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Foreword This manual is the product technical manual for the SYR6108G-G5 GPU server, mainly introducing and explaining the appearance, structure, hardware installation, and basic configuration of this product. This manual is intended for reference by professional technical personnel. Installation and maintenance of this product should only be carried out by experienced technical personnel.
1. Product Introduction 1.1 Product Overview SYR6108G-G5 is an AI computing server based on the AMD EPYC Turin platform, offering powerful computational capabilities and ultra-high flexibility in expansion. It features a multi-CPU-GPU direct connection topology, making it suitable for various AI business scenarios. It is ideal for applications in artificial intelligence, cloud computing, virtualization, big data analytics, digital twins, and more.
Rear view 1.2 Product Structure The components of the SYR6108G-G5 server, using the SYR6108G-D12R-G5 as an example, are shown in the image below: Exploded View Diagram Name Name Front Top Cover Expansion Board Top Cover Backplane Network Card 6056 Fan Module...
GPU Power Board Air Duct Table 1-1 1.3 Logical Structure The logical diagram of the SYR6108G-G5 server is shown below: Motherboard logic block diagram Supports 2 AMD EPYC Turin 9005 series processors, compatible with Genoa 9004 series processors, with a TDP of 500W Each CPU supports 12 DIMMs, with a total of 24 slots for two CPUs, supporting ...
2. Hardware Description 2.1 Front Panel 2.1.1 Appearance 12x3.5-inch hard drive configuration Figure 2-1 Name Name Left Ear Integrated Right Ear Integrated Assembly Assembly Front Panel Hard Drive Module Table 2-1 2.1.2 Indicator lights and buttons Figure 2-3...
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Indicator/button Indicator/button M.2 Hard Drive Activity Gooxi Logo Indicator Power Switch System Alarm Indicator Button/Indicator Network Port 1 Connection UID Button/Indicator Status Indicator Reset Button (Reboot Network Port 2 Connection Server) Status Indicator LED status description Logo Indicator/button Status description...
2.1.3 Interface Interface location Figure 2-4 Name Name VGA Port USB3.0 Interface Table 2-3 Interface description Name Type Description Used to connect display terminals, such as VGA Port DB15 monitors or KVMs USB3.0 Used to connect USB devices Interface Table 2-4 2.2 Rear Panel...
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Figure 2-5 PCIe Rear Window RJ45 Gigabit Network Port Power Module USB 3.0 Port VGA Port Management Network Port OCP Card Table 2-5 Note: The rear window of this product can be customized according to the needs. The above picture is for reference only, and the actual configuration shall prevail.
ensure the USB device is in good condition, as otherwise it may lead to abnormal server operation. RJ45 10 Gigabit GEBASE-T Optional server network ports. network port Table 2-6 2.2.2 Indicator lights and buttons Rear Panel Indicators Figure 2-6 Name Name Power Module Indicator Light...
When configuring a single processor, it must be installed in CPU 0 position Processors used in the same server must be of the same model For available system configuration options, please contact Gooxi sales Processor location is shown in the diagram below: ...
Developed based on the AMD EPYC Turin platform, supporting 2 AMD EPYC Turin series processors, compatible with Genoa series processors. Each CPU supports 12 DIMM slots, with a total of 24 slots for dual-CPU configurations. Memory frequency supports 4800/6400MHz. The positions are shown in the diagram below: memory slot location ...
Figure 2-9 2.5 Storage 2.5.1 Hard drive configuration Configuration 6U 12-Bay Description Maximum SAS drives require a 12 Hot-Swap 3.5"/2.5" Front Hard SAS HBA or RAID SAS/SATA/NVMe Drives Drive Qty card for support Table 2-9 2.5.2 Hard drive serial number 12x3.5-inch hard drive configuration ...
When configuring with 4 power modules, supports 3+1 or 2+2 redundancy Power modules configured in the same server must be of the same model For specific optional system components, please consult Gooxi sales The power module locations are shown in the diagram below: ...
2.7 Fans The chassis supports 12×6056 and 4×8038 fan modules internally. Hot-swappable support. Supports single fan failure. Supports variable fan speed. Fan modules configured in the same server must be of the same model. The fan locations are shown in the diagram below: ...
Figure 2-15 Supports up to 12 PCIe slots at the front and rear (subject to PCIe signal limitations). PCIe1–PCIe8 support 3.5-width GPUs and are backward compatible with 3-width, dual-width, and single-width GPUs. PCIe9, PCIe10, PCIe11, and PCIe12 support single-width PCIe cards. 2.8.2 PCIe slot description Pass-through PCIe slot configuration PCIe slot...
