NVIDIA RTX 2000 Mobile Ada Generation vs Lisuan Tech LX 7G100 Comparison
NVIDIA RTX 2000 Mobile Ada Generation
Lisuan Tech LX 7G100
Analysis: NVIDIA RTX 2000 Mobile Ada Generation vs Lisuan Tech LX 7G100
Head-to-Head Benchmarks
The database contains no direct head-to-head benchmark scores for the NVIDIA RTX 2000 Mobile Ada Generation and the Lisuan Tech LX 7G100. Both entries report zero benchmark results and neither has recorded nearest rival data. This means the comparison must be built entirely from the recorded specification fields, all of which are listed in the database.
The most significant performance gap appears in raw compute throughput. The Lisuan Tech LX 7G100 delivers 24.58 TFLOPS of FP32 performance, which is roughly 89% higher than the NVIDIA RTX 2000 Mobile Ada Generation's 12.99 TFLOPS. In FP16 workloads, the difference expands further because the Lisuan card uses a 2:1 ratio (49.15 TFLOPS) while the NVIDIA part runs FP16 at a 1:1 ratio (12.99 TFLOPS). That means the LX 7G100 offers nearly 3.8 times the FP16 throughput on paper.
Texture and pixel fill rates follow the same pattern. The LX 7G100 records 384.0 GTexel/s and 192.0 GPixel/s, while the RTX 2000 Mobile Ada Generation records 203.0 GTexel/s and 101.5 GPixel/s. The Lisuan part leads by about 89% in both metrics, consistent with its doubled shader count, TMU count, and ROP count.
Memory bandwidth heavily favors the LX 7G100 as well. The Lisuan card has a 192-bit bus with 12 GB of GDDR6 at 18 Gbps effective, producing 432.0 GB/s. The NVIDIA part uses a 128-bit bus with 8 GB of GDDR6 at 16 Gbps effective, producing 256.0 GB/s. That is a 68.75% bandwidth advantage for the LX 7G100.
FAQ
Q: Which GPU has higher FP32 compute performance?
A: The Lisuan Tech LX 7G100 records 24.58 TFLOPS, while the NVIDIA RTX 2000 Mobile Ada Generation records 12.99 TFLOPS. The Lisuan part is approximately 89% faster in this metric.
Q: How do the memory subsystems compare?
A: The LX 7G100 uses 12 GB of GDDR6 on a 192-bit bus with 432.0 GB/s bandwidth. The RTX 2000 Mobile Ada Generation uses 8 GB of GDDR6 on a 128-bit bus with 256.0 GB/s bandwidth. The Lisuan card has 50% more capacity and 68.75% more bandwidth.
Q: What is the difference in TDP?
A: The LX 7G100 has a TDP of 225 W and requires a 550 W suggested PSU. The RTX 2000 Mobile Ada Generation has a TDP of 50 W and no power connectors, as it is an integrated graphics package (IGP).
Q: Do both support DirectX 12 Ultimate?
A: Yes, both list DirectX 12 Ultimate (12_2) support. They also both support OpenGL 4.6. The Vulkan versions differ: the NVIDIA part supports Vulkan 1.4, while the Lisuan card supports Vulkan 1.3.
Q: Which GPU has more shading units?
A: The LX 7G100 has 6144 shading units, double the 3072 shading units found on the RTX 2000 Mobile Ada Generation. The Lisuan card also has 192 TMUs versus 96, and 96 ROPs versus 48.
Q: What are the physical dimensions of each card?
A: The LX 7G100 is a dual-slot card measuring 294 mm in length, 120 mm in height, and 49 mm in width, with 1x 8-pin power connector. The RTX 2000 Mobile Ada Generation is an IGP (integrated graphics package) with no listed dimensions and no power connectors.
Architecture Differences
The two GPUs come from entirely different architectural lineages. The NVIDIA RTX 2000 Mobile Ada Generation uses the AD107 chip built on Ada Lovelace architecture, manufactured by TSMC on a 5 nm process. The chip contains 18,900 million transistors on a 159 mm² die, yielding a transistor density of 118.9M per mm². It includes 24 RT cores and 96 tensor cores, which are dedicated hardware units for ray tracing and AI acceleration. The Lisuan Tech LX 7G100 uses the 7G106 chip based on a "TrueGPU" architecture, also manufactured by TSMC but on a 6 nm process. Its transistor count and die size are listed as unknown, and the database records no RT cores or tensor cores for this part.
The NVIDIA GPU belongs to the GeForce 20-series and the Ada-MW generation, with a predecessor listed as Ampere-MW and a successor as Blackwell-MW. It was released on 2023-03-20. The Lisuan card belongs to the 7G100 generation and has no predecessor or successor listed. Its release date is 2026-06-17.
