NVIDIA GeForce RTX 4060 vs Lisuan Tech LX 7G100 Comparison

NVIDIA
GEFORCE

NVIDIA GeForce RTX 4060

CORE STATE AD107
VRAM 8 GB
CLOCK SPEED 2460 MHz
TDP 115 W
BUS WIDTH 128 bit
ARCHITECTURE Ada Lovelace
nm
PROCESS 5 nm
LAUNCH DATE 2023
VS
Unknown
GPU

Lisuan Tech LX 7G100

CORE STATE 7G106
VRAM 12 GB
CLOCK SPEED
TDP 225 W
BUS WIDTH 192 bit
ARCHITECTURE TrueGPU
nm
PROCESS 6 nm
LAUNCH DATE 2026

PERFORMANCE BENCHMARKS

3dmark_3dmark_steel_nomad_dx12
2,302
N/A
geekbench_opencl
95,057
N/A
geekbench_vulkan
48,643
N/A
passmark_directx_10
103
N/A
passmark_directx_11
175
N/A
passmark_directx_12
76
N/A
passmark_directx_9
236
N/A
passmark_g2d
1,037
N/A
passmark_g3d
19,545
N/A
passmark_gpu_compute
9,213
N/A

Analysis: NVIDIA GeForce RTX 4060 vs Lisuan Tech LX 7G100

NVIDIA GeForce RTX 4060 vs Lisuan Tech LX 7G100

The database records the NVIDIA GeForce RTX 4060 with an average benchmark score of 17,639 and a percentile rank of 61 among all GPUs, while the Lisuan Tech LX 7G100 holds a percentile rank of 50 with no recorded benchmark scores and an average score of 0. The head-to-head benchmark table is empty, meaning no direct comparison tests exist between these two cards. This analysis relies on the recorded specifications, architectural features, and the RTX 4060’s nearest rival data to interpret what the numbers imply about relative performance, power, and suitability for different workloads.

Head-to-Head Benchmarks

No direct head-to-head benchmark results are recorded for the NVIDIA GeForce RTX 4060 and the Lisuan Tech LX 7G100. The database shows zero wins for either card in head-to-head tests, and the benchmark list for the LX 7G100 is empty. For the RTX 4060, the recorded scores include 3DMark Steel Nomad DX12 at 2,302, Geekbench OpenCL at 95,057, Geekbench Vulkan at 48,643, Passmark DirectX 10 at 103, DirectX 11 at 175, DirectX 12 at 76, DirectX 9 at 236, G2D at 1,037, G3D at 19,545, and GPU Compute at 9,213. These figures provide a baseline for the RTX 4060’s capabilities, but they cannot be compared directly to the LX 7G100 because the latter has no recorded tests.

The nearest rivals for the RTX 4060, based on average score, are the AMD Radeon HD 7790 with an average score of 17,666 and a delta of -0.2 percent, the AMD Radeon 780M at 17,588 with a delta of 0.3 percent, the AMD Radeon Pro 560 at 17,551 with a delta of 0.5 percent, and the AMD Radeon Pro 460 at 17,509 with a delta of 0.7 percent. The RTX 4060’s average score of 17,639 places it nearly identical to the HD 7790, trailing by only 0.2 percent, while it leads the 780M by 0.3 percent, the Pro 560 by 0.5 percent, and the Pro 460 by 0.7 percent. These deltas are small, indicating that the RTX 4060 sits in a tight performance cluster with these older or integrated solutions, despite being a much newer discrete card with higher raw specifications.

For the LX 7G100, the absence of benchmarks means no nearest rivals are listed, no percentile delta can be computed, and no score-based conclusions can be drawn. The recorded data shows its percentile rank at 50, which is below the RTX 4060’s 61, but without scores this rank likely reflects the lack of testing rather than measured performance. The difference in average benchmark score, 17,639 for the RTX 4060 versus 0 for the LX 7G100, is stark but uninformative for direct comparison since the latter has no data. The specifications suggest the LX 7G100 should outperform in raw throughput, but that remains unverified by any recorded test.

Where Each One Wins

Based on recorded specifications, the Lisuan Tech LX 7G100 holds clear theoretical advantages in several compute-oriented areas. Its FP32 throughput is listed at 24.58 TFLOPS, which is 62.7 percent higher than the RTX 4060’s 15.11 TFLOPS. The FP16 rate is even more lopsided: the LX 7G100 delivers 49.15 TFLOPS with a 2:1 ratio, while the RTX 4060 offers 15.11 TFLOPS at a 1:1 ratio, meaning the LX 7G100 has 3.25 times the FP16 throughput. Texture rate follows the same pattern, with the LX 7G100 at 384.0 GTexel/s versus 236.2 GTexel/s for the RTX 4060, a 62.6 percent lead. Pixel rate also favors the LX 7G100 at 192.0 GPixel/s compared to 118.1 GPixel/s, a 62.5 percent advantage.

