</td><td colspan="6">Windows 10</td></tr><tr><td colspan="7">Windows Idle mode/Enable PSS Support (wait 60s, no fan turn on)</td></tr><tr><td>3.3A(A)</td><td>0.09</td><td>0.09</td><td>0.11</td><td>0.11</td><td>0.11</td><td>0.12</td></tr><tr><td>5V(A)</td><td>0.12</td><td>0.15</td><td>0.15</td><td>0.15</td><td>0.15</td><td>0.15</td></tr><tr><td>12V(A)</td><td>2.31</td><td>1.87</td><td>1.86</td><td>1.48</td><td>1.47</td><td>1.95</td></tr><tr><td>5VSB(A)</td><td>0.03</td><td>0.03</td><td>0.03</td><td>0.04</td><td>0.04</td><td>0.03</td></tr><tr><td>Power Cons. (W)</td><td>28.77</td><td>23.64</td><td>23.58</td><td>19.073</td><td>18.95</td><td>24.7</td></tr><tr><td colspan="7">Windows Idle mode/Disable PSS Support (wait 60s, no fan turn on)</td></tr><tr><td>3.3A(A)</td><td>0.1</td><td>0.1</td><td>0.09</td><td>0.1</td><td>0.11</td><td>0.1</td></tr><tr><td>5V(A)</td><td>0.12</td><td>0.15</td><td>0.15</td><td>0.16</td><td>0.15</td><td>0.15</td></tr><tr><td>12V(A)</td><td>2.33</td><td>1.59</td><td>1.56</td><td>1.85</td><td>1.82</td><td>1.67</td></tr><tr><td>5VSB(A)</td><td>0.03</td><td>0.03</td><td>0.03</td><td>0.04</td><td>0.04</td><td>0.04</td></tr><tr><td>Power Cons. (W)</td><td>29.04</td><td>20.31</td><td>19.92</td><td>23.53</td><td>23.15</td><td>21.32</td></tr><tr><td colspan="7">Windows Typical mode / Enable PSS Support</td></tr><tr><td>3.3A(A)</td><td>0.1</td><td>0.1</td><td>0.11</td><td>0.12</td><td>0.11</td><td>0.12</td></tr><tr><td>5V(A)</td><td>0.16</td><td>0.15</td><td>0.16</td><td>0.17</td><td>0.16</td><td>0.16</td></tr><tr><td>12V(A)</td><td>10.36</td><td>9.11</td><td>6.83</td><td>5.65</td><td>7.82</td><td>7.28</td></tr><tr><td>5VSB(A)</td><td>0.03</td><td>0.04</td><td>0.04</td><td>0.05</td><td>0.04</td><td>0.05</td></tr><tr><td>Power Cons. (W)</td><td>125.6</td><td>110.6</td><td>83.32</td><td>69.3</td><td>95.2</td><td>88.81</td></tr><tr><td colspan="7">Windows Typical mode / Disable PSS Support (wait 180s)</td></tr><tr><td>3.3A(A)</td><td>0.09</td><td>0.1</td><td>0.12</td><td>0.11</td><td>0.12</td><td>0.12</td></tr><tr><td>5V(A)</td><td>0.14</td><td>0.14</td><td>0.15</td><td>0.16</td><td>0.16</td><td>0.18</td></tr><tr><td>12V(A)</td><td>10.7</td><td>9.25</td><td>7.62</td><td>6.33</td><td>6.89</td><td>7.25</td></tr><tr><td>5VSB(A)</td><td>0.03</td><td>0.03</td><td>0.04</td><td>0.05</td><td>0.04</td><td>0.06</td></tr><tr><td>Power Cons. (W)</td><td>129.55</td><td>112.18</td><td>92.79</td><td>77.37</td><td>84.08</td><td>88.6</td></tr><tr><td colspan="7">Windows Max mode / Enable PSS Support</td></tr><tr><td>3.3A(A)</td><td>0.11</td><td>0.11</td><td>0.11</td><td>0.12</td><td>0.11</td><td>0.13</td></tr><tr><td>5V(A)</td><td>0.16</td><td>0.16</td><td>0.16</td><td>0.16</td><td>0.15</td><td>0.22</td></tr><tr><td>12V(A)</td><td>11.37</td><td>8.98</td><td>6.67</td><td>5.36</td><td>6.42</td><td>7.11</td></tr><tr><td>5VSB(A)</td><td>0.04</td><td>0.04</td><td>0.04</td><td>0.05</td><td>0.04</td><td>0.05</td></tr><tr><td>Power Cons. (W)</td><td>137.8</td><td>109.12</td><td>81.4</td><td>65.77</td><td>78.35</td><td>87.09</td></tr><tr><td colspan="7">Windows Max mode / Disable PSS Support</td></tr><tr><td>3.3A(A)</td><td>0.11</td><td>0.11</td><td>0.12</td><td>0.11</td><td>0.12</td><td>1.2</td></tr><tr><td>5V(A)</td><td>0.16</td><td>0.17</td><td>0.16</td><td>0.16</td><td>0.16</td><td>0.17</td></tr><tr><td>12V(A)</td><td>11.43</td><td>9.03</td><td>6.57</td><td>5.37</td><td>6.41</td><td>6.3</td></tr><tr><td>5VSB(A)</td><td>0.04</td><td>0.05</td><td>0.04</td><td>0.05</td><td>0.04</td><td>0.05</td></tr><tr><td>Power Cons. (W)</td><td>138.52</td><td>109.82</td><td>80.24</td><td>65.85</td><td>78.32</td><td>80.66</td></tr><tr><td colspan="7">System S3 mode</td></tr><tr><td>3.3A(A)</td><td>0</td><td>0</td><td>0</td><td>0.01</td><td>0</td><td>0</td></tr><tr><td>5V(A)</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td></tr><tr><td>12V(A)</td><td>0</td><td>0</td><td>0</td><td>0.01</td><td>0</td><td>0.04</td></tr><tr><td>5VSB(A)</td><td>0.43</td><td>0.42</td><td>0.41</td><td>0.45</td><td>0.39</td><td>0.4</td></tr><tr><td>Power Cons. (W)</td><td>2.15</td><td>2.1</td><td>2.05</td><td>2.4</td><td>1.95</td><td>2.48</td></tr><tr><td colspan="7">System S4 mode</td></tr><tr><td>3.3A(A)</td><td>0</td><td>0</td><td>0</td><td>0.02</td><td>0</td><td>0</td></tr><tr><td>5V(A)</td><td>0</td><td>0</td><td>0</td><td>0.01</td><td>0</td><td>0</td></tr><tr><td>12V(A)</td><td>0.01</td><td>0</td><td>0</td><td>0.02</td><td>0</td><td>0.05</td></tr><tr><td>5VSB(A)</td><td>0.36</td><td>0.37</td><td>0.37</td><td>0.41</td><td>0.35</td><td>0.2</td></tr><tr><td>Power Cons. (W)</td><td>1.92</td><td>1.85</td><td>1.85</td><td>2.41</td><td>1.75</td><td>1.6</td></tr><tr><td colspan="7">System S5 mode with ECO disabled</td></tr><tr><td>3.3A(A)</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td></tr><tr><td>5V(A)</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td></tr><tr><td>12V(A)</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0.05</td></tr><tr><td>5VSB(A)</td><td>0.35</td><td>0.37</td><td>0.37</td><td>0.4</td><td>0.33</td><td>0.22</td></tr><tr><td>Power Cons. (W)</td><td>1.75</td><td>1.85</td><td>1.85</td><td>2</td><td>1.65</td><td>1.7</td></tr><tr><td colspan="7">System S5 mode with ECO Enabled</td></tr><tr><td>3.3A(A)</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td></tr><tr><td>5V(A)</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td></tr><tr><td>12V(A)</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0</td><td>0.02</td></tr><tr><td>5VSB(A)</td><td>0.03</td><td>0.03</td><td>0.03</td><td>0.04</td><td>0.04</td><td>0.03</td></tr><tr><td>Power Cons. (W)</td><td>0.15</td><td>0.15</td><td>0.15</td><td>0.2</td><td>0.2</td><td>0.39</td></tr></table>

# 2.13. Temperatures

<table><tr><td>Standard Operating Temperature</td><td>0°C to 60°C</td></tr><tr><td>Storage Temperature</td><td>-40°C to 90°C</td></tr></table>

# 2.14. Environmental

<table><tr><td>Humidity</td><td>40°C @ 95% RH non-condensing</td></tr><tr><td>Shock and Vibration</td><td>IEC 60068-2-64 and IEC-60068-2-27Vibration: 1Grms(5~500Hz)/OP. 3Grms(5~500Hz)/NON-OPShock: 20G (with 11 ms duration, half sine wave) operating, 20G(with 11 ms duration, half sine wave) non-operating</td></tr><tr><td>HALT</td><td>Thermal Stress, Vibration Stress, Thermal Shock and Combined Test</td></tr></table>

# 2.15. Operating Systems

<table><tr><td>Standard Support</td><td>Linux 64-bit, Windows10 64-bit</td></tr><tr><td>Extended Support (BSP)</td><td>Windows 10, Ubuntu 16.04.4</td></tr></table>

# 2.16. Functional Block Diagram

![The diagram depicts a system architecture centered around the **AMD SoC FP5 Processor (V1000 / R1000)**.  **Left Side Components and Connections:** *   **Display:** **DP CONN (1&2)** connects via **DDI 1&2**, and **DP CONN (3&4)** connects via **DDI 3&4** to the processor. *   **Ethernet:** **RJ-45 #2 10/100/1000** and **RJ-45 #1 10/100/1000** connect to separate **GbE i211AT** blocks. These connect to the processor via **PCIe #4** and **PCIe #5**. *   **Expansion:** **PCIe x16 Slot** connects via **PCIe x8 (V1000) / x4 (R1000)**. *   **USB:**     *   **USB Hub #1** connects via **USB 2.0 P5**. It distributes to four **USB 2.0** blocks, a **1x dual USB 2.0 Connector**, and a **USB 2.0 (Vertical)** connector.     *   **USB Hub #2** connects via **USB 2.0 P4 P0-P3**. It distributes to three **USB 2.0/3.0** blocks. *   **Serial Ports:**     *   **Super IO (F81866AD)** connects to the processor via **LPC**.     *   **COM 1** connects to **EXAR SP339** (via **RS-232/422/485**).     *   **COM 2**, **COM 3**, and **COM 4** connect to **ADM213** blocks (via **RS-232**).     *   **COM 5** and **COM 6** connect to **MAX3232** blocks (via **RS-232/CC TALK**).     *   All COM blocks connect to the **Super IO (F81866AD)**. *   **Security:** **TPM 2.0 (SLB9665)** connects directly to the processor.  **Right Side Components and Connections:** *   **Memory:** **Channel A** connects to **Vertical SODIMM DDR4 (Un buffered ECC)**, and **Channel B** connects to **Vertical SODIMM DDR4 (Un Buffered ECC)**. *   **Storage/Expansion:**     *   **SATA 6Gb/s (PCIe #6)** connects to **SATA Conn. #1 (SATA 0)**.     *   **SATA 6Gb/s (PCIe #7)** connects to **SATA Conn. #2 (SATA 1)**.     *   **PCIe #2** connects to **PCIe x1 Slot**.     *   **PCIe x2 (PCIe #0-1)** connects to **M.2 Conn. #1 M Key (SATA 3)**.     *   **PCIe #3** connects to **ASM 1061**, which outputs **SATA 6Gb/s (SATA #3)** and **SATA 6Gb/s (SATA #4)** (connected to **mSATA Conn. Full size**). *   **BMC (Baseboard Management Controller):**     *   **STM32L071R BH6TR** connects to the processor via **SMbus**.     *   It connects to **Feature Connector** via **BMC_I2C 5**.     *   It connects to **CPU Fan**, **SYS Fan 1**, and **SYS Fan 2** via **GPIO**.     *   It connects to **BIOS #1(Socket)**, **BIOS#1(Header)**, **BIOS #2(Socket)**, and **BIOS#2(Header)** via **SPI 0/1**.     *   **Sensor** and **MAX6642** blocks are present near the BMC. *   **Audio:**     *   **HDA** connects the processor to **Realtek ALC892 (Co-design ALC8885)**.     *   The Realtek chip connects to **Audio Header** and **5.1 ch Jack**. *   **Other:** A line connects the processor to **Buzzer**.](.amitx-rz-g-50m-00035-1010-20/24ba61573cf4b78ce443c78e46be6a5cb6f1d5fef33b364445a62586f1f2961f.jpg)

Figure 1: AmITX-RZ-G Functional Block Diagram

Note: Items in red are not supported by R1000 Series SKUs.

