CPU
GPU
SoC
Router
Categories
Rankings
CPU Rankings
GPU Rankings
SoC Rankings
Router Ranking
English
English
Close menu
Home
CPU
GPU
SoC
Router
Categories
CPU Rankings
GPU Rankings
SoC Rankings
Router Ranking
中文
English
Español
Deutsch
Français
Italiano
Português
日本語
한국어
العربية
ภาษาไทย
繁體中文
Tiếng Việt
Bahasa Melayu
中文
English
Español
Deutsch
Français
Italiano
Português
日本語
한국어
العربية
ภาษาไทย
繁體中文
Tiếng Việt
Bahasa Melayu
Home
GPU Comparison
NVIDIA GRID K560Q vs NVIDIA Quadro P6000
NVIDIA GRID K560Q vs NVIDIA Quadro P6000
VS
NVIDIA GRID K560Q
NVIDIA Quadro P6000
We compared two Professional market GPUs: 4GB VRAM GRID K560Q and 24GB VRAM Quadro P6000 to see which GPU has better performance in key specifications, benchmark tests, power consumption, etc.
Main Differences
NVIDIA GRID K560Q 's Advantages
Lower TDP (225W vs 250W)
NVIDIA Quadro P6000 's Advantages
Released 2 years and 3 months late
Boost Clock1645MHz
More VRAM (24GB vs 4GB)
Larger VRAM bandwidth (432.8GB/s vs 160.0GB/s)
2304 additional rendering cores
Score
Benchmark
FP32 (float)
GRID K560Q
2.289 TFLOPS
Quadro P6000
+451%
12.63 TFLOPS
GRID K560Q
VS
Quadro P6000
Graphics Card
Jul 2014
Release Date
Oct 2016
GRID
Generation
Quadro Pascal
Professional
Type
Professional
PCIe 3.0 x16
Bus Interface
PCIe 3.0 x16
Clock Speeds
-
Base Clock
1506 MHz
-
Boost Clock
1645 MHz
1250 MHz
Memory Clock
1127 MHz
Memory
4GB
Memory Size
24GB
GDDR5
Memory Type
GDDR5X
256bit
Memory Bus
384bit
160.0GB/s
Bandwidth
432.8GB/s
Render Config
-
-
-
-
SM Count
30
1536
Shading Units
3840
128
TMUs
240
32
ROPs
96
-
-
-
-
-
-
16 KB (per SMX)
L1 Cache
48 KB (per SM)
512 KB
L2 Cache
3 MB
-
-
-
Theoretical Performance
23.84 GPixel/s
Pixel Rate
157.9 GPixel/s
95.36 GTexel/s
Texture Rate
394.8 GTexel/s
-
FP16 (half)
197.4 GFLOPS
2.289 TFLOPS
FP32 (float)
12.63 TFLOPS
95.36 GFLOPS
FP64 (double)
394.8 GFLOPS
Board Design
225W
TDP
250W
550 W
Suggested PSU
600 W
No outputs
Outputs
1x DVI 4x DisplayPort 1.4a
-
Power Connectors
1x 8-pin
Graphics Processor
GK104
GPU Name
GP102
-
GPU Variant
GP102-875-A1
Kepler
Architecture
Pascal
TSMC
Foundry
TSMC
28 nm
Process Size
16 nm
3.54 billion
Transistors
11.8 billion
294 mm²
Die Size
471 mm²
Graphics Features
12 (11_0)
DirectX
12 (12_1)
4.6
OpenGL
4.6
3.0
OpenCL
3.0
1.1
Vulkan
1.3
3.0
CUDA
6.1
5.1
Shader Model
6.7
Related GPU Comparisons
1
NVIDIA GRID K560Q vs NVIDIA A10M
2
NVIDIA GRID K560Q vs NVIDIA Quadro K5200
3
NVIDIA GRID K560Q vs NVIDIA Quadro FX 370
4
NVIDIA GRID K560Q vs NVIDIA Quadro 410
5
NVIDIA GRID K560Q vs NVIDIA Tesla T10
6
NVIDIA GRID K560Q vs NVIDIA GRID M6 8Q
7
NVIDIA GRID K560Q vs NVIDIA Tesla K8
8
NVIDIA GRID K560Q vs NVIDIA RTX A5500 Max-Q
9
NVIDIA GRID K560Q vs NVIDIA L40S
10
NVIDIA GRID K560Q vs NVIDIA Quadro M500M
Related News
1
Strix Halo Integrated Graphics Score Appears on Passmark, Currently Slightly Below RTX 3060 12GB
2
AMD Unveils New RX 9070 XT Graphics Card Performance: Positioned Between RX 7900 GRE and RX 7900 XT
3
Double the Excitement! AMD FSR 4.0 to Launch Alongside RX 9070 XT Graphics Card
4
CPU-Z Minor Update: Support for Intel's Four New Products and New Memory
5
CXMT Reportedly Achieves 80% Yield in DDR5 Production
6
Intel Wildcat Lake Appears on Shipping List with FCBGA1516 Socket, Poised to Replace Alder Lake-N
7
The Commencement of ARM and Qualcomm Licensing Dispute Trial: Potential Major Impact on PC Market
8
NVIDIA Allegedly Equips RTX 5080 with 30Gbps Memory Speed, Other Models to Feature 28Gbps
9
Intel Reports High Return Rates for Devices Featuring Snapdragon X Series; Qualcomm Counters with 'Industry Standard' Claim
10
Intel Confirms Panther Lake Adopts 18A Process, ES0 Samples Already Sent to Customers
© 2024 - TopCPU.net
Contact Us
Privacy Policy