Copyright This publication contains information that is protected by copyright. No part of it may be reproduced in any form or by any means or used to make any transformation adaptation without the prior written permission from the copyright holders. This publication is provided for informational purposes only.
Warranty 1. Warranty does not cover damages or failures that are raised from misuse of the product, inability to use the product, unauthorized replacement or alteration of components and product specifications. 2. The warranty is void if the product has been subject to physical abuse, improper installation, modification, accidents or unauthorized repair of the product.
Safety Measures To avoid damage to the system: • Use the correct AC input voltage range. To reduce the risk of electric shock: • Unplug the power cord before removing the system chassis cover for installation or servicing. After installation or servicing, cover the system chassis before plugging the power cord.
Table of Content Copyright ..................................2 Trademarks ..................................2 FCC and DOC Statement On Class A ..........................2 Warranty ..................................3 Static Electricity Precautions ............................3 Safety Measures ................................4 Before Using the System Board ............................. 4 Table of Content ................................5 Chapter 1 General Information 1.1 Main Feature ................................
1.1 Main Feature Network Security Board BNX-H110 is a Network Security Board, featuring on Intel® H110 chipset, supports Intel® Gen-6 LGA1151 Celeron®, Pentium®, Core®-i3/i5/i7 processors that carry the built-in Intel® HD Graphic engine. Below is a brief list of available processors as a quick reference:...
1.3 Optional LAN Modules BEM-H110-350-C4 Type LAN Module Chipset Intel® i350-AM4 Interface PCIe 2.0 X4 Network Port Four RJ45 1G BEM-H110-350-C4-B Type LAN Module Chipset Intel® i350-AM4 Interface PCIe 2.0 X4 Network Port Four RJ45 1G Bypass 2-Pair BEM-H110-580-C8 Type LAN Module Chipset Dual Intel®...
2.1 Before You Begin A stable and clean working environment are essential. Dust and dirt can get into components and cause a malfunction. Use containers to keep small components separated. Adequate lighting and proper tools can prevent you from accidentally damaging the internal components. Most of the procedures that follow require only a few simple tools, including the following: A Philips screwdriver ...
A jumper is the simplest kind of electric switch. It consists of two metal pins and a cap. When setting the jumpers, ensure that the jumper caps are placed on the correct pins. When the jumper cap is placed on both pins, the jumper is SHORT.
2.4 Edge Connectors Micro-USB Port Power/Reset Switch RJ45 Console Port Six RJ45 Gigabit LAN Ports Dual Bypass LEDs Dual USB 3.0 Ports Power LED & HDD LED...
3.1 System Memory BNX-H81 has Intel® H81 chipset built-in, and supports dual channel non-ECC, un-buffered DDR3- 1066/1333/1600MHz memory modules. Two DIMM slots support up to 16GB Memory Capacity. 3.2 Installing Memory To install Memory 1. Open up the two side tabs on the slot. 2.
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4. To remove the Memory modules, please push the tabs outwards, and the memory modules will be automatically disengaged.
3.3 Installing LGA1151 Intel® Core-i CPU, Heatsink, and Fan BNX-H110 supports Intel® LGA1151 Gen-6 Core-i Processor. For a reference list of supported processor, please refer to the specification section. The socket 1151 is formed up with sensitive arrays of pins, improper or careless installation may cause permanent harm to the socket pins.
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Step (B): Install the Processor 1. Hold the processor with your thumb and index finger as shown to align your fingers with the socket cutouts. 2. Make sure that the processor Pin#1 indicator (gold triangle) is aligned with the Pin#1 chamfer on the socket. 3.
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Step (D): Install a Heatsink Note: Heatsinks that come with boxed Intel® processors use pre-applied Thermal Interface Material (TIM) and do not need thermal grease. If a different heatsink is used, please refer to manufacturer’s instructions. 1. Place the heatsink onto the processor socket.
3.4 Adding Power Connectors BNX-H110 motherboard requires correct power plan to properly support Intel® LGA1151 Gen-6 Core-i Processor. Please add the 24-pin ATX Power Connector on the blue connector, and 4-pin 12Vdc Power Connector on the red connector. In case the 12Vdc Power Connector is not added, power supply will be triggered, but the motherboard would...
3.5 Add CompactFlash Card Please do not add CFast card onto this socket. Make sure to shut down the system board before adding your CompactFlash card.
About the BIOS The BIOS (Basic Input and Output System) Setup program is a menu driven utility that enables you to make changes to the system configuration and tailor your system to suit your individual work needs. It is a ROM-based configuration utility that displays the system’s configuration status and provides you with a tool to set system parameters.
