GeForce 910M vs Radeon R5 M320

Full comparison of specs, performance and benchmarks

Aggregate performance score

We've compared GeForce 910M and Radeon R5 M320 across specs and all relevant benchmarks.

GeForce 910M outperforms Radeon R5 M320 by ~3% on the catalog index; this is not a measured FPS gain.+3%

Scores are normalized on the Head to Head scale. Higher is better. How is this calculated?

H2HBench Data Quality

Low confidence
Specifications: Field verification not recordedVerified gaming results: 0Estimated / unverified results: 32Price record updated: Sep 6, 2026

Limited verified data

H2HBench Verdict

Higher catalog score: GeForce 910M (~27%)

The score difference is not a measured FPS improvement.

Reasons to consider GeForce 910M

  • Higher catalog performance index
  • Recorded feature support: OpenCL 3.0, CUDA 3.5 · Not supported

Reasons to consider Radeon R5 M320

  • More graphics memory
  • Higher catalog value index
  • Recorded feature support: OpenCL 1.2 · Not supported
Low confidence

Catalog metrics radar

Axes with missing data are hidden; every value uses a fixed scale.

H2H
Performance
Price / performance
Memory capacity
Performance
3029
Price / performance
5464
Memory capacity
4350
Missing values are never replaced with zero or an average.Model: H2H 2026.07 fixed scale.

Graphics card ranking

Full ranking →

The ranking is recalculated automatically from catalog data.

Positions 178–183of 411
GeForce 910Mnot in TOP100position in the GPU ranking
Radeon R5 M320not in TOP100position in the GPU ranking

Which should you choose?

Two practical conclusions based on community votes and gaming value.

COMMUNITY CHOICE

GeForce 910M

174 likes

Head to Head visitors currently choose this model more often.

Overview

Scores are calculated from specifications, performance, and efficiency.

CategoryGeForce 910MRadeon R5 M320
GamesDirectX, OpenCL, and Vulkan performance
30Better
29
Professional applications3D modeling, video editing, and rendering
28Better
27
AI and machine learningMachine-learning and AI capabilities
26Better
25
Power efficiencyPower consumption across workloads
100Better
26
Head to Head scoreOverall catalog score
42Better
33

Specifications

The better numeric value is highlighted in green, taking the metric direction into account.

SpecificationGeForce 910MRadeon R5 M320
Release date
Launch price
HDMI
DisplayPort
Max resolution
Max monitors
USB Type-C
Recommended PSU
DirectX
Vulkan
OpenGL
TFLOPSBetter
Power consumption
Architecture
Memory type
Compute API
Shader units / coresBetter
Interface
Power connector
Thickness
Length
Die sizeBetter
Memory cache
Clock speedBetter
Base clockBetter
Boost clockBetter
VRAMBetter
Memory frequencyBetter
Memory bus
Memory bandwidthBetter
Power consumption
Process node
Transistor countBetter
Device class
Upscaling

Gaming FPS

Available results are shown separately; missing data is not treated as zero.

The Gaming FPS section compares GeForce 910M and Radeon R5 M320 across curated H2H Lab game presets. The useful signal is not only average FPS, but also how each device behaves at 1440p and 4K, how memory capacity and bus width affect heavy textures, and whether the game engine favors raster performance, ray tracing, or driver maturity.

GeForce 910MRadeon R5 M320
Verified externalEstimatedSources ↗
Counter-Strike 2

Counter-Strike 2

1080p High
152 FPS
147 FPS
1080p Ultra
107 FPS
103 FPS
1440p Ultra
57 FPS
55 FPS
4K Ultra
21 FPS
20 FPS
Game1080p High1080p Ultra1440p Ultra4K Ultra
Counter-Strike 2GeForce 910M152 FPSRadeon R5 M320147 FPSGeForce 910M107 FPSRadeon R5 M320103 FPSGeForce 910M57 FPSRadeon R5 M32055 FPSGeForce 910M21 FPSRadeon R5 M32020 FPS
Cyberpunk 2077GeForce 910M98 FPSRadeon R5 M32095 FPSGeForce 910M84 FPSRadeon R5 M32082 FPSGeForce 910M41 FPSRadeon R5 M32040 FPSGeForce 910M14 FPSRadeon R5 M32013 FPS
Forza Horizon 5GeForce 910M124 FPSRadeon R5 M320120 FPSGeForce 910M80 FPSRadeon R5 M32078 FPSGeForce 910M51 FPSRadeon R5 M32050 FPSGeForce 910M30 FPSRadeon R5 M32029 FPS
Hogwarts LegacyGeForce 910M80 FPSRadeon R5 M32078 FPSGeForce 910M67 FPSRadeon R5 M32065 FPSGeForce 910M37 FPSRadeon R5 M32036 FPSGeForce 910M14 FPSRadeon R5 M32014 FPS
Average FPSGeForce 910M114 FPSRadeon R5 M320110 FPSGeForce 910M85 FPSRadeon R5 M32082 FPSGeForce 910M47 FPSRadeon R5 M32045 FPSGeForce 910M20 FPSRadeon R5 M32019 FPS

H2H workload indices

Comparable internal indices on a fixed 0–100 scale.

IndexGeForce 910MRadeon R5 M320Difference
H2H Raster IndexH2H Index / 10030293%
H2H Compute IndexH2H Index / 10031323%
H2H Rendering IndexH2H Index / 10034353%
H2H Memory Workload IndexH2H Index / 100435015%
H2H Efficiency IndexH2H Index / 1001000200%

These are versioned H2H calculated indices derived from normalized catalog data. They are not results from a third-party benchmark.

