- Powered by NVIDIA Blackwell architecture and DLSS 4
- Supported by GeForce RTX™ 5050
- Integrated with 8GB GDDR6 128-bit memory interface
- Low profile design with 182 mm card length
- Server-grade thermal conductive gel
- Graphene Nano lubricant
- Supports up to 4 displays
- 2587 MHz (Reference card: 2572MHz)
- Product Number
- GV-N5050OC-8GL
Main Specifications
- Processor Manufacturer
- Nvidia
- Chipset Model
- GeForce RTX 5050
- Interface
- PCI Express x8 5.0
- Processor Speed (Base Clock)
- 2317 MHz
- Maximum Resolution
- 7680x4320 pixels
- Parallel Processing Technology
- Not Supported
- Type
- Middle Range
- Cuda Cores
- 2560
- Device Group
- Gaming
- Colour
- Black
Special Features
- RGB Lighting
- No
- OverClock (OC)
- Yes
- Air-cooled
- Yes
- Low Profile
- Yes
- Passive Cooling
- No
- Water-cooled
- No
- External Graphics Card (eGPU)
- No
- LHR
- No
Memory
- Memory Capacity
- 8 GB
- Memory type
- GDDR6
- Memory Speed
- 20 Gbps
- Memory bus
- 128 bit
Connectivity
- HDMI
- 1
- DisplayPort
- 3
- Dual Link DVI
- No
System Requirements
- Minimum Power Supply
- 550 W
- Power Connectors
- 8-pin
Dimensions
- Length
- 182 mm
- Height
- 69 mm
- Thickness
- 36 mm
Top Specs
- Memory
- 8GB, GDDR6
- Connectivity
- HDMI, DisplayPort
Important information
Specifications are collected from official manufacturer websites. Please verify the specifications before proceeding with your final purchase. If you notice any problem you can report it here.
Description
- Powered by NVIDIA Blackwell architecture and DLSS 4
- Supported by GeForce RTX™ 5050
- Integrated with 8GB GDDR6 128-bit memory interface
- Low profile design with 182 mm card length
- Server-grade thermal conductive gel
- Graphene Nano lubricant
- Supports up to 4 displays
- 2587 MHz (Reference card: 2572MHz)
COOLING SYSTEM WITH GIGABYTE DESIGN
The specially designed cooling system of GIGABYTE ensures effective heat dissipation, with server-grade thermal conductive gel, a copper plate with direct GPU contact, and composite copper heat pipes. These components facilitate improved heat transfer to the heatsink, allowing for higher performance at lower temperatures.
Server-grade thermal conductive gel
To improve the quality and reliability of the products, we have introduced a server-grade thermal gel for cooling critical components such as VRAM and MOSFET. This highly deformable, non-fluid gel provides optimal contact for uneven surfaces and effectively resists deformation from transport or long-term use, unlike traditional thermal pads.
GRAPHENE NANO LUBRICANT
The nanographene lubricant can extend the lifespan of the sleeve bearing fan by 2.1 times, close to the lifespan of the double bearing, and is quieter.
Copper Plate & Composite Copper Heat Pipe
The copper plate comes into direct contact with the GPU, in combination with the composite copper heat pipes, which quickly transfer the heat of the GPU and VRAM to the heatsink.
LOW PROFILE DESIGN
With a length of only 182 millimeters, the card is ideal for compact builds. An additional low-profile bracket is included for seamless adaptability to different build requirements.
COMFORTABLE CONNECTIVITY
Enjoy flexible display options with two DisplayPort ports and two HDMI ports, supporting up to four monitors simultaneously. It meets the demands of multiple monitors, high-resolution applications, and offers an ultimate gaming performance experience.
EXTREMELY DURABLE
SUPER COOLING - The lower RDS(on) MOSFETs are specially designed to produce lower switching resistance for faster charging and discharging of electric current at extremely low temperatures.
LOW POWER LOSS - The metal chokes retain energy much longer than common iron-core chokes at high frequency, effectively reducing core energy loss and EMI interference.
LONGER LIFESPAN - The solid capacitors with lower ESR ensure better electronic conductivity for excellent system performance and longer lifespan.
Friendly PCB Design
The fully automated production process ensures the top quality of circuit boards and eliminates the sharp protrusions of solder connectors observed on the conventional surface of the printed circuit board. This user-friendly design prevents your hands from being cut or causing unintentional damage to components during the construction of your build.