PCBenchmark/Results/Intel Core i5-7600 + AMD Radeon Pro 580 browser benchmark
PC SCORE36OUT OF 100
SYSTEM GRADEE
Good quality run 12 September 2026 · 23:22 EEST

Intel Core i5-7600+AMD Radeon Pro 580

A completed baseline run. Review quality and raw metrics before comparing it.

SUITEFULL SYSTEM MODESTANDARD GPU APIWebGPU ENGINE1.2.1 SCORE SCALEPROVISIONAL R4 DURATION00:58
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01 / WORKLOAD BREAKDOWN

Performance by workload.

CPU and GPU use the current adaptive scale for the same workload, mode and graphics backend. When a faster validated device becomes the reference, older comparable scores are projected onto the new scale without changing their raw measurements. VRAM remains a pass/fail diagnostic.

CPU34

Processor throughput

Single thread
479.65 Mops/s
Multi thread
1,700.36 Mops/s
Compression proxy
586.6 MB/s
GPU23

Graphics throughput

Estimated shader work
2,780.5 G shader ops/s
Render throughput
33.4 FPS
Frame time p95
83.30 ms
MEMORY71

System memory

Effective bandwidth
22.86 GB/s
Latency proxy
21.6 ns
Browser RAM class
32 GB class
VRAMPASS

GPU-memory diagnostic

Transfer bandwidth
2.67 GB/s
Tested allocation
384 MB
Validation errors
0 errors
02 / RELATIVE PERFORMANCE

What sits above and below this hardware.

Each ladder uses one consistent source. Validated PCBenchmark medians take priority when the matching workload cohort has enough approved runs; until then, the report shows a clearly marked catalog estimate.

CPU POSITION

Intel Core i5-7600 comparison ladder

ESTIMATE

Specification-based estimateApproximate browser CPU capacity derived from official core, thread and clock specifications for Kaby Lake desktop processors. It is not a measured benchmark.

  1. Intel Core i7-7700Kaby Lake · 4 cores / 8 threads · 2017
    +14.0%higher estimate
  2. Intel Core i5-7600Kaby Lake · 4 cores / 4 threads · 2017
    BASECATALOG REFERENCE
  3. Intel Core i7-7700TKaby Lake · 4 cores / 8 threads · 2017
    −1.6%lower estimate
GPU POSITION

AMD Radeon Pro 580 comparison ladder

ESTIMATE

Theoretical FP32 estimatePercentages compare theoretical FP32 compute within the desktop GPU catalog; they are not measured PCBenchmark or gaming performance.

  1. AMD Radeon E9550 MXMEmbedded(9000) · 8 GB VRAM · 2016
    +3.6%higher estimate
  2. AMD Radeon E9560 PCIeEmbedded(9000) · 8 GB VRAM · 2019
    +3.1%higher estimate
  3. AMD Radeon Instinct MI6Radeon Instinct(MIx) · 8 GB VRAM · 2016
    +2.7%higher estimate
  4. AMD Radeon Pro 580Radeon Pro Mac(500 Series) · 8 GB VRAM · 2017
    BASECATALOG REFERENCE
  5. AMD Radeon RX 5500 XTNavi(RX 5000) · 4 GB VRAM · 2019
    −6.0%lower estimate
  6. AMD Radeon RX 570Polaris(RX 500) · 4 GB VRAM · 2017
    −8.0%lower estimate
  7. AMD Radeon RX 470Arctic Islands(RX 400) · 4 GB VRAM · 2016
    −10.7%lower estimate
03 / STABILITY55.7%

Sustained-load signal

This signal summarizes frame delivery during the timed graphics phase. It can reveal an inconsistent run, but it is not a temperature sensor.

COMPLETEDYES SAMPLE WINDOW58 SEC DROPPED FRAMES44.33%
04 / ENVIRONMENTRUN CONTEXT

What the browser disclosed

Selected suite
Full system
Platform family
Windows
Logical processors
4
Browser RAM class
32 GB · rounded/capped
Graphics API
WebGPU
Run quality
Good · 75/100
Score fingerprint
adaptive-v2.0 / 1.2.1
Current adaptive scale
Provisional revision 4 / 28 August 2026
i
BROWSER BENCHMARK, NOT HARDWARE ATTESTATION

Read this result in its proper context.

It measures this browser’s execution path under the conditions of this run. Cooling, power mode, drivers, background processes and browser updates can change the outcome. CPU/GPU names may be supplied manually or matched to the catalog from a browser hint. Compare only matching suite, mode, engine version and graphics backend. NOT RUN categories were not measured and are not zero-performance results.

Read methodology & limitations
05 / RAW RESULT DATAInspect JSON +
{
    "test_suite": "all",
    "test_mode": "standard",
    "duration_ms": 58068,
    "system": {
        "cpu_name": "Intel Core i5-7600",
        "gpu_name": "AMD Radeon Pro 580",
        "logical_cores": 4,
        "memory_gb": 32,
        "platform": "windows",
        "gpu_api": "webgpu",
        "processor_id": 1621,
        "graphics_card_id": 2235
    },
    "metrics": {
        "stability": {
            "duration_seconds": 58,
            "completed": true,
            "dropped_frames_percent": 44.332
        },
        "cpu": {
            "single_core_ops_per_second": 479654853.621,
            "multi_core_ops_per_second": 1700362918.84,
            "compression_mb_per_second": 586.585
        },
        "memory": {
            "bandwidth_gbps": 22.86,
            "latency_ns": 21.579
        },
        "gpu": {
            "frames_per_second": 33.406,
            "compute_gflops": 2780.501,
            "frame_time_p95_ms": 83.3
        },
        "vram": {
            "tested_mb": 384,
            "bandwidth_gbps": 2.672,
            "errors": 0
        }
    },
    "raw_points": {
        "cpu": 15.16795824,
        "gpu": 2.31708417
    },
    "original_scores": {
        "cpu": 34,
        "gpu": 23,
        "memory": 71,
        "vram": 0,
        "overall": 36,
        "grade": "E"
    },
    "current_scores": {
        "cpu": 34,
        "gpu": 23,
        "memory": 71,
        "vram": 0,
        "overall": 36,
        "grade": "E",
        "snapshot_revision": 4
    },
    "runner_version": "1.2.1",
    "workload_signature": "browser-1.2",
    "scoring_version": "adaptive-v2.0"
}
SAME SUITE, FRESH CONDITIONS

Think this system can do better?

Close heavy apps, connect power, keep the tab visible and run the same Full system suite and Standard mode again.

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