Explore the complete details of Radeon R5 (Bristol Ridge), including specs, performance benchmarks
The Radeon R5 (Bristol Ridge) GPU by AMD. features a GCN 1.2/2.0 (2015−2016) architecture. with 384 CUDA cores. and a boost clock of 800 MHz MHz. With a power consumption (TDP) of 12W. it supports DirectX 12 (FL 12_0) for enhanced performance.
Basic details about the Radeon R5 (Bristol Ridge), including manufacturer, ranking, and release date.
Title | Radeon R5 (Bristol Ridge) |
---|---|
Manufacturer | AMD |
Ranking | 885 |
Popularity Rank | not in top-100 |
Architecture | GCN 1.2/2.0 (2015−2016) |
GPU code name | Bristol Ridge |
Market Segmente | Laptop |
Length - Width | N/A - N/A |
Release Date | 1 June 2016 |
Launch Price | $N/A |
Details on clock speeds, cores, and floating-point processing power of Radeon R5 (Bristol Ridge).
Core Clock Speed | N/A |
---|---|
Boost Clock Speed | 800 MHz |
Floating Point Processing Power | N/A |
No of Transistors | 3100 Million |
CUDA Cores | 384 |
Ray Tracing Cores | N/A |
Tensor Cores | N/A |
Texture Fill Rate | N/A |
ROPs | N/A |
Available display connectors and API compatibility for enhanced performance.
Interface | N/A |
---|---|
Display Connectors | N/A |
HDMI | N/A |
DirectX | 12 (FL 12_0) |
Shader Model | N/A |
OpenGL | N/A |
OpenCL | N/A |
Vulkan | N/A |
CUDA | N/A |
DLSS | N/A |
TMUs | N/A |
Information on memory type, capacity, and bandwidth to evaluate data processing power.
Memory Type | N/A |
---|---|
Maximum RAM | N/A |
Memory Bus Width | 64/128 Bit |
Memory Clock Speed | N/A |
Memory Bandwidth | N/A GB/s |
Resizable BAR | N/A |
Power consumption, efficiency, and additional power requirements.
Power Consumption (TDP) | 12 W |
---|---|
Power Efficiency | 3.74 |
Manufacturing Process | 28 nm |
Supplementary Power Connectors | N/A |
Here are some of the closest competitors to this GPU. Compare their power consumption, efficiency, and additional power requirements.
Here are some of the closest competitors to this GPU. Compare their power consumption, efficiency, and additional power requirements.