Servers Designed for Single-Phase Immersion Cooling
Unlike air cooling, servers used in single-phase immersion cooling have some special considerations:
Server installation mechanism
Chemical phase changes
Steady flow of coolant in the system
By partnering with the major single-phase immersion cooling suppliers in the market, GIGABYTE's single-phase immersion cooling servers can be installed directly in their off-the-shelf tanks from these partners, eliminating the need for product compatibility testing and customization. These systematic modifications greatly reduce the time for verification and adoption of single-phase immersion cooling technology.
Structural Integrity and Simplified Management
Servers must be installed vertically in the tank, and this lowering or raising of servers is due to an optimized tank design for single-phase immersion cooling. Therefore, the server installed upright needs to have rigid and firm structural integrity to ensure the chassis will not deform. Also, due to the vertical design, the cable routing and maintenance are also different than traditional data centers. Therefore, we re-examine the design and strengthen the server chassis for immersion cooling and reroute the cables. For instance, I/O ports are all arranged on the rear side facing up, and the network cables need to be rerouted to the sides so that maintenance can be quick and easy. Also, to make it more convenient for IT to install or remove a server, a bracket was added to allow hooks to move the server.
Design to Ensure Steady Fluid Flow in the Tank
When a server is submerged in a coolant, an important condition is that the fluid is circulated well, and the warm fluid is pumped out as cooler fluid is pumped in. Only by maintaining a stable coolant flow can the heat absorbed by the fluid be managed, and the system can automatically adjust the coolant flow rate according to the operation needs. To ensure efficient heat removal, the server design for single-phase immersion cooling not only must remove any components that negatively affect the fluid flow in the system, but they also must reduce the dead space in the chassis to avoid heat accumulation. Based on the viscosity of the coolant and the specific heat capacity of the coolant, the heat dissipation rate of the server must be constantly monitored and adjusted to avoid issues . Servers developed for single-phase immersion cooling can significantly reduce unnecessary barriers that users may encounter when adopting new technologies, allowing them to focus on productivity.
Made with Materials Suitable for Various Coolants
Single-phase immersion cooling submerges the server in a cooling fluid that removes heat by directly coming into contact with the heating elements. GIGABYTE had to evaluate how the chemical composition of the coolant may affect the components as well as the effect of the temperature and process on the coolant. Through theory and experimental experience, we perfected the design and will continue to explore materials that are suitable for immersion cooling.
G152-Z12 Product Overview
G152-Z12 Block Diagram
Architecture for Modern Data Centers
AMD EPYC™ 7003 Series Processors
GIGABYTE servers and AMD EPYC 7003 Series Processors deliver the highest possible I/O throughput to pave the way for fast communication between CPU and accelerator in HPC and data analytics.
Up to 64 Cores
8 Channels of DDR4-3200
Up to 4TB Memory Capacity
128 lanes PCIe 4.0
2-way SMT & Turbo Boost
4,6,8-channel Memory Interleave
Synchronized Fabric and Memory Clock Speeds
Secure Memory Encryption
Secure Encrypted Virtualization
Hardware Security
Optional TPM 2.0 Module
For hardware-based authentication, the passwords, encryption keys, and digital certificates are stored in a TPM module to prevent unwanted users from gaining access to your data. GIGABYTE TPM modules come in either a Serial Peripheral Interface or Low Pin Count bus.
High Availability
Smart Crises Management and Protection (SCMP)
SCMP is a GIGABYTE patented feature which is deployed in servers with non-fully redundant PSU design. With SCMP, in the event of faulty PSU or overheated system, the system will force the CPU into an ultra-low power mode that reduces the power load, which prevents the system from unexpected shutdown and avoids component damage or data loss.
Smart Ride Through (SmaRT)
To prevent server downtime and data loss as a result of loss of AC power, GIGABYTE implements SmaRT in all our server platforms. When such an event occurs, the system will throttle while maintaining availability and reducing power load. Capacitors within the power supply can supply power for 10-20ms, which is enough time to transition to a backup power source for continued operation.
User Friendly
Certified Ready with Software Partners
Being a member of key software alliance partner programs enables GIGABYTE to rapidly develop and validate joint solutions, enabling our customers to modernize their data centers and implement IT infrastructure and application services with speed, agility, and cost optimization.
Tool-less Drive Bays Design
Clipping mechanism secures the drive in place. Install or replace a new drive in seconds.
Value-added Management
GIGABYTE offers free-of-charge management applications via a specialized small processor built on the server.
GIGABYTE Management Console
For management and maintenance of a server or a small cluster, users can use the GIGABYTE Management Console, which is pre-installed on each server. Once the servers are running, IT staff can perform real-time health monitoring and management on each server through the browser-based graphical user interface. In addition, the GIGABYTE Management Console also provides:
Support for standard IPMI specifications that allows users to integrate services into a single platform through an open interface
Automatic event recording, which can record system behavior 30 seconds before an event occurs, making it easier to determine subsequent actions
Integrate SAS/SATA/NVMe devices and RAID controller firmware into GIGABYTE Management Console to monitor and control Broadcom® MegaRAID adapters.
GIGABYTE Server Management (GSM)
GSM is a software suite that can manage clusters of servers simultaneously over the internet. GSM can be run on all GIGABYTE servers and has support for Windows and Linux. GSM can be downloaded from GIGABYTE website and complies with IPMI and Redfish standards. GSM includes a complete range of system management functions that includes the following utilities:
GSM Server: A software program that provides real-time, remote control using a graphical user interface through an administrator’s computer or through a server in the cluster. The software allows ease of maintenance for large clusters of servers.
