GIGABYTE R183-Z92 (rev. AAD2)
- AMD EPYC™ 9004 Series processors
- AMD EPYC™ 9004 Series processors with AMD 3D V-Cache™ Technology
- Dual processor, 5nm technology
- 12-Channel RDIMM DDR5, 24 x DIMMs
- Dual ROM Architecture
- 2 x 1Gb/s LAN ports via Intel® I350-AM2
- 1 x Dedicated management port
- 4 x 2.5" Gen4 NVMe/SATA/SAS hot-swappable bays
- 8 x 2.5" SATA/SAS hot-swappable bays
- 3 x M.2 slots with PCIe Gen3 x4 and x2 interface
- 2 x FHHL PCIe Gen5 x16 slots
- 2 x OCP 3.0 Gen5 x16 slots
- Compatible with SupremeRAID™ by Graid Technology
- Dual 1600W 80 PLUS Platinum redundant power supply
GIGABYTE R183-Z92 (rev. AAD2)
Powering the Next Generation of Server Architecture and Energy Efficiency
The path to AMD's 5nm 'Zen 4' architecture was paved with many successful generations of EPYC innovations and chiplet designs, and AMD EPYC 9004 Series processors continue this progression. Adding a host of new features to target a wide range of workloads, the new family of EPYC processors will deliver even better CPU performance and performance per watt, and do so on a platform with 2x the throughput of PCIe 4.0 lanes that also has support for 50% more memory channels. For this new platform, GIGABYTE has products ready to get the most out of EPYC-based systems that support fast PCIe Gen5 accelerators and Gen5 NVMe drives, in addition to support for high performant DDR5 memory.
4th Gen AMD EPYC Processors for SP5 Socket
Select GIGABYTE for the AMD EPYC 9004 platform
R183-Z92-AAD2 Product Overview
R183-Z92-AAD2 Block Diagram
GIGABYTE Server and SupremeRAID™ by Graid Technology
Solutions that deliver 100% NVMe SSD performance without sacrificing data security
While traditional RAID technology has become the bottleneck of SSD disks, GRAID Technology has developed a disruptive software + hardware solution to unlock the performance bottleneck of RAID protection for SSDs. SupremeRAID™ by Graid Technology works by installing a virtual NVMe controller onto the operating system and integrating a PCIe device into the system equipped with a high-performance AI processor to handle all RAID operations of the virtual NVMe controller.
This setup offers many advantages:
Takes full advantage of NVMe performance – 19 million random IOPS and 200 GiB/s throughput which is currently the industry leading performance benchmark
Unlike traditional Software RAID it does not consume a large amount of CPU resources
Overcomes the limitations of Hardware RAID cards, such as computing performance, PCIe bandwidth, number of SSD support and the effort of battery maintenance etc
Plug and play, and can be used even for systems without PCIe switches that used SSDs directly connected to the CPU via PCIe without needing to change the hardware design
SCI (Software Composable Infrastructure) compatible and can be used for external SSDs connected via NVMeOF
Highly scalable, and new software functions such as compression and encryption can easily be added
Power Efficiency
Automatic Fan Speed Control
GIGABYTE servers are enabled with Automatic Fan Speed Control to achieve the best cooling and power efficiency. Individual fan speeds will be automatically adjusted according to temperature sensors strategically placed in the servers.
Cold Redundancy
To take advantage of the fact that a PSU will run at greater power efficiency with a higher load, GIGABYTE has introduced a power management feature called Cold Redundancy for servers with N+1 power supplies. When the total system load falls lower than 40%, the system will automatically place one PSU into standby mode, resulting in a 10% improvement in efficiency.
High Availability
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.
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.
Dual ROM Architecture
If the ROM that stores the BMC and BIOS fails to boot, the system will reboot with the backup BMC and/or BIOS replacing the primary. Once the primary BMC is updated, the ROM of the backup BMC will automatically update the backup through synchronization. For the BIOS, it can be updated based on user's choice of firmware version.
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.
User Friendly
Tool-less Drive Bays Design
Clipping mechanism secures the drive in place. Install or replace a new drive in seconds.
OCP 3.0 Ready
GIGABYTE offers servers that feature an onboard OCP 3.0 slot for the next generation of add on cards. Advantages of this new type include:
Easy Serviceability:
Simply slot in or pull out the card, without opening the server or using tools
Improved thermal design:
Horizontal position and optimal heat sink design allow for air cooling to eliminate the heat efficiently
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.
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 entire materials provided herein are for reference only. GIGABYTE reserves the right to modify or revise the content at anytime without prior notice.
* Advertised performance is based on maximum theoretical interface values from respective Chipset vendors or organization who defined the interface specification. Actual performance may vary by system configuration.
* All trademarks and logos are the properties of their respective holders.
* Due to standard PC architecture, a certain amount of memory is reserved for system usage and therefore the actual memory size is less than the stated amount.
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