AMD Radeon RX 7600M vs NVIDIA GeForce RTX 4070 Ti Comparison
AMD Radeon RX 7600M
GeForce RTX 4070 Ti
PERFORMANCE BENCHMARKS
Analysis: AMD Radeon RX 7600M vs NVIDIA GeForce RTX 4070 Ti
Where Each One Wins
The benchmark data paints a one-sided picture in this comparison. The NVIDIA GeForce RTX 4070 Ti wins the only shared test in the database, the Geekbench OpenCL benchmark, with a score of 176,953 against the AMD Radeon RX 7600M’s 63,775. That is a 64 percent advantage, and the delta is large enough that the two cards occupy different performance tiers entirely.
The AMD Radeon RX 7600M does not win any recorded benchmark in this comparison. Its single recorded score, 63,775 in Geekbench OpenCL, places it at the 89th percentile of all GPUs in the database, which is a strong showing for a mobile part. The nearest rivals to the RX 7600M are the AMD Radeon RX 9060 XT LP at 63,830 (0.1 percent higher), the NVIDIA CMP 30HX at 63,842 (0.1 percent higher), the AMD Radeon Pro Vega 56 at 63,693 (0.1 percent lower), and the AMD Radeon Pro WX 9100 at 64,212 (0.7 percent higher). These deltas are all within a single percentage point, which indicates the RX 7600M sits in a tight cluster of similarly performing GPUs. Its standing is respectable, but the comparison against the RTX 4070 Ti is not close.
The RTX 4070 Ti, by contrast, posts multiple recorded benchmark scores across different test suites. Its Geekbench OpenCL score of 176,953 is the headline figure, but it also records 213,808 in Geekbench Vulkan, 31,624 in Passmark G3D, and 18,396 in Passmark GPU Compute. The card sits at the 84th percentile of all GPUs in the database, which is lower than the RX 7600M’s 89th percentile, but that percentile is computed against the full database and the RTX 4070 Ti’s absolute scores are far higher. The nearest rivals to the RTX 4070 Ti are the NVIDIA GeForce RTX 5090 Mobile at 45,152 (0.8 percent lower), the AMD Radeon Pro 5500 XT at 45,384 (1.3 percent lower), the NVIDIA RTX A6000 at 44,075 (1.6 percent higher), and the Intel Arc A730M at 45,592 (1.7 percent lower). Note that these rival scores are average benchmark scores, not Geekbench OpenCL scores, so they are not directly comparable to the 176,953 figure. The RTX 4070 Ti’s average benchmark score across all recorded tests is 44,795.
The use-case split is therefore straightforward. The RTX 4070 Ti is the clear choice for compute workloads that stress OpenCL performance, and its Vulkan score suggests it handles cross-platform graphics APIs well. The RX 7600M, with its 90 W TDP and IGP slot width, is positioned for thin-and-light laptops where power draw and physical footprint matter more than raw throughput. The RX 7600M’s 89th percentile ranking shows it is not a weak part in absolute terms, but it is not in the same class as the RTX 4070 Ti in the recorded tests.
FAQ
Q: Which GPU has the higher Geekbench OpenCL score?
A: The NVIDIA GeForce RTX 4070 Ti scores 176,953 in Geekbench OpenCL, while the AMD Radeon RX 7600M scores 63,775. The RTX 4070 Ti leads by 64 percent in this test.
Q: How does the AMD Radeon RX 7600M compare to its nearest rivals?
A: The RX 7600M’s closest competitors in the database are the AMD Radeon RX 9060 XT LP at 63,830 (0.1 percent higher), the NVIDIA CMP 30HX at 63,842 (0.1 percent higher), the AMD Radeon Pro Vega 56 at 63,693 (0.1 percent lower), and the AMD Radeon Pro WX 9100 at 64,212 (0.7 percent higher). All four rivals are within one percentage point of the RX 7600M.
Q: What is the average benchmark score for each GPU?
A: The RX 7600M has an average benchmark score of 63,775, which matches its single recorded Geekbench OpenCL result. The RTX 4070 Ti has an average benchmark score of 44,795 across its ten recorded tests.
Q: Which GPU has the higher transistor count?