# 3. Mechanical Layout

# 3.1. Rear I/O Connectors

![DP DP USB 3.0 DP USB 3.0 DP USB 2.0 LAN LAN Audio](.amitx-rz-g-50m-00035-1010-20/725ceb4437c48976b042da3b254d70313d47aae5df6e440d255ba2b3706ee7ff.jpg)

Figure 2: AmITX-RZ-G with V1000 Series Processor Rear I/O

![DP DP USB 3.0 DP USB 3.0 DP USB 2.0 LAN Audio](.amitx-rz-g-50m-00035-1010-20/32c567256dcd395de3d703fa0f7d049c0223ab9c21fd3f6dc460ac378a3a3e78.jpg)

Figure 3: AmITX-RZ-G with R1000 Series Processor Rear I/O

# 3.2. Component-Side Connectors

![Technical diagram of an electronic device rear panel with numbered components and labeled connectors](.amitx-rz-g-50m-00035-1010-20/1ce40c2a3f1c98cbb020b74f088e7cb514fdbb3d13cc656e059a60115939f563.jpg)

Figure 4: AmITX-RZ-G Component-Side Connectors

<table><tr><td>Item</td><td>Description</td><td>Item</td><td>Description</td></tr><tr><td>1</td><td>ATX Power Connector</td><td>10</td><td>USB 2.0 Header</td></tr><tr><td>2</td><td>2x SODIMM DDR4 Sockets</td><td>11</td><td>5x Serial Port Headers</td></tr><tr><td>3</td><td>PCIe x16 slot</td><td>12</td><td>1x CPU Fan Connector</td></tr><tr><td>4</td><td>PCIe x1 slot</td><td>13</td><td>2x SYS Fan Connector</td></tr><tr><td>5</td><td>USB 2.0 Type A Connector</td><td>14</td><td>DB-40 Debug Header</td></tr><tr><td>6</td><td>Mini PCIe Socket (mSATA)</td><td>15</td><td>SPI Header</td></tr><tr><td>7</td><td>M.2 Socket (M key)</td><td>16</td><td>Feature Connector</td></tr><tr><td>8</td><td>2x SATA 3.0 Connector</td><td>17</td><td>Audio Header</td></tr><tr><td>9</td><td>2x SATA Power Connector</td><td>18</td><td>Front Panel Header</td></tr></table>

# 3.3. Mechanical Dimensions

Top View
![Ø3.96 Ø8.5 3.09 AMD-54W-20180926 H=3.0mm Ø4 MW=H 6.17 33.02 13.45 35.85 59.35 79.1 97.58 122.05 163.65 170 1.31 10.16 165.1 170](.amitx-rz-g-50m-00035-1010-20/5051c8ddc53c4cd078aeb353340f61a759bdc89accd0a28bedc9af40b745ee31.jpg)

Side View
![Technical line drawing of electrical equipment modules with no visible text or symbols](.amitx-rz-g-50m-00035-1010-20/78d2fb6c56cde4e141507a1b16f75694e218bc76f7531f36a8cde5e55c52714f.jpg)

Dimensions: mm
Figure 5: AmITX-RZ-G Mechanical Dimensions

# 3.4. Thermal Solutions

<table><tr><td>AMD APU Cooler, H=35mm, 35WStandard Temp.: 0°C to 60°CP/N: 32-20583-1010</td><td>&lt;img src="images/3c35334429d6676487db4e787211555a588026fc03e064c9d59c6b20c5961852.jpg"/&gt;</td></tr><tr><td>AMD APU Cooler, H=64.4mm, 54WStandard Temp.: 0°C to 60°CP/N: 32-20809-0000-A0</td><td>&lt;img src="images/6a2983f7e15e2c1eee53b612791ed55f1cdfea919cef3dbd67d49eadfba76b5a.jpg"/&gt;</td></tr></table>

# 4. Connectors and Jumpers

See 3.1 Rear I/O Connectors.

# 4.1. Rear IO Connectors

# 4.1.1. DisplayPort Connectors

Three DisplayPort ports up to 4096 x 2160 @24Hz

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>CN_DP0_P</td><td>2</td><td>Ground</td></tr><tr><td>3</td><td>CN_DP0_N</td><td>4</td><td>CN_DP1_P</td></tr><tr><td>5</td><td>Ground</td><td>6</td><td>CN_DP1_N</td></tr><tr><td>7</td><td>CN_DP2_P</td><td>8</td><td>Ground</td></tr><tr><td>9</td><td>CN_DP2_N</td><td>10</td><td>CN_DP3_P</td></tr><tr><td>11</td><td>Ground</td><td>12</td><td>CN_DP3_N</td></tr><tr><td>13</td><td>CN_CAD-L</td><td>14</td><td>CN_CEC</td></tr><tr><td>15</td><td>CN_AUX_P</td><td>16</td><td>Ground</td></tr><tr><td>17</td><td>CN_AUX_N</td><td>18</td><td>DDP_HPD</td></tr><tr><td>19</td><td>Ground</td><td>20</td><td>P3V3</td></tr></table>

![The image displays a black and white line drawing of a vertical, rectangular electronic connector with rounded corners. Inside the housing, there are two vertical columns of small squares representing pins.  The text elements are positioned as follows: - The number '**1**' is located near the top of the left column. - The number '**2**' is located near the top of the right column. - The number '**19**' is located near the bottom of the left column. - The number '**20**' is located near the bottom of the right column.  Small rectangular notches are visible on the top, bottom, left, and right exterior edges of the connector housing. The right column of pins appears to be aligned within an 'L' shaped section of the drawing.](.amitx-rz-g-50m-00035-1010-20/e37a56ff6c551a0d340214d687e8c063fbb8437b7e21fb6c70cb9d9c2c5175b5.jpg)

# 4.1.2. USB Connectors

• 5Vsb is supplied during power down to allow wakeup on USB device activity during S3\~S4 state
1.5A for device power supply protected by a resettable 2A fuse

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>VCC</td></tr><tr><td>2</td><td>UV0-</td></tr><tr><td>3</td><td>UV0+</td></tr><tr><td>4</td><td>GND</td></tr></table>

![This is a black-and-white line drawing of a rectangular mechanical component or housing. A vertical channel runs down the center of the object. On the right side of this central channel, there are four small rectangular indentations arranged vertically, labeled with the numbers **4**, **3**, **2**, and **1** from top to bottom. On the left side, parallel vertical lines suggest a similar structure or feature. The outer edges of the component have small protrusions near the top and bottom.](.amitx-rz-g-50m-00035-1010-20/d70315be1ecca5abb953ac25ed77935bf7083935360fddd6ecc9c2ddddfbd907.jpg)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>USB3.0_P5VA</td></tr><tr><td>2</td><td>USB2_CMAN</td></tr><tr><td>3</td><td>USB2_CMAP</td></tr><tr><td>4</td><td>GND</td></tr><tr><td>5</td><td>USB3A_CMRXN</td></tr><tr><td>6</td><td>USB3A_CMRXP</td></tr><tr><td>7</td><td>GND</td></tr><tr><td>8</td><td>USB3A_CMTXN</td></tr><tr><td>9</td><td>USB3A_CMTXP</td></tr></table>

![The image is a black-and-white technical line drawing of an electrical connector. The connector housing is rectangular with rounded corners and features mounting tabs with circular holes at the top and bottom. Inside the housing, there are pins labeled with numbers. On the left side, there is a vertical column of four pins labeled 1, 2, 3, and 4 from top to bottom. To the right of this column is a raised central block containing a vertical column of five pins labeled 9, 8, 7, 6, and 5 from top to bottom. The only text in the image consists of these numbers.](.amitx-rz-g-50m-00035-1010-20/1314e68279b9af9c37c0aba225f2f2c06262703a2cc996ee573afa86b1cd37ac.jpg)

# 4.1.3. Ethernet Connectors (LAN1, LAN2)

Dual 10/100/1000Mbit/s Ethernet ports based on 2x Intel® i211AT, supporting PXE and WOL over both LANs.

<table><tr><td>Pin #</td><td>10BASE-T/100BASE-TX</td><td>1000BASE-T</td></tr><tr><td>1</td><td>TX+</td><td>LAN_MDI0+</td></tr><tr><td>2</td><td>TX-</td><td>LAN_MDI0-</td></tr><tr><td>3</td><td>RX+</td><td>LAN_MDI1+</td></tr><tr><td>4</td><td>--</td><td>LAN_MDI2+</td></tr><tr><td>5</td><td>--</td><td>LAN_MDI2-</td></tr><tr><td>6</td><td>RX-</td><td>LAN_MDI1-</td></tr><tr><td>7</td><td>--</td><td>LAN_MDI3+</td></tr><tr><td>8</td><td>--</td><td>LAN_MDI3-</td></tr></table>

![The image is a schematic diagram of an RJ45 connector. At the top, the text 'LED1' appears on the left and 'LED2' appears on the right. Inside the square outline of the connector, there are two small rectangles at the top and a central cluster representing the internal electrical contacts. At the bottom, the number '8' is on the left and the number '1' is on the right. Thin lines connect the number '8' to the left side of the central contact area and the number '1' to the right side.](.amitx-rz-g-50m-00035-1010-20/f0dcfb7183257e7554dcec89c9e81bebcbf9075dab2cf7b12638f8f05fd6d4ea.jpg)

LED Behavior

<table><tr><td>Position</td><td>Function</td><td>Color</td><td>LED State</td><td>NIC State</td></tr><tr><td rowspan="3">LED1</td><td rowspan="3">Link Speed</td><td rowspan="3">Green/ Orange</td><td>Orange</td><td>1000 Mbps</td></tr><tr><td>Green</td><td>100 Mbps</td></tr><tr><td>Off</td><td>10 Mbps</td></tr><tr><td rowspan="3">LED2</td><td rowspan="3">Link/ Activity</td><td rowspan="3">Orange</td><td>On</td><td>Active Connection</td></tr><tr><td>Blinking</td><td>Data Activity</td></tr><tr><td>Off</td><td>LAN link is not established</td></tr></table>

# 4.1.4. Audio Connectors

• 7.1 channel audio via 5 jacks and S/PDIF output on rear I/O
Realtek ALC892 / 888S codec

# 4.2. Internal Connectors

See 3.2 Component-Side Connectors, Jumpers and Switches on page 10.

# 4.2.1. ATX Power Connector (ATXPWR1s, proprietary)

AmITX-RZ-G supports a proprietary internal ATX Power Connector (ATX\_PWR). An adapter cable is provided for conection to a standard ATX power supply.

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>8</td><td>P_OK</td><td>1</td><td>SB5V</td></tr><tr><td>9</td><td>PS_ON#</td><td>2</td><td>GND</td></tr><tr><td>10</td><td>+12V</td><td>3</td><td>GND</td></tr><tr><td>11</td><td>+12V</td><td>4</td><td>GND</td></tr><tr><td>12</td><td>+12V</td><td>5</td><td>GND</td></tr><tr><td>13</td><td>+12V</td><td>6</td><td>GND</td></tr><tr><td>14</td><td>+5V</td><td>7</td><td>3.3V</td></tr></table>

![CN POK ATX 8 1 P5VSB CN PS ON-L 9 2 P12V_ATX 10 3 11 4 12 5 13 6 14 7 22uF 16V P5V_ATX 100ohm +-5% 100ohm +-5% 100ohm +-5% P3V3_ATX 100ohm +-5% 100ohm +-5% 100ohm +-5%](.amitx-rz-g-50m-00035-1010-20/5c880a91d6b545de52df8887d869139d011119a1bff9a6da4c96fc5742f66977.jpg)

ATX Adapter Cable: ADLINK Part. No. 30-20872-1000 (length 250 mm)

![Motherboard ATX Power Connector (ATX_PWR) ATX Power Supply](.amitx-rz-g-50m-00035-1010-20/4ffa62ec2ba775f52f2488acbf0b47b456759d2c09d34299eab31e95deb1dc0f.jpg)

# 4.2.2. SATA Connectors (SATA1/2)

Two SATA 6 Gbps ports are available on the board (supports locking cable or locking SATA DOM).

Note: Pin 7 on SATA1/2 can deliver power (None/3.3V/5V), Default is None. See 4.3.9 SATA1/2 Power Selection (SATA\_PSEL1/2) on 27 for jumper settings.

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>GND</td></tr><tr><td>2</td><td>TXP</td></tr><tr><td>3</td><td>TXN</td></tr><tr><td>4</td><td>GND</td></tr><tr><td>5</td><td>RXN</td></tr><tr><td>6</td><td>RXP</td></tr><tr><td>7</td><td>GND/PWR</td></tr></table>

![The image displays a technical line drawing of a connector interface. It features a tall, rectangular outline representing the connector housing. Inside the housing is a vertical column of seven small squares representing contacts. These squares alternate in appearance, starting with a solid black square at the top, followed by a white square, then black, white, black, white, and ending with a solid black square at the bottom.  To the right of the top square, there is a vertical bracket line and the number '1'. To the right of the bottom square, there is a similar bracket line and the number '7'. The housing includes structural details such as small notches at the top corners and a small rectangular feature on the inner left wall.](.amitx-rz-g-50m-00035-1010-20/221a49af8c33351dcb13ac71b90e5aef2a0a4ba8fb2fdd10b2d2e9bec3257d1a.jpg)

# 4.2.3. SATA Power Connector (SATAPW1/2)

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>12V</td></tr><tr><td>2</td><td>GND</td></tr><tr><td>3</td><td>5V</td></tr><tr><td>4</td><td>GND</td></tr><tr><td>5</td><td>3.3V</td></tr></table>

![The image displays a technical diagram of a connector. At the top, the numbers 5 4 3 2 1 are arranged horizontally from left to right. Below the numbers is a rectangular outline containing five small squares spaced evenly in a horizontal row. At the bottom, two small rectangular pads extend downwards from the main rectangle, positioned beneath the outer squares.](.amitx-rz-g-50m-00035-1010-20/2aaab0b45f30025353797c72f43dc4ae8d037006f69870654fa236d3114b9645.jpg)

SATA Power Cable: ADLINK Part. No.: 30-20875-0000 (length 200 mm)

![Based on the provided image, here is an accurate and concise description of the flowchart/block diagram:  **Labeled Blocks:** 1.  **Left Block:** A rectangular connector block displaying four rows of pins. To its left, an arrow points left towards the text '**HDD/SSD Power**'. 2.  **Top Right Block:** A rectangular connector block. To its right, an arrow points right towards the text '**HDD/SSD Power**'. 3.  **Bottom Right Block:** An L-shaped connector block. To its right, an arrow points right towards the text '**Motherboard SATA Power Connector**'.  **Connections:** *   Multiple parallel lines (representing wires) originate from the **Left Block**. *   These lines split and connect to the other two blocks. One set of lines connects to the **Top Right Block**, and another set connects to the **Bottom Right Block**. *   The lines between the blocks are depicted crossing diagonally.  *(Note: The photo below the diagram shows the physical cable corresponding to this schematic, featuring a black SATA connector on the left, a black 24-pin connector on the top right, and a white SATA connector on the bottom right.)*](.amitx-rz-g-50m-00035-1010-20/ce4d9ee60066501112d4d574a433dc4d428f6480c27e85898a15c405d47a1368.jpg)

# 4.2.4. USB Header (USB910)

5V/SB5V: 5V supplies for external devices. SB5V is supplied during power down to allow wakeup on USB device activity during S3\~S4 state.

