HD Graphics P630 vs Radeon R9 380

In this comparison between HD Graphics P630 and Radeon R9 380 you will find out which graphics card performs better in today's games. Bear in mind that third-party versions may have more efficient cooling and higher clock speeds. This will increase cards' performance, though not by much. In addition to raw power you should also take into account the dimensions. Thicker models simply will not fit into a small mini-ITX case. The resolution of your monitor also affects the choice, since 4K gameplay requires a more powerful GPU. And don't overspend on the graphics card. Other parts of your build may also need to be upgraded, save some money for the CPU or power supply. For some people HD Graphics P630 will be the best choice, for others Radeon R9 380 will be their preference. Study the comparison tables below and make your choice.

Main Specs

  HD Graphics P630 Radeon R9 380
Power consumption (TDP) 15 Watt 190 Watt
Interface PCIe 3.0 x1 PCIe 3.0 x16
Supplementary power connectors 2 x 6-pin
Memory type DDR3L/LPDDR3/DDR4 GDDR5
Maximum RAM amount 1740 MB 4 GB
Display Connectors No outputs 2x DVI, 1x HDMI, 1x DisplayPort
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  • Radeon R9 380 has 1166% more power consumption, than HD Graphics P630.
  • HD Graphics P630 is connected by PCIe 3.0 x1, and Radeon R9 380 uses PCIe 3.0 x16 interface.
  • HD Graphics P630 has 1736 GB more memory, than Radeon R9 380.
  • Both cards are used in Desktops.
  • HD Graphics P630 is build with Gen. 9.5 Kaby Lake architecture, and Radeon R9 380 - with GCN.
  • HD Graphics P630 is manufactured by 14 nm process technology, and Radeon R9 380 - by 28 nm process technology.

Game benchmarks

high / 1080p 3−4 35−40
ultra / 1080p 1−2 21−24
QHD / 1440p 0−1 16−18
4K / 2160p 10−11
low / 720p 14−16 60−65
medium / 1080p 5−6 40−45
The average gaming FPS of Radeon R9 380 in Assassin's Creed Odyssey is 583% more, than HD Graphics P630.

Full Specs

  HD Graphics P630 Radeon R9 380
Architecture Gen. 9.5 Kaby Lake GCN
Code name Kaby-Lake-H-GT2 Tonga Pro
Type Desktop Desktop
Release date 5 August 2016 26 June 2015
Pipelines 24 1792
Boost Clock 1100 MHz 970 MHz
Transistor count 189 million 5,000 million
Manufacturing process technology 14 nm 28 nm
Texture fill rate 26.40 108.6
Floating-point performance 3,476 gflops
Length 221 mm
Memory bus width 64/128 Bit 256 Bit
Memory clock speed 970 MHz
Memory bandwidth 182.4 GB/s
Shared memory + -
DirectX 12 (12_1)
Shader Model 6.4 6.3
OpenGL 4.6 4.5
OpenCL 2.1 2.0
Vulkan 1.1.103 +
Monero / XMR (CryptoNight) 0.48 kh/s
FreeSync +
Bus support PCIe 3.0
HDMI +
Bitcoin / BTC (SHA256) 404 Mh/s
Eyefinity +
HD3D +
PowerTune +
TrueAudio +
ZeroCore +
Mantle +
Design reference
Bridgeless CrossFire +
Number of Eyefinity displays 6
DisplayPort support +
CrossFire +
VCE +
DDMA audio +
Decred / DCR (Decred) 0.66 Gh/s
Ethereum / ETH (DaggerHashimoto) 18 Mh/s
Zcash / ZEC (Equihash) 168.45 Sol/s
Quick Sync +
Compute units 28
Form factor full height / full length / dual slot
High bandwidth memory (HBM) -
LiquidVR +
FRTC +
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