RADEON

AMD Radeon HD 6730M

AMD graphics card specifications and benchmark scores

1 GB
VRAM
โ€”
MHz Boost
35W
TDP
128
Bus Width

AMD Radeon HD 6730M Specifications

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Radeon HD 6730M GPU Core

Shader units and compute resources

The AMD Radeon HD 6730M GPU core specifications define its raw processing power for graphics and compute workloads. Shading units (also called CUDA cores, stream processors, or execution units depending on manufacturer) handle the parallel calculations required for rendering. TMUs (Texture Mapping Units) process texture data, while ROPs (Render Output Units) handle final pixel output. Higher shader counts generally translate to better GPU benchmark performance, especially in demanding games and 3D applications.

Shading Units
480
Shaders
480
TMUs
24
ROPs
8
Compute Units
6
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HD 6730M Clock Speeds

GPU and memory frequencies

Clock speeds directly impact the Radeon HD 6730M's performance in GPU benchmarks and real-world gaming. The base clock represents the minimum guaranteed frequency, while the boost clock indicates peak performance under optimal thermal conditions. Memory clock speed affects texture loading and frame buffer operations. The Radeon HD 6730M by AMD dynamically adjusts frequencies based on workload, temperature, and power limits to maximize performance while maintaining stability.

GPU Clock
725 MHz
Memory Clock
800 MHz 1600 Mbps effective
GDDR GDDR 6X 6X

AMD's Radeon HD 6730M Memory

VRAM capacity and bandwidth

VRAM (Video RAM) is dedicated memory for storing textures, frame buffers, and shader data. The Radeon HD 6730M's memory capacity determines how well it handles high-resolution textures and multiple displays. Memory bandwidth, measured in GB/s, affects how quickly data moves between the GPU and VRAM. Higher bandwidth improves performance in memory-intensive scenarios like 4K gaming. The memory bus width and type (GDDR6, GDDR6X, HBM) significantly influence overall GPU benchmark scores.

Memory Size
1024 MB
VRAM
1,024 MB
Memory Type
GDDR3
VRAM Type
GDDR3
Memory Bus
128 bit
Bus Width
128-bit
Bandwidth
25.60 GB/s
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Radeon HD 6730M by AMD Cache

On-chip cache hierarchy

On-chip cache provides ultra-fast data access for the HD 6730M, reducing the need to fetch data from slower VRAM. L1 and L2 caches store frequently accessed data close to the compute units. AMD's Infinity Cache (L3) dramatically increases effective bandwidth, improving GPU benchmark performance without requiring wider memory buses. Larger cache sizes help maintain high frame rates in memory-bound scenarios and reduce power consumption by minimizing VRAM accesses.

L1 Cache
8 KB (per CU)
L2 Cache
256 KB
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HD 6730M Theoretical Performance

Compute and fill rates

Theoretical performance metrics provide a baseline for comparing the AMD Radeon HD 6730M against other graphics cards. FP32 (single-precision) performance, measured in TFLOPS, indicates compute capability for gaming and general GPU workloads. FP64 (double-precision) matters for scientific computing. Pixel and texture fill rates determine how quickly the GPU can render complex scenes. While real-world GPU benchmark results depend on many factors, these specifications help predict relative performance levels.

FP32 (Float)
696.0 GFLOPS
Pixel Rate
5.800 GPixel/s
Texture Rate
17.40 GTexel/s
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TeraScale 2 Architecture & Process

Manufacturing and design details

The AMD Radeon HD 6730M is built on AMD's TeraScale 2 architecture, which defines how the GPU processes graphics and compute workloads. The manufacturing process node affects power efficiency, thermal characteristics, and maximum clock speeds. Smaller process nodes pack more transistors into the same die area, enabling higher performance per watt. Understanding the architecture helps predict how the HD 6730M will perform in GPU benchmarks compared to previous generations.

Architecture
TeraScale 2
GPU Name
Whistler
Process Node
40 nm
Foundry
TSMC
Transistors
716 million
Die Size
118 mmยฒ
Density
6.1M / mmยฒ
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AMD's Radeon HD 6730M Power & Thermal

TDP and power requirements

Power specifications for the AMD Radeon HD 6730M determine PSU requirements and thermal management needs. TDP (Thermal Design Power) indicates the heat output under typical loads, guiding cooler selection. Power connector requirements ensure adequate power delivery for stable operation during demanding GPU benchmarks. The suggested PSU wattage accounts for the entire system, not just the graphics card. Efficient power delivery enables the Radeon HD 6730M to maintain boost clocks without throttling.

