

#114 linkCache_getLink using $NBC_LINKCACHE +0s. #105 linkCache_getLink using $NBC_LINKCACHE +0s. #103 linkCache_getLink using $NBC_LINKCACHE +0s. #101 linkCache_getLink using $NBC_LINKCACHE +0s. #99 linkCache_getLink using $NBC_LINKCACHE +0s. #94 linkCache_getLink using $NBC_LINKCACHE +0s. #92 linkCache_getLink using $NBC_LINKCACHE +0s. #89 linkCache_getLink using $NBC_LINKCACHE +0s. #87 linkCache_getLink using $NBC_LINKCACHE +0s. #85 linkCache_getLink using $NBC_LINKCACHE +0s. #82 linkCache_getLink using $NBC_LINKCACHE +0s.

#79 linkCache_getLink using $NBC_LINKCACHE +0s. #77 linkCache_getLink using $NBC_LINKCACHE +0s. #75 linkCache_getLink using $NBC_LINKCACHE +0s. #73 linkCache_getLink using $NBC_LINKCACHE +0s. #70 linkCache_getLink using $NBC_LINKCACHE +0s. #67 linkCache_getLink using $NBC_LINKCACHE +0s. #64 linkCache_getLink using $NBC_LINKCACHE +0s. #62 linkCache_getLink using $NBC_LINKCACHE +0s. #60 linkCache_getLink using $NBC_LINKCACHE +0s. #58 linkCache_getLink using $NBC_LINKCACHE +0s. #56 linkCache_getLink using $NBC_LINKCACHE +0s. #54 linkCache_getLink using $NBC_LINKCACHE +0s. #52 linkCache_getLink using $NBC_LINKCACHE +0s. #50 linkCache_getLink using $NBC_LINKCACHE +0s. #48 linkCache_getLink using $NBC_LINKCACHE +0s. #46 linkCache_getLink using $NBC_LINKCACHE +0s. #43 linkCache_getLink using $NBC_LINKCACHE +0s. #41 linkCache_getLink using $NBC_LINKCACHE +0s. #38 linkCache_getLink using $NBC_LINKCACHE +0s. #36 linkCache_getLink using $NBC_LINKCACHE +0s. #33 linkCache_getLink using $NBC_LINKCACHE +0s. #32 linkCache_getLink using $NBC_LINKCACHE +0s. #31 linkCache_getLink using $NBC_LINKCACHE +0s. #30 linkCache_getLink using $NBC_LINKCACHE +0s. #28 linkCache_getLink using $NBC_LINKCACHE +0s. #26 linkCache_getLink using $NBC_LINKCACHE +0s. #25 linkCache_getLink using $NBC_LINKCACHE +0s. #24 linkCache_getLink using $NBC_LINKCACHE +0s. #22 linkCache_getLink using $NBC_LINKCACHE +0s. #21 linkCache_getLink using $NBC_LINKCACHE +0s. #19 linkCache_getLink using $NBC_LINKCACHE +0.001s. #17 linkCache_getLink using $NBC_LINKCACHE +0s. #13 linkCache_getLink using $NBC_LINKCACHE +0.001s. #12 getting avg benchmarks for device 7664 +0.001s. #11 linkCache_getLink using $NBC_LINKCACHE +0.003s. #10 linkCache_getLink using $NBC_LINKCACHE +0.002s. #8 linkCache_getLink using $NBC_LINKCACHE +0s. #7 getting avg benchmarks for device 9858 +0.032s. #3 did not recreate cache, as it is less than 5 days old! Created at Tue, 17:25:41 +0200 +0s. Optimus, PhysX, 3D Vision Pro, nView, Optimus The card is therefore suited for large 17-inch notebooks.

The power consumption of the Quadro P5000 is similar to the old Quadro M5000M at 100 Watts TGP (max power consumption incl. The theoretical performance should be on par with the GTX 1070 (if the clocks did not take a massive hit), so the GPU should be significantly faster than the previous M5000M. The performance in these areas is therefore much better compared to corresponding consumer GPUs.
NVIDIA QUADRO P5000 PROFESSIONAL
The Quadro GPUs offer certified drivers, which are optimized for stability and performance in professional applications (CAD, DCC, medical, prospection, and visualizing applications). The clock rates range between 1164 MHz (base) to 1506 MHz (typical Boost) and up to 1657 MHz (max.). However, the P5000 is equipped with 16 GB GDDR5 video memory (at a lower bandwidth), while GTX 1070 is limited to 8 GB. The graphics card is designed for the Kaby Lake generation and is the successor to the Quadro M5000M (Maxwell). Similar to the consumer GeForce GTX 1070 (Laptop), it is based on a slimmed-down GP104 chip with 2048 shaders. The Nvidia Quadro P5000 is a mobile high-end workstation graphics card for notebooks. NVIDIA Quadro P5000 ► remove from comparison