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>P5V_USB</td><td>2</td><td>P5V_USB</td></tr><tr><td>3</td><td>P9_DN_R-</td><td>4</td><td>P10_DN_R</td></tr><tr><td>5</td><td>P9_DP_R</td><td>6</td><td>P10_DP_R</td></tr><tr><td>7</td><td>GND</td><td>8</td><td>GND</td></tr><tr><td>9</td><td>KEY</td><td>10</td><td>GND</td></tr></table>

![1 10](.amitx-rz-g-50m-00035-1010-20/6f917ee81b3d38cc04f80c4adbf3103aca9947efe27b5a4a47c561a399a3520b.jpg)

# USB Cable (optional):

USB 2.0 Header to 2x Female Type-A Cable (length 200mm), P/N: 30-20874-1000

![Diagram of two connected electrical connectors with a central connector, showing wiring connections (no text or symbols)](.amitx-rz-g-50m-00035-1010-20/0bf1f58b76d9e47b6d0cd876660d259deecccb37fb7e50ea1a5fd226bb2c1626.jpg)

# 4.2.5. Internal Audio Connector (FP\_AUDIO1)

2x13-pin 2.0 pitch standard wafer connector

Note: Signals shared with Audio Connector on Rear I/O

<table><tr><td>Signal</td><td>Pin #</td><td>Pin #</td><td>Signal</td></tr><tr><td>LFE-OUT</td><td>1</td><td>2</td><td>CEN-OUT</td></tr><tr><td>AAGND</td><td>3</td><td>4</td><td>AAGND</td></tr><tr><td>FRONT-OUT-L</td><td>5</td><td>6</td><td>FRONT-OUT-R</td></tr><tr><td>AAGND</td><td>7</td><td>8</td><td>AAGND</td></tr><tr><td>REAR-OUT-L</td><td>9</td><td>10</td><td>REAR-OUT-R</td></tr><tr><td>SIDE-OUT-L</td><td>11</td><td>12</td><td>SIDE-OUT-R</td></tr><tr><td>AAGND</td><td>13</td><td>14</td><td>AAGND</td></tr><tr><td>MIC1-L</td><td>15</td><td>16</td><td>MIC1-R</td></tr><tr><td>AAGND</td><td>17</td><td>18</td><td>AAGND</td></tr><tr><td>LINE1-L</td><td>19</td><td>20</td><td>LINE1-R</td></tr><tr><td>MUTE</td><td>21</td><td>22</td><td>AAGND</td></tr><tr><td>GND</td><td>23</td><td>24</td><td>NC</td></tr><tr><td>SPDIF-OUT</td><td>25</td><td>26</td><td>GND</td></tr></table>

![Pure diagram of a vertical connector or socket layout with no text, numbers, or symbols](.amitx-rz-g-50m-00035-1010-20/772034c01f3e57bf6e6717ca070f01ccffd697faff15e3946a805b0938f94080.jpg)

# 4.2.6. CPU Fan and System Fan Connectors (FAN\_CPU1, FAN\_SYS1, FAN\_SYS2)

Pin 3 and 4 are connected (monitored and managed) to the SEMA controller.

<table><tr><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>GND</td></tr><tr><td>2</td><td>Fan Power (+12V)</td></tr><tr><td>3</td><td>Fan Sense</td></tr><tr><td>4</td><td>Fan Speed Control</td></tr></table>

4
![This is a black-and-white line drawing depicting a schematic section of a building. At the top, horizontal lines represent a roof structure with a rectangular chimney-like protrusion in the center. A thick horizontal line separates the roof from the section below. Underneath this line, four rectangular windows are spaced evenly in a row, each bisected by a vertical line.](.amitx-rz-g-50m-00035-1010-20/cf758341e97ac777e4e0ac8472bf60910b91dddafe00328911a882afc8d9422c.jpg)
1

# 4.2.7. Serial COM Port Connectors (COM1-6)

<table><tr><td>Serial Port</td><td>Functions</td></tr><tr><td>COM1</td><td>Supports RS-232 / RS-422 / RS-485, 5V/12V power support by jumper select (JPS3P, default NC).SWS1M: Switch for mode selection of COM1 (default RS-232).</td></tr><tr><td>COM2-4</td><td>Support only RS-232</td></tr><tr><td>COM5-6</td><td>Support RS-232/ccTALK</td></tr></table>

![The image displays a schematic diagram featuring a grid of 18 small white squares arranged in three columns and six rows. This grid is enclosed within a thick black rectangular outline.  Surrounding the outline are four numbers: *   The number **1** is positioned to the left of the upper portion of the rectangle. *   The number **2** is positioned to the right of the upper portion. *   The number **9** is positioned to the left of the lower portion. *   The number **10** is positioned to the right of the lower portion.  Inside the left side of the thick black border, adjacent to the numbers 1 and 9, are two thick black vertical rectangular shapes.](.amitx-rz-g-50m-00035-1010-20/0ccad509c2db62635461805046cbcad480d3b7225a3ef4426115570b930afe86.jpg)

# RS-232 (COM1-5)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>DCD</td><td>2</td><td>DSR</td></tr><tr><td>3</td><td>RxD</td><td>4</td><td>RTS</td></tr><tr><td>5</td><td>TxD</td><td>6</td><td>CTS</td></tr><tr><td>7</td><td>DTR</td><td>8</td><td>RI</td></tr><tr><td>9</td><td>GND</td><td>10</td><td>5V / 12V</td></tr></table>

# RS-422 (COM1 only)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>Tx-</td><td>2</td><td>—</td></tr><tr><td>3</td><td>Tx+</td><td>4</td><td>—</td></tr><tr><td>5</td><td>R+</td><td>6</td><td>—</td></tr><tr><td>7</td><td>Rx-</td><td>8</td><td>—</td></tr><tr><td>9</td><td>GND</td><td>10</td><td>5V / 12V</td></tr></table>

# RS-485 (COM1 only)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>Tx/Rx-</td><td>2</td><td>—</td></tr><tr><td>3</td><td>Tx/Rx+</td><td>4</td><td>—</td></tr><tr><td>5</td><td>—</td><td>6</td><td>—</td></tr><tr><td>7</td><td>—</td><td>8</td><td>—</td></tr><tr><td>9</td><td>GND</td><td>10</td><td>5V / 12V</td></tr></table>

Note: See 4.3.3 COM1 Mode Selection Switch (JSETCOM1) and COM1-4 Power Selection Jumper (JCOMPWR1- 4) on page 26.

RS-232/ccTALK (COM5-6 only)

<table><tr><td>Pin #</td><td>Signal</td><td>Pin #</td><td>Signal</td></tr><tr><td>1</td><td>RS232_RX5_CCTalk</td><td>2</td><td>COM5_RTS#</td></tr><tr><td>3</td><td>RS232_TX5_CCTalk</td><td>4</td><td>COM5_CTS#</td></tr><tr><td>5</td><td>GND</td><td>6</td><td>GND</td></tr><tr><td>7</td><td>RS232_RX6_CCTalk</td><td>8</td><td>COM6_RTS#</td></tr><tr><td>9</td><td>RS232_TX6_CCTalk</td><td>10</td><td>COM6_CTS#</td></tr></table>

Note: See 4.3.5 COM5/6 Mode Selection Switch (SCN 1&2 / 3&4) on page 26.

# COM Cable (optional):

COM Port Cable (length 250mm), P/N: 30-20876-0000

![Technical line drawing of a USB connector with pin numbering and cable routing (no text or symbols)](.amitx-rz-g-50m-00035-1010-20/0a087d47e4f8bdaad8e80c119d84e663016b5c87fbd9da56dabab1c1d38a3a09.jpg)

# 4.2.8. Front Panel Connector (F\_PANEL1)

2x12-pin 2.0 pitch standard wafer connector

The front panel connector provides Audio Mic-In / Line Out, ATX power switch, Reset, HDD LED, and SUS LED (System Power LED).

<table><tr><td>Pin #</td><td>Signal</td><td>IOH/IOL</td><td>Type</td><td>Note</td><td>Pin #</td><td>Signal</td><td>Type</td><td>IOH/IOL</td><td>Note</td></tr><tr><td>1</td><td>N/A</td><td>-</td><td></td><td></td><td>2</td><td>N/A</td><td></td><td>-</td><td></td></tr><tr><td>3</td><td>N/A</td><td>-</td><td></td><td></td><td>4</td><td>N/A</td><td></td><td>-</td><td></td></tr><tr><td>5</td><td>N/A</td><td>-</td><td></td><td></td><td>6</td><td>N/A</td><td></td><td>-</td><td></td></tr><tr><td>7</td><td>GND</td><td>-</td><td>PWR</td><td></td><td>8</td><td>GND</td><td>PWR</td><td>-</td><td></td></tr><tr><td>9</td><td>Mute</td><td>-</td><td>Mute</td><td></td><td>10</td><td>LINE2-L</td><td></td><td>-</td><td></td></tr><tr><td>11</td><td>+5V</td><td>-</td><td>PWR</td><td>1</td><td>12</td><td>+5V</td><td>PWR</td><td>-</td><td>1</td></tr><tr><td>13</td><td>SATA_LED#</td><td>25/25mA</td><td>O</td><td></td><td>14</td><td>SUS_LED</td><td>O</td><td></td><td>2</td></tr><tr><td>15</td><td>GND</td><td>-</td><td>PWR</td><td></td><td>16</td><td>PWRBTN_IN#</td><td>I</td><td></td><td></td></tr><tr><td>17</td><td>RSTIN#</td><td>-</td><td>I</td><td></td><td>18</td><td>GND</td><td>PWR</td><td>-</td><td></td></tr><tr><td>19</td><td>SB3V3</td><td>-</td><td>PWR</td><td></td><td>20</td><td>LINE2-R</td><td></td><td>-</td><td></td></tr><tr><td>21</td><td>AGND</td><td>-</td><td>PWR</td><td></td><td>22</td><td>AGND</td><td>PWR</td><td>-</td><td></td></tr><tr><td>23</td><td>MIC2-L</td><td>-</td><td>AI</td><td></td><td>24</td><td>MIC2-R</td><td>AI</td><td>-</td><td></td></tr></table>

![The image is a black-and-white schematic floor plan of a rectangular room. Inside the room, two columns of small rectangular tables or desks are arranged in rows down the center. There are aisles on both sides of the central furniture arrangement. The number '1' is positioned to the left of the room outline, and the number '2' is positioned to the right. A doorway is indicated on the left wall.](.amitx-rz-g-50m-00035-1010-20/b744ccf5cfa895585c3602776bbe508820f8d27ffd4d59182488c2ac5066ccb1.jpg)
Note 1: Maximum load is 1A.
Note 2: Connect SUS\_LED (System Power LED) to the power status indicator on the chassis front panel. The LED is on when the system is operating. The LED keeps blinking when the system is in S1/S3 sleep state. The LED is off when the system is in S4 sleep state or powered off (S5).

# 4.2.9. Feature Connector (FC1)

2x14-pin 2.0 pitch standard wafer connector

The feature connector provides Case Open, I2C, SMBus, and GPIO (10pin).

<table><tr><td>Signal</td><td>Description</td></tr><tr><td>TEMPS</td><td>Analogue temp sensor, connect to analog input of BMC</td></tr><tr><td>EXT_BAT</td><td>Connect to RTC power</td></tr><tr><td>CASE_OPEN#</td><td>Any time case open occurs, system will notice/show case open alert in POST during the next boot.</td></tr><tr><td>I2CC / I2CD</td><td>Connect to BMC (I2C Master)</td></tr><tr><td>I2C</td><td>SEMA</td></tr></table>

![Pure electrical connector diagram without any text, numbers, or symbols](.amitx-rz-g-50m-00035-1010-20/643f52b03bdf674e70ecfccfbda3b3a4ff4e9f2be082c803203a021dd3e9927b.jpg)

<table><tr><td>Pin #</td><td>Signal</td><td>IOH/IOL</td><td>Pull U/D</td><td>Type</td><td>Note</td><td>Pin #</td><td>Signal</td><td>Type</td><td>IOH/IOL</td><td>Pull U/D</td><td>Note</td></tr><tr><td>1</td><td>CASE_OPEN#</td><td>-</td><td>PU 2M</td><td>I</td><td></td><td>2</td><td>SMBC</td><td>OT</td><td>/4mA</td><td>PU 2.2K SB3V3</td><td>1</td></tr><tr><td>3</td><td>GND</td><td>-</td><td>-</td><td>PWR</td><td></td><td>4</td><td>SMBD</td><td>OT</td><td>/4mA</td><td>PU 2.2K SB3V3</td><td>1</td></tr><tr><td>5</td><td>TEMPS</td><td>-</td><td>-</td><td>I</td><td>2</td><td>6</td><td>I2CC</td><td>OT</td><td>-</td><td>PU 2.2K 3V3</td><td>1</td></tr><tr><td>7</td><td>EXT_BAT</td><td>-</td><td>-</td><td>PWR</td><td></td><td>8</td><td>I2CD</td><td>OT</td><td>-</td><td>PU 2.2K 3V3</td><td>1</td></tr><tr><td>9</td><td>SB3V3</td><td>-</td><td>-</td><td>PWR</td><td></td><td>10</td><td>5V</td><td>PWR</td><td>-</td><td>-</td><td></td></tr><tr><td>11</td><td>GND</td><td>-</td><td>-</td><td>PWR</td><td></td><td>12</td><td>GND</td><td>PWR</td><td>-</td><td>-</td><td></td></tr><tr><td>13</td><td>GPIO0</td><td>-</td><td>PU 10K SB3V3</td><td>IOT</td><td></td><td>14</td><td>GPIO1</td><td>IOT</td><td></td><td>PU 10K SB3V3</td><td></td></tr><tr><td>15</td><td>GPIO2</td><td>-</td><td>PU 10K SB3V3</td><td>IOT</td><td></td><td>16</td><td>GPIO3</td><td>IOT</td><td></td><td>PU 10K SB3V3</td><td></td></tr><tr><td>17</td><td>GPIO4</td><td>-</td><td>PU 10K SB3V3</td><td>IOT</td><td></td><td>18</td><td>GPIO5</td><td>IOT</td><td></td><td>PU 10K SB3V3</td><td></td></tr><tr><td>19</td><td>GPIO6</td><td>-</td><td>PU 10K SB3V3</td><td>IOT</td><td></td><td>20</td><td>GPIO7</td><td>IOT</td><td></td><td>PU 10K SB3V3</td><td></td></tr><tr><td>21</td><td>N/C</td><td>-</td><td>-</td><td>-</td><td></td><td>22</td><td>N/C</td><td>-</td><td>-</td><td>-</td><td></td></tr><tr><td>23</td><td>GND</td><td>-</td><td></td><td>PWR</td><td></td><td>24</td><td>SUS_S3#</td><td>O</td><td>25/25mA</td><td>-</td><td></td></tr><tr><td>25</td><td>12V</td><td>-</td><td>-</td><td>PWR</td><td></td><td>26</td><td>SUS_S4#</td><td>O</td><td>25/25mA</td><td>-</td><td></td></tr><tr><td>27</td><td>PWR_OK</td><td>-</td><td>25/25mA</td><td>O</td><td></td><td>28</td><td>SUS_S5#</td><td>O</td><td>25/25mA</td><td>-</td><td></td></tr></table>

Note 1: Pull-up to +3V3Dual (+3V3 or SB3V3).
Note 2: Input to SEMA.