TDP
35 W
TDP
35W
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Radeon HD 6730M by AMD Physical & Connectivity

Dimensions and outputs

Physical dimensions of the AMD Radeon HD 6730M are critical for case compatibility. Card length, height, and slot width determine whether it fits in your chassis. The PCIe interface version affects bandwidth for communication with the CPU. Display outputs define monitor connectivity options, with modern cards supporting multiple high-resolution displays simultaneously. Verify these specifications against your case and motherboard before purchasing to ensure a proper fit.

Slot Width
MXM Module
Bus Interface
MXM-A (3.0)
Display Outputs
Portable Device Dependent
Display Outputs
Portable Device Dependent
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AMD API Support

Graphics and compute APIs

API support determines which games and applications can fully utilize the AMD Radeon HD 6730M. DirectX 12 Ultimate enables advanced features like ray tracing and variable rate shading. Vulkan provides cross-platform graphics capabilities with low-level hardware access. OpenGL remains important for professional applications and older games. CUDA (NVIDIA) and OpenCL enable GPU compute for video editing, 3D rendering, and scientific applications. Higher API versions unlock newer graphical features in GPU benchmarks and games.

DirectX
11.2 (11_0)
DirectX
11.2 (11_0)
OpenGL
4.4
OpenGL
4.4
OpenCL
1.2
Shader Model
5.0
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Radeon HD 6730M Product Information

Release and pricing details

The AMD Radeon HD 6730M is manufactured by AMD as part of their graphics card lineup. Release date and launch pricing provide context for comparing GPU benchmark results with competing products from the same era. Understanding the product lifecycle helps evaluate whether the Radeon HD 6730M by AMD represents good value at current market prices. Predecessor and successor information aids in tracking generational improvements and planning future upgrades.

Manufacturer
AMD
Release Date
Jan 2011
Production
End-of-life
Predecessor
Manhattan
Successor
London

Radeon HD 6730M Benchmark Scores

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No benchmark data available for this GPU.

About AMD Radeon HD 6730M

The AMD Radeon HD 6730M, manufactured by AMD, is designed to cater to entry-level professional workloads with moderate graphical demands. Built on a TeraScale 2 architecture with a 40 nm process, this mobile GPU offers a balance between power efficiency and performance, suitable for content creators seeking a cost-effective solution. Its 1024 MB of GDDR3 VRAM provides adequate memory bandwidth for basic rendering and editing tasks, although it may struggle with more demanding projects. The relatively low TDP of 35W ensures it can operate within tight thermal envelopes, making it a viable option for sleek, portable workstations. While it may not match high-end workstation cards, this AMD Radeon HD 6730M can handle everyday tasks like multi-tasking with creative software without significant bottlenecks. When it comes to content creation, the AMD Radeon HD 6730M offers a modest environment that can support applications like Adobe Photoshop, Lightroom, and casual video editing tools. Its compatibility with mainstream software is generally reliable, but it lacks the specialized features found in professional-grade graphics cards. Creators should consider the limitations of this GPU when working with high-resolution files or complex 3D modeling, as performance may become sluggish under heavy workloads. For those engaging in occasional content updates or simple graphic design work, this AMD AMD Radeon HD 6730M can serve as a dependable entry point. However, for intensive tasks or real-time rendering demands, more powerful hardware would provide a smoother experience. Multi-GPU configurations are not typically a focus for the AMD Radeon HD 6730M, especially given its mobile orientation and MXM-A interface constraints. Combining multiple units for increased performance is generally impractical in laptops fitted with this GPU, and software support for such configurations is limited. For users contemplating multi-GPU setups, it's important to note that this modelโ€™s architecture wasn't optimized for scaling across multiple cards. Instead, users should prioritize a single, more capable GPU or look into workstation-class solutions for tasks requiring significant computational power. Overall, the AMD Radeon HD 6730M fits well within its intended scope: a modest, portable GPU capable of handling routine professional tasks and general multimedia workflows.

The NVIDIA Equivalent of Radeon HD 6730M

Looking for a similar graphics card from NVIDIA? The NVIDIA GeForce RTX 2080 offers comparable performance and features in the NVIDIA lineup.

NVIDIA GeForce RTX 2080

NVIDIA โ€ข 8 GB VRAM

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