AMD Radeon HD 7560G IGP
AMD graphics card specifications and benchmark scores
At a Glance
AMDAMD Radeon HD 7560G IGP Specifications
Radeon HD 7560G IGP GPU Core
Shader units and compute resources
The AMD Radeon HD 7560G IGP 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.
HD 7560G IGP Clock Speeds
GPU and memory frequencies
Clock speeds directly impact the Radeon HD 7560G IGP'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 7560G IGP by AMD dynamically adjusts frequencies based on workload, temperature, and power limits to maximize performance while maintaining stability.
AMD's Radeon HD 7560G IGP Memory
VRAM capacity and bandwidth
VRAM (Video RAM) is dedicated memory for storing textures, frame buffers, and shader data. The Radeon HD 7560G IGP'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.
HD 7560G IGP Theoretical Performance
Compute and fill rates
Theoretical performance metrics provide a baseline for comparing the AMD Radeon HD 7560G IGP 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.
TeraScale 3 Architecture & Process
Manufacturing and design details
The AMD Radeon HD 7560G IGP is built on AMD's TeraScale 3 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 7560G IGP will perform in GPU benchmarks compared to previous generations.
AMD's Radeon HD 7560G IGP Power & Thermal
TDP and power requirements
Power specifications for the AMD Radeon HD 7560G IGP 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 7560G IGP to maintain boost clocks without throttling.
Radeon HD 7560G IGP by AMD Physical & Connectivity
Dimensions and outputs
Physical dimensions of the AMD Radeon HD 7560G IGP 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.
AMD API Support
Graphics and compute APIs
API support determines which games and applications can fully utilize the AMD Radeon HD 7560G IGP. 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.
Radeon HD 7560G IGP Product Information
Release and pricing details
The AMD Radeon HD 7560G IGP 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 7560G IGP by AMD represents good value at current market prices. Predecessor and successor information aids in tracking generational improvements and planning future upgrades.
Radeon HD 7560G IGP Benchmark Scores
No benchmark data available for this GPU.
About AMD Radeon HD 7560G IGP
The AMD Radeon HD 7560G IGP is a TeraScale 3 integrated graphics processor fabricated by GlobalFoundries on a 32 nm process, part of the Trinity Mobile generation. The die measures 246 mm² and contains 1,303 million transistors at a density of 5.3M per mm². Released 2012-05-14 and now end-of-life, this IGP holds the 50th percentile in the database's all-GPU ranking, yet no discrete benchmark scores are recorded for it — the average score is 0.
Benchmark Performance
The database records no benchmark scores for this part: the benchmarks array is empty and the average score is 0. The only quantitative ranking data is the percentileVsAllGpus field, which places the HD 7560G IGP at the 50th percentile — exactly the median of all GPUs tracked. Without recorded scores, that percentile is the sole relative performance marker, and it should be read with caution given the absence of actual benchmark runs.
The theoretical compute figures are documented, however. The part delivers 389.1 GFLOPS of FP32 throughput, derived from 256 shading units operating at a 496 MHz base clock with a 760 MHz boost. The pixel rate is 6.080 GPixel/s and the texture rate is 12.16 GTexel/s, backed by 16 texture mapping units and 8 raster output units.
These numbers describe a part aimed at modest workloads. The 8 ROPs are the primary constraint for fill-rate-bound tasks; 6.080 GPixel/s is a low ceiling for anything beyond basic desktop output. The FP32 rate of 389.1 GFLOPS is similarly limited, indicating suitability for light workloads rather than compute-heavy loads. The boost clock of 760 MHz is a substantial step above the 496 MHz base, helping the part scale under load, but the hardware counts — 256 shaders, 16 TMUs, 8 ROPs — cap its overall ceiling.
Because no nearest rivals are listed in the database, direct percentage comparisons against other GPUs are not possible from this data. The 50th percentile is the only relative indicator available.
Memory Subsystem
The HD 7560G IGP has no dedicated VRAM. Memory size, type, and bus width are all listed as "System Shared," and bandwidth is "System Dependent." This is an integrated-graphics arrangement: the GPU borrows from the host system's main memory rather than maintaining its own pool.
The practical consequence is that memory performance is entirely a function of the host platform. Because bandwidth is system dependent, performance varies with the host's memory configuration, and the available capacity changes with the host's RAM. The database assigns no fixed figures for memory size, type, bus width, or bandwidth because these values cannot be known without specifying the host system.