4.1 Entering Setup When the system is powered on, the BIOS will initiate the Power-On-Self-Test (POST) routines. These routines perform various diagnostic checks. If an error is encountered, the error will be reported in one of two different ways: If the error occurs before the display device is initialized, a series of beeps will be transmitted. ...
4.4 The Main Menu Figure 4-1: BIOS Setup Utility Main Menu The menu bar on the top of the first screen has the following submenus: ➢ Main: Basic system configuration. ➢ Advanced: Advanced system settings. ➢ Chipset: Other functions. ➢ Security: Configure Supervisor and User Password ➢...
4.5 The Advanced Menu In this section, you may set the configurations for the following items: Super IO Configuration, H/W Monitor, Serial Port Console Redirection, and CSM Configuration. Super IO Configuration Serial Port 1/2 Configuration Serial Port This setting enables/disables the specified serial port. Change Setting Select an optimal setting for Super I/O devices.
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H/W Monitor Display CPU/System Temperature, Fan speed, and voltages. Fan Speed Control Mode Configure Fan Speed Control Mode. Serial Port Console Redirection Console Redirection Enables or disables Console Redirection function. CSM Configuration Boot option filter This controls Legacy/UEFI ROMs priority. Network Control the execution of UEFI and Legacy PXE OpROM.
4.6 The Chipset Menu CPU Configuration Display CPU Information...
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System Agent (SA) Configuration PEG Port Configuration PEG Port Options Memory Configuration Display memory size / Frequency SATA Configuration SATA Controller(s) Enable or disable SATA Device.
4.8 The Boot Menu Setup Prompt Timeout Number of seconds to wait for setup activation key. 65535(0xFFFF) means indefinite waiting. Bootup NumLock State Select the keyboard NumLock state. Quiet Boot Enables or disables Quiet Boot option. FIXED BOOT ORDER Priorities Set the system boot order...
4.9 The Save & Exit Menu Save Changes and Reset Reset the system after saving the changes. Discard Changes and Reset Reset system setup without saving any changes. Restore Defaults Restore/Load Default values for all the setup options. Launch EFI Shell from filesystem device Attempts to Launch EFI Shell application (Shell.efi) from one of the available filesystem devices...
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Get the driver files Please download Bypass driver files from Bestek web-site, unzip the file, and copy the folder to your Linux file system. You will need the root access right to complete the job. Please logon to root now.
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Configuring Bypass pair #1 Bypass pair #1 is defined with network Port #3 and Port #4, as the picture below, where Port #3 is connected internet and Port #4 is connected to a notebook. Also, Bypass pair #1 is now at “PassThrough” mode (the bottom Bypass LED is green) and the network connection is not available.
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Configuring Bypass pair #2 Bypass pair #2 is defined with network Port #5 and Port #6, as the picture below, where Port #5 is connected internet and Port #6 is connected to a notebook. Also, Bypass pair #2 is now at “PassThrough” mode (the top Bypass LED is green) and the network connection is not available.
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Configuring Bypass at “Bypass” mode at boot up To set Bypass pair #1 at “bypass” mode, go to the folder g3bp0, and issue this command: echo 1 > nextboot To set Bypass pair #2 at “bypass” mode, go to the folder g3bp1, and issue this command: echo 1 >...
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Get the driver files Please download GPIO driver files from Bestek web-site, unzip the file, and copy the folder to your Linux file system. You will need the root access right to complete the job. Please logon to root now.
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Example #1 (GPI Test) Script name: GPI_Test.sh Definition of the test: This tests demonstrates how to read the GPIO pin value. The pin #2, #4, #6, #8 are defined as GPO pins with value low. The pin #1, #3, #5, #7 are defined as GPI pins. A few jumpers will be added onto pin #1-#2, #3-#4, #5-#6, #7-#8 so pin #1 will read the value of pin #2, pin #3 will read the value of pin #4, …, etc.
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Now move these two jumpers onto #3-#4 and #7-#8. Pin #3 and pin #7 will now read value [low]. Users are welcome to configure this GPI script for other programming jobs.
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Example #2 (GPO Test) Script name: GPO_Test.sh Definition of the test: This tests demonstrates how to set the GPIO pin value as [high] or [low]. The pin #2, #4, #6, #8 are defined as GPO pins with value low. The pin #1, #3, #5, #7 are defined as GPO pins and the values will be changed throughout the script. Four LEDs are added onto pin #1-#2, #3-#4, #5-#6, #7-#8.
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