A: The NVIDIA GeForce RTX 4070 Ti has 35,800 million transistors, while the AMD Radeon RX 7600M has 13,300 million transistors. The RTX 4070 Ti uses a 5 nm process node from TSMC, while the RX 7600M uses a 6 nm process node from the same foundry.
Q: What is the RTX 4070 Ti’s score in Geekbench Vulkan?
A: The RTX 4070 Ti records 213,808 in Geekbench Vulkan, which is higher than its Geekbench OpenCL score of 176,953. The RX 7600M has no recorded Vulkan score in the database.
Q: Which GPU has the higher memory bandwidth?
A: The RTX 4070 Ti has a memory bandwidth of 504.2 GB/s with 12 GB of GDDR6X memory on a 192 bit bus. The RX 7600M has 256.0 GB/s with 8 GB of GDDR6 memory on a 128 bit bus.
Head-to-Head Benchmarks
The database contains one direct head-to-head benchmark between these two GPUs: Geekbench OpenCL. The RTX 4070 Ti scores 176,953, and the RX 7600M scores 63,775. The delta is 64 percent in favor of the RTX 4070 Ti. That is a decisive margin, and it is consistent with the specification gap between the two cards.
The RTX 4070 Ti’s FP32 throughput is 40.09 TFLOPS, which is more than double the RX 7600M’s 17.27 TFLOPS. The texture rate tells a similar story: 626.4 GTexel/s versus 269.9 GTexel/s. The pixel rate is 208.8 GPixel/s for the RTX 4070 Ti versus 154.2 GPixel/s for the RX 7600M. These figures are not directly part of the head-to-head benchmark, but they align with the observed OpenCL result.
The RTX 4070 Ti also records scores in other test suites that the RX 7600M does not share. Its Passmark G3D score is 31,624, its Passmark GPU Compute score is 18,396, and its Passmark DirectX scores range from 116 in DirectX 12 to 352 in DirectX 9. The Passmark G2D score is 1,200. The RX 7600M has no recorded scores in any of these Passmark tests, so there is no direct comparison available for those workloads.
The RTX 4070 Ti’s nearest rival in the database is the NVIDIA GeForce RTX 5090 Mobile, which has an average score of 45,152, 0.8 percent lower than the RTX 4070 Ti’s 44,795 average. The AMD Radeon Pro 5500 XT is 1.3 percent lower at 45,384, and the Intel Arc A730M is 1.7 percent lower at 45,592. The NVIDIA RTX A6000 is 1.6 percent higher at 44,075. These close margins indicate the RTX 4070 Ti is firmly placed among high-end desktop and mobile workstation GPUs in the database’s ranking.
For the RX 7600M, the nearest rivals are all within one percentage point, as noted earlier. The RX 7600M’s average score of 63,775 puts it slightly above the AMD Radeon Pro Vega 56 (63,693) and slightly below the AMD Radeon Pro WX 9100 (64,212). The tight clustering suggests the RX 7600M delivers performance that is very consistent with its direct competitors, but the RTX 4070 Ti operates far above this cluster.
Specification Differences
The two GPUs differ in nearly every meaningful specification. The RX 7600M uses 8 GB of GDDR6 memory on a 128 bit bus with 256.0 GB/s bandwidth. The RTX 4070 Ti uses 12 GB of GDDR6X memory on a 192 bit bus with 504.2 GB/s bandwidth. The RTX 4070 Ti has double the memory capacity and roughly double the bandwidth.
The compute resources are heavily skewed toward the RTX 4070 Ti. It has 7,680 shading units, 240 texture mapping units, and 80 render output units. The RX 7600M has 1,792 shading units, 112 TMUs, and 64 ROPs. The RTX 4070 Ti also has 60 ray tracing cores and 240 tensor cores, while the RX 7600M has 28 ray tracing cores and no tensor cores recorded. The FP32 throughput is 40.09 TFLOPS for the RTX 4070 Ti versus 17.27 TFLOPS for the RX 7600M. The FP16 figures are 40.09 TFLOPS (1:1) for the RTX 4070 Ti and 34.55 TFLOPS (2:1) for the RX 7600M.
Clock speeds differ as well. The RX 7600M has a base clock of 1500 MHz and a boost clock of 2410 MHz, with a game clock of 2070 MHz. The RTX 4070 Ti has a base clock of 2310 MHz and a boost clock of 2610 MHz. Memory clocks are 2000 MHz (16 Gbps effective) for the RX 7600M and 1313 MHz (21 Gbps effective) for the RTX 4070 Ti.
