AMD Ryzen Z1 GPU vs NVIDIA GeForce RTX 5070 Ti SUPER Comparison
AMD Ryzen Z1 GPU
GeForce RTX 5070 Ti SUPER
PERFORMANCE BENCHMARKS
Analysis: AMD Ryzen Z1 GPU vs NVIDIA GeForce RTX 5070 Ti SUPER
Head-to-Head Benchmarks
The database does not contain any direct head-to-head benchmark results between the AMD Ryzen Z1 GPU and the NVIDIA GeForce RTX 5070 Ti SUPER. The recorded data shows zero wins for either part in this pairing, as the head-to-head benchmark array is empty.
However, the RTX 5070 Ti SUPER does have a single recorded benchmark entry. In 3DMark Steel Nomad (DX12), it scores 6269.5 points. Its average benchmark score across all recorded tests is 6270. This places it at the 36th percentile among all GPUs in the database.
The Ryzen Z1 GPU has no recorded benchmark scores at all. Its average benchmark score is 0, and its percentile rank is 50th. This means the database contains no performance measurements for the AMD part, making a direct numerical comparison impossible based on available data.
For context on the RTX 5070 Ti SUPER, the nearest rivals in the database are informative. The NVIDIA GeForce RTX 4070 Ti SUPER AD102 matches its average score exactly at 6270, a delta of 0%. The AMD FirePro W600 scores 6223, which is 0.8% lower. The NVIDIA Quadro K620 scores 6282, which is 0.2% higher, and the AMD Radeon R7 M350 scores 6327, which is 0.9% higher. These deltas are all within one percentage point, indicating that the RTX 5070 Ti SUPER sits in a tightly clustered performance band according to the database's measurements.
Architecture Differences
The two GPUs come from entirely different design philosophies. The AMD Ryzen Z1 GPU uses the Phoenix chip built on RDNA 3.0 architecture, fabricated on a 4 nm process at TSMC. It contains 25,390 million transistors on a 178 mm² die, yielding a transistor density of 142.6 million per square millimeter.
The NVIDIA GeForce RTX 5070 Ti SUPER uses the GB203 chip built on Blackwell 2.0 architecture, also fabricated at TSMC but on a 5 nm process. It contains 45,600 million transistors on a 378 mm² die, yielding a transistor density of 120.6 million per square millimeter. The NVIDIA chip has nearly double the transistor count and more than double the die area.
The AMD part features 256 shading units, 16 texture mapping units, and 8 render output units. It includes 4 ray tracing cores. The NVIDIA part is dramatically larger in compute resources: 8960 shading units, 280 TMUs, 96 ROPs, and 70 ray tracing cores. The RTX 5070 Ti SUPER also includes 280 tensor cores, a feature entirely absent from the Ryzen Z1 GPU's specifications.
Clock speeds differ in an interesting way. The AMD chip has a base clock of 1500 MHz and a boost clock of 2500 MHz, with its memory running at 800 MHz (6.4 Gbps effective). The NVIDIA chip has a base clock of 2295 MHz and a boost clock of 2452 MHz, with memory at 1750 MHz (28 Gbps effective). Despite the higher base clock on NVIDIA, the AMD part boosts slightly higher than NVIDIA's boost clock.
The process node advantage goes to AMD at 4 nm versus NVIDIA's 5 nm, and AMD achieves higher transistor density. However, the sheer scale of the NVIDIA chip overwhelms this advantage in every compute metric.
Where Each One Wins
Based on raw specifications, the NVIDIA GeForce RTX 5070 Ti SUPER dominates in compute throughput. Its FP32 performance is 43.94 TFLOPS compared to the AMD Ryzen Z1 GPU's 2.560 TFLOPS. That is roughly 17 times higher. The NVIDIA part's FP16 performance is also 43.94 TFLOPS (1:1 ratio), while the AMD part reaches 5.120 TFLOPS (2:1 ratio).
Memory bandwidth heavily favors NVIDIA. The RTX 5070 Ti SUPER delivers 896.0 GB/s over a 256-bit GDDR7 interface. The Ryzen Z1 GPU provides 51.20 GB/s over a 64-bit LPDDR5 interface. This is a difference of roughly 17.5 times in bandwidth, which directly impacts texture-heavy workloads and high-resolution rendering.
Pixel and texture rates follow the same pattern. NVIDIA achieves 235.4 GPixel/s and 686.6 GTexel/s, while AMD manages 20.00 GPixel/s and 40.00 GTexel/s. NVIDIA is roughly 11.8 times faster in pixel throughput and 17.2 times faster in texture throughput.
The power envelope tells a different story. The AMD Ryzen Z1 GPU has a TDP of 30 W and requires no power connectors. The NVIDIA part has a TDP of 350 W and requires a 16-pin connector. The AMD part is designed for extreme efficiency, while the NVIDIA part consumes over 11 times the power to deliver its performance.
The Ryzen Z1 GPU has no display outputs, making it unsuitable as a primary graphics solution for a desktop workstation. The RTX 5070 Ti SUPER provides 1x HDMI 2.1b and 3x DisplayPort 2.1b outputs. The AMD part is 280 mm long, 111 mm tall, and 21 mm wide. The NVIDIA part is longer at 304 mm, taller at 137 mm, and much thicker at 48 mm, occupying a dual-slot form factor.
FAQ
Q: Which GPU has higher FP32 compute performance?
A: The NVIDIA GeForce RTX 5070 Ti SUPER delivers 43.94 TFLOPS FP32, while the AMD Ryzen Z1 GPU delivers 2.560 TFLOPS. NVIDIA's part is approximately 17 times higher.