# 4.2.10. SPI Header (SPI3)

2x6-pin 2.0 pitch standard wafer connector

<table><tr><td>Type</td><td>Signal</td><td>Pin #</td><td>Pin #</td><td>Signal</td><td>Type</td></tr><tr><td></td><td>CLK</td><td>1</td><td>2</td><td>SB3V3</td><td>PWR</td></tr><tr><td>I</td><td>CS0#</td><td>3</td><td>4</td><td>ADDIN</td><td>IO</td></tr><tr><td>I</td><td>CS1#</td><td>5</td><td>6</td><td>NC</td><td>-</td></tr><tr><td>I</td><td>MOSI</td><td>7</td><td>8</td><td>ISOLATE</td><td>IO</td></tr><tr><td>O</td><td>MISO</td><td>9</td><td>10</td><td>GND</td><td>PWR</td></tr><tr><td>IO</td><td>SPI_IO2_#WP</td><td>11</td><td>12</td><td>SPI_IO3_#HOLD</td><td>IO</td></tr></table>

![The image displays a schematic diagram featuring the number '1' on the left and '2' on the right, positioned next to thick vertical black bars. In the center is a rectangular outline representing a room layout. Inside this rectangle, ten small black squares are arranged in two vertical columns of five squares each. The outline of the room has irregular indentations along the left and right sides and diagonal lines near the top and bottom corners.](.amitx-rz-g-50m-00035-1010-20/ebdbb37fe56fc61e7c4f23139f49e361d56b8a983f9e3ef3c16b45b6702776aa.jpg)

<table><tr><td>Signal</td><td>Description</td></tr><tr><td>CLK</td><td>Serial Clock</td></tr><tr><td>SB3V3</td><td>3.3V Standby Voltage power line. Normally output power, but when Motherboard is turned off then the on-board SPI Flash can be 3.3V power sourced via this pin.</td></tr><tr><td>CS0#</td><td>CS0# Chip Select 0, active low.</td></tr><tr><td>ADDIN</td><td>ADDIN input signal must be NC.</td></tr><tr><td>MOSI</td><td>Master Output, Slave Input</td></tr><tr><td>ISOLATE#</td><td>The ISOLATE# input, active low, is normally NC, but must be connected to GND when loading SPI flash. Power Supply to the Motherboard must be turned off when loading SPI flash. The pull up resistor is connected via diode to 5VSB.</td></tr><tr><td>MISO</td><td>Master Input, Slave Output</td></tr><tr><td>SPI_IO2_#WP</td><td>SPI Data I/O: A bidirectional signal used to support the new Dual IO Fast Read, Quad IO Fast Read and Quad Output Fast Read modes. This signal is not used in Dual Output Fast Read mode.</td></tr><tr><td>SPI_IO3_#HOLD</td><td>SPI Data I/O: A bidirectional signal used to support the new Dual IO Fast Read, Quad IO Fast Read and Quad Output Fast Read modes. This signal is not used in Dual Output Fast Read mode.</td></tr></table>

# 4.2.11. DB40 Debug Board Connector

FPC Connector Type: FCI 59GF Flex 10042867

![Close-up of a green circuit board with a black connector and white plastic housing (no visible text or symbols)](.amitx-rz-g-50m-00035-1010-20/464cc12fbbed9cb22ea25c4df31fde98d64545872fed5de5b9c2c0da732dc878.jpg)

40

<table><tr><td>Pin</td><td>Interface</td><td>Signal</td><td>Remark</td><td>Pin</td><td>Interface</td><td>Signal</td><td>Remark</td></tr><tr><td>40</td><td rowspan="7">SPI Program interface</td><td>VCC_SPI_IN</td><td>SPI Power Input from flash tool to module. HW need add MOS FET to switch SPI power for SPI ROM</td><td>20</td><td rowspan="8">BMC Program interface (continued)</td><td>TXD6</td><td></td></tr><tr><td>39</td><td>GND</td><td></td><td>19</td><td>RXD6</td><td></td></tr><tr><td>38</td><td>SPI_BIOS_CS0#</td><td></td><td>18</td><td>FUMD0</td><td></td></tr><tr><td>37</td><td>SPI_BIOS_CS1#</td><td></td><td>17</td><td>RESET_IN#</td><td></td></tr><tr><td>36</td><td>SPI_BIOS_MISO</td><td></td><td>16</td><td>DATA</td><td></td></tr><tr><td>35</td><td>SPI_BIOS_MOSI</td><td></td><td>15</td><td>CLK</td><td></td></tr><tr><td>34</td><td>SPI_BIOS_CLK</td><td></td><td>14</td><td>OCD0A</td><td>Include a jumper to connect OCD0A via 1K0 pull-up to 3.3V_BMC</td></tr><tr><td>33</td><td rowspan="10">LPC Bus</td><td>3V3_LPC</td><td></td><td>13</td><td>OCD0B</td><td>Include a jumper to connect OCD0A via 1K0 pull-up to 3.3V_BMC</td></tr><tr><td>32</td><td>GND</td><td></td><td>12</td><td rowspan="7">Test points</td><td>PWRBTN#</td><td></td></tr><tr><td>31</td><td>CB_RESET#</td><td>Platform Reset</td><td>11</td><td>SYS_RESET#</td><td></td></tr><tr><td>30</td><td>RST#</td><td></td><td>10</td><td>CB_RESET#</td><td></td></tr><tr><td>29</td><td>CLK33_LPC</td><td></td><td>9</td><td>CB_PWROK</td><td></td></tr><tr><td>28</td><td>LPC_FRAME#</td><td></td><td>8</td><td>SUS_S3#</td><td></td></tr><tr><td>27</td><td>LPC_AD3</td><td></td><td>7</td><td>SUS_S4#</td><td></td></tr><tr><td>26</td><td>LPC_AD2</td><td></td><td>6</td><td>SUS_S5#</td><td></td></tr><tr><td>25</td><td>LPC_AD1</td><td></td><td>5</td><td rowspan="4">BMC Debug signals</td><td>POSTWDT_DIS#</td><td>Connect to Jumper for Debug</td></tr><tr><td>24</td><td>LPC_AD0</td><td></td><td>4</td><td>SEL_BIOS</td><td>Connect to Jumper for Debug</td></tr><tr><td>23</td><td rowspan="3">BMC Program interface</td><td>3.3V_BMC</td><td></td><td>3</td><td>BIOS_MODE</td><td>Connect to Jumper for Debug</td></tr><tr><td>22</td><td>3.3V_BMC</td><td></td><td>2</td><td>BMC_STATUS</td><td></td></tr><tr><td>21</td><td>GND</td><td></td><td>1</td><td>Reserved</td><td></td><td></td></tr></table>

Note: The pin description on the Debug Module is the inverse of that on the motherboard.

# 4.3. Jumper and Switch Settings

![SATA1 power sel (SATA_PSEL1) Clear CMOS (JCMOS1) BIOS switch (SW1) SATA2 power sel (SATA_PSEL2) BIOS2 write protect (SPI6) BIOS1 write protect (SPI5) COM1 mode switch (JSETCOM1) COM5 mode jumper (SCN 1&2) COM6 mode jumper (SCN 3&4) COM3 power sel (JCOMPWR3) COM1 power sel (JCOMPWR1) COM4 power sel (JCOMPWR4) COM2 power sel (JCOMPWR2) PS_ON select (JPSON2) ATX/AT mode (JPSON1)](.amitx-rz-g-50m-00035-1010-20/fc810d1a74552d6e00b1a481de9dca00b67cb67101920a0ba2b95e8d851b6511.jpg)

Figure 6: AmITX-RZ-G Jumper and Switch Locations

# 4.3.1. ATX/AT Mode Jumper Selection (JPSON1)

<table><tr><td>JPSON1</td><td>ATX/AT Mode</td></tr><tr><td>1-2 shorted</td><td>ATX (default)</td></tr><tr><td>2-3 shorted</td><td>AT</td></tr></table>

# 4.3.2. Clear CMOS (JCMOS1)

<table><tr><td>JCMOS1</td><td>Clear CMOS</td></tr><tr><td>1-2 shorted</td><td>Normal (default)</td></tr><tr><td>2-3 shorted</td><td>Clear CMOS</td></tr></table>

# 4.3.3. COM1 Mode Selection Switch (JSETCOM1)

<table><tr><td>Pin</td><td>RS-232 (default)</td><td>RS-422</td><td>RS-485</td></tr><tr><td>1</td><td>ON</td><td>ON</td><td>OFF</td></tr><tr><td>2</td><td>OFF</td><td>ON</td><td>ON</td></tr></table>

![1 2 ON](.amitx-rz-g-50m-00035-1010-20/e71f357ad9d2604c588e43587f8fb5d56138e89f1fc84fcf6ca65e00a9398a8b.jpg)

# 4.3.4. COM1-4 Power Selection Jumper (JCOMPWR1-4)

<table><tr><td>JCOMPWR1-4</td><td>COM1 Power</td></tr><tr><td>1-2</td><td>5V</td></tr><tr><td>2-3</td><td>NC (default)</td></tr><tr><td>3-4</td><td>12V</td></tr></table>

![The image displays four rows of content. On the far left, the numbers 1, 2, 3, and 4 are stacked vertically in red. Next to each number is a short red horizontal line. To the right of the lines is a blue, vertical structure resembling a maze or floor plan. This structure contains four distinct white sections aligned with the numbers. The top section contains a blue square, while the sections corresponding to numbers 2, 3, and 4 each contain a blue circle.](.amitx-rz-g-50m-00035-1010-20/3cb5c4a07767a658f983212b1981b5e3828c958605c89fc7534792f12bf77891.jpg)

# 4.3.5. COM5/6 Mode Selection Switch (SCN 1&2 / 3&4)

<table><tr><td>(SCN 1&amp;2 / 3&amp;4)</td><td>Mode</td></tr><tr><td>1-3 shorted</td><td rowspan="2">RS-232 (default)</td></tr><tr><td>2-4 shorted</td></tr><tr><td>3-5 shorted</td><td rowspan="2">ccTalk</td></tr><tr><td>4-6 shorted</td></tr></table>

![The image displays a schematic diagram of a 6-pin connector. In the center is a blue outline of a rectangular housing containing six blue pin symbols arranged in a 2x3 grid. The top-left pin is a square, while the remaining five pins are circles.  On the left side, three red horizontal lines extend outward, labeled from top to bottom as '1', '3', and '5'. On the right side, three red horizontal lines extend outward, labeled from top to bottom as '2', '4', and '6'.](.amitx-rz-g-50m-00035-1010-20/c6c8b23cfeaba550c67a71cd2b247b29e66292c1b5d48a8424e0f6186c269d65.jpg)

# 4.3.6. BIOS Switch Setting (SW1)

<table><tr><td>Switch</td><td>ON</td><td>OFF</td></tr><tr><td>1</td><td>Boot from SPI0 (default)</td><td>Boot from SPI1</td></tr><tr><td>2</td><td>Normal BIOS Mode</td><td>Failsafe BIOS Mode (default)</td></tr></table>

![1 2 ON](.amitx-rz-g-50m-00035-1010-20/206ae4dcef364fd9d72aa7dc8b4b15c6c7349a70a980337d6b94cf67f2466eed.jpg)

# 4.3.7. BIOS Write protect Selection (SPI5, SPI6)

<table><tr><td>Pin</td><td>Mode</td></tr><tr><td>1-2 shorted</td><td>BMC control (default)</td></tr><tr><td>2-3 shorted</td><td>Enable</td></tr></table>

# 4.3.8. SATA1/2 Power Selection (SATA\_PSEL1/2)

<table><tr><td>Pin</td><td>Mode</td></tr><tr><td>1-2 shorted</td><td>5V</td></tr><tr><td>2-3 shorted</td><td>3.3V</td></tr><tr><td>Open</td><td>Default</td></tr></table>

# 4.3.9. PS\_ON Select (JPSON2)

<table><tr><td>Mode</td><td>Jumper Setting</td></tr><tr><td>PS_ON</td><td>1-2 Short (for 5VA_ATX wire cut use)</td></tr><tr><td>NA</td><td>2-3 Short (default)</td></tr></table>

# 4.4. Onboard Connector Information

Table 2: AmITX-RZ-G Onboard Connector Information

<table><tr><td>Connector</td><td>CN#</td><td colspan="2">Onboard ConnectorManufacturer Part No.</td><td colspan="2">Mating ConnectorManufacturer Part No.</td><td>ADLINK Cable</td></tr><tr><td>COM Port</td><td>COM1-6</td><td>JVE</td><td>23N6850-10S10B-01G-B-01</td><td>YOUNG YAK</td><td>YY-1970H-2*5P (PH2.0)</td><td>30-20876-0000 (optional)</td></tr><tr><td>ATX power</td><td>ATX_PW</td><td>Molex</td><td>39-28-1143</td><td>E.C.I</td><td>E.C.I 5016H-2*7P (PH4.2)</td><td>30-20872-0000 (standard)</td></tr><tr><td>USB</td><td>USB910</td><td>CST</td><td>CBF-2000-1009</td><td>YOUNG YAK</td><td>YY-1970H-2*5P (PH2.0)</td><td>30-20874-1000 (optional)</td></tr><tr><td>SATA Power</td><td>ST_PW1-2</td><td>JVE</td><td>24W1170-05S10-01T-3.4-CS01</td><td>YOUNG YAK</td><td>YY-1970H-2*5P (PH2.0)</td><td>30-20875-0000 (standard)</td></tr><tr><td>SATA</td><td>SATA1-3</td><td>WIN WIN</td><td>WATM-07ABN4B3B8UW4</td><td></td><td></td><td>30-10057-0600 (standard)</td></tr><tr><td>DB-40</td><td>DB1</td><td>Molex</td><td>502790-4091</td><td></td><td></td><td>30-30016-0000 (optional)</td></tr><tr><td>Feature</td><td>FC1</td><td>JVE</td><td>23N6851-28S10B-01G-2.5-GR01</td><td>JWT</td><td>JWT A2005H00-2C*14 (PH2.0)</td><td></td></tr><tr><td>Audio</td><td>AUDIO1</td><td>JVE</td><td>23N6851-26S10B-01G-2.5-GR01</td><td>JWT</td><td>JWT A2005H00-2CX13P (PH2.0)</td><td></td></tr><tr><td>Front Panel</td><td>FPANEL1</td><td>JVE</td><td>23N6851-24S10B-01G-2.5-GR01</td><td>YY</td><td>YY-1970H-2*12P (PH2.0)</td><td></td></tr></table>

# 5. Driver Installation

Drivers can be downloaded through the following link.

https://www.adlinktech.com/Products/Industrial\_Motherboards\_SBCs/Mini-ITXEmbeddedBoards/AmITX-RZ-G?lang=en

This page intentionally left blank.

