NVIDIA Jetson T5000 vs Lisuan Tech LX 7G100 Comparison
NVIDIA Jetson T5000
Lisuan Tech LX 7G100
Analysis: NVIDIA Jetson T5000 vs Lisuan Tech LX 7G100
Head-to-Head Benchmarks
The recorded database contains no executed benchmark runs for either the NVIDIA Jetson T5000 or the Lisuan Tech LX 7G100. Both entries show an average benchmark score of zero, and the head-to-head benchmark array is empty. Consequently, there are no measured performance deltas to report between these two devices. The wins counter registers zero for each side.
What the data does provide are the theoretical peak throughput figures from each architecture's specification sheet. In FP32 compute, the Lisuan Tech LX 7G100 lists 24.58 TFLOPS, while the NVIDIA Jetson T5000 lists 8.064 TFLOPS. That places the LX 7G100 at roughly three times the raw single-precision throughput of the Jetson T5000 on paper. For FP16, the LX 7G100 lists 49.15 TFLOPS with a 2:1 ratio relative to FP32, whereas the Jetson T5000 lists 8.064 TFLOPS with a 1:1 ratio. The disparity widens further in half-precision workloads, where the LX 7G100 shows over six times the listed FP16 figure of the Jetson T5000.
Pixel throughput favors the LX 7G100 as well. The Lisuan part lists 192.0 GPixel/s against 50.40 GPixel/s for the Jetson T5000. Texture rate follows the same pattern: 384.0 GTexel/s for the LX 7G100 versus 126.0 GTexel/s for the Jetson T5000. These are specification-level comparisons, not measured results, and the absence of benchmark scores means the database cannot confirm how either device behaves under real workloads. The percentile ranking for both is 50 against all GPUs, which reflects the lack of recorded performance data rather than an equivalence in capability.
Where Each One Wins
Without benchmark results, the allocation of wins must be inferred from architectural specifications and intended use cases encoded in the hardware definitions.
The NVIDIA Jetson T5000 presents itself as a compute-oriented integrated graphics processor. It uses a 256-bit LPDDR5X interface with 128 GB of memory, delivering 273.2 GB/s of bandwidth. That memory capacity is unique in this comparison: the LX 7G100 ships with 12 GB of GDDR6. For workloads that require large in-memory datasets, such as certain inference or data-processing tasks, the Jetson T5000's 128 GB capacity is the dominant specification. The Jetson T5000 also carries 20 RT cores and 96 tensor cores, indicating hardware acceleration for ray tracing and tensor operations. Its 120 W thermal design power and IGP form factor (87 mm length, 100 mm height, 15 mm width) position it as a low-footprint, low-power compute module. The PCIe 5.0 x8 interface provides a modern host connection, and the device has no display outputs, confirming a compute-only role.
The Lisuan Tech LX 7G100 targets a different segment. It is a dual-slot, 294 mm long add-in card with 4x DisplayPort 1.4a outputs, full DirectX 12 Ultimate, OpenGL 4.6, and Vulkan 1.3 API support. The 6 nm process node and 192-bit GDDR6 memory with 432.0 GB/s bandwidth give it a higher memory bandwidth figure than the Jetson T5000, despite the smaller capacity. The LX 7G100 lists 6144 shading units, 192 TMUs, and 96 ROPs, all substantially higher than the Jetson T5000's 2560 shading units, 80 TMUs, and 32 ROPs. The 225 W TDP and single 8-pin power connector indicate a conventional discrete GPU power envelope. The presence of display outputs and consumer API support suggests the LX 7G100 is intended for graphics rendering and interactive workloads, where its higher pixel rate and texture rate would be advantageous.
The Jetson T5000 wins on memory capacity, integrated form factor, and power efficiency on paper. The LX 7G100 wins on raw compute throughput, memory bandwidth, graphics API support, and display connectivity. Neither device has recorded benchmark data to validate these theoretical advantages.
The Verdict
The database offers no measured performance scores for either device, so the verdict must rest on specification analysis. The NVIDIA Jetson T5000 is suited for deployments where 128 GB of memory and a 120 W power envelope matter more than peak FP32 throughput. Its integrated design, PCIe 5.0 x8 interface, and absence of display outputs point toward server-side compute, inference, or data-center acceleration roles. The 256-bit LPDDR5X memory provides 273.2 GB/s, which is adequate for memory-bound tasks that fit within a large capacity.
The Lisuan Tech LX 7G100 is the higher-throughput part on paper. Its 24.58 TFLOPS FP32 and 49.15 TFLOPS FP16 figures, combined with 432.0 GB/s bandwidth, give it a clear specification lead in raw performance. The dual-slot card with 4x DisplayPort 1.4a and full graphics API support indicates a rendering or workstation role. The 12 GB memory capacity is a limiting factor for large datasets, but the 192-bit GDDR6 bus compensates with higher bandwidth.
