NVIDIA GeForce RTX 3050 A Mobile vs Lisuan Tech LX 7G100 Comparison
NVIDIA GeForce RTX 3050 A Mobile
Lisuan Tech LX 7G100
PERFORMANCE BENCHMARKS
Analysis: NVIDIA GeForce RTX 3050 A Mobile vs Lisuan Tech LX 7G100
Head-to-Head Benchmarks
The recorded database contains no direct head-to-head benchmark results between the NVIDIA GeForce RTX 3050 A Mobile and the Lisuan Tech LX 7G100. The RTX 3050 A Mobile has eight logged benchmark scores, while the LX 7G100 has no benchmark entries. This absence of comparative data means the performance relationship must be inferred from architectural specifications and the RTX 3050 A Mobile's position among its nearest rivals.
The RTX 3050 A Mobile's average benchmark score is 8746, placing it at the 44th percentile among all GPUs. Its nearest rival, the NVIDIA GeForce GTX 460 v2, scores 8743, a delta of 0 percent. The AMD Radeon R9 M265X scores 8851, which is 1.2 percent higher. The AMD Radeon Pro WX 5100 scores 8863, 1.3 percent higher. The NVIDIA Quadro P2200 scores 8686, 0.7 percent lower. These deltas indicate the RTX 3050 A Mobile sits in a narrow competitive band, within roughly 1.3 percent of its closest peers.
The LX 7G100 shows an average benchmark score of 0 with a 50th percentile ranking. No rival data exists for it. The RTX 3050 A Mobile's individual benchmark results include a Geekbench OpenCL score of 52998, a Passmark G3D score of 11664, a Passmark G2D score of 526, a Passmark GPU Compute score of 4419, and DirectX scores of 152 (DX9), 94 (DX11), 61 (DX10), and 55 (DX12). These figures establish a baseline for the RTX 3050 A Mobile, but they cannot be compared against the LX 7G100 directly.
Architecture Differences
The two GPUs diverge fundamentally in their underlying architectures. The NVIDIA GeForce RTX 3050 A Mobile uses the GA106 chip built on the Ampere architecture, manufactured by Samsung on an 8 nm process. The Lisuan Tech LX 7G100 uses the 7G106 chip with a "TrueGPU" architecture, fabricated by TSMC on a 6 nm process. The process node difference, 8 nm versus 6 nm, indicates a generational manufacturing advantage for the LX 7G100, though transistor counts and die sizes for the LX 7G100 are listed as unknown.
The RTX 3050 A Mobile contains 12,000 million transistors on a 276 mm² die, yielding a transistor density of 43.5 million per mm². The LX 7G100's transistor data is not recorded. Clock behavior also differs sharply. The RTX 3050 A Mobile has base and boost clocks of 1065 MHz and 1343 MHz respectively, while the LX 7G100 lists no base or boost clocks at all. Memory clocks diverge as well: the RTX 3050 A Mobile runs at 1500 MHz with 12 Gbps effective, while the LX 7G100 runs at 2250 MHz with 18 Gbps effective.
The LX 7G100 uses a TrueGPU architecture with no listed RT cores or tensor cores, whereas the RTX 3050 A Mobile includes 14 RT cores and 56 tensor cores. Both support DirectX 12 Ultimate (12_2) and OpenGL 4.6, but the RTX 3050 A Mobile supports Vulkan 1.4 while the LX 7G100 supports Vulkan 1.3. The LX 7G100's TrueGPU architecture and lack of dedicated ray tracing and tensor hardware suggest a different design philosophy focused on raw compute throughput rather than specialized acceleration paths.
FAQ
Q: Which GPU has more shading units?
A: The Lisuan Tech LX 7G100 has 6144 shading units, while the NVIDIA GeForce RTX 3050 A Mobile has 1792 shading units.
Q: How do the memory subsystems compare?
A: The LX 7G100 provides 12 GB of GDDR6 memory on a 192-bit bus with 432.0 GB/s bandwidth. The RTX 3050 A Mobile provides 4 GB of GDDR6 memory on a 128-bit bus with 192.0 GB/s bandwidth.
Q: What are the power requirements for each card?
A: The RTX 3050 A Mobile has a 45 W TDP with no power connectors and an IGP slot width. The LX 7G100 has a 225 W TDP, a dual-slot design, one 8-pin power connector, and a suggested PSU of 550 W.
Q: Which card has a higher pixel fill rate?
A: The LX 7G100 delivers 192.0 GPixel/s, substantially higher than the RTX 3050 A Mobile's 42.98 GPixel/s.
Q: What is the production status of each GPU?
A: The RTX 3050 A Mobile is end-of-life, released in 2023, while the LX 7G100 is active, with a release date in 2026.
Q: Do both cards support the same DirectX version?
A: Yes, both support DirectX 12 Ultimate (12_2). They also both support OpenGL 4.6, but differ in Vulkan support: the RTX 3050 A Mobile supports Vulkan 1.4, while the LX 7G100 supports Vulkan 1.3.