GSM CLI: A command-line interface for monitoring and managing remotely.
GSM Agent: A software program installed on each GIGABYTE server node that retrieves information from each system and devices through the OS, and this software integrates with GSM Server or GSM CLI.
GSM Mobile: A mobile app for both Android and iOS that provides admins with real-time system information.
GSM Plugin: An application program interface that allows users to use VMware vCenter for real-time monitoring and management of server clusters.
The GIGABYTE G152-Z12 (rev. 200) is a dual-socket server motherboard designed for AMD EPYC 9004 "Genoa" processors, making it a powerhouse for data centers, cloud computing, AI, and HPC workloads. Below is a comprehensive review to help you decide if this is the right motherboard for your needs.
🔍 Key Specifications
✅CPU Support: Dual AMD EPYC 9004 (Zen 4, up to 96 cores per CPU, 192 cores total)
✅Memory:24 × DDR5 DIMM slots (12 per CPU, up to 6TB with 256GB LRDIMMs, 4800MHz+ support)
The GIGABYTE G152-Z12 (rev. 200) is a beast of a server motherboard, offering unmatched CPU power, DDR5 memory, and PCIe 5.0 expansion for demanding workloads. While expensive and power-hungry, it’s a top-tier choice for data centers, AI, and HPC.
Future-proofing for AI/ML, 200GbE networking, or NVMe storage.
❌ Avoid If:
You’re on a budget (consider EPYC 7003 boards).
You don’t need dual-socket or PCIe 5.0.
🔎 Need Alternatives?
For Budget Builds: GIGABYTE H262-Z6B (EPYC 7003, DDR4).
For Single-Socket: ASUS K16PA-U0 (EPYC 9004, 1P).
To purchase the GIGABYTE G152-Z12 (rev. 200) from VDO, the official distributor of Giga Computing and GigaIPC products in Vietnam, here is the detailed information you need to proceed:
AMD EPYC™ 7003 Series Processors
AMD EPYC™ 7002 Series Processors
Single processor, cTDP up to 280W
Socket
1 x LGA 4094
Socket SP3
Chipset
System on Chip
Memory
8 x DIMM slots
DDR4 memory supported
8-Channel memory per processor
RDIMM/LRDIMM: Up to 3200 MT/s
LAN
Top:
2 x 10Gb/s LAN (1 x Intel® X550-AT2)
- Support NCSI function
1 x 10/100/1000 Mbps Management LAN
Video
Integrated in ASPEED® AST2500
- 1 x VGA port
Storage
Internal:
4 x 2.5" Gen4 NVMe
[Note] SATA devices not supported.
SAS
N/A
RAID
N/A
PCIe Expansion Slots
Riser Card CRSG060 x 2:
- 2 x FHFL x16 (Gen4 x16), for GPUs
Riser Card CRSG01G:
- 1 x LP x16 (Gen4 x16)
Riser Card CRSH01E:
- 1 x LP x16 (Gen4 x16)
[Note] The system is only validated with a uniform GPU model
Top I/O
2 x USB 3.2 Gen1 ports (Type-A)
1 x VGA port
2 x RJ45 ports
1 x MLAN port
1 x Power button with LED
1 x ID button with LED
1 x NMI button
1 x Reset button
1 x Storage activity LED
1 x System status LED
1 x ID LED
Backplane Board
Speed and bandwidth:
PCIe Gen4 x4
Security Modules
1 x TPM header with SPI interface
- Optional TPM2.0 kit
Power Supply
Dual 2000W 80 PLUS Platinum redundant power supply
AC Input:
- 100-120V~/ 12A, 50/60Hz
- 180-240V~/ 10A, 50/60Hz
DC Input: (Only for China)
- 240Vdc/ 10A
DC Output:
- Max 1000W/ 100-120V~
+12.2V/ 81.5A
+12Vsb/ 2.5A
- Max 1600W/ 180-199V~
+12.2V/ 131A
+12Vsb/ 2.5A
- Max 1800W/ 200-220V~
+12.2V/ 147.5A
+12Vsb/ 2.5A
- Max 2000W/ 221-240V~ or 240Vdc Input
+12.2V/ 163.5A
+12Vsb/ 2.5A
System Management
ASPEED® AST2500 Baseboard Management Controller
GIGABYTE Management Console web interface
Dashboard
HTML5 KVM
Sensor Monitor (Voltage, RPM, Temperature, CPU Status …etc.)
Sensor Reading History Data
FRU Information
SEL Log in Linear Storage / Circular Storage Policy
Hardware Inventory
Fan Profile
System Firewall
Power Consumption
Power Control
LDAP / AD / RADIUS Support
Backup & Restore Configuration
Remote BIOS/BMC/CPLD Update
Event Log Filter
User Management
Media Redirection Settings
PAM Order Settings
SSL Settings
SMTP Settings
OS Compatibility
Citrix Hypervisor 8.2.0 or later
Red Hat Enterprise Linux 8.3 or later
Red Hat Enterprise Linux 9.0 or later
SUSE Linux Enterprise Server 12 SP5 or later
SUSE Linux Enterprise Server 15 SP2 or later
Ubuntu 18.04.5 LTS or later
Ubuntu 20.04 LTS or later
Ubuntu 22.04 LTS or later
VMware ESXi 6.7 Update3 P03 or later
VMware ESXi 7.0 Update1 or later
Windows Server 2016 (X2APIC/256T not supported)
Windows Server 2019
Windows Server 2022
Operating Properties
Operating coolant temperature: 25°C to 30°C
Non-operating temperature: -40°C to 60°C
Non-operating humidity: 20%-95% (non-condensing)