Gigabyte DLB2-CB1 GB200 NVL72 186GB (4) NVIDIA Grace CPU (2) AI Graphics Card GPU
XH23-VG0-AAJ1
- NVIDIA-Certified Systems™ – NVIDIA ARM CPU Systems
- CPU+GPU design for giant-scale AI and HPC
- NVIDIA MGX™ modular server design
- Single NVIDIA GH200 Grace Hopper™ Superchip
- 900GB/s NVIDIA NVLink™-C2C Interconnect
- 480GB CPU LPDDR5X ECC memory
- Up to 144GB GPU HBM3E
- Compatible with NVIDIA® BlueField®-3 DPUs
- 2 x 10Gb/s LAN ports via Intel® X550-AT2
- 4 x 2.5″ Gen5 NVMe bays
- 2 x M.2 slots with PCIe Gen5 x4 interface
- 3 x FHFL PCIe Gen5 x16 slots
- 1+1 2000W 80 PLUS Titanium redundant power supply
96GB HBM3: 6NXH23VG0MR000AAJ1*
144GB HBM3E: 6NXH23VG0MR000ABJ1*
$1,669,900.00 Original price was: $1,669,900.00.$1,599,900.00Current price is: $1,599,900.00.
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Features & Compatibility
tepping Further into the Era of AI and GPU-Accelerated HPC
Moving beyond pure CPU applications, the NVIDIA GH200 Grace Hopper Superchip is built on a combination of an NVIDIA Grace™ CPU and an NVIDIA H100 Tensor Core GPU for giant-scale AI and HPC applications. Utilizing the same NVIDIA® NVLink®-C2C technology, combining the heart of computing on a single superchip, forming the most powerful computational module. The coherent memory design leverages both high-speed HBM3 or HBM3e GPU memory and the large-storage LPDDR5X CPU memory. The superchip also inherits the capability of scaling out with InfiniBand networking by adopting NVIDIA BlueField®-3 DPUs or NICs, forming a system connected with a speed of 100GB/s for ML and HPC workloads. The upcoming NVIDIA GH200 NVL32 can further improve deep learning and HPC workloads by connecting up to 32 superchips through the NVLink Switch System, a system built on NVLink switches with 900GB/s bandwidth between any two superchips, making the most use of the powerful computing chips and extended GPU memory.
NVIDIA GH200 Grace Hopper Superchip

72 Arm Neoverse V2 Cores
Armv9.0-A architecture for better compatibility and easier execution of other Arm-based binaries.
Up to 480GB CPU LPDDR5X memory with ECC
Balancing between bandwidth, energy efficiency, capacity, and cost with the first data center implementation of LPDDR technology.
96GB HBM3 or 144GB HBM3e GPU memory
Adoption of high-bandwidth-memory for improved performance of memory-intensive workloads.
Up to 4x PCIe Gen5 x16 links
Multiple PCIe Gen5 links for flexible add-in cards configurations and system communication.
NVIDIA® NVLink®-C2C Technology
Industry-leading chip-to-chip interconnect technology up to 900GB/s, alleviating bottlenecks and making coherent memory interconnect possible.
InfiniBand Networking Systems
Designed with maximum scale-out capability with up to 100GB/s total bandwidth across all superchips through InfiniBand switches, BlueField-3 DPUs, and ConnectX-7 NICs.
Easy-to-Program Heterogeneous Platform
Bringing preferred programming languages to the CUDA platform along with hardware-accelerated memory coherency for simple adaptation to the new platform.
XH23-VG0-AAJ1 Block Diagram

XH23-VG0-AAJ1 Product Overview


438 x 87 x 900
– 1 x NVIDIA Grace™ CPU
– 1 x NVIDIA Hopper™ GPU
– Connected with NVIDIA NVLink™-C2C
– TDP up to 1000W (CPU + GPU + memory)
– 480GB of LPDDR5X memory with ECC
– Memory bandwidth up to 512GB/sNVIDIA Hopper™ GPU:
– 96GB HBM3 [1]
– Memory bandwidth up to 4TB/s [1][1] Modules with 144GB of HBM3E GPU memory and 4.9TB/s memory bandwidth are also available. Please contact our sales representatives for more details.
2 x 10Gb/s LAN (1 x Intel® X550-AT2)
– Support NCSI function1 x 10/100/1000 Mbps Management LAN
– 1 x Mini-DP
4 x 2.5″ Gen5 NVMe
– (NVMe from PEX89048)Internal M.2 (CMTP0A3):
2 x M.2 (2242/2260/2280/22110), PCIe Gen5 x4, from PEX89048
– 3 x FHFL x16 (Gen5 x16), from CPU
1 x Mini-DP
2 x RJ45 ports
1 x MLAN port
1 x Power button with LED
1 x ID button with LED
1 x Reset button
1 x Storage activity LED
1 x System status LED
PCIe Gen5 x4
– Optional TPM2.0 kit: CTM012
1+1 2000W 80 PLUS Titanium redundant power supplies
AC Input:
– 100-127V~/ 13A, 50-60Hz
– 200-220V~/ 10A, 50-60Hz
– 220-240V~/ 10A, 50-60Hz
DC Input: (Only for China)
– 240Vdc/ 10A
DC Output:
– Max 1000W/ 100-127V~
+12.2V/ 82A
+12.2Vsb/ 3A
– Max 1800W/ 200-220V~
+12.2V/ 148A
+12.2Vsb/ 3A
– Max 2000W/ 220-240V~ or 240Vdc Input
+12.2V/ 164A
+12.2Vsb/ 3A
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
- Advanced power capping
- 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
4 x 80x80x80mm (18,700/15,100rpm)
Operating humidity: 8% to 80% (non-condensing)
Non-operating temperature: -40°C to 60°C
Non-operating humidity: 20% to 95% (non-condensing)
Gross Weight: 29.4 kg
2 x Superchip heatsinks
1 x Mini-DP to D-Sub cable
1 x 3-Section Rail kit
– Barebone with 144GB HBM3E module: 6NXH23VG0MR000ABJ1*
– Motherboard: 9MVG3MG0NR-000*
– 3-Section Rail kit: 25HB2-T76100-K0R
– Superchip heatsink: 25ST1-1532G0-M1R/25ST1-3Z32G1-M1R
– Front panel board – CFPX140: 9CFPX140NR-00*
– Backplane board – CBPX060: 9CBPX060NR-00*
– Fan module 60x60x56mm: 25ST2-665620-S1R
– Fan module 80x80x80mm: 25ST2-888024-D0R
– M.2 riser card – CMTP0A3: 9CMTP0A3NR-00*
– DC-SCM board – CDCX100: 9CDCX100NR-00*
– Mini-DP to D-Sub cable: 25CRN-200801-K1R
– Power supply: 25EP0-22000P-G1SOptional parts:– Cable Management Arm: 25HB2-2AA700-K0R
– RMA packaging: 6NXH23VG0SR-RMA-A100
[#2] All materials provided herein are for reference only. GIGABYTE reserves the right to modify or revise the content at any time without prior notice.
[#3] Advertised performance is based on maximum theoretical values as specified by the respective chipset vendors or standards organizations. Actual performance may vary depending on system configuration.
[#4] All trademarks and logos are the property of their respective owners.

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