For higher resolutions, this is a limiting factor. With no dedicated VRAM and system-dependent bandwidth, the IGP must share memory access with the host processor. The 8 ROPs and 6.080 GPixel/s pixel rate further constrain high-resolution output. In practice, this part is best matched to modest resolutions and light workloads where memory pressure is low.
Ray Tracing and Feature Set
The database lists rtCores as null and tensorCores as null, so there is no dedicated ray tracing hardware and no tensor-core acceleration. This is consistent with the TeraScale 3 architecture. API support is documented as DirectX 11.2 (11_0) and OpenGL 4.4. Vulkan support is null, meaning the part does not expose a Vulkan driver.
For software compatibility, this limits the IGP to DirectX 11-era titles and OpenGL 4.4 applications. Applications requiring Vulkan or a newer DirectX version will not run through this part's driver stack. The feature set is minimal: no ray tracing, no tensor cores, no Vulkan, and a DirectX ceiling of 11.2. For legacy software this is adequate; for contemporary titles it is not.
Who Should Consider It
The HD 7560G IGP is an integrated part from the Trinity Mobile generation, built for portable systems. Its 35 W TDP and IGP slot width confirm that it is part of the host platform rather than a discrete card. Display outputs are portable device dependent, meaning the available connectors vary by design. Released 2012-05-14 and now end-of-life, this is a legacy product.
Given the 389.1 GFLOPS FP32 throughput, 6.080 GPixel/s pixel rate, and 8 ROPs, the data indicates a part intended for basic computing and light 2D/3D workloads. The 50th percentile ranking suggests a mid-pack position among all GPUs in the database, but the absence of benchmark scores means real-world performance is unverified in this dataset.
The FP32 and pixel rates indicate this part is not suited to demanding workloads such as high-resolution rendering. The system-shared memory and system-dependent bandwidth reinforce that conclusion. Users with legacy Trinity Mobile systems that require a basic display output are the audience; anyone needing more capability should look to the successor, GCN 2.0 IGP.
FAQ
Q: Does the AMD Radeon HD 7560G IGP support Vulkan?
A: No. Vulkan support is listed as null in the database, so the part does not provide a Vulkan driver.
Q: What is the highest DirectX version supported?
A: DirectX 11.2 (11_0). The database lists no support beyond this version.
Q: How much dedicated VRAM does it have?
A: None. Memory size, type, and bus width are all system shared, and bandwidth is system dependent, meaning it borrows from the host's main memory.
Q: What is the TDP of this IGP?
A: 35 W.
Q: When was it released?
A: 2012-05-14.
Q: Is it still in production?
A: No, the production status is end-of-life.
Power and Cooling
The HD 7560G IGP has a TDP of 35 W. This is the thermal design point for the integrated part. No power connectors are listed in the database, and no suggested PSU is given — both fields are null. This is consistent with an IGP that draws power through the motherboard.
The 35 W envelope is modest, meaning cooling requirements are light. The slot width is listed as "IGP," confirming that the part is not a discrete card and does not occupy an expansion slot. System builders do not need to plan for additional GPU power cabling on account of this part, though the database does not specify a PSU recommendation.
For portable devices, the 35 W TDP is a reasonable figure for the Trinity Mobile generation. The lack of power connectors and the integrated form factor simplify installation.
How It Compares
The database lists no nearest rivals for the HD 7560G IGP, so direct comparisons to competing GPUs are not available from this data. The product lineage, however, provides context.
TeraScale 2 IGP (predecessor): The HD 7560G represents the TeraScale 3 generation, succeeding the TeraScale 2 IGP. The architectural advance from TeraScale 2 to TeraScale 3 brings the documented feature set of the newer part, including DirectX 11.2 support and the 32 nm process. Without benchmark scores for either part, the performance delta cannot be quantified, but the generational progression is clear from the architecture and API support.
GCN 2.0 IGP (successor): The successor is the GCN 2.0 IGP, a different architecture from TeraScale 3. The HD 7560G's TeraScale 3 design is the older of the two, and the database's placement of the successor after this part indicates the expected progression. Again, no scores are available for a direct comparison, but the architectural difference is the defining factor between the two.
The NVIDIA Equivalent of Radeon HD 7560G IGP
Looking for a similar graphics card from NVIDIA? The NVIDIA GeForce RTX 2080 offers comparable performance and features in the NVIDIA lineup.
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