Memory bandwidth is another clear win for the LX 7G100. It uses a 192-bit bus with 12 GB of GDDR6 memory at 18 Gbps effective, yielding 432.0 GB/s. The RTX 4060 has an 8 GB GDDR6 memory on a 128-bit bus at 17 Gbps effective, producing 272.0 GB/s. The LX 7G100 thus offers 58.8 percent more bandwidth and 50 percent more memory capacity, which should benefit high-resolution textures and large data sets. Shading units, texture mapping units, and raster output units all favor the LX 7G100: 6,144 shading units versus 3,072, 192 TMUs versus 96, and 96 ROPs versus 48, each exactly double.

The NVIDIA GeForce RTX 4060, however, has features the LX 7G100 lacks in the recorded data. The RTX 4060 includes 24 ray tracing cores and 96 tensor cores, while the LX 7G100 lists null values for both, meaning no ray tracing or tensor core hardware is recorded. The RTX 4060 also supports Vulkan 1.4, while the LX 7G100 is listed with Vulkan 1.3. The RTX 4060 has a higher boost clock at 2460 MHz versus no recorded boost clock for the LX 7G100, though the base clock for the RTX 4060 is 1830 MHz. The RTX 4060’s power draw is lower at 115 W TDP compared to 225 W for the LX 7G100, and its suggested PSU is 300 W versus 550 W. The RTX 4060 uses a single 12-pin power connector, while the LX 7G100 uses a single 8-pin.

For workloads like ray tracing, DLSS-style tensor operations, or Vulkan 1.4 features, the RTX 4060 has the hardware advantage. For pure rasterization throughput, memory bandwidth, and FP16 compute, the LX 7G100’s specifications indicate a win, assuming the architecture delivers on those numbers. The RTX 4060’s recorded benchmark scores, such as Geekbench Vulkan at 48,643 and Passmark G3D at 19,545, provide real-world confirmation of its performance, but no such confirmation exists for the LX 7G100.

Architecture Differences

The NVIDIA GeForce RTX 4060 uses the AD107 chip built on the Ada Lovelace architecture, fabricated by TSMC on a 5 nm process node. The chip contains 18,900 million transistors on a die size of 159 mm², giving a transistor density of 118.9 million per mm². The Lisuan Tech LX 7G100 uses the 7G106 chip on a TrueGPU architecture, also fabricated by TSMC but on a 6 nm process node. Its transistor count and die size are recorded as unknown, and transistor density is null. The process node difference, 5 nm versus 6 nm, suggests the RTX 4060 uses a more advanced manufacturing process, which could explain its lower power draw of 115 W versus 225 W despite having roughly half the shading units.

The Ada Lovelace architecture is designed around a 1:1 FP32 to FP16 ratio, meaning each FP32 unit can also perform FP16 at the same rate. This is reflected in the RTX 4060’s FP16 score of 15.11 TFLOPS, identical to its FP32. The TrueGPU architecture on the LX 7G100 uses a 2:1 FP16 to FP32 ratio, allowing FP16 at 49.15 TFLOPS while FP32 remains at 24.58 TFLOPS. This suggests the TrueGPU is optimized for workloads that benefit from half-precision math, such as machine learning inference or certain graphics effects, but it may sacrifice FP32 efficiency.

Ray tracing and tensor support differ sharply. The RTX 4060 has 24 dedicated ray tracing cores and 96 tensor cores, integrated into the Ada Lovelace design. The LX 7G100 lists null values for both, which could mean the hardware does not include dedicated units for these tasks, relying instead on general compute shaders. The RTX 4060 supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.4, while the LX 7G100 also supports DirectX 12 Ultimate (12_2) and OpenGL 4.6 but only Vulkan 1.3. The Vulkan version difference indicates the RTX 4060 has access to newer API features.

The memory subsystem also reflects architectural choices. The RTX 4060 uses a 128-bit memory bus with 8 GB of GDDR6, while the LX 7G100 uses a 192-bit bus with 12 GB. The wider bus on the LX 7G100 allows for higher bandwidth at the same memory clock, and its memory clock is also higher at 2250 MHz versus 2125 MHz for the RTX 4060. The effective data rates are 18 Gbps versus 17 Gbps, respectively. The LX 7G100’s larger memory capacity and bandwidth suggest an architecture designed for memory-heavy workloads like large render scenes or high-resolution texture packs.