The FP16 execution ratio highlights a fundamental design difference. The RTX 2000 Mobile Ada Generation runs FP16 at a 1:1 ratio with FP32, meaning both data types achieve the same 12.99 TFLOPS. The LX 7G100 runs FP16 at a 2:1 ratio, so its FP16 throughput doubles to 49.15 TFLOPS versus 24.58 TFLOPS FP32. This suggests the Lisuan architecture is designed to prioritize half-precision workloads.
API support also diverges slightly. Both support DirectX 12 Ultimate (12_2) and OpenGL 4.6, but the NVIDIA part supports Vulkan 1.4 while the Lisuan card supports Vulkan 1.3.
Specification Differences
| Field | NVIDIA RTX 2000 Mobile Ada Generation | Lisuan Tech LX 7G100 |
|---|---|---|
| Architecture | Ada Lovelace | TrueGPU |
| Process node | 5 nm | 6 nm |
| Die size | 159 mm² | Unknown |
| Transistors | 18,900 million | Unknown |
| Shading units | 3072 | 6144 |
| TMUs | 96 | 192 |
| ROPs | 48 | 96 |
| RT cores | 24 | None listed |
| Tensor cores | 96 | None listed |
| FP32 | 12.99 TFLOPS | 24.58 TFLOPS |
| FP16 | 12.99 TFLOPS (1:1) | 49.15 TFLOPS (2:1) |
| Memory | 8 GB GDDR6, 128-bit | 12 GB GDDR6, 192-bit |
| Memory bandwidth | 256.0 GB/s | 432.0 GB/s |
| TDP | 50 W | 225 W |
| Slot width | IGP | Dual-slot |
| Power connectors | None | 1x 8-pin |
| Suggested PSU | None | 550 W |
| Display outputs | Portable Device Dependent | 4x DisplayPort 1.4a |
| Vulkan | 1.4 | 1.3 |
| Release date | 2023-03-20 | 2026-06-17 |
Where Each One Wins
The NVIDIA RTX 2000 Mobile Ada Generation wins in power efficiency and form factor. Its 50 W TDP makes it suitable for compact, portable systems where the IGP slot width and lack of power connectors eliminate the need for external power cabling. The 5 nm process and 18,900 million transistors on a 159 mm² die indicate a dense, modern design. It also has dedicated RT cores and tensor cores, which are absent from the Lisuan card's listed specifications. For workloads that rely on ray tracing or AI acceleration, the NVIDIA part has the necessary hardware units. Its Vulkan 1.4 support is newer than the Lisuan card's Vulkan 1.3.
The Lisuan Tech LX 7G100 wins decisively in raw throughput across every measured compute and memory metric. Its FP32 performance is 89% higher, FP16 performance is 278% higher, texture rate is 89% higher, pixel rate is 89% higher, and memory bandwidth is 68.75% higher. It also offers 50% more memory capacity (12 GB versus 8 GB) and a wider 192-bit bus. The dual-slot design with 1x 8-pin power connector and 550 W suggested PSU indicates a desktop-oriented card with substantial cooling and power delivery. Its 4x DisplayPort 1.4a outputs provide direct multi-monitor connectivity, whereas the NVIDIA part's display outputs are listed as "Portable Device Dependent."
For tasks that stress shader count, fill rate, or memory bandwidth, the LX 7G100 is the clear choice based on the recorded numbers. For tasks that require ray tracing hardware, tensor core acceleration, or minimal power draw, the RTX 2000 Mobile Ada Generation is the only one of the two with those capabilities.
The Verdict
The database presents two GPUs with opposite design goals. The NVIDIA RTX 2000 Mobile Ada Generation is a low-power, integrated-class part built for portability, with a 50 W TDP, no power connectors, and an IGP slot width. Its 12.99 TFLOPS FP32 and 256.0 GB/s bandwidth are modest, but it includes RT cores, tensor cores, and Vulkan 1.4 support. It is an active product from a known lineage (GeForce 20-series, Ada-MW generation) with a release date of 2023-03-20.
The Lisuan Tech LX 7G100 is a high-power, dual-slot desktop card with a 225 W TDP, 1x 8-pin connector, and a 550 W suggested PSU. It doubles the shading units, TMUs, and ROPs, nearly doubles FP32 throughput, and provides substantially more memory and bandwidth. Its FP16 performance at 49.15 TFLOPS is 3.78 times the NVIDIA part's. The trade-off is the absence of listed RT cores and tensor cores, older Vulkan support (1.3), and a larger physical footprint.
Choosing between them depends entirely on the workload. The data shows the LX 7G100 is the stronger choice for compute-heavy tasks, high-resolution texturing, or any workload that scales with shader count, fill rate, or memory bandwidth. The RTX 2000 Mobile Ada Generation is the only option for ray tracing and tensor-accelerated workloads, and its low power envelope makes it viable for systems where a 225 W card with a 550 W PSU requirement cannot fit. The LX 7G100's release date of 2026-06-17 is also later, but the database provides no benchmark results for either part, so real-world performance differences beyond the listed specifications cannot be verified.