H2H AI workload indices

Estimated workload profiles based on available performance and memory data.

IndexGeForce 910MRadeon R5 M320Difference
H2H Image Generation IndexH2H Index / 10036385%
H2H ML Training IndexH2H Index / 10035376%
H2H Inference IndexH2H Index / 10034353%
H2H Local LLM IndexH2H Index / 100374110%
H2H Computer Vision IndexH2H Index / 10034353%

These are versioned H2H calculated indices derived from normalized catalog data. They are not results from a third-party benchmark.

Graphics APIs, SDKs and upscaling

SpecificationsGeForce 910MRadeon R5 M320
DirectX11.011.1
Vulkan1.21.2
OpenGL4.64.6
UpscalingNot supportedNot supported
Compute APIOpenCL 3.0, CUDA 3.5OpenCL 1.2

Architecture and release

SpecificationsGeForce 910MRadeon R5 M320
ArchitectureMaxwellGCN
Process node28 nm28 nm
Release date20152015
Device classMobileMobile

GPU cores, die and clocks

SpecificationsGeForce 910MRadeon R5 M320
Transistor count1020 millionBetter690 million
Die size87 mm²56 mm²Better
Shader units / cores384Better320
Base clock641 MHz780 MHzBetter
Boost clock641 MHz855 MHzBetter

Board size, power and compatibility

SpecificationsGeForce 910MRadeon R5 M320
InterfacePCIe 3.0 x8PCIe 3.0 x8
LengthOEM dependentOEM dependent
ThicknessIGPIGP
Recommended PSUOEM dependentOEM dependent
Power connectorNoneIntegrated laptop power

Display outputs and limits

SpecificationsGeForce 910MRadeon R5 M320
HDMIOEM dependentOEM dependent
DisplayPortOEM dependentOEM dependent
USB Type-COEM dependentOEM dependent
Max monitorsOEM dependentOEM dependent
Max resolutionDepends on host systemDepends on host system

Memory and compute throughput

SpecificationsGeForce 910MRadeon R5 M320
VRAM2 GB DDR34 GB DDR3Better
Memory typeGDDR5 / DDR3GDDR5 / DDR3
Memory bus64 bit64 bit
TFLOPS0.4920.547Better

Other comparisons

0

Reviews and questions

Explain this comparison

Beyond percentages: causes, relevant specifications, and practical impact behind every chart.

Device AGeForce 910M42
Device BRadeon R5 M32033
What AI will explain

Overall score, radar, FPS, synthetic tests, specifications, efficiency, and value.

Evidence details

Data coverage

Verified gaming results
0
Verified synthetic results
0
Games with verified results
0
Verified community results
0
Estimated / unverified results
32
Specifications
0 / 66

Specification record updated:

Benchmarks updated:

Price record updated:

Comparison reviewed:

Calculated scores · How is this calculated?

Scores use the catalog model and may include estimated inputs. Open each score to see its origin and the methodology.

clamp(round(performance × 0.7 + (efficiency ?? 50) × 0.2 + (value is missing ? 0 : (value − 50) × 0.2)), 0, 100)
Price evidence · View sources (2)

Verified community results

No verified community benchmarks yet.

Reviewed by

No individual editorial review is recorded for this comparison.

Comparison history

Show recorded changes (2)
  1. · Record updated: products
  2. · Record updated: products

Why you can trust this comparison

Origin and confidence are evaluated from the evidence attached to each value. Unverified results are identified, and specification, benchmark and price dates remain separate.

Report incorrect data

Owner experiences

Real builds, results, and community feedback.

Moderator reviewedHelpful to the communityExpert badges

Frequently asked comparison questions

Short recommendations based on performance, memory, power consumption, and intended use.

01Which is better for gaming: GeForce 910M or Radeon R5 M320?

GeForce 910M has the higher overall gaming score, while Radeon R5 M320 offers the better price-to-performance ratio. The final choice depends on resolution and settings.

02Which is better for streaming?

GeForce 910M is the stronger streaming choice thanks to performance, hardware encoding, and application support. Check AV1, H.264, and HEVC support before buying.

03Which is better for Blender?

GeForce 910M is generally the better option for Blender and GPU rendering. Rendering-engine support and available VRAM also matter.

04Which is better for video editing?

GeForce 910M offers more overall performance, while GeForce 910M offers more memory headroom. Codecs, hardware encoders, and editor optimization can change the result.

05Which is better for neural networks and AI?

GeForce 910M is the more practical option for local AI workloads. VRAM capacity, compute libraries, and framework compatibility are especially important.

06Which is better for 1080p?

Radeon R5 M320 is the most rational 1080p choice, where high frame rates and cost per frame matter most.

07Which is better for 1440p?

GeForce 910M leads in combined 1440p performance. GeForce 910M can be preferable for heavy textures and games with high VRAM usage.

08Which is better for 4K?

GeForce 910M is preferable for 4K, where total performance, memory bandwidth, and VRAM capacity have the greatest impact.

09Which is better for a quiet PC?

GeForce 910M is easier to use in a quiet build because of its lower estimated power and thermal load. Actual noise depends on the specific cooler.

10Which is better without replacing the power supply?

GeForce 910M is the safer candidate because its stated power consumption is lower. Verify PSU wattage, age, and power connectors.

11Is it worth upgrading from the previous generation?

Consider upgrading to GeForce 910M if your current device no longer delivers the required FPS, memory capacity, or feature support. A gain below 15–20% is usually worth waiting for a price cut.