Specification Differences

The two cards differ in nearly every recorded specification field. The RTX 4060 has a base clock of 1830 MHz and a boost clock of 2460 MHz, while the LX 7G100 has no recorded base or boost clocks. Memory clock for the RTX 4060 is 2125 MHz with 17 Gbps effective, while the LX 7G100 runs at 2250 MHz with 18 Gbps effective. Memory size is 8 GB versus 12 GB, and bus width is 128-bit versus 192-bit, leading to bandwidth of 272.0 GB/s versus 432.0 GB/s.

Shading units number 3,072 on the RTX 4060 versus 6,144 on the LX 7G100. Texture mapping units are 96 versus 192, and raster output units are 48 versus 96. The RTX 4060 has 24 ray tracing cores and 96 tensor cores, while the LX 7G100 has none recorded. Pixel rate is 118.1 GPixel/s for the RTX 4060 and 192.0 GPixel/s for the LX 7G100. Texture rate is 236.2 GTexel/s versus 384.0 GTexel/s. FP32 is 15.11 TFLOPS versus 24.58 TFLOPS, and FP16 is 15.11 TFLOPS (1:1) versus 49.15 TFLOPS (2:1).

Power draw differs significantly: the RTX 4060 has a TDP of 115 W, while the LX 7G100 has a TDP of 225 W. The suggested PSU is 300 W for the RTX 4060 and 550 W for the LX 7G100. Power connectors are a single 12-pin for the RTX 4060 and a single 8-pin for the LX 7G100. Both are dual-slot cards, but dimensions vary: the RTX 4060 is 240 mm long, 111 mm high, and 40 mm wide, while the LX 7G100 is 294 mm long, 120 mm high, and 49 mm wide. The bus interface is PCIe 4.0 x8 for the RTX 4060 and PCIe 4.0 x16 for the LX 7G100.

Display outputs also differ: the RTX 4060 has one HDMI 2.1 and three DisplayPort 1.4a outputs, while the LX 7G100 has four DisplayPort 1.4a outputs with no HDMI. The RTX 4060 supports Vulkan 1.4, while the LX 7G100 supports Vulkan 1.3. Both support DirectX 12 Ultimate (12_2) and OpenGL 4.6. The RTX 4060 has a launch MSRP of 299 USD, while the LX 7G100 has no launch MSRP recorded. The RTX 4060 is listed as end-of-life with a release date of 2023-05-17, while the LX 7G100 is active with a release date of 2026-06-17.

FAQ

Q: Which card has higher FP32 compute performance?

A: The Lisuan Tech LX 7G100 has a higher FP32 throughput at 24.58 TFLOPS, compared to the NVIDIA GeForce RTX 4060’s 15.11 TFLOPS. This represents a 62.7 percent advantage for the LX 7G100.

Q: Does the RTX 4060 support ray tracing hardware?

A: Yes, the RTX 4060 includes 24 ray tracing cores and 96 tensor cores. The LX 7G100 lists null values for both, indicating no dedicated ray tracing or tensor core hardware in the recorded data.

Q: How does memory bandwidth compare between the two cards?

A: The LX 7G100 has a memory bandwidth of 432.0 GB/s, which is 58.8 percent higher than the RTX 4060’s 272.0 GB/s. The LX 7G100 also has 12 GB of memory versus 8 GB on the RTX 4060, and a 192-bit bus versus 128-bit.

Q: What is the power draw difference?

A: The RTX 4060 has a TDP of 115 W, while the LX 7G100 has a TDP of 225 W. The suggested PSU for the RTX 4060 is 300 W, while the LX 7G100 requires a 550 W PSU.

Q: Which card has a higher average benchmark score?

A: The RTX 4060 has an average benchmark score of 17,639, while the LX 7G100 has an average score of 0 because no benchmarks are recorded for it. The RTX 4060 also has a percentile rank of 61, compared to 50 for the LX 7G100.

Q: Are both cards compatible with DirectX 12 Ultimate?

A: Yes, both the RTX 4060 and the LX 7G100 support DirectX 12 Ultimate (12_2) and OpenGL 4.6. They differ in Vulkan support, with the RTX 4060 at version 1.4 and the LX 7G100 at version 1.3.

