NVIDIA GeForce RTX 4060 AD106 vs Lisuan Tech LX 7G100 Comparison

NVIDIA
GEFORCE

NVIDIA GeForce RTX 4060 AD106

CORE STATE AD106
VRAM 8 GB
CLOCK SPEED 2460 MHz
TDP 115 W
BUS WIDTH 128 bit
ARCHITECTURE Ada Lovelace
nm
PROCESS 5 nm
LAUNCH DATE 2024
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

Analysis: NVIDIA GeForce RTX 4060 AD106 vs Lisuan Tech LX 7G100

Head-to-Head Benchmarks

The database records no head-to-head benchmark scores for the NVIDIA GeForce RTX 4060 AD106 and the Lisuan Tech LX 7G100. Both cards carry identical percentile rankings against all GPUs, with each sitting at the 50th percentile. Their average benchmark scores are also listed as zero, meaning no measured performance data separates them in the current records.

What can be compared directly are the theoretical throughput figures recorded in the database. The Lisuan Tech LX 7G100 delivers 24.58 TFLOPS of FP32 compute, which is 9.47 TFLOPS higher than the RTX 4060's 15.11 TFLOPS. That places the LX 7G100 roughly 62.7% ahead in raw single-precision floating-point throughput. In FP16 workloads, the gap widens further: the LX 7G100 reaches 49.15 TFLOPS with a 2:1 ratio, while the RTX 4060 manages 15.11 TFLOPS with a 1:1 ratio. The Lisuan card therefore provides more than triple the FP16 throughput, a substantial advantage for workloads that can exploit mixed-precision or half-precision math.

Pixel and texture rates follow the same pattern. The LX 7G100 records a pixel rate of 192.0 GPixel/s versus 118.1 GPixel/s for the RTX 4060, a difference of 73.9 GPixel/s. Texture rate shows 384.0 GTexel/s against 236.2 GTexel/s, a 147.8 GTexel/s advantage for the Lisuan product. These figures stem directly from the larger execution resources: the LX 7G100 uses 6144 shading units, 192 TMUs, and 96 ROPs, while the RTX 4060 uses 3072 shading units, 96 TMUs, and 48 ROPs. Every execution unit count on the Lisuan card is exactly double that of the NVIDIA part.

Memory bandwidth also favors the LX 7G100. The Lisuan card uses a 192-bit bus with 12 GB of GDDR6 at 2250 MHz, yielding 432.0 GB/s. The RTX 4060 uses a 128-bit bus with 8 GB of GDDR6 at 2125 MHz, yielding 272.0 GB/s. That is a 160.0 GB/s bandwidth advantage, or roughly 58.8% higher. The memory clock on the LX 7G100 runs at 2250 MHz (18 Gbps effective) versus 2125 MHz (17 Gbps effective) on the RTX 4060.

The only area where the RTX 4060 shows a clear specification advantage is in ray tracing and tensor hardware. The NVIDIA card includes 24 RT cores and 96 tensor cores, while the LX 7G100 lists no RT cores and no tensor cores in the database. The RTX 4060 also supports Vulkan 1.4, whereas the LX 7G100 lists Vulkan 1.3. Both cards support DirectX 12 Ultimate (12_2) and OpenGL 4.6.

Power characteristics differ substantially. The RTX 4060 has a 115 W TDP with a suggested 300 W PSU and a single 12-pin connector. The LX 7G100 has a 225 W TDP with a suggested 550 W PSU and a single 8-pin connector. The Lisuan card draws nearly double the power budget, consistent with its doubled execution resource counts and higher throughput figures.

The Verdict

The recorded data splits the two cards into distinct roles. The Lisuan Tech LX 7G100 is the stronger choice for raw compute throughput, memory capacity, and memory bandwidth. Its 24.58 TFLOPS FP32, 49.15 TFLOPS FP16, 12 GB VRAM, and 432.0 GB/s bandwidth make it the clear leader in general-purpose GPU compute and memory-heavy workloads. The 6 nm process node and TSMC foundry are shared with the RTX 4060's 5 nm TSMC process, though the exact transistor counts and die sizes for the LX 7G100 are not recorded.

The NVIDIA GeForce RTX 4060 AD106 holds the advantage only where specialized hardware exists. Its 24 RT cores and 96 tensor cores provide dedicated acceleration for ray tracing and tensor operations, features the LX 7G100 does not list. The RTX 4060 also runs at a much lower 115 W TDP, making it the more power-efficient option, and it uses a smaller 188 mm² die on a 5 nm process with 22,900 million transistors. The LX 7G100's die size and transistor count are unknown, so no density comparison is possible.

Users who prioritize FP32 or FP16 throughput, larger frame buffers, or higher memory bandwidth should select the LX 7G100. Users who need ray tracing acceleration, tensor core functionality, or lower power draw should select the RTX 4060 AD106. The LX 7G100 is actively in production, while the RTX 4060 is listed as end-of-life. The RTX 4060's release date is recorded as March 2024, and the LX 7G100's release date is recorded as June 2026.