# 6. Smart Embedded Management Agent (SEMA)

The onboard microcontroller (BMC) implements power sequencing and Smart Embedded Management Agent (SEMA) functionality.

The microcontroller communicates via the System Management Bus with the CPU/chipset. The following functions are implemented.

• Total operating hours counter. Counts the number of hours the module has been run in minutes.
• On-time minutes counter. Counts the seconds since last system start.
• Temperature monitoring of CPU and board temperature. Minimum and maximum temperature values of CPU and board are stored in flash.
• Power cycles counter
• Boot counter. Counts the number of boot attempts.
• Watchdog Timer (Type-II). Set / Reset / Disable Watchdog Timer. Features auto-reload at power-up.
• System Restart Cause. Power loss / BIOS Fail / Watchdog / Internal Reset / External Reset
• Fail-safe BIOS support. In case of a boot failure, hardware signals tell external logic to boot from fail-safe BIOS.
• Flash area. 1kB Flash area for customer data
• 128 Bytes Protected Flash area. Keys, IDs, etc. can be stored in a write- and clear-protectable region.
• Board Identify. Vendor / Board / Serial number / Production Date
• Main-current & voltage. Monitors drawn current and main voltages

For a detailed description of SEMA features and functionality, please refer to the SEMA Technical Manual and SEMA Software Manual, downloadable on the ADLINK web site: www.adlinktech.com .

# 6.1. Board Specific SEMA Functions

# 6.1.1. Voltages

The BMC implements a voltage monitor and samples several onboard voltages. The voltages can be read by calling the SEMA function “Get Voltages”. The function returns a 16-bit value divided into high-byte (MSB) and lowbyte (LSB).

Table 3: SEMA Onboard Voltage Monitor

<table><tr><td>ADC Channel</td><td>Voltage Name</td></tr><tr><td>1</td><td>VIN(12V)</td></tr><tr><td>2</td><td>5VSB</td></tr><tr><td>3</td><td>RTC</td></tr></table>

# 6.1.2. Main Current

The BMC implements a current monitor. The current can be read by calling the SEMA function “Get Main Current”. The function returns four 16-bit values divided in high-byte (MSB) and low-byte (LSB). These 4 values represent the last 4 currents drawn by the board. The values are sampled every 250ms. The order of the 4 values is NOT in chronological order. Access by the BMC may increase the drawn current of the whole system. In this case, there are still 3 samples not influenced by the read access.

$$
\text { Main   Current } = (\text { MSB\_n } &lt;   &lt;   8 + \text { LSB\_n }) \times 8. 0 6 \mathrm{mA}
$$

# 6.1.3. BMC Status

This register shows the status of BMC controlled signals on the AmITX-SL.

Table 4: SEMA BMC Status

&lt;table&gt;<tr><td>Status Bit</td><td>Signal</td></tr><tr><td>0</td><td>WDT_OUT</td></tr><tr><td>3</td><td>POSTWDT_DISn</td></tr><tr><td>5</td><td>SEL_BIOS</td></tr><tr><td>6</td><td>SPI0_WPn</td></tr><tr><td>7</td><td>SPI1_WPn</td></tr></table>

# 6.1.4. Exception Codes

In case of an error, the BMC drives a blinking code on the blue Status LED (LED1). The same error code is also reported by the BMC Flags register. The Exception Code is not stored in the Flash Storage and is cleared when the power is removed. Therefore, a “Clear Exception Code” command is not needed or supported.

Table 5: SEMA Exception Codes

<table><tr><td>Exception Code</td><td>Error Message</td></tr><tr><td>0</td><td>NOERROR</td></tr><tr><td>2</td><td>NO_SUSCLK</td></tr><tr><td>3</td><td>NO_SLP_S5</td></tr><tr><td>4</td><td>NO_RSMRST</td></tr><tr><td>5</td><td>NO_SLP_S3</td></tr><tr><td>6</td><td>BIOS_FAIL</td></tr><tr><td>7</td><td>PLTRST_FAIL</td></tr><tr><td>8</td><td>NO_SYS_PWRGD</td></tr><tr><td>9</td><td>NO_VCORE_PWRGD</td></tr><tr><td>10</td><td>CRITICAL_TEMP</td></tr><tr><td>11</td><td>NO_V12</td></tr><tr><td>12</td><td>NO_VRTC</td></tr><tr><td>13</td><td>NO_V5SBY</td></tr></table>

# 6.1.5. BMC Flags

The BMC Flags register returns the last detected Exception Code since power-up and shows the BIOS in use and the power mode.

Table 6: SEMA BMC Flags

<table><tr><td>Bit</td><td>Description</td></tr><tr><td>[0 ~ 4]</td><td>Exception Code</td></tr><tr><td>[6]</td><td>0 = AT mode1 = ATX mode</td></tr><tr><td>[7]</td><td>0 = Standard BIOS1 = Fail-safe BIOS.</td></tr></table>

This page intentionally left blank.

# 7. System Resources

# 7.1. System Memory Map

Table 7: System Memory Map

<table><tr><td>Address Range (decimal)</td><td>Address Range (hex)</td><td>Size</td><td>Description</td></tr><tr><td>(4GB - 2MB)</td><td>FFE00000 - FFFFFFFF</td><td>2 MB</td><td>High BIOS Area</td></tr><tr><td>(4GB - 18MB)- (4GB -17MB - 1)</td><td>FEE00000 - FEEFFFFF</td><td>1 MB</td><td>MSI Interrupt</td></tr><tr><td>(4GB - 20MB)- (4GB - 19MB - 1)</td><td>FEC00000 - FECFFFFFF</td><td>1 MB</td><td>APIC Configuration Space</td></tr><tr><td>15MB - 16MB</td><td>00F00000 - 00FFFFFF</td><td>1 MB</td><td>ISA Hole</td></tr><tr><td>1MB - 15MB</td><td>00100000 - 00EFFFFFF</td><td>14 MB</td><td>Main Memory</td></tr><tr><td>0MB - 1MB</td><td>00000000 - 000FFFFFF</td><td>1 MB</td><td>DOS Compatibility Memory</td></tr></table>

# 7.2. I/O Map

Table 8: I/O Map

<table><tr><td>Hex Range</td><td>Device</td></tr><tr><td>020h - 02Dh030h - 03Dh</td><td>Interrupt controller 1, 8259 equivalent</td></tr><tr><td>02Eh - 02Fh</td><td>SIO F81866</td></tr><tr><td>040h - 042h050h - 052h</td><td>System Timer</td></tr><tr><td>060h, 062h, 064h, 066h</td><td>8042 equivalent (keyboard)</td></tr><tr><td>061h</td><td>NMI control and status</td></tr><tr><td>070h - 077h</td><td>Real Time Clock Controller</td></tr><tr><td>092h</td><td>Reset Generator</td></tr><tr><td>0A0h - 0B1h0B4h - 0BDh</td><td>Interrupt Controller 2, 8259 equivalent</td></tr><tr><td>0B2h, 0B3h</td><td>APM control and status port respectively</td></tr><tr><td>220h - 227h</td><td>Serial Port 6</td></tr><tr><td>260h - 267h</td><td>Serial Port 5</td></tr><tr><td>2E8h - 2EFh</td><td>Serial Port 4</td></tr><tr><td>2F8h - 2FFh</td><td>Serial Port 2</td></tr><tr><td>3E8h - 3EFh</td><td>Serial Port 3</td></tr><tr><td>3F8h - 3FFh</td><td>Serial Port 1</td></tr><tr><td>800h</td><td>PM (ACPI) Base Address</td></tr><tr><td>0CF9h</td><td>Reset Controller register (8 bit I/O)</td></tr></table>

# 7.3. Interrupt Request (IRQ) Lines

# 7.3.1. IRQ Lines PIC Mode

Table 9: IRQ Lines PIC Mode

<table><tr><td>IRQ#</td><td>Typical Interrupt Resource</td><td>Connected to Pin</td><td>Available</td></tr><tr><td>0</td><td>Counter 0</td><td>N/A</td><td>No</td></tr><tr><td>1</td><td>Keyboard Controller</td><td>N/A</td><td>No</td></tr><tr><td>2</td><td>Cascade Interrupt</td><td>N/A</td><td>No</td></tr><tr><td>3</td><td>Serial Port 2 (COM2)</td><td>IRQ3 via SERIRQ/PIRQ</td><td>Note (1)</td></tr><tr><td>4</td><td>Serial Port 1 (COM1)</td><td>IRQ4 via SERIRQ/PIRQ</td><td>Note (1)</td></tr><tr><td>5</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>6</td><td>Serial Port 3/4/5/6 (COM3/4/5/6)</td><td>IRQ6 via SERIRQ/PIRQ</td><td>Note (1)</td></tr><tr><td>7</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>8</td><td>Real-Time clock</td><td>N/A</td><td>No</td></tr><tr><td>9</td><td>Cascade Interrupt</td><td>N/A</td><td>No</td></tr><tr><td>10</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>11</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>12</td><td>PS/2 Mouse</td><td>IRQ12 via SERIRQ/PIRQ</td><td>No</td></tr><tr><td>13</td><td>Math Processor</td><td>N/A</td><td>No</td></tr><tr><td>14</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>15</td><td>Generic</td><td>N/A</td><td>No</td></tr></table>

Note (1): These IRQs can be used for PCI devices when onboard device is disabled.

# 7.3.2. IRQ Lines APIC Mode

Table 10: IRQ Lines APIC Mode

<table><tr><td>IRQ#</td><td>Typical Interrupt Resource</td><td>Connected to Pin</td><td>Available</td></tr><tr><td>0</td><td>Counter 0</td><td>N/A</td><td>No</td></tr><tr><td>1</td><td>Keyboard Controller</td><td>N/A</td><td>No</td></tr><tr><td>2</td><td>Cascade Interrupt</td><td>N/A</td><td>No</td></tr><tr><td>3</td><td>Serial Port 2 (COM2)</td><td>IRQ3 via SERIRQ/PIRQ</td><td>No</td></tr><tr><td>4</td><td>Serial Port 1 (COM1)</td><td>IRQ4 via SERIRQ/PIRQ</td><td>No</td></tr><tr><td>5</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>6</td><td>Serial Port 3/4/5/6 (COM3/4/5/6)</td><td>IRQ6 via SERIRQ/PIRQ</td><td>No</td></tr><tr><td>7</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>8</td><td>Real-Time clock</td><td>N/A</td><td>No</td></tr><tr><td>9</td><td>Cascade Interrupt</td><td>N/A</td><td>No</td></tr><tr><td>10</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>11</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>12</td><td>PS/2 Mouse</td><td>IRQ12 via SERIRQ/PIRQ</td><td>No</td></tr><tr><td>13</td><td>Math Processor</td><td>N/A</td><td>No</td></tr><tr><td>14</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>15</td><td>Generic</td><td>N/A</td><td>No</td></tr><tr><td>16</td><td>ACPI-Compliant System</td><td>N/A</td><td>Yes</td></tr></table>

Note (1): These IRQs can be used for PCI devices when onboard device is disabled.

# 7.4. PCI Configuration Space Map

Table 11: PCI Configuration Space Map

<table><tr><td>Bus Number</td><td>Device Number</td><td>Function Number</td><td>Routing</td><td>Description</td></tr><tr><td>00h</td><td>00h</td><td>00h</td><td>N/A</td><td>Host Bridge</td></tr><tr><td>00h</td><td>00h</td><td>02h</td><td>N/A</td><td>IOMMU</td></tr><tr><td>00h</td><td>01h</td><td>00h</td><td>N/A</td><td>PCIe Dummy Host Bridge</td></tr><tr><td>00h</td><td>01h</td><td>02h</td><td>Internal</td><td>PCIe Bridge 2</td></tr><tr><td>00h</td><td>08h</td><td>00h</td><td>N/A</td><td>PCIe Dummy Host Bridge</td></tr><tr><td>00h</td><td>08h</td><td>01h</td><td>Internal</td><td>PCIe GPP Bridge 1</td></tr><tr><td>00h</td><td>08h</td><td>02h</td><td>Internal</td><td>PCIe GPP Bridge 2</td></tr><tr><td>00h</td><td>14h</td><td>00h</td><td>Internal</td><td>SMBus Controller</td></tr><tr><td>00h</td><td>14h</td><td>03h</td><td>Internal</td><td>LPC Bridge</td></tr><tr><td>00h</td><td>18h</td><td>00h</td><td>N/A</td><td>Data Fabric</td></tr><tr><td>00h</td><td>18h</td><td>01h</td><td>N/A</td><td>Data Fabric</td></tr><tr><td>00h</td><td>18h</td><td>02h</td><td>N/A</td><td>Data Fabric</td></tr><tr><td>00h</td><td>18h</td><td>03h</td><td>N/A</td><td>Data Fabric</td></tr><tr><td>00h</td><td>18h</td><td>04h</td><td>N/A</td><td>Data Fabric</td></tr><tr><td>00h</td><td>18h</td><td>05h</td><td>N/A</td><td>Data Fabric</td></tr><tr><td>00h</td><td>18h</td><td>06h</td><td>N/A</td><td>Data Fabric</td></tr><tr><td>00h</td><td>18h</td><td>07h</td><td>N/A</td><td>Data Fabric</td></tr><tr><td>01h</td><td>00h</td><td>00h</td><td>Internal</td><td>Intel LAN</td></tr><tr><td>04h</td><td>00h</td><td>00h</td><td>Internal</td><td>ATI VGA controller</td></tr><tr><td>04h</td><td>00h</td><td>01h</td><td>Internal</td><td>ATI HD AUDIO</td></tr><tr><td>04h</td><td>00h</td><td>02h</td><td>Internal</td><td>AMD En/ Decryption Controller</td></tr><tr><td>04h</td><td>00h</td><td>03h</td><td>Internal</td><td>XHCI USB controller 1</td></tr><tr><td>04h</td><td>00h</td><td>04h</td><td>Internal</td><td>XHCI USB controller 2</td></tr><tr><td>04h</td><td>00h</td><td>05h</td><td>Internal</td><td>Multimedia Device</td></tr><tr><td>04h</td><td>00h</td><td>06h</td><td>Internal</td><td>AMD HD AUDIO Device</td></tr><tr><td>04h</td><td>00h</td><td>07h</td><td>Internal</td><td>AMD Controller</td></tr><tr><td>05h</td><td>00h</td><td>00h</td><td>Internal</td><td>SATA Controller</td></tr></table>

Note: The bus number will be changed if the PEG/PCIE port has device.