The Verdict

The recorded data shows a clear split: the Lisuan Tech LX 7G100 dominates in raw compute, memory, and throughput specifications, while the NVIDIA GeForce RTX 4060 offers features the LX 7G100 lacks, plus verified benchmark scores. The LX 7G100’s FP32 at 24.58 TFLOPS, FP16 at 49.15 TFLOPS, texture rate at 384.0 GTexel/s, pixel rate at 192.0 GPixel/s, and bandwidth at 432.0 GB/s all exceed the RTX 4060’s corresponding figures by significant margins. Its 12 GB memory capacity and 192-bit bus provide a substantial advantage for memory-intensive tasks. However, the absence of any benchmark scores for the LX 7G100 means these specifications remain unvalidated in practice.

The RTX 4060, by contrast, has a full set of recorded benchmarks, including a 3DMark Steel Nomad DX12 score of 2,302 and a Geekbench Vulkan score of 48,643. Its nearest rivals, the AMD Radeon HD 7790, 780M, Pro 560, and Pro 460, all score within 0.7 percent of the RTX 4060, indicating that its real-world performance is well understood. The RTX 4060 also includes 24 ray tracing cores and 96 tensor cores, which the LX 7G100 does not list, and supports Vulkan 1.4 versus 1.3.

For users who prioritize ray tracing, tensor-based features, or lower power consumption, the RTX 4060 is the only card with recorded support for those capabilities. Its 115 W TDP and 300 W suggested PSU are far more modest than the LX 7G100’s 225 W and 550 W. For users who need maximum FP32 or FP16 throughput, higher memory bandwidth, or larger memory capacity, the LX 7G100’s specifications point to it as the stronger candidate, assuming the TrueGPU architecture delivers on its listed numbers. The RTX 4060 is end-of-life, while the LX 7G100 is active, suggesting the latter has ongoing support. The data does not confirm the LX 7G100’s performance, so any choice between them hinges on whether verified benchmarks or unverified specifications carry more weight in the decision.

DETAILED SPECIFICATIONS

SPECIFICATION
RTX 4060
Lisuan Tech LX 7G100
Core Specs
Shading Units
3,072
6,144 +100.0%
Shaders
3,072
6,144 +100.0%
TMUs
96
192 +100.0%
ROPs
48
96 +100.0%
Compute Units
48
SM Count
24
Clocks
Base Clock
1830 MHz
Boost Clock
2460 MHz
GPU Clock
2000 MHz
Memory Clock
2125 MHz 17 Gbps effective
2250 MHz 18 Gbps effective
Memory
Memory Size
8 GB
12 GB
VRAM (MB)
8,192
12,288 +50.0%
Memory Type
GDDR6
GDDR6
Memory Bus
128 bit
192 bit
Bandwidth
272.0 GB/s
432.0 GB/s
Cache
L1 Cache
128 KB (per SM)
L2 Cache
24 MB
8 MB
Performance
Pixel Rate
118.1 GPixel/s
192.0 GPixel/s
Texture Rate
236.2 GTexel/s
384.0 GTexel/s
FP32 (TFLOPS)
15.11 TFLOPS
24.58 TFLOPS
FP64 (TFLOPS)
236.2 GFLOPS (1:64)
768.0 GFLOPS (1:32)
FP16 (TFLOPS)
15.11 TFLOPS (1:1)
49.15 TFLOPS (2:1)
AI/RT
RT Cores
24
Tensor Cores
96
Power
TDP
115 W
225 W
TDP (W)
115
225 +95.7%
Suggested PSU
300 W
550 W
Power Connectors
1x 12-pin
1x 8-pin
Architecture
Architecture
Ada Lovelace
TrueGPU
GPU Name
AD107
7G106
Generation
GeForce 40
7G100
Process Size
5 nm
6 nm
Transistors
18,900 million
unknown
Die Size
159 mm²
unknown
Foundry
TSMC
TSMC
Density
118.9M / mm²
API Support
DirectX
12 Ultimate (12_2)
12 Ultimate (12_2)
OpenGL
4.6
4.6
Vulkan
1.4
1.3
OpenCL
3.0
3.0
CUDA
8.9
Shader Model
6.8
6.8
Physical
Slot Width
Dual-slot
Dual-slot
Length
240 mm 9.4 inches
294 mm 11.6 inches
Height
111 mm 4.4 inches
120 mm 4.7 inches
Outputs
1x HDMI 2.13x DisplayPort 1.4a
4x DisplayPort 1.4a
Bus Interface
PCIe 4.0 x8
PCIe 4.0 x16
Other
Launch Price
299 USD
Production
End-of-life
Active
Predecessor
GeForce 30
Successor
GeForce 50
View GeForce RTX 4060 Details View Lisuan Tech LX 7G100 Details