FAQ

Q: Which card has higher FP32 compute performance?

A: The Lisuan Tech LX 7G100, with 24.58 TFLOPS versus 15.11 TFLOPS for the NVIDIA GeForce RTX 4060 AD106.

Q: How much memory bandwidth does each card provide?

A: The LX 7G100 provides 432.0 GB/s over a 192-bit bus, while the RTX 4060 provides 272.0 GB/s over a 128-bit bus.

Q: Does the LX 7G100 have ray tracing cores?

A: No. The database lists no RT cores for the LX 7G100. The RTX 4060 AD106 includes 24 RT cores.

Q: What are the memory sizes and types?

A: The LX 7G100 uses 12 GB of GDDR6, and the RTX 4060 uses 8 GB of GDDR6.

Q: Which card has a higher TDP?

A: The LX 7G100 has a 225 W TDP, compared to 115 W for the RTX 4060. The suggested PSU is 550 W for the LX 7G100 and 300 W for the RTX 4060.

Q: What process nodes are used?

A: Both use TSMC fabrication. The RTX 4060 uses a 5 nm process, and the LX 7G100 uses a 6 nm process.

Specification Differences

The two cards differ across nearly every recorded specification. The RTX 4060 AD106 uses 3072 shading units, 96 TMUs, and 48 ROPs. The LX 7G100 uses 6144 shading units, 192 TMUs, and 96 ROPs, exactly doubling each count. The RTX 4060 has 24 RT cores and 96 tensor cores; the LX 7G100 lists neither.

Memory configuration diverges completely. The RTX 4060 has 8 GB GDDR6 on a 128-bit bus with 272.0 GB/s. The LX 7G100 has 12 GB GDDR6 on a 192-bit bus with 432.0 GB/s. Memory clock runs at 2125 MHz (17 Gbps effective) on the RTX 4060 and 2250 MHz (18 Gbps effective) on the LX 7G100.

Clocks and power also differ. The RTX 4060 has a base clock of 1830 MHz and a boost clock of 2460 MHz; the LX 7G100 has no base or boost clock recorded. The RTX 4060 has a 115 W TDP with a 300 W suggested PSU and a 1x 12-pin connector. The LX 7G100 has a 225 W TDP with a 550 W suggested PSU and a 1x 8-pin connector.

Bus interface and display outputs differ as well. The RTX 4060 uses PCIe 4.0 x8 with 1x HDMI 2.1 and 3x DisplayPort 1.4a. The LX 7G100 uses PCIe 4.0 x16 with 4x DisplayPort 1.4a. Physical dimensions are recorded only for the LX 7G100: 294 mm length, 120 mm height, and 49 mm width. Both cards are dual-slot designs.

API support shows one difference: 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.

Architecture Differences

The RTX 4060 AD106 is built on the Ada Lovelace architecture, a 5 nm TSMC design with 22,900 million transistors on a 188 mm² die. This yields a transistor density of 121.8M per mm². The LX 7G100 uses the TrueGPU architecture on a 6 nm TSMC process, with transistor count, die size, and density all listed as unknown.

The execution pipeline differs in scale. The LX 7G100 doubles the shading units, TMUs, and ROPs of the RTX 4060. The RTX 4060 includes dedicated RT cores and tensor cores, which the LX 7G100 does not list. The FP16 compute ratio also differs: the RTX 4060 has a 1:1 FP16 to FP32 ratio, while the LX 7G100 has a 2:1 ratio, meaning its FP16 throughput is double its FP32 throughput.

The production status and release timeline differ. The RTX 4060 is end-of-life, released in 2024, with a predecessor in the GeForce 30 series and a successor in the GeForce 50 series. The LX 7G100 is active, released in 2026, with no predecessor or successor recorded. The RTX 4060 belongs to the GeForce 40-series generation, while the LX 7G100 belongs to the 7G100 generation.

The memory subsystem architecture also differs. The LX 7G100 uses a wider 192-bit bus and higher memory clock, resulting in 432.0 GB/s bandwidth. The RTX 4060 uses a narrower 128-bit bus with a lower memory clock, resulting in 272.0 GB/s. The LX 7G100's larger 12 GB frame buffer provides more capacity for large datasets or high-resolution textures, while the RTX 4060's 8 GB is more constrained in that respect.

DETAILED SPECIFICATIONS

SPECIFICATION
RTX 4060 AD106
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
AD106
7G106
Generation
GeForce 40
7G100
Process Size
5 nm
6 nm
Transistors
22,900 million
unknown
Die Size
188 mm²
unknown
Foundry
TSMC
TSMC
Density
121.8M / 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
6.9
6.8
Physical
Slot Width
Dual-slot
Dual-slot
Length
—
294 mm 11.6 inches
Height
—
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
Production
End-of-life
Active
Predecessor
GeForce 30
—
Successor
GeForce 50
—
View GeForce RTX 4060 AD106 Details View Lisuan Tech LX 7G100 Details