Specification Differences
| Specification | NVIDIA GeForce RTX 3050 A Mobile | Lisuan Tech LX 7G100 |
|---------------|---------------------------------|----------------------|
| Architecture | Ampere | TrueGPU |
| Process Node | 8 nm | 6 nm |
| Foundry | Samsung | TSMC |
| Transistors | 12,000 million | Unknown |
| Die Size | 276 mm² | Unknown |
| Base Clock | 1065 MHz | Not listed |
| Boost Clock | 1343 MHz | Not listed |
| Memory Clock | 1500 MHz, 12 Gbps effective | 2250 MHz, 18 Gbps effective |
| Memory Size | 4 GB | 12 GB |
| Memory Bus Width | 128 bit | 192 bit |
| Memory Bandwidth | 192.0 GB/s | 432.0 GB/s |
| Shading Units | 1792 | 6144 |
| TMUs | 56 | 192 |
| ROPs | 32 | 96 |
| RT Cores | 14 | Not listed |
| Tensor Cores | 56 | Not listed |
| Pixel Rate | 42.98 GPixel/s | 192.0 GPixel/s |
| Texture Rate | 75.21 GTexel/s | 384.0 GTexel/s |
| FP32 | 4.813 TFLOPS | 24.58 TFLOPS |
| FP16 | 4.813 TFLOPS (1:1) | 49.15 TFLOPS (2:1) |
| TDP | 45 W | 225 W |
| Slot Width | IGP | Dual-slot |
| Power Connectors | None | 1x 8-pin |
| Suggested PSU | Not listed | 550 W |
| Bus Interface | PCIe 4.0 x8 | PCIe 4.0 x16 |
| Display Outputs | Portable Device Dependent | 4x DisplayPort 1.4a |
| Vulkan | 1.4 | 1.3 |
| Production Status | End-of-life | Active |
| Release Date | 2023 | 2026 |
| Dimensions (Length) | Not listed | 294 mm (11.6 inches) |
Where Each One Wins
The NVIDIA GeForce RTX 3050 A Mobile wins on integration and efficiency. Its 45 W TDP, IGP slot width, and lack of power connectors make it suitable for portable devices where space and thermal budgets are constrained. Its PCIe 4.0 x8 interface, while narrower than the LX 7G100's x16 link, aligns with its mobile positioning. The RTX 3050 A Mobile also includes 14 RT cores and 56 tensor cores, providing hardware acceleration for ray tracing and AI workloads that the LX 7G100 lacks entirely. Its Vulkan 1.4 support is a minor version advantage over the LX 7G100's Vulkan 1.3.
The Lisuan Tech LX 7G100 wins decisively on raw compute and memory capacity. Its FP32 throughput of 24.58 TFLOPS is over five times the RTX 3050 A Mobile's 4.813 TFLOPS. Its FP16 output of 49.15 TFLOPS (2:1 ratio) dwarfs the RTX 3050 A Mobile's 4.813 TFLOPS (1:1 ratio). The LX 7G100's 12 GB memory capacity, 192-bit bus, and 432.0 GB/s bandwidth provide triple the memory size and over double the bandwidth of the RTX 3050 A Mobile. Its texture rate of 384.0 GTexel/s and pixel rate of 192.0 GPixel/s are both roughly five times higher. The LX 7G100 also offers a wider PCIe 4.0 x16 interface and four DisplayPort 1.4a outputs, enabling multi-display desktop configurations. Its 6 nm TSMC process node represents a manufacturing advantage over the 8 nm Samsung node used by the RTX 3050 A Mobile.
The Verdict
The data clearly separates these two GPUs by design intent. The NVIDIA GeForce RTX 3050 A Mobile, released in 2023 and now end-of-life, is a low-power mobile part with a 45 W TDP, no external power requirement, and an integrated form factor. Its 4 GB memory and 192.0 GB/s bandwidth are modest, but its inclusion of RT cores and tensor cores provides feature parity with modern graphics APIs. Its benchmark average of 8746 places it at the 44th percentile, with nearest rivals within a 1.3 percent performance band.
The Lisuan Tech LX 7G100, released in 2026 and still active, is a high-power desktop card with a 225 W TDP, dual-slot cooler, and 550 W suggested PSU. Its 12 GB memory, 432.0 GB/s bandwidth, and 24.58 TFLOPS FP32 throughput position it as a substantially more capable compute device. The lack of RT and tensor cores means it sacrifices specialized acceleration, but its raw shading throughput, texture rate, and pixel rate are all roughly five times higher than the RTX 3050 A Mobile's figures.
For portable systems requiring hardware ray tracing and tensor acceleration within a 45 W envelope, the RTX 3050 A Mobile is the only viable option between these two. For desktop workloads demanding maximum compute throughput, memory capacity, and bandwidth, the LX 7G100 is the clear choice. The absence of benchmark scores for the LX 7G100 means its real-world performance cannot be quantified in this database, but its specification sheet indicates a fundamentally different performance class. The RTX 3050 A Mobile's nearest rivals, all within 1.3 percent of its average score, confirm it operates in the lower mid-range, while the LX 7G100's specifications point to a higher-tier position despite its 50th percentile ranking being unverified by recorded measurements.