Power and physical specifications could not be more different. The RX 7600M is rated at 90 W TDP with an IGP slot width and no power connectors. The RTX 4070 Ti is rated at 285 W TDP, uses a dual-slot design, requires a 16-pin power connector, and has a suggested PSU of 600 W. The RTX 4070 Ti is a desktop card measuring 285 mm in length, 112 mm in height, and 42 mm in width. The RX 7600M has no recorded physical dimensions because it is a mobile part.
Production status also differs. The RX 7600M is listed as Active, while the RTX 4070 Ti is End-of-life. The RTX 4070 Ti has a launch MSRP of 799 USD. The RX 7600M has no recorded launch MSRP. The RTX 4070 Ti’s predecessor is the GeForce 30 series and its successor is the GeForce 50 series, while the RX 7600M’s predecessor is Polaris Mobile with no successor recorded.
Architecture Differences
The RX 7600M is built on AMD’s RDNA 3.0 architecture, using the Navi 33 chip under the codename Hotpink Bonefish. It belongs to the Navi Mobile generation within the RX 7000 series. The RTX 4070 Ti is built on NVIDIA’s Ada Lovelace architecture, using the AD104 chip, and belongs to the GeForce 40 series. The two architectures take fundamentally different approaches to GPU design.
The manufacturing process differs by one node generation. The RX 7600M uses TSMC’s 6 nm process, while the RTX 4070 Ti uses TSMC’s 5 nm process. Both are fabricated by TSMC. The transistor counts reflect the process difference: the RTX 4070 Ti has 35,800 million transistors on a 294 mm² die, while the RX 7600M has 13,300 million transistors on a 204 mm² die. The transistor density is 121.8 million transistors per square millimeter for the RTX 4070 Ti and 65.2 million per square millimeter for the RX 7600M.
The memory architecture differences are tied to the chips themselves. The RTX 4070 Ti uses GDDR6X, which is a higher-bandwidth memory type than the RX 7600M’s GDDR6. The RTX 4070 Ti’s 192 bit bus and 12 GB capacity give it a substantial memory advantage. The RX 7600M’s 128 bit bus and 8 GB capacity are typical for a mobile part targeting lower power envelopes.
The feature sets are similar in some respects. Both GPUs support DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4. Both use a PCIe 4.0 x16 bus interface. The display outputs differ because of the form factor: the RX 7600M’s outputs are portable device dependent, while the RTX 4070 Ti offers 1x HDMI 2.1 and 3x DisplayPort 1.4a.
The power architecture reflects the intended use cases. The RX 7600M is an integrated-grade mobile part at 90 W with no power connectors, designed to be soldered into laptops. The RTX 4070 Ti is a dual-slot desktop card at 285 W with a single 16-pin connector and a 600 W suggested PSU. The release dates are nearly identical: the RTX 4070 Ti launched on January 2, 2023, and the RX 7600M launched on January 3, 2023, one day later.
The architecture difference also shows in compute features. The RTX 4070 Ti has 240 tensor cores, which support NVIDIA’s AI acceleration features, while the RX 7600M has no tensor cores listed. Both have ray tracing cores, but the RTX 4070 Ti has 60 versus the RX 7600M’s 28. The FP16 ratio differs as well: the RTX 4070 Ti operates at 1:1 FP16 to FP32, while the RX 7600M operates at 2:1, meaning the RX 7600M’s FP16 throughput is achieved at half the rate of its FP32 throughput. The RTX 4070 Ti’s FP16 and FP32 figures are both 40.09 TFLOPS, while the RX 7600M’s FP16 is 34.55 TFLOPS against an FP32 figure of 17.27 TFLOPS.
The recorded data shows a clear hierarchy. The RTX 4070 Ti is the faster card in every shared metric, and its architecture is built for high-throughput desktop workloads. The RX 7600M is a lower-power mobile part that performs respectably within its class but cannot match the RTX 4070 Ti’s raw output. The single head-to-head benchmark, the 64 percent OpenCL gap, is consistent with the broader specification differences across every category from memory bandwidth to shading units to transistor count.