# 7.5. PCI Interrupt Routing Map

Table 12: PCI Interrupt Routing Map

<table><tr><td>INT Line</td><td>PCIe Bridge 2</td><td>PCIe GPP Bridge 1</td><td>PCIe GPP Bridge 2</td><td>SMBus Controller</td><td>LPC Bridge</td><td>Intel LAN</td><td>ATI VGA Controller</td><td>ATI HD Audio</td></tr><tr><td>Int0</td><td>INTE: 28</td><td>INTE: 52</td><td>INTG: 54</td><td>INTA: 16</td><td>INTA: 16</td><td>INTE: 28</td><td>INTE: 52</td><td>INTE: 52</td></tr><tr><td>Int1</td><td>INTF: 29</td><td>INTF: 53</td><td>INTH: 55</td><td>INTB: 17</td><td>INTB: 17</td><td>INTF: 29</td><td>INTF: 53</td><td>INTF: 53</td></tr><tr><td>Int2</td><td>INTG: 30</td><td>INTG: 54</td><td>INTE: 52</td><td>INTC: 18</td><td>INTC: 18</td><td>INTG: 30</td><td>INTG: 54</td><td>INTG: 54</td></tr><tr><td>Int3</td><td>INTH: 31</td><td>INTH: 55</td><td>INTF: 53</td><td>INTD: 19</td><td>INTD: 19</td><td>INTH: 31</td><td>INTH: 55</td><td>INTH: 55</td></tr></table>

<table><tr><td>INT Line</td><td>AMD En/ Decryption Controller</td><td>XHCI USB controller 1</td><td>XHCI USB controller 2</td><td>Multimedia Device</td><td>AMD HD Audio Device</td><td>AMD Controller</td><td>SATA Controller</td></tr><tr><td>Int0</td><td>INTE: 52</td><td>INTE: 52</td><td>INTE: 52</td><td>INTE: 52</td><td>INTE: 52</td><td>INTE: 52</td><td>INTG: 54</td></tr><tr><td>Int1</td><td>INTF: 53</td><td>INTF: 53</td><td>INTF: 53</td><td>INTF: 53</td><td>INTF: 53</td><td>INTF: 53</td><td>INTH: 55</td></tr><tr><td>Int2</td><td>INTG: 54</td><td>INTG: 54</td><td>INTG: 54</td><td>INTG: 54</td><td>INTG: 54</td><td>INTG: 54</td><td>INTE: 52</td></tr><tr><td>Int3</td><td>INTH: 55</td><td>INTH: 55</td><td>INTH: 55</td><td>INTH: 55</td><td>INTH: 55</td><td>INTH: 55</td><td>INTF: 53</td></tr></table>

# 7.6. SMBus Slave Address

Table 13: SMBus Slave Address

<table><tr><td>Device</td><td>Address</td></tr><tr><td>DIMM A</td><td>A0h</td></tr><tr><td>DIMM B</td><td>A4h</td></tr><tr><td>BMC</td><td>50h</td></tr><tr><td>PCA9535</td><td>42h</td></tr></table>

This page intentionally left blank.

# 8. BIOS Setup

# 8.1. Menu Structure

This section presents the six primary menus of the BIOS Setup Utility. Use the following table as a quick reference for the contents of the BIOS Setup Utility. The subsections in this section describe the submenus and setting options for each menu item. The default setting options are presented in bold, and the function of each setting is described in the right hand column of the respective table.

<table><tr><td>Main</td><td>Advanced</td><td>Security</td><td>Boot</td><td>Save &amp; Exit</td></tr><tr><td>BIOS InformationSystem InformationBoard Information ▶System DateSystem TimeAccess Level</td><td>CPU ConfigurationPower ManagementSystem ManagementThermal ManagementWatchdog TimerCSM ConfigurationSATA ConfigurationSuper IO ConfigurationSerial Console RedirectionNetwork Stack ConfigurationUSB ConfigurationTPM 2.0 ConfigurationNVMe ConfigurationMiscellaneousAMD CBSAMD PBS</td><td>Password DescriptionSecure Boot menu</td><td>Boot ConfigurationBoot Configuration</td><td>Save OptionsBoot Override</td></tr></table>

# Notes:

► indicates a submenu

Gray text indicates info only

# 8.2. Main

The Main Menu provides read-only information about your system and also allows you to set the System Date and Time. Refer to the tables below for details of the submenus and settings.

8.2.1. Main > BIOS Information

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>BIOS Vendor</td><td>Info only</td><td>BIOS vendor</td></tr><tr><td>BIOS Version</td><td>Info only</td><td>BIOS version.</td></tr><tr><td>Build Date</td><td>Info only</td><td>BIOS build date.</td></tr><tr><td>AGESA Version</td><td>Info only</td><td>AMD AGESA version.</td></tr><tr><td>GOP Version</td><td>Info only</td><td>AMD GOP version.</td></tr></table>

8.2.2. Main > System Information

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Project Name</td><td>Info only</td><td>Project name.</td></tr><tr><td>CPU Board Version</td><td>Info only</td><td>CPU board version.</td></tr><tr><td>CPU Brand String</td><td>Info only</td><td>CPU brand string.</td></tr><tr><td>CPU Frequency</td><td>Info only</td><td>Standard CPU frequency.</td></tr><tr><td>Total Memory</td><td>Info only</td><td>Total memory size.</td></tr><tr><td>Memory Frequency</td><td>Info only</td><td>Memory frequency.</td></tr></table>

8.2.3. Main > Board Information

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Board Information</td><td colspan="2">Info only</td></tr><tr><td>Serial Number</td><td>Info Only</td><td>Display SEMA serial number</td></tr><tr><td>Manufacturing Date</td><td>Info Only</td><td>Display SEMA manufacturing date</td></tr><tr><td>Last Repair Date</td><td>Info Only</td><td>Display SEMA last repair date</td></tr><tr><td>MAC ID</td><td>Info Only</td><td>Display SEMA MAC ID</td></tr><tr><td>Runtime Statistics</td><td colspan="2">Info only</td></tr><tr><td>Total Runtime</td><td>Info Only</td><td>The returned value specifies the total time in minutes the system is running in S0 state.</td></tr><tr><td>Current Runtime</td><td>Info Only</td><td>The returned value specifies the time in seconds the system is running in S0 state.This counter is cleared when the system is removed from the external power supply.</td></tr><tr><td>Power Cycles</td><td>Info Only</td><td>The returned value specifies the number of times the external power supply has been shut down</td></tr><tr><td>Boot Cycles</td><td>Info Only</td><td>The Boot counter is increased after a HW- or SW-Reset or after a successful power-up.</td></tr><tr><td>Boot Reason</td><td>Info Only</td><td>The boot reason is the event which causes the reboot of the system.</td></tr></table>

# 8.2.4. Main > System Date and Time

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>System Date</td><td>Weekday, MM/DD/YYYY</td><td>Requires the alpha-numeric entry of the day of the week, day of the month, calendar month, and all 4 digits of the year, indicating the century and year (Fri XX/XX/20XX)</td></tr><tr><td>System Time</td><td>HH/MM/SS</td><td>Presented as a 24-hour clock setting in hours, minutes, and seconds</td></tr></table>

# 8.2.5. Main > Access Level

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Access Level</td><td>Info Only</td><td>BIOS setup utility access level</td></tr></table>

# 8.3. Advanced

This menu contains the settings for most of the user interfaces in the system.

8.3.1. Advanced > CPU Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>CPU Configuration</td><td colspan="2">Info only</td></tr><tr><td>CPU Brand String</td><td>Info only</td><td>Display CPU brand string</td></tr><tr><td>Processor Family</td><td>Info only</td><td>Display CPU family</td></tr><tr><td>Processor Model</td><td>Info only</td><td>Display CPU model</td></tr><tr><td>CPUID</td><td>Info only</td><td>Display CPU ID</td></tr><tr><td>Max Speed</td><td>Info only</td><td>Display CPU Max frequency</td></tr><tr><td>Min Speed</td><td>Info only</td><td>Display CPU Min frequency</td></tr><tr><td>Microcode Patch Level</td><td>Info only</td><td>Display CPU Microcode version</td></tr><tr><td>L1 Instruction Cache</td><td>Info only</td><td>Display L1 Instruction cache size</td></tr><tr><td>L1 Data Cache</td><td>Info only</td><td>Display L1 data cache size</td></tr><tr><td>L2 Cache</td><td>Info only</td><td>Display L2 cache size</td></tr><tr><td>Total L3 Cache per Socket</td><td>Info only</td><td>Display L3 cache size</td></tr><tr><td>PSS Support</td><td>DisabledEnabled</td><td>Enable/disable the generation of ACPI_PPC,_PSS, and_PCT objects.</td></tr><tr><td>PPC Adjustment</td><td>PState 0PState 1PState 2</td><td>Provide to adjust_PPC object.</td></tr><tr><td>NX Mode</td><td>DisabledEnabled</td><td>Enable/disable No-execute page protection Function</td></tr><tr><td>SVM Mode</td><td>DisabledEnabled</td><td>Enable/disable CPU Virtualization</td></tr></table>

8.3.2. Advanced > Power Management

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Power Management</td><td colspan="2">Info only</td></tr><tr><td>Enable ACPI Auto Configuration</td><td>DisabledEnabled</td><td>Enables or Disables BIOS ACPI Auto Configuration.</td></tr><tr><td>ACPI Sleep State</td><td>Suspend Disabled S3 (Suspend to RAM)</td><td>Select the highest ACPI sleep state the system will enter when the SUSPEND button is pressed.</td></tr><tr><td>Lock Legacy Resources</td><td>Disabled Enabled</td><td>Enables or Disables Lock of Legacy Resources</td></tr><tr><td>Power Supply Unit</td><td>Emulate AT Mode ATX Mode</td><td>ATX: OS will turn off system power when shutdown. NOTE: AT mode will not support S3 &amp; S4 &amp; S5, so it will change Power Loss State to Power On</td></tr><tr><td>Restore On AC Power Loss</td><td>Power On Power Off Last State</td><td>Restore Status On AC Power Loss</td></tr><tr><td>LAN #1 (Intel I211)</td><td>Disabled Enabled</td><td>Enable/Disable</td></tr><tr><td>PCIe wake up from S5</td><td>Disabled Enabled</td><td>Disable/Enable PCI device wake up from S5</td></tr><tr><td>ECO Mode</td><td>Disabled Enabled</td><td>Reduces the power consumption of the system, but after a shut down, you have to wait at least 5 seconds before you can restart the system.</td></tr><tr><td>Power Consumption ▶</td><td>Submenu</td><td>Power Consumption</td></tr></table>

# 8.3.2.1. Advanced > Power Management > Power Consumption

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Power Consumption</td><td colspan="2">Info only</td></tr><tr><td>Current Input Current</td><td>Info only</td><td>Display actual input current</td></tr><tr><td>Current Input Power</td><td>Info only</td><td>Display actual input power</td></tr><tr><td>VIN(12V)</td><td>Info only</td><td>Display actual VIN(12V) voltage</td></tr><tr><td>5VSB</td><td>Info only</td><td>Display actual 5VSB voltage</td></tr><tr><td>RTC</td><td>Info only</td><td>Display actual RTC voltage</td></tr><tr><td>VCORE</td><td>Info only</td><td>Display actual VCORE voltage</td></tr><tr><td>VMEM</td><td>Info only</td><td>Display actual VMEM voltage</td></tr><tr><td>5V</td><td>Info only</td><td>Display actual 5V voltage</td></tr><tr><td>VGFX</td><td>Info only</td><td>Display actual VGFX voltage</td></tr><tr><td>3.3V</td><td>Info only</td><td>Display actual 3.3V voltage</td></tr><tr><td>3.3VSB</td><td>Info only</td><td>Display actual 3.3VSB voltage</td></tr></table>

8.3.3. Advanced > System Management

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>System Management</td><td colspan="2">Info only</td></tr><tr><td>Version:</td><td colspan="2">Info only</td></tr><tr><td>SEMA Firmware</td><td>Info only</td><td>Display SEMA firmware</td></tr><tr><td>Build Date</td><td>Info only</td><td>Display SEMA firmware build date</td></tr><tr><td>SEMA Bootloader</td><td>Info only</td><td>Display SEMA boot loader</td></tr><tr><td>Build Date</td><td>Info only</td><td>Display SEMA boot loader build date</td></tr><tr><td>SEMA Features ▶</td><td>Submenu</td><td></td></tr><tr><td>Flags ▶</td><td>Submenu</td><td></td></tr></table>

8.3.3.1. Advanced > System Management > SEMA Features

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>SEMA Features:</td><td>Info only</td><td>Display SEMA features</td></tr></table>

