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GIGABYTE

R271-Z00 - EPYC™ 7003 UP Server System - 2U 14-Bay

• AMD EPYC™ 7003 series processor family • Single processor, 7nm technology • 8-Channel RDIMM/LRDIMM DDR4, 8 x DIMMs • 2 x 1Gb/s LAN ports (Intel® I210-AT) • 1 x Dedicated management port • 12 x 3.5"/2.5" SATA hot-swa...

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GIGABYTE Product ID: 6NR271Z00MR

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Specifications
  1. R271-Z00

AMD EPYC™ 7003 UP Server System - 2U 14-Bay

  • AMD EPYC™ 7003 series processor family
  • Single processor, 7nm technology
  • 8-Channel RDIMM/LRDIMM DDR4, 8 x DIMMs
  • 2 x 1Gb/s LAN ports (Intel® I210-AT)
  • 1 x Dedicated management port
  • 12 x 3.5"/2.5" SATA hot-swappable bays
  • 2 x 2.5" SATA hot-swappable bays on rear side
  • 1 x M.2 slot with PCIe Gen3 x4 interface
  • 5 x LP PCIe Gen3 x16 and x8 slots
  • Aspeed® AST2500 remote management controller
  • 2 x 800W 80 PLUS Platinum redundant power supplies

* 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.

SPECIFICATIONS

Dimensions (WxHxD, mm)

2U
430 x 87 x 710

Motherboard

MZ01-CE1 Rev. 3.0

CPU

AMD EPYC™ 7003 series processor family
Single processor, 7nm technology
Up to 64-core, 128 threads per processor
TDP up to 240W, cTDP up to 280W

Compatible with AMD EPYC™ 7002 series processor family

Socket

1 x LGA 4094
Socket SP3

Memory

8 x DIMM slots
DDR4 memory supported only
8-Channel memory architecture
RDIMM modules up to 128GB supported
LRDIMM modules up to 128GB supported
3DS RDIMM/LRDIMM modules up to 256GB supported
Memory speed: Up to 3200*/2933 MHz

*Follow BIOS setting and memory QVL list if running 3200 Mhz

LAN

Rear side:
2 x 1Gb/s LAN ports (Intel® I210-AT)
1 x 10/100/1000 management LAN

Video

Integrated in Aspeed® AST2500
2D Video Graphic Adapter with PCIe bus interface
1920x1200@60Hz 32bpp

Storage

Front side:
12 x 3.5"/2.5" SATA/SAS hot-swappable bays

Rear side:
2 x 2.5" SATA/SAS hot-swappable bays

Front side default configuration supports:
12 x SATA drives
or
4 x SATA drives
8 x SAS drives

SAS card is required for SAS devices support

SAS

Depends on SAS add-on card

Expansion Slots

Total 5 x PCIe Gen3 low-profile slots
- Slot_7 (PCIe_7): 1 x PCIe x16 (Gen3 x16)
- Slot_5 (PCIe_5): 1 x PCIe x16 (Gen3 x16)
- Slot_4 (PCIe_4): 1 x PCIe x8 (Gen3 x8)
- Slot_3 (PCIe_3): 1 x PCIe x16 (Gen3 x16)
- Slot_1 (PCIe_1): 1 x PCIe x16 (Gen3 x16)

1 x M.2 slot:
- M-key
- PCIe Gen3 x4
- Supports NGFF-2242/2260/2280/22110 cards

Internal I/O

1 x 24-pin ATX main power connector
2 x 8-pin ATX 12V power connectors
4 x SlimSAS connectors
1 x M.2 slot
1 x CPU fan header
6 x System fan headers
1 x USB 3.0 header
2 x COM headers
1 x TPM header
1 x Front panel header
1 x Backplane board header
1 x PMBus connector
1 x IPMB connector
1 x Clear CMOS jumper
1 x BIOS recovery jumper

Front I/O

2 x USB 3.0
1 x Power button with LED
1 x ID button with LED
1 x Reset button
1 x NMI button
1 x System status LED
1 x HDD activity LED
2 x LAN activity LEDs

Rear I/O

2 x USB 3.0
1 x VGA
2 x RJ45
1 x MLAN
1 x ID switch with LED
1 x Power switch with LED

Backplane Board

Speed and bandwidth:
SATA 6Gb/s or SAS 12Gb/s

TPM

1 x TPM header with LPC interface

Power Supply

2 x 800W 80 PLUS Platinum redundant power supplies

AC Input:
- 100-240V~/ 10-4A, 50-60Hz

DC Input:
- 240Vdc/ 4.5A

DC Output:
- Max 800W
+ 12V/ 66A
+ 12Vsb/ 2.5A

System Management

Aspeed® AST2500 management controller
GIGABYTE Management Console (AMI MegaRAC SP-X) web interface

  • Dashboard
  • JAVA Based Serial Over LAN
  • 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

Windows Server 2016 (X2APIC/256T not supported)
Windows Server 2019
Windows Server 2022

Red Hat Enterprise Linux 8.3 (x64) or later
Red Hat Enterprise Linux 9.0 (x64) or later

SUSE Linux Enterprise Server 12 SP5 (x64) or later
SUSE Linux Enterprise Server 15 SP2 (x64) or later

Ubuntu 18.04.5 LTS (x64) or later
Ubuntu 20.04 LTS (x64) or later
Ubuntu 22.04 LTS (x64) or later

VMware ESXi 6.7 Update3 P03 or later
VMware ESXi 7.0 Update1 or later
VMware ESXi 8.0 or later

Citrix Hypervisor 8.2.0 or later

System Fans

4 x 80x80x38mm (16,300rpm)

Operating Properties

Operating temperature: 10°C to 35°C
Operating humidity: 8%-80% (non-condensing)
Non-operating temperature: -40°C to 60°C
Non-operating humidity: 20%-95% (non-condensing)

Packaging Dimensions

982 x 588 x 268 mm

Packaging Content

1 x R271-Z00
1 x CPU heatsink
1 x Rail kit

Part Numbers

- Barebone package: 6NR271Z00MR-00-B*
- Motherboard: 9MZ01CE1MR-00 Rev. 3.0
- Rail Kit: 25HB2-3A0202-K0R
- Backplane board - CBP20C3: 9CBP20C3NR-00
- CPU heatsink: 25ST1-15320E-J1R
- Fan module: 25ST2-883829-D0R
- Power supply: 25EP0-208004-L0S

* 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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