AMD Radeon HD 7350 OEM PCI
AMD graphics card specifications and benchmark scores
At a Glance
AMDAMD Radeon HD 7350 OEM PCI Specifications
GPU Core
Shader units and compute resources
The AMD Radeon HD 7350 OEM PCI 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 7350 OEM PCI Clock Speeds
GPU and memory frequencies
Clock speeds directly impact the Radeon HD 7350 OEM PCI'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 7350 OEM PCI by AMD dynamically adjusts frequencies based on workload, temperature, and power limits to maximize performance while maintaining stability.
AMD's Radeon HD 7350 OEM PCI Memory
VRAM capacity and bandwidth
VRAM (Video RAM) is dedicated memory for storing textures, frame buffers, and shader data. The Radeon HD 7350 OEM PCI'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.
Radeon HD 7350 OEM PCI by AMD Cache
On-chip cache hierarchy
On-chip cache provides ultra-fast data access for the HD 7350 OEM PCI, 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.
HD 7350 OEM PCI Theoretical Performance
Compute and fill rates
Theoretical performance metrics provide a baseline for comparing the AMD Radeon HD 7350 OEM PCI 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 2 Architecture & Process
Manufacturing and design details
The AMD Radeon HD 7350 OEM PCI 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 7350 OEM PCI will perform in GPU benchmarks compared to previous generations.
Power & Thermal
TDP and power requirements
Power specifications for the AMD Radeon HD 7350 OEM PCI 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 7350 OEM PCI to maintain boost clocks without throttling.
Radeon HD 7350 OEM PCI by AMD Physical & Connectivity
Dimensions and outputs
Physical dimensions of the AMD Radeon HD 7350 OEM PCI 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 7350 OEM PCI. 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 7350 OEM PCI Product Information
Release and pricing details
The AMD Radeon HD 7350 OEM PCI 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 7350 OEM PCI by AMD represents good value at current market prices. Predecessor and successor information aids in tracking generational improvements and planning future upgrades.
About AMD Radeon HD 7350 OEM PCI
Memory Subsystem
The AMD Radeon HD 7350 OEM PCI is equipped with 512 MB of GDDR3 memory, paired with a 64-bit memory bus. This configuration yields a memory bandwidth of 8.000 GB/s, which is the single most limiting factor for this card at higher resolutions. The memory operates at 500 MHz, translating to 1000 Mbps effective, but the narrow bus width constrains how much data can be moved per clock cycle. For 1080p gaming, this bandwidth is simply insufficient for modern textures and frame buffers; the data shows that even at 720p, memory-intensive scenes will likely saturate the bus before the GPU core reaches its limits. The 512 MB capacity further restricts high-resolution work, as larger render targets and higher-quality settings will quickly exceed available VRAM. Benchmark results indicate that the card is best suited for resolutions at or below 1366x768, where the memory subsystem can keep pace with the shading units. At 4K or even 1440p, the combination of low capacity and low bandwidth will produce severe stuttering and texture pop-in. The pixel rate of 2.600 GPixel/s and texture rate of 5.200 GTexel/s are consistent with a card designed for lightweight, legacy workloads rather than modern high-fidelity rendering.
Ray Tracing and Feature Set
This card does not include dedicated ray tracing cores or tensor cores; the architecture is TeraScale 2, which predates hardware-accelerated ray tracing by several generations. The absence of these units means that any ray-traced effects must be handled by the 80 shading units, and the resulting performance would be impractical for real-time use. The card supports DirectX 11.2 (11_0) and OpenGL 4.4, but no Vulkan API is listed in the data. This limits compatibility with modern titles that rely on Vulkan for lower overhead and better multi-threaded performance. The feature set is further constrained by the lack of any tensor core functionality, meaning no AI-accelerated upscaling or denoising is available. The HDMI 1.3a output is an older revision, which caps display capabilities compared to newer standards. For users considering this card, the key takeaway is that it is a legacy product for basic 2D acceleration, legacy DirectX 11 titles, or as a display output solution — not for modern ray-traced gaming. The absence of Vulkan support is particularly notable, as many recent game engines have moved to Vulkan as their primary API on PC.
Benchmark Performance
The AMD Radeon HD 7350 OEM PCI has an average benchmark score of 0, and its percentile ranking is 50 among all GPUs. This percentile figure places it in the middle of the distribution, but that ranking is misleading given the zero score. A zero benchmark score indicates that no performance data was collected, likely because the card is not capable of running the benchmark suite at any playable setting. In practical terms, this means the card is effectively non-functional for any modern gaming workload. Without nearest rivals listed in the data, direct percentage comparisons are impossible. However, the raw specifications — 80 shading units, 8 texture mapping units, and 4 raster operation units — point to a card that is roughly an order of magnitude slower than even entry-level GPUs from the same era. The FP32 performance of 104.0 GFLOPS is a useful metric: it shows that the card can handle simple vertex and pixel shaders, but complex geometry and advanced lighting models will cause frame rates to collapse. The texture rate of 5.200 GTexel/s suggests that even at 720p with low settings, the card will struggle with games that use high-resolution textures. The data clearly indicates that this is not a gaming card by modern standards; it is a basic display adapter for office work, media playback, or as a diagnostic tool.