For users prioritizing memory capacity and low power draw, the Jetson T5000 is the logical choice based on the recorded specifications. For users prioritizing compute throughput, memory bandwidth, and graphics output capability, the LX 7G100 leads. The lack of benchmark scores means neither device can be recommended on measured performance, only on listed specifications. Both are marked as Active production status, with the Jetson T5000 released on 2025-08-26 and the LX 7G100 on 2026-06-17. The Jetson T5000 has a launch MSRP of 2,999 USD; the LX 7G100 has no recorded launch MSRP.
FAQ
Q: Which GPU has higher FP32 compute according to the database?
A: The Lisuan Tech LX 7G100 lists 24.58 TFLOPS FP32, while the NVIDIA Jetson T5000 lists 8.064 TFLOPS FP32. The LX 7G100 shows approximately three times the FP32 throughput on paper.
Q: What are the memory specifications for each device?
A: The Jetson T5000 uses 128 GB of LPDDR5X on a 256-bit bus with 273.2 GB/s bandwidth. The LX 7G100 uses 12 GB of GDDR6 on a 192-bit bus with 432.0 GB/s bandwidth. The LX 7G100 has higher bandwidth, while the Jetson T5000 has substantially more capacity.
Q: Does the LX 7G100 support display output?
A: Yes, the LX 7G100 lists 4x DisplayPort 1.4a outputs. The Jetson T5000 lists no display outputs.
Q: What is the thermal design power of each GPU?
A: The Jetson T5000 is rated at 120 W with a suggested PSU of 300 W. The LX 7G100 is rated at 225 W with a suggested PSU of 550 W.
Q: Are there any recorded benchmark scores for these GPUs?
A: No. Both devices have an average benchmark score of zero, and the head-to-head benchmark array is empty. The database contains no measured performance results for either GPU.
Q: What process nodes are used for each chip?
A: The Jetson T5000 uses a 5 nm process at TSMC, with a die size of 391 mm². The LX 7G100 uses a 6 nm process at TSMC, with die size listed as unknown.
Architecture Differences
The NVIDIA Jetson T5000 is built on the GB10B chip using the Blackwell architecture, belonging to the Server Blackwell (Bxx) generation. It is fabricated on a 5 nm process at TSMC with a die size of 391 mm². The predecessor is listed as Server Hopper and the successor as Server Rubin. The device uses a PCIe 5.0 x8 interface, has no power connectors, and is an integrated graphics processor (IGP) with no display outputs. The API support is listed as N/A for DirectX, OpenGL, and Vulkan, reinforcing its compute-only positioning. The Jetson T5000 includes 2560 shading units, 80 TMUs, 32 ROPs, 20 RT cores, and 96 tensor cores. Its FP16 throughput matches FP32 at 8.064 TFLOPS with a 1:1 ratio, indicating no dedicated half-precision acceleration path. Memory runs at 1067 MHz with 8.5 Gbps effective speed.
The Lisuan Tech LX 7G100 is built on the 7G106 chip using the TrueGPU architecture, belonging to the 7G100 generation. It is fabricated on a 6 nm process at TSMC. The device uses a PCIe 4.0 x16 interface, requires one 8-pin power connector, and is a dual-slot card measuring 294 mm in length. It supports DirectX 12 Ultimate (12_2), OpenGL 4.6, and Vulkan 1.3. The LX 7G100 lists 6144 shading units, 192 TMUs, and 96 ROPs, with no RT cores or tensor cores listed. Its FP16 throughput is 49.15 TFLOPS with a 2:1 ratio relative to FP32, indicating dedicated half-precision hardware. Memory runs at 2250 MHz with 18 Gbps effective speed. The predecessor and successor fields are null.
The architectural split is stark. The Jetson T5000 uses a newer 5 nm node, smaller die, and an integrated form factor with tensor and RT cores but no graphics API support. The LX 7G100 uses a larger shader array, higher clocked GDDR6 memory, and full graphics API support but lacks tensor and RT core listings. The Jetson T5000's 256-bit memory bus pairs with a larger capacity, while the LX 7G100's 192-bit bus pairs with faster memory and higher bandwidth. The Jetson T5000's 8.064 TFLOPS FP32 figure comes from 2560 shading units at a 1386 MHz base and 1575 MHz boost clock. The LX 7G100's 24.58 TFLOPS FP32 figure comes from 6144 shading units, with no base or boost clock listed in the database. Both devices are marked as Active in production status.