AMD Radeon RX 7600M vs NVIDIA GeForce RTX 5070 Ti Comparison
AMD Radeon RX 7600M
GeForce RTX 5070 Ti
PERFORMANCE BENCHMARKS
Analysis: AMD Radeon RX 7600M vs NVIDIA GeForce RTX 5070 Ti
The Verdict
The data places these two GPUs in entirely different performance tiers. The NVIDIA GeForce RTX 5070 Ti is the clear winner in every recorded comparison, with a Geekbench OpenCL score of 212,363 against 63,775 for the AMD Radeon RX 7600M. That is a 70% deficit for the AMD part in the only head-to-head benchmark recorded. The RTX 5070 Ti also carries additional benchmark results across DirectX, Vulkan, and compute workloads, while the RX 7600M has only a single OpenCL entry in the database.
For a laptop or compact system builder, the RX 7600M makes sense only if power constraints dominate every other consideration. Its 90 W TDP, integrated form factor, and lack of power connectors point to a mobile-first design. The RTX 5070 Ti, with a 300 W TDP, dual-slot cooler, and 16-pin connector, is a desktop-class part that demands a proper power supply and chassis space.
The RTX 5070 Ti sits at the 86th percentile among all GPUs in the database, while the RX 7600M sits at the 89th percentile. This seemingly odd inversion comes from the different benchmark sets each card has recorded. The RTX 5070 Ti's average benchmark score of 49,957 is dragged down by its low PassMark DirectX 9, 10, 11, and 12 scores, which range from 127 to 351. Those legacy API scores are not comparable to modern workload results. The RX 7600M's single OpenCL score of 63,775 places it near rivals like the AMD Radeon RX 9060 XT LP (63,830, a 0.1% difference) and NVIDIA CMP 30HX (63,842, also 0.1% away).
The practical verdict: if the system must run modern games or compute workloads and the chassis can handle a 300 W card, the RTX 5070 Ti is the only choice from this data. If the build is a thin laptop or low-power compact system where the GPU must run without external power connectors, the RX 7600M is the only viable option. There is no scenario in the recorded data where the AMD card wins a performance comparison.
Architecture Differences
The RX 7600M uses the Navi 33 chip built on RDNA 3.0 architecture, produced on TSMC's 6 nm process. The RTX 5070 Ti uses the GB203 chip on Blackwell 2.0 architecture, produced on TSMC's 5 nm process. The node difference is small, but the transistor counts are not. The RTX 5070 Ti packs 45,600 million transistors on a 378 mm² die, giving a density of 120.6 million transistors per square millimeter. The RX 7600M has 13,300 million transistors on a 204 mm² die, at 65.2 million per square millimeter.
The RTX 5070 Ti has 8,960 shading units, 280 texture mapping units, 96 ROPs, 70 ray tracing cores, and 280 tensor cores. The RX 7600M has 1,792 shading units, 112 TMUs, 64 ROPs, and 28 ray tracing cores, with no tensor cores listed. The raw compute figures reflect this gap: the RTX 5070 Ti delivers 43.94 TFLOPS FP32 at a 1:1 FP16 ratio, while the RX 7600M delivers 17.27 TFLOPS FP32 with FP16 at a 2:1 ratio.
Both cards support DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, so API-level feature support is identical. The memory subsystems, however, are not. The RTX 5070 Ti uses 16 GB of GDDR7 on a 256-bit bus, achieving 896.0 GB/s bandwidth. The RX 7600M uses 8 GB of GDDR6 on a 128-bit bus, achieving 256.0 GB/s. The NVIDIA card has 3.5 times the memory bandwidth, which matters heavily for high-resolution textures and compute workloads.
The clock behavior also differs. The RX 7600M has a base clock of 1500 MHz, a game clock of 2070 MHz, and a boost clock of 2410 MHz. The RTX 5070 Ti has a base clock of 2295 MHz and a boost of 2452 MHz, with no game clock listed. The NVIDIA card's base clock is already higher than the AMD card's boost clock. Memory clocks differ as well: 2000 MHz (16 Gbps effective) for the AMD card versus 1750 MHz (28 Gbps effective) for the NVIDIA card.
Where Each One Wins
The RTX 5070 Ti wins every recorded benchmark category. In Geekbench OpenCL, it scores 212,363 versus 63,775 for the RX 7600M, a 70% lead. In Geekbench Vulkan, the RTX 5070 Ti scores 225,122, which is its highest recorded result. Its PassMark G3D score of 32,974 and GPU compute score of 20,203 further confirm strong general and compute performance. The DirectX 12 PassMark score of 127 and DirectX 11 score of 300 are low in absolute terms, but these are legacy API tests and do not reflect modern workload performance.
The RX 7600M has no recorded wins. Its only benchmark is the Geekbench OpenCL score of 63,775. That score places it in the same neighborhood as the AMD Radeon RX 9060 XT LP (63,830) and NVIDIA CMP 30HX (63,842), both within 0.1%. It also sits close to the AMD Radeon Pro Vega 56 (63,693, 0.1% behind the RX 7600M) and the AMD Radeon Pro WX 9100 (64,212, which is 0.7% ahead). For a mobile GPU, this is a respectable result, but it is not competitive with the desktop-class RTX 5070 Ti.