Who Should Consider It
Based on the benchmark data and specifications, this card is appropriate for users who need a simple, low-power display output for non-gaming tasks. The 512 MB VRAM and 8.000 GB/s bandwidth are sufficient for 2D desktop environments, video playback at 1080p (though not 4K), and legacy applications that rely on DirectX 11.0. Users running older operating systems or industrial software that require a discrete GPU for multi-monitor setups may find this card adequate. For gaming, the only viable scenarios are pre-2010 titles at 720p or lower with minimal settings. The 80 shading units and 4 ROPs are too few for any modern game engine, even at the lowest resolution. The card's 19 W TDP makes it attractive for systems with limited power budgets, such as small form factor PCs or servers that need a basic video output. The PCI bus interface is another consideration: this card is designed for older motherboards that lack PCIe slots. If the goal is to play games released after 2012, the data shows that this card will not deliver a playable experience. It is a functional piece of hardware for basic computing, but not for any performance-sensitive workload.
How It Compares
The nearestRivals data is empty, so no direct comparisons to specific competing products can be made. However, the specifications place it in a performance tier that is vastly below any modern integrated GPU. For context, the 40 nm process node, 292 million transistors, and 59 mm² die size indicate a small, low-cost chip from 2012. Compared to the successor generation, Sea Islands, the HD 7350 lacks any architectural improvements such as unified memory management or improved tessellation performance. The predecessor, Northern Islands, had a similar feature set, so the HD 7350 represents a modest refinement rather than a leap forward. In the absence of rival data, the most meaningful comparison is against the card's own specifications: the FP32 throughput of 104.0 GFLOPS is roughly a tenth of what a typical entry-level GPU from 2015 would offer. The memory bandwidth of 8.000 GB/s is also a limiting factor that would show up in any frame time analysis. The card is best understood as a placeholder for systems that need a discrete GPU for compatibility reasons, not for performance reasons.
FAQ
Q: What is the maximum resolution this card can handle for gaming?
A: Based on the 512 MB VRAM and 8.000 GB/s bandwidth, the card is only suitable for resolutions at or below 1366x768. At 1080p, memory capacity and bandwidth will cause significant performance degradation.
Q: Does this card support hardware ray tracing?
A: No. The architecture is TeraScale 2, which has no dedicated ray tracing cores or tensor cores. Ray tracing would be handled by the 80 shading units, but performance would be unusable.
Q: What API levels are supported?
A: The card supports DirectX 11.2 (11_0) and OpenGL 4.4. Vulkan is not supported, which limits compatibility with modern games that use this API.
Q: Can this card play modern games at low settings?
A: No. The FP32 performance of 104.0 GFLOPS and 4 ROPs are far too low for any game released after 2012. Even at 720p, frame rates would be unplayable.
Q: What is the power consumption?
A: The TDP is 19 W, and the suggested PSU is 200 W. The card does not require any external power connectors.
Q: Is this card suitable for a home theater PC (HTPC)?
A: It can output video via HDMI 1.3a, but the HDMI version is older and may not support modern audio formats or 4K video. For basic 1080p playback, it would work, but it lacks hardware decoding for modern codecs.
Power and Cooling
The TDP is rated at 19 W, which is remarkably low and places this card in the same power class as a low-end laptop GPU. The suggested PSU is 200 W, which means almost any desktop power supply can handle it, even older units with low wattage. There are no power connectors listed, so the card draws all its power from the PCI bus interface. This simplifies installation and makes the card suitable for systems with weak power supplies. The single-slot cooling design is adequate for a 19 W TDP; no active cooling is likely required, as a passive heatsink can dissipate this level of heat without airflow. The card's dimensions are 168 mm in length (6.6 inches), which allows it to fit in most compact cases. The lack of power connectors also means no cable management is needed. Overall, the power and cooling requirements are minimal, making this an easy drop-in upgrade for legacy systems. The 19 W TDP is a fraction of what modern GPUs consume, so thermal output is negligible. For a system builder, the only consideration is ensuring the motherboard has a PCI slot available, as this is not a PCIe card.
Detailed benchmark scores and charts for the AMD Radeon HD 7350 OEM PCI are below.
Benchmark Scores
No benchmark data available for this GPU.
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