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2-16 Motherboard Figure Name 1,13 BP power 2,9 Riser cable power Chassis intrusion switch connector 4,10 Fan power Liquid leakage detection interface 6,8,14, MCIO connectors * 20 20,26 Right mounting ear connector I2C connector FAN BP Control Left mounting ear connector 16,25 Power switch 17,18,24...
3. Installation Instructions 3.1 Chassis Top Cover Installation Step 1: Lift the slot at the opening position, push and lift it in the direction indicated by the diagram. Figure 3-1 3.2 Installation of Accessories 3.2.1 CPU installation Before starting the CPU installation, please read the following guidelines: ⚫...
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Follow the instructions below to install the CPU: 1.Loosen the three screws securing the CPU cover in the order of (3 → 2 → 1). 2.Flip open the CPU cover. 3.Use the handle on the CPU tray to detach the CPU tray from the CPU rack. 4.Using the handle on the CPU tray, insert the new CPU tray with the installed CPU back into the CPU rack.
Figure (3-4) 3.2.2 Installation of heatsink Before starting to install the heatsink, please read the following guidelines: ⚫ Before installing the heatsink, please be sure to turn off the computer and unplug the power cord from the power outlet to prevent damage to the hardware. ⚫...
Figure 3-5 Note: The pins on the motherboard are extremely fragile and can be easily damaged. To avoid damaging the motherboard, do not touch the processor or the contacts in the processor socket. 3.2.3 Installation of memory The 12 memory slots controlled by CPU 0 / CPU 1 on the motherboard are: DIMM_A, DIMM_B, DIMM_C, DIMM_D, DIMM_E, DIMM_F, DIMM_G, DIMM_H, DIMM_I, DIMM_J, DIMM_K, and DIMM_L.
Note: For this motherboard, please use memory modules with the same CAS latency. It is recommended to use memory from the same manufacturer, with identical capacity and frequency. Additionally, please note: Within the same channel, the larger capacity memory must be installed in the first slot.
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Figure 3-10 Step 2: Fasten the inner rails to the sides of the chassis. Figure 3-11 Step 3: Install the outer rails on the cabinet brackets and secure the screws. ...
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Figure 3-12 Note: When installing the guide rail, align it with the U-mark, and push it into place until you hear a click sound. Secure it firmly using M5 screws. Step 4: Align the chassis with the inner rails installed with the outer rails for ...
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Figure 3-14 Note: During equipment maintenance, it is necessary to loosen the panel screws and pull the chassis lightly. Do not push or pull the chassis at random speed to avoid damage to the equipment.
4. Configuration Instructions 4.1 Initial Configuration 4.1.1 Power on and start Before powering on, it is necessary to ensure that all configurations of the server are installed in accordance with the corresponding specifications and standards, and keep the server turned off but not unplugged from the power supply.
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Figure 4-1 State After G3 The menu options for setting the state after entering G3 status are: S0 State:Power on and start up directly S5 State:You need to press the Power button to turn on the power Default: S5 State Logging into the iBMC management interface allows for remote power on/off ...
Figure 4-3 The Main interface displays the basic BIOS system information, such as the BIOS version, CPU model, and memory capacity (the specific content may vary depending on the product model). You can also set the system time here. For detailed instructions, please refer to the "BIOS User Manual".
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Use another device, make sure it is in the same LAN as the BMC management network, and enter the BMC IP address on the web page. Check the BMC IP address as follows: After the server is powered on, turn it on. Pay attention to the POST process ...
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will display the network parameters (IPv4) for the system's shared Ethernet port. The displayed information includes the current IP configuration method, BMC IP, subnet mask, MAC address, router IP, and router MAC. BMC Dedicated Management Channel Configuration Address source ...
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When changing from "Unspecified" to other parameters, saving and rebooting will result in the options reverting to the "Unspecified" value. There is no need to configure the BMC IP during every startup process. When the "Configuration Address Source" option is set to "Unspecified," it ...
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Figure 4-6 This page sets the IP address of the BMC management network port.
If the above steps do not resolve the issue, try replacing the monitor with a known working one to confirm if the original monitor is faulty. If the issue persists, please contact Gooxi's customer service department for resolution. Front Panel Indicator Lights Alarm Refer to the instructions in the manual to determine the specific alarm information indicated by the front panel lights and buttons.
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Set static or dynamic IP and ensure ping connectivity. If the web interface does not open, try using a newer version of Internet Explorer. If the problem is not resolved, please contact Gooxi’s customer service department for further assistance and resolution.
6. Scrap Recycling For environmental protection and resource reuse, we earnestly ask you to properly handle discarded server products. Before discarding the server, we recommend that you completely demagnetize the storage media, clear data, and physically destroy them to ensure that your personal data is not leaked.
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