Q: Do both GPUs support the same DirectX version?
A: Yes, both support DirectX 12 Ultimate (12_2). They also both support OpenGL 4.6 and Vulkan 1.4.
Q: What memory types do these GPUs use?
A: The AMD Ryzen Z1 GPU uses 16 GB of LPDDR5 on a 64-bit bus with 51.20 GB/s bandwidth. The NVIDIA RTX 5070 Ti SUPER uses 16 GB of GDDR7 on a 256-bit bus with 896.0 GB/s bandwidth.
Q: Which GPU has more ray tracing cores?
A: The NVIDIA RTX 5070 Ti SUPER has 70 ray tracing cores. The AMD Ryzen Z1 GPU has 4 ray tracing cores.
Q: What is the power consumption difference?
A: The AMD Ryzen Z1 GPU has a TDP of 30 W and requires no power connectors. The NVIDIA RTX 5070 Ti SUPER has a TDP of 350 W and requires a single 16-pin power connector.
Q: Does the AMD Ryzen Z1 GPU have any benchmark scores in the database?
A: No. The recorded data shows an average benchmark score of 0 for the AMD part, with no individual test results. The NVIDIA part has a 3DMark Steel Nomad DX12 score of 6269.5 and an average score of 6270.
Specification Differences
The two GPUs differ in nearly every measurable specification.
Process node: AMD uses 4 nm, NVIDIA uses 5 nm. Both are TSMC fabricated.
Transistors: AMD has 25,390 million, NVIDIA has 45,600 million.
Die size: AMD measures 178 mm², NVIDIA measures 378 mm².
Transistor density: AMD achieves 142.6M per mm², NVIDIA achieves 120.6M per mm².
Base clock: AMD runs 1500 MHz, NVIDIA runs 2295 MHz.
Boost clock: AMD runs 2500 MHz, NVIDIA runs 2452 MHz.
Memory clock: AMD runs 800 MHz (6.4 Gbps effective), NVIDIA runs 1750 MHz (28 Gbps effective).
Memory type: AMD uses LPDDR5, NVIDIA uses GDDR7.
Memory bus width: AMD uses 64 bit, NVIDIA uses 256 bit.
Memory bandwidth: AMD provides 51.20 GB/s, NVIDIA provides 896.0 GB/s.
Shading units: AMD has 256, NVIDIA has 8960.
TMUs: AMD has 16, NVIDIA has 280.
ROPs: AMD has 8, NVIDIA has 96.
Ray tracing cores: AMD has 4, NVIDIA has 70.
Tensor cores: AMD has none, NVIDIA has 280.
Pixel rate: AMD achieves 20.00 GPixel/s, NVIDIA achieves 235.4 GPixel/s.
Texture rate: AMD achieves 40.00 GTexel/s, NVIDIA achieves 686.6 GTexel/s.
FP32: AMD delivers 2.560 TFLOPS, NVIDIA delivers 43.94 TFLOPS.
FP16: AMD delivers 5.120 TFLOPS (2:1), NVIDIA delivers 43.94 TFLOPS (1:1).
TDP: AMD is 30 W, NVIDIA is 350 W.
Slot width: AMD has no recorded value, NVIDIA is dual-slot.
Power connectors: AMD has none, NVIDIA has 1x 16-pin.
Bus interface: AMD has no recorded value, NVIDIA uses PCIe 5.0 x16.
Display outputs: AMD has no outputs, NVIDIA has 1x HDMI 2.1b and 3x DisplayPort 2.1b.
Dimensions: AMD measures 280 mm length, 111 mm height, 21 mm width. NVIDIA measures 304 mm length, 137 mm height, 48 mm width.
Release date: AMD released 2023-09-17, NVIDIA releases 2025-12-31.
Launch MSRP: AMD is 599 USD, NVIDIA is 749 USD.
The Verdict
The data presents a clear functional split. The NVIDIA GeForce RTX 5070 Ti SUPER is a desktop-class graphics card designed for maximum performance, with the specifications to back it up. Its compute, memory bandwidth, and output capabilities place it in an entirely different performance tier. The single recorded benchmark score of 6269.5 in 3DMark Steel Nomad DX12, with an average score of 6270, shows a functional, measurable GPU that sits at the 36th percentile in the database.
The AMD Ryzen Z1 GPU, despite its 50th percentile rank, has zero recorded benchmark scores. Its specifications suggest a highly efficient, low-power part with a 30 W TDP and no display outputs. This indicates a specialized role, likely as an embedded or auxiliary compute device rather than a primary graphics solution. Its 16 GB of LPDDR5 memory and 51.20 GB/s bandwidth are minimal by desktop standards.
For a user requiring display output, high-resolution rendering, or ray tracing workloads, the RTX 5070 Ti SUPER is the only viable option between these two. Its 70 ray tracing cores, 280 tensor cores, and 43.94 TFLOPS FP32 performance provide the necessary headroom. The 16-pin power connector and 350 W TDP demand an adequate power supply, but the performance specifications justify the requirement.
For a user prioritizing minimal power draw, compact physical footprint, or silent operation, the Ryzen Z1 GPU's 30 W TDP and 4 nm process offer clear advantages. Its 178 mm² die and 21 mm thickness allow for space-constrained installations. However, the absence of display outputs and the lack of any recorded benchmark performance mean it cannot serve as a standalone graphics solution.
The launch MSRP difference is 150 USD, with the NVIDIA part at 749 USD and the AMD part at 599 USD. The performance gap is far larger than the price gap, but the power consumption gap is also far larger. The choice depends entirely on whether the use case demands desktop-class rendering capability or minimal power consumption.