8.3.3.2. Advanced > System Management > Flags

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Flags</td><td colspan="2">Info only</td></tr><tr><td>BMC Flags</td><td>Info only</td><td>Display BMC flags.</td></tr><tr><td>BIOS Select</td><td>Info only</td><td>Display the selection of current BIOS ROM.</td></tr><tr><td>ATX/AT-Mode</td><td>Info only</td><td>Display ATX/AT-Mode.</td></tr><tr><td>Exception Code</td><td>Info only</td><td>System exception reason.</td></tr></table>

8.3.4. Advanced > Thermal Management

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Temperatures and Fan Speed</td><td colspan="2">Info only</td></tr><tr><td>CPU Temperature</td><td colspan="2">Info only</td></tr><tr><td>Current</td><td>Info only</td><td>Display current CPU temperature</td></tr><tr><td>Startup</td><td>Info only</td><td>Display CPU startup temperature</td></tr><tr><td>Min</td><td>Info only</td><td>Display CPU min. temperature</td></tr><tr><td>Max</td><td>Info only</td><td>Display CPU max. temperature</td></tr><tr><td>Board Temperatures</td><td colspan="2">Info only</td></tr><tr><td>Current</td><td>Info only</td><td>Display current board temperature</td></tr><tr><td>Startup</td><td>Info only</td><td>Display board startup temperature</td></tr><tr><td>Min</td><td>Info only</td><td>Display board min. temperature</td></tr><tr><td>Max</td><td>Info only</td><td>Display board max. temperature</td></tr><tr><td>CPU Fan Speed</td><td>Info only</td><td>Display CPU fan speed</td></tr><tr><td>System Fan1 Speed</td><td>Info only</td><td>Display system fan 1 speed</td></tr><tr><td>System Fan2 Speed</td><td>Info only</td><td>Display system fan 2 speed</td></tr><tr><td>Smart Fan ▶</td><td>Submenu</td><td>Smart Fan</td></tr><tr><td>Passive Cooling Trip Point</td><td>Disabled70 C80 C90 C</td><td>This value is the temperature threshold of the Passive Cooling Trip Point.</td></tr><tr><td>Active Cooling Trip Point</td><td>40 C50 C60 C70 CRefer to BMC</td><td>This value is the temperature threshold of the Active Cooling Trip Point.</td></tr></table>

8.3.4.1. Advanced > Thermal Management > Smart Fan

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Smart Fan</td><td colspan="2">Info only</td></tr><tr><td>CPU Smart FanTemperature Source</td><td>CPU Sensor Board Sensor</td><td>CPU Smart FanTemperature Source</td></tr><tr><td>CPU Fan Mode</td><td>AUTO (Smart Fan) Fan On</td><td>CPU Fan Mode</td></tr><tr><td>Trigger Point 1</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>40</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>30</td><td>PWM Level</td></tr><tr><td>Trigger Point 2</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>50</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>50</td><td>PWM Level</td></tr><tr><td>Trigger Point 3</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>80</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>60</td><td>PWM Level</td></tr><tr><td>Trigger Point 4</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>90</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>100</td><td>PWM Level</td></tr><tr><td>System Smart Fan1Temperature Source</td><td>CPU Sensor Board Sensor</td><td>System Smart Fan1Temperature Source</td></tr><tr><td>System Fan1 Mode</td><td>AUTO (Smart Fan) Fan On</td><td>System Fan1 Mode</td></tr><tr><td>Trigger Point 1</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>40</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>30</td><td>PWM Level</td></tr><tr><td>Trigger Point 2</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>50</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>50</td><td>PWM Level</td></tr><tr><td>Trigger Point 3</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>80</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>70</td><td>PWM Level</td></tr><tr><td>Trigger Point 4</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>90</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>100</td><td>PWM Level</td></tr><tr><td>System Smart Fan2Temperature Source</td><td>CPU Sensor Board Sensor</td><td>System Smart Fan2Temperature Source</td></tr><tr><td>System Fan2 Mode</td><td>AUTO (Smart Fan) Fan On</td><td>System Fan2 Mode</td></tr><tr><td>Trigger Point 1</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>40</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>30</td><td>PWM Level</td></tr><tr><td>Trigger Point 2</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>50</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>50</td><td>PWM Level</td></tr><tr><td>Trigger Point 3</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>80</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>70</td><td>PWM Level</td></tr><tr><td>Trigger Point 4</td><td colspan="2">Info only</td></tr><tr><td>Trigger Temperature</td><td>90</td><td>Trigger Temperature</td></tr><tr><td>PWM Level</td><td>100</td><td>PWM Level</td></tr></table>

# 8.3.5. Advanced > Watchdog Timer

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Watchdog Timer</td><td colspan="2">Info only</td></tr><tr><td>Power-Up WatchdogATTENTION: Pressing F12 during start up disables the Power Up Watchdog.</td><td>DisabledEnabled</td><td>The Power Up Watchdog resets the system after a certain amount of time after power up.</td></tr><tr><td>RunTime Watchdog</td><td>DisabledEnabled</td><td>The RunTime Watchdog resets the system after a certain amount of time after power up.</td></tr></table>

# 8.3.6. Advanced > CSM Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Compatibility Support Module Configuration</td><td colspan="2">Info only</td></tr><tr><td>CSM Support</td><td>DisabledEnabled</td><td>Enable/Disable CSM Support.</td></tr></table>

# 8.3.7. Advanced > SATA Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>SATA Configuration</td><td colspan="2">Info only</td></tr><tr><td>SATA Port 1</td><td>DisabledEnabled</td><td>SATA Port Enabled/Disabled</td></tr><tr><td>SATA Port 2</td><td>DisabledEnabled</td><td>SATA Port Enabled/Disabled</td></tr></table>

8.3.8. Advanced > Super IO Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Serial Port 1 Configuration ▶</td><td>Submenu</td><td>Set Parameters of Serial Port 1 (COM1).</td></tr><tr><td>Serial Port 2 Configuration ▶</td><td>Submenu</td><td>Set Parameters of Serial Port 2 (COM2).</td></tr><tr><td>Serial Port 3 Configuration ▶</td><td>Submenu</td><td>Set Parameters of Serial Port 3 (COM3).</td></tr><tr><td>Serial Port 4 Configuration ▶</td><td>Submenu</td><td>Set Parameters of Serial Port 4 (COM4).</td></tr><tr><td>Serial Port 5 Configuration ▶</td><td>Submenu</td><td>Set Parameters of Serial Port 5 (COM5).</td></tr><tr><td>Serial Port 6 Configuration ▶</td><td>Submenu</td><td>Set Parameters of Serial Port 6 (COM6).</td></tr></table>

8.3.8.1. Advanced > Super IO Configuration > Serial Port 1 Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Serial Port 1 Configuration</td><td colspan="2">Info only</td></tr><tr><td>Serial Port</td><td>DisabledEnabled</td><td>Enable or Disable Serial Port</td></tr><tr><td>Device Settings</td><td colspan="2">Info only</td></tr><tr><td>Serial Port Mode</td><td colspan="2">Info only</td></tr></table>

8.3.8.2. Advanced > Super IO Configuration > Serial Port [2-6] Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Serial Port [2-6] Configuration</td><td colspan="2">Info only</td></tr><tr><td>Serial Port</td><td>DisabledEnabled</td><td>Enable or Disable Serial Port</td></tr><tr><td>Device Settings</td><td colspan="2">Info only</td></tr></table>

# 8.3.9. Advanced > Serial Console Redirection

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Serial Console Redirection</td><td colspan="2">Info only</td></tr><tr><td>COM1</td><td colspan="2">Info only</td></tr><tr><td>Console Redirection</td><td>DisabledEnabled</td><td>Console Redirection Enable or Disable.</td></tr><tr><td>Console Redirection Settings ▶</td><td>Submenu</td><td>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.</td></tr><tr><td>Legacy Console Redirection</td><td colspan="2">Info only</td></tr><tr><td>Legacy Console Redirection Settings ▶</td><td>Submenu</td><td>Legacy Console Redirection Settings</td></tr><tr><td>Serial Port for Out-of-Band Management/ Windows Emergency Management Services (EMS)</td><td colspan="2">Info only</td></tr><tr><td>Console Redirection</td><td>DisabledEnabled</td><td>Console Redirection Enable or Disable.</td></tr><tr><td>Console Redirection Settings ▶</td><td>Submenu</td><td>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.</td></tr></table>

# 8.3.9.1. Advanced > Serial Console Redirection > Console Redirection Settings [COM1]

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>COM1Console Redirection Settings</td><td colspan="2">Info only</td></tr><tr><td>Terminal Type</td><td>VT100VT100+VT-UTF8ANSI</td><td>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.</td></tr><tr><td>Bits per second</td><td>9600192003840057600115200</td><td>Selects serial port transmission speed. The speed must be matched on the other side. Long or noisy lines may require lower speeds.</td></tr><tr><td>Data Bits</td><td>78</td><td>Data Bits</td></tr><tr><td>Parity</td><td>NoneEvenOddMarkSpace</td><td>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 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. They can be used as an additional data bit.</td></tr><tr><td>Stop Bits</td><td>12</td><td>Stop bits indicate the end of a serial data packet. (A start bit indicates the beginning). The standardsetting is 1 stop bit. Communication with slow devices may require more than 1 stop bit.</td></tr><tr><td>Flow Control</td><td>NoneHardware RTS/CTS</td><td>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 stop the data flow. Once the buffers are empty, a 'start' signal can be sent to re-start the flow. Hardware flow control uses two wires to send start/stop signals.</td></tr><tr><td>VT-UTF8 Combo Key Support</td><td>DisabledEnable</td><td>Enable VT-UTF8 Combination Key Support for ANSI/VT100 terminals</td></tr><tr><td>Recorder Mode</td><td>DisabledEnabled</td><td>With this mode enabled only text will be sent. This is to capture Terminal data.</td></tr><tr><td>Resolution 100x31</td><td>DisabledEnabled</td><td>Enables or disables extended terminal resolution</td></tr><tr><td>Putty KeyPad</td><td>VT100LINUXXTERMR6SCOESCNVT400</td><td>Select FunctionKey and KeyPad on Putty.</td></tr></table>

# 8.3.9.2. Advanced > Serial Console Redirection > Legacy Console Redirection Settings

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Legacy Console Redirection Settings</td><td colspan="2">Info only</td></tr><tr><td>Resolution</td><td>80x2480x25</td><td>On Legacy OS, the Number of Rows and Columns supported redirection</td></tr><tr><td>Redirect After POST</td><td>Always EnableBootLoader</td><td>When Bootloader is selected, then Legacy Console Redirection is disabled before booting to legacy OS. When Always Enable is selected, then Legacy Console Redirection is enabled for legacy OS. Default setting for this option is set to Always Enable.</td></tr></table>

# 8.3.9.3. Advanced > Serial Console Redirection > Console Redirection Settings [EMS]

<table><tr><td colspan="3">Feature Options Description</td></tr><tr><td>Out-of-Band Mgmt Port</td><td>COM1</td><td>Microsoft Windows Emergency Management Services (EMS) allows for remote management of a Windows Server OS through a serial port.</td></tr><tr><td>Terminal Type</td><td>VT100VT100+VT-UTF8ANSI</td><td>VT-UTF8 is the preferred terminal type for out-of-band management. The next best choice is VT100+ and then VT100. See above, in Console Redirection Settings page, for more Help with Terminal Type/Emulation.</td></tr><tr><td>Bits per second</td><td>96001920057600115200</td><td>Selects serial port transmission speed. The speed must be matched on the other side. Long or noisy lines may require lower speeds.</td></tr><tr><td>Flow Control</td><td>NoneHardware RTS/CTSSoftware Xon/Xoff</td><td>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 stop the data flow. Once the buffers are empty, a 'start' signal can be sent to re-start the flow. Hardware flow control uses two wires to send start/stop signals.</td></tr><tr><td>Data Bits</td><td colspan="2">Info only</td></tr><tr><td>Parity</td><td colspan="2">Info only</td></tr><tr><td>Stop Bits</td><td colspan="2">Info only</td></tr></table>

# 8.3.10. Advanced > Network Stack Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Network Stack Configuration</td><td colspan="2">Info only</td></tr><tr><td>Network Stack</td><td>DisabledEnabled</td><td>Enable/Disable UEFI Network Stack</td></tr></table>

# 8.3.11. Advanced > USB Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>USB Configuration</td><td colspan="2">Info only</td></tr><tr><td>USB Module version</td><td colspan="2">Info only</td></tr><tr><td>USB Controllers:</td><td colspan="2">Info only</td></tr><tr><td>USB Devices:</td><td colspan="2">Info only</td></tr><tr><td>Legacy USB Support</td><td>EnabledDisabledAuto</td><td>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.</td></tr><tr><td>XHCI Hand-off</td><td>DisabledEnabled</td><td>This is a workaround for OSes without XHCI hand-off support. The XHCI ownership change should be claimed by XHCI driver.</td></tr><tr><td>USB Mass Storage Driver Support</td><td>EnabledDisabled</td><td>Enable/Disable USB Mass Storage Driver Support.</td></tr><tr><td>Port 60/64 Emulation</td><td>EnabledDisabled</td><td>Enables I/O port 60h/64h emulation support. This should be enabled for the complete USB keyboard legacy support for non-USB aware OSes.</td></tr><tr><td>USB hardware delays and time-outs:</td><td colspan="2">Info only</td></tr><tr><td>USB transfer time-out</td><td>1 sec5 sec10 sec20 sec</td><td>The time-out value for Control, Bulk, and Interrupt transfers.</td></tr><tr><td>Device reset time-out</td><td>10 sec20 sec30 sec40 sec</td><td>USB mass storage device Start Unit command time-out.</td></tr><tr><td>Device power-up delay</td><td>AutoManual</td><td>Maximum time the device will take before it properly reports itself to the Host Controller. 'Auto' uses default value: for a Root port it is 100 ms, for a Hub port the delay is taken from Hub descriptor.</td></tr><tr><td>USB2 Port 1</td><td>EnabledDisabled</td><td>USB2 Port 1</td></tr><tr><td>USB2 Port 2</td><td>EnabledDisabled</td><td>USB2 Port 2</td></tr><tr><td>USB2 Port 3</td><td>EnabledDisabled</td><td>USB2 Port 3</td></tr><tr><td>USB2 Port 4</td><td>EnabledDisabled</td><td>USB2 Port 4</td></tr><tr><td>USB2 Port 5</td><td>EnabledDisabled</td><td>USB2 Port 5</td></tr><tr><td>USB2 Port 6</td><td>EnabledDisabled</td><td>USB2 Port 6</td></tr><tr><td>USB2 Port 7</td><td>EnabledDisabled</td><td>USB2 Port 7</td></tr><tr><td>USB3 Port 1 &amp; Port 2</td><td>EnabledDisabled</td><td>USB3 Port 1 &amp; Port 2</td></tr><tr><td>USB3 Port 3 &amp; Port 4</td><td>EnabledDisabled</td><td>USB3 Port 3 &amp; Port 4</td></tr></table>