For use-case planning, the RTX 5070 Ti suits high-refresh gaming, ray tracing workloads, and compute tasks that can use its tensor cores and 16 GB VRAM. The RX 7600M suits thin-and-light laptops where the 90 W TDP and integrated form factor are mandatory, and where 8 GB of VRAM is sufficient for 1080p gaming. The lack of tensor cores on the AMD part means no dedicated AI acceleration hardware, while the RTX 5070 Ti's 280 tensor cores provide that capability.
FAQ
Q: Which GPU is faster in OpenCL compute?
A: The RTX 5070 Ti scores 212,363 in Geekbench OpenCL, which is 70% ahead of the RX 7600M's 63,775.
Q: Can the RX 7600M be used in a desktop PC?
A: The data lists it as an integrated form factor (IGP) with no power connectors and a 90 W TDP. It is designed for mobile or compact systems, not standard desktop builds.
Q: How much VRAM does each card have?
A: The RTX 5070 Ti has 16 GB of GDDR7 on a 256-bit bus with 896.0 GB/s bandwidth. The RX 7600M has 8 GB of GDDR6 on a 128-bit bus with 256.0 GB/s bandwidth.
Q: What power supply is required for the RTX 5070 Ti?
A: The database lists a suggested PSU of 700 W, a 300 W TDP, and a single 16-pin power connector. The RX 7600M requires no external power connectors.
Q: Does the RTX 5070 Ti support ray tracing?
A: Yes, it has 70 ray tracing cores. The RX 7600M has 28 ray tracing cores. Both support DirectX 12 Ultimate, which includes ray tracing features.
Q: Which GPU has better legacy DirectX performance?
A: The RTX 5070 Ti records PassMark DirectX 9, 10, 11, and 12 scores of 351, 192, 300, and 127 respectively. The RX 7600M has no recorded PassMark DirectX results in the database.
Head-to-Head Benchmarks
The only direct head-to-head benchmark recorded is Geekbench OpenCL. The RTX 5070 Ti scores 212,363, and the RX 7600M scores 63,775. The delta is 70% in favor of the NVIDIA card. This is the single largest gap in the comparison and reflects the massive difference in shading units (8,960 versus 1,792), texture units (280 versus 112), and memory bandwidth (896.0 GB/s versus 256.0 GB/s).
Beyond the head-to-head, the RTX 5070 Ti's other recorded scores provide context. Its Geekbench Vulkan score of 225,122 is slightly higher than its OpenCL score, suggesting strong Vulkan optimization. The PassMark G3D score of 32,974 is its best PassMark result. The GPU compute score of 20,203 indicates solid compute throughput. These results are consistent with a high-end desktop GPU.
The RX 7600M's single score of 63,775 is close to its nearest rivals: the RX 9060 XT LP at 63,830 (0.1% ahead), the CMP 30HX at 63,842 (0.1% ahead), the Radeon Pro Vega 56 at 63,693 (0.1% behind), and the Radeon Pro WX 9100 at 64,212 (0.7% ahead). The RX 7600M sits in a tight cluster, meaning its performance is typical for its class, not an outlier.
The RTX 5070 Ti's nearest rivals in average benchmark score include the AMD Radeon RX Vega 64 (50,001, 0.1% behind), Intel Arc A550M (49,737, 0.4% behind), AMD Radeon RX 6900 XT (50,951, 2% ahead), and AMD Radeon RX 6800 XT (48,477, 3.1% behind). These comparisons use average scores across multiple benchmarks, not the single OpenCL result, so they are not directly comparable to the head-to-head delta.
Specification Differences
The two GPUs differ in nearly every specification field. The process node is 6 nm for the RX 7600M versus 5 nm for the RTX 5070 Ti, both from TSMC. Transistor count is 13,300 million versus 45,600 million. Die size is 204 mm² versus 378 mm². Transistor density is 65.2 million per square millimeter versus 120.6 million.
The memory configuration is a major differentiator: 8 GB GDDR6 on a 128-bit bus at 256.0 GB/s for the AMD card, versus 16 GB GDDR7 on a 256-bit bus at 896.0 GB/s for the NVIDIA card. The RTX 5070 Ti has double the capacity, double the bus width, and 3.5 times the bandwidth.
Compute resources differ dramatically: 1,792 shading units, 112 TMUs, 64 ROPs, and 28 RT cores for the RX 7600M, versus 8,960 shading units, 280 TMUs, 96 ROPs, 70 RT cores, and 280 tensor cores for the RTX 5070 Ti. The FP32 throughput is 17.27 TFLOPS versus 43.94 TFLOPS. FP16 is 34.55 TFLOPS (2:1) versus 43.94 TFLOPS (1:1).
Power and physical specs: the RX 7600M has a 90 W TDP, integrated form factor, no power connectors, and portable-device-dependent display outputs. The RTX 5070 Ti has a 300 W TDP, dual-slot cooler, a single 16-pin power connector, a suggested PSU of 700 W, and outputs of 1x HDMI 2.1b and 3x DisplayPort 2.1b. The NVIDIA card measures 304 mm by 137 mm by 48 mm. The AMD card has no listed dimensions.
Bus interface: PCIe 4.0 x16 for the RX 7600M, PCIe 5.0 x16 for the RTX 5070 Ti. Release dates: January 3, 2023 for the AMD card, February 19, 2025 for the NVIDIA card. The RTX 5070 Ti has a launch MSRP of 749 USD. The RX 7600M has no launch MSRP recorded. The NVIDIA card lists a successor (GeForce 60), while the AMD card does not. The RX 7600M's predecessor is Polaris Mobile; the RTX 5070 Ti's predecessor is GeForce 40.