The GIGABYTE GeForce GTX 980 XTREME GAMING is based on the NVIDIA GeForce GTX 980 (Maxwell 2.0) and has 4 GB GDDR5 graphics memory with a bandwidth of 227 GB/s.
Quick comparison
In FP32 performance, the GIGABYTE GeForce GTX 980 XTREME GAMING is 206 % faster than the INNO3D GeForce GTX 1630 Compact.
The INNO3D GeForce GTX 1630 Compact has the TU117-150 graphics chip installed, which is based on the Turing architecture.
The GIGABYTE GeForce GTX 980 XTREME GAMING is based on the graphics chip GM204-400-A1, which comes from the Maxwell 2.0 architecture.
Memory
Memory
INNO3D GeForce GTX 1630 Compact
GIGABYTE GeForce GTX 980 XTREME GAMING
Memory Size
4 GB
4 GB
Memory Type
GDDR6
GDDR5
Memory Clock
1.500 GHz
1.775 GHz
Memory Speed
12.0 Gbps
7.1 Gbps
Memory bandwidth
96 GB/s
227 GB/s
Memory Interface
64 bit
256 bit
More information
The graphics memory of the INNO3D GeForce GTX 1630 Compact clocks at 1.500 GHz, which corresponds to a speed of 12.0 Gbps.
The graphics memory speed of the GIGABYTE GeForce GTX 980 XTREME GAMING is 7.1 Gbps and the clock speed is 1.775 GHz.
Clock Speeds
Clock Speeds
INNO3D GeForce GTX 1630 Compact
GIGABYTE GeForce GTX 980 XTREME GAMING
Base Clock
1.740 GHz
1.266 GHz
Boost Clock
1.785 GHz
1.367 GHz
Avg (Game) Clock
--
1.34 GHz
Overclocking
Yes
Yes
More information
The clock frequency of a graphics card determines the speed in connection with the graphics architecture.
Thermal Design
Thermal Design
INNO3D GeForce GTX 1630 Compact
GIGABYTE GeForce GTX 980 XTREME GAMING
TDP
75 W
165 W
Tjunction max
90 °C
98 °C
PCIe-Power
--
2 x 8-Pin
More information
The INNO3D GeForce GTX 1630 Compact is powered by -- connectors. The TDP (Thermal Design Power) of the graphics card is 75 W.
The GIGABYTE GeForce GTX 980 XTREME GAMING has 2 x 8-Pin PCIe power connectors that supply it with energy. The manufacturer specifies the TDP of the card as 165 W.
Cooler & Fans
Cooler & Fans
INNO3D GeForce GTX 1630 Compact
GIGABYTE GeForce GTX 980 XTREME GAMING
Fan-Type
Axial
Axial
Fan 1
1 x 90 mm
3 x 75 mm
Cooler-Type
Air cooling
Air cooling
Noise (Idle)
--
0 dB
More information
The INNO3D GeForce GTX 1630 Compact is equipped with a total of 1 Axial main fans.
The GIGABYTE GeForce GTX 980 XTREME GAMING has 3 Axial main fans that cool the GPU and memory.
Connectivity
Connectivity
INNO3D GeForce GTX 1630 Compact
GIGABYTE GeForce GTX 980 XTREME GAMING
Max. Displays
3
4
HDCP
2.3
2.2
HDMI
1x HDMI 2.0b
1x HDMI 2.0
DisplayPort
2x DP 1.4a
3x DP 1.2
DVI
--
1
More information
Up to 3 screens can be operated with the INNO3D GeForce GTX 1630 Compact.
The GIGABYTE GeForce GTX 980 XTREME GAMING supports the operation of a maximum of 4 monitors.
Featureset
Featureset
INNO3D GeForce GTX 1630 Compact
GIGABYTE GeForce GTX 980 XTREME GAMING
Max. resolution
7680x4320
4096x2160
DirectX
12_1
12_1
Raytracing
No
No
DLSS / FSR
Yes
No
LED
No LED lighting
Addressable LED
More information
With the INNO3D GeForce GTX 1630 Compact it is possible to operate a screen with a maximum resolution of up to 7680x4320 pixels.
The maximum supported resolution of the GIGABYTE GeForce GTX 980 XTREME GAMING is 4096x2160 pixels.
Supported Video Codecs
Supported Video Codecs
INNO3D GeForce GTX 1630 Compact
GIGABYTE GeForce GTX 980 XTREME GAMING
h264
Decode / Encode
Decode / Encode
h265 / HEVC
Decode / Encode
No
VP8
Decode
Decode
VP9
Decode
No
AV1
No
No
More information
The support and acceleration of certain video codecs can have a positive impact on the lower energy consumption and less waste heat from the graphics card.
Dimensions
Dimensions
INNO3D GeForce GTX 1630 Compact
GIGABYTE GeForce GTX 980 XTREME GAMING
Length
196 mm
279 mm
Height
113 mm
121 mm
Width
--
42 mm
Width (Slots)
2 Slots
2 Slots
SFF-Ready
No
No
More information
The INNO3D GeForce GTX 1630 Compact is connected to the system via PCIe 3.0 x 8 lanes and requires 2 PCIe-Slots space in the housing.
The GIGABYTE GeForce GTX 980 XTREME GAMING needs the space of 2 PCIe-Slots in the case and has a PCIe 3 x 16 Lanes interface.
3DMark is a benchmark program that determines the performance of certain components of a computer and then reports the performance as a numerical value.
Geekbench 6 is a cross-platform benchmark for main processors, which also carries out 3 different graphics benchmarks and outputs them in the form of a numerical value.
The theoretical computing power of the graphics card with single precision (32 bit) in TFLOPS indicates how many trillion FP32 floating point operations the graphics card (GPU) can perform per second.
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