8.3.12. Advanced > TPM 2.0 Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>TPM 2.0 Configuration</td><td colspan="2">Info only</td></tr><tr><td>Firmware Version:</td><td colspan="2">Info only</td></tr><tr><td>Vendor:</td><td colspan="2">Info only</td></tr><tr><td>Security Device Support</td><td>Disable Enable</td><td>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.</td></tr><tr><td>Active PCR banks</td><td colspan="2">Info only</td></tr><tr><td>Available PCR banks</td><td colspan="2">Info only</td></tr><tr><td>Pending operation</td><td>NoneTPM Clear</td><td>Schedule an Operation for the Security Device.NOTE: Your Computer will reboot during restart in order to change State of Security Device.</td></tr><tr><td>Platform Hierarchy</td><td>EnabledDisabled</td><td>Enable or Disable Platform Hierarchy</td></tr><tr><td>Storage Hierarchy</td><td>EnabledDisabled</td><td>Enable or Disable Storage Hierarchy</td></tr><tr><td>Endorsement Hierarchy</td><td>EnabledDisabled</td><td>Enable or Disable Endorsement Hierarchy</td></tr><tr><td>TPM 2.0 InterfaceType</td><td>CRBTIS</td><td>Select the Communication Interface to TPM 2.0 Device.</td></tr><tr><td>Device Select</td><td>TPM 1.2TPM 2.0Auto</td><td>TPM 1.2 will restrict support to TPM 1.2 devices, TPM 2.0 will restrict support to TPM 2.0 devices, Auto will support both with the default set to TPM 2.0 devices if not found, TPM 1.2 devices will be enumerated</td></tr></table>

# 8.3.13. Advanced > NVMe Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>NVMe controller and Drive information</td><td colspan="2">Info only</td></tr></table>

# 8.3.14. Advanced > Miscellaneous

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Miscellaneous</td><td colspan="2">Info only</td></tr><tr><td>RTC Wake system from S5</td><td>DisabledFixed TimeDynamic Time</td><td>Enable or disable System wake on alarm event.Select FixedTime, system will wake on the hr::min::sec specified. Select DynamicTime, System will wake on the current time + Increase minute(s)</td></tr><tr><td>Beep Control</td><td>EnabledDisabled</td><td>Onboard Beep Enabled/Disabled (not including DRAM error)</td></tr><tr><td>SPI ROM Write Protect</td><td>EnabledDisabled</td><td>Enable/Disable SPI ROM Write Protect</td></tr><tr><td>AD7.1 for Audio Jack</td><td>EnabledDisabled</td><td>Disable/Enable AD7.1 for Audio Jack</td></tr><tr><td>Chassis Intrusion Support</td><td>EnabledDisabled</td><td>Chassis Intrusion Support</td></tr></table>

# 8.3.15. Advanced > AMD CBS

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>AMD CBS</td><td colspan="2">Info only</td></tr><tr><td>Zen Common Options ▶</td><td>Submenu</td><td>Zen Common Options</td></tr><tr><td>NBIO Common Options ▶</td><td>Submenu</td><td>NBIO Common Options</td></tr></table>

# 8.3.15.1.Advanced > AMD CBS > Zen Common Options

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Zen Common Options</td><td colspan="2">Info only</td></tr><tr><td>Core Performance Boost</td><td>AutoDisabled</td><td>Disable CPB</td></tr><tr><td>Global C-state Control</td><td>AutoEnabledDisabled</td><td>Controls IO based C-state generation and DF C-states.</td></tr><tr><td>Core/Thread Enablement ▶</td><td>Submenu</td><td>Core/Thread Enablement</td></tr></table>

# 8.3.15.2.Advanced > AMD CBS > Zen Common Options > Core/Thread Enablement

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Core/Thread Enablement</td><td colspan="2">Info only</td></tr><tr><td>Disagree ▶</td><td>Submenu</td><td>Disagree</td></tr><tr><td>Agree ▶</td><td>Submenu</td><td>Agree</td></tr></table>

# 8.3.15.3.Advanced > AMD CBS > Zen Common Options > Core/Thread Enablement > Agree

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Agree</td><td colspan="2">Info only</td></tr><tr><td>Downcore control</td><td>ONETWOTHREEAuto</td><td>Sets the number of cores to beused. Once this option has been used to remove any cores, a POWER CYCLE is required in order for future selections to take effect.</td></tr></table>

# 8.3.15.4.Advanced > AMD CBS > NBIO Common Options

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>NBIO Common Options</td><td colspan="2">Info only</td></tr><tr><td>GFX Configuration ▶</td><td>Submenu</td><td>GFX Configuration</td></tr><tr><td>NB Configuration ▶</td><td>Submenu</td><td>NB Configuration</td></tr><tr><td>PCIe Configuration ▶</td><td>Submenu</td><td>PCIe Configuration</td></tr></table>

# 8.3.15.5.Advanced > AMD CBS > NBIO Common Options > GFX Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>GFX Configuration</td><td colspan="2">Info only</td></tr><tr><td>Integrated Graphics Controller</td><td>DisabledForcesAuto</td><td>Enable Integrated Graphics controller</td></tr></table>

# 8.3.15.6.Advanced > AMD CBS > NBIO Common Options > NB Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>NB Configuration</td><td colspan="2">Info only</td></tr><tr><td>IOMMU</td><td>DisabledEnabledAuto</td><td>Enable/Disable IOMMU</td></tr></table>

# 8.3.15.7.Advanced > AMD CBS > NBIO Common Options > PCIe Configuration

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>PCIe Configuration</td><td colspan="2">Info only</td></tr><tr><td>Pcie Dxio Timing Control</td><td>DisabledEnabled</td><td></td></tr></table>

# 8.3.16. Advanced > AMD PBS

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Primary Video Adaptor</td><td>Int Graphics (IGD)Ext Graphics (PEG)</td><td>Select Internal/External Graphics</td></tr></table>

# 8.4. Security

# 8.4.1. Security > Password Description

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Administrator Password</td><td>Enter password</td><td></td></tr><tr><td>User Password</td><td>Enter password</td><td></td></tr><tr><td>Secure Boot menu ▶</td><td>Submenu</td><td>Customizable Secure Boot settings</td></tr></table>

# 8.4.2. Security > Secure Boot menu

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Secure Boot</td><td colspan="2">Info only</td></tr><tr><td>System Mode</td><td colspan="2">Info only</td></tr><tr><td>Secure Boot</td><td colspan="2">Info only</td></tr><tr><td>Secure Boot Control</td><td>DisabledEnabled</td><td>Secure Boot activated when:Secure Boot is enabledPlatform Key(PK) is enrolled,System mode is User/Deployed,and CSM is disabled</td></tr></table>

# 8.5. Boot

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Boot Configuration</td><td colspan="2">Info only</td></tr><tr><td>Setup Prompt Timeout</td><td>1</td><td>Number of seconds to wait for setup activation key. 65535(0xFFFF) means indefinite waiting.</td></tr><tr><td>Bootup NumLock State</td><td>OnOff</td><td>Select the keyboard NumLock state.</td></tr><tr><td>Quiet Boot</td><td>DisabledEnabled</td><td>Enable or disables Quiet Boot option.</td></tr><tr><td>Boot mode select</td><td>LEGACYUEFI</td><td>Select boot mode LEGACY/UEFI</td></tr><tr><td>Boot Configuration</td><td colspan="2">Info only</td></tr><tr><td>Boot Option #1</td><td>Hard DiskCD/DVDSDUSB Hard DiskUSB CD/DVDUSB KeyUSB FloppyUSB Lan</td><td>Sets the system boot order</td></tr><tr><td></td><td>NetworkDisabled</td><td></td></tr><tr><td>Boot Option #2</td><td>Hard DiskCD/DVDSDUSB Hard DiskUSB CD/DVDUSB KeyUSB FloppyUSB LanNetworkDisabled</td><td>Sets the system boot order</td></tr><tr><td>Boot Option #3</td><td>Hard DiskCD/DVDSDUSB Hard DiskUSB CD/DVDUSB KeyUSB FloppyUSB LanNetworkDisabled</td><td>Sets the system boot order</td></tr><tr><td>Boot Option #4</td><td>Hard DiskCD/DVDSDUSB Hard DiskUSB CD/DVDUSB KeyUSB FloppyUSB LanNetworkDisabled</td><td>Sets the system boot order</td></tr><tr><td>Boot Option #5</td><td>Hard DiskCD/DVDSDUSB Hard DiskUSB CD/DVDUSB KeyUSB FloppyUSB LanNetworkDisabled</td><td>Sets the system boot order</td></tr><tr><td>Boot Option #6</td><td>Hard DiskCD/DVDSDUSB Hard DiskUSB CD/DVDUSB KeyUSB FloppyUSB LanNetworkDisabled</td><td>Sets the system boot order</td></tr><tr><td>Boot Option #7</td><td>Hard DiskCD/DVDSDUSB Hard DiskUSB CD/DVDUSB KeyUSB FloppyUSB LanNetworkDisabled</td><td>Sets the system boot order</td></tr><tr><td>Boot Option #8</td><td>Hard DiskCD/DVDSDUSB Hard DiskUSB CD/DVDUSB KeyUSB FloppyUSB LanNetworkDisabled</td><td>Sets the system boot order</td></tr><tr><td>Boot Option #9</td><td>Hard DiskCD/DVDSDUSB Hard DiskUSB CD/DVDUSB KeyUSB FloppyUSB LanNetworkDisabled</td><td>Sets the system boot order</td></tr></table>

8.6. Save & Exit

<table><tr><td>Feature</td><td>Options</td><td>Description</td></tr><tr><td>Save Changes and Exit</td><td>Yes No</td><td>Exit system setup after saving the changes.</td></tr><tr><td>Discard Changes and Exit</td><td>Yes No</td><td>Exit system setup without saving any changes.</td></tr><tr><td>Save Changes and Reset</td><td>Yes No</td><td>Reset the system after saving the changes.</td></tr><tr><td>Discard Changes and Reset</td><td>Yes No</td><td>Reset system setup without saving any changes.</td></tr><tr><td>Save Options</td><td colspan="2">Info only</td></tr><tr><td>Save Changes</td><td>Yes No</td><td>Save Changes done so far to any of the setup options.</td></tr><tr><td>Discard Changes</td><td>Yes No</td><td>Discard Changes done so far to any of the setup options.</td></tr><tr><td>Restore Defaults</td><td>Yes No</td><td>Restore/Load Default values for all the setup options.</td></tr><tr><td>Save as User Defaults</td><td>Yes No</td><td>Save the changes done so far as User Defaults.</td></tr><tr><td>Restore User Defaults</td><td>Yes No</td><td>Restore the User Defaults to all the setup options.</td></tr><tr><td>Boot Override</td><td colspan="2">Info only</td></tr><tr><td>Launch EFI Shell from filesystem device</td><td>Enter</td><td>Attempts to Launch EFI Shell application (Shell.efi) from one of the available filesystem devices</td></tr></table>

# Safety Instructions

Read and follow all instructions marked on the product and in the documentation before you operate your system. Retain all safety and operating instructions for future use.

• Please read these safety instructions carefully.
• Please keep this User‘s Manual for later reference.
• Read the specifications section of this manual for detailed information on the operating environment of this equipment.
• When installing/mounting or uninstalling/removing equipment, turn off the power and unplug any power cords/cables.
• To avoid electrical shock and/or damage to equipment:

 Keep equipment away from water or liquid sources.
 Keep equipment away from high heat or high humidity.
 Keep equipment properly ventilated (do not block or cover ventilation openings).
 Make sure to use recommended voltage and power source settings.
 Always install and operate equipment near an easily accessible electrical socket-outlet.
 Secure the power cord (do not place any object on/over the power cord).
 Only install/attach and operate equipment on stable surfaces and/or recommended mountings.
 If the equipment will not be used for long periods of time, turn off and unplug the equipment from its power source.

• Never attempt to fix the equipment. Equipment should only be serviced by qualified personnel.

# Getting Service

Ask an Expert: http://askanexpert.adlinktech.com

# ADLINK Technology, Inc.

<table><tr><td>Address:</td><td>9F, No.166 Jian Yi Road, Zhonghe District New Taipei City 235, Taiwan</td></tr><tr><td>Tel:</td><td>+886-2-8226-5877</td></tr><tr><td>Fax:</td><td>+886-2-8226-5717</td></tr><tr><td>Email:</td><td>service@adlinktech.com</td></tr></table>

# Ampro ADLINK Technology, Inc.

Address: 5215 Hellyer Avenue, #110, San Jose, CA 95138, USA

Tel: +1-408-360-0200

Toll Free: +1-800-966-5200 (USA only)

Fax: +1-408-360-0222

Email: info@adlinktech.com

# ADLINK Technology (China) Co., Ltd.

<table><tr><td>Address:</td><td>300 Fang Chun Rd., Zhangjiang Hi-Tech Park, Pudong New Area Shanghai, 201203 China</td></tr><tr><td>Tel:</td><td>+86-21-5132-8988</td></tr><tr><td>Fax:</td><td>+86-21-5132-3588</td></tr><tr><td>Email:</td><td>market@adlinktech.com</td></tr></table>

# ADLINK Technology GmbH

<table><tr><td>Address:</td><td>Hans-Thoma-Straße 11, D-68163, Mannheim, Germany</td></tr><tr><td>Tel:</td><td>+49-621-43214-0</td></tr><tr><td>Fax:</td><td>+49-621 43214-30</td></tr><tr><td>Email:</td><td>emea@adlinktech.com</td></tr></table>

Please visit the Contact page at www.adlinktech.com for information on how to contact the ADLINK regional office nearest you.
[🔗 Link to the original document](.amitx-rz-g-50m-00035-1010-20/amitx-rz-g-50m-00035-1010-20.pdf)
