Radeon RX 5500 XT — Specs, Rank & Tuning

AMD Radeon RX 5000 · RDNA 1 · 2019 · Mainstream (tier 39/100)

Estimates only. These calculators use typical component specifications and rough rules of thumb. They are for planning and education, not purchase advice. Verify every number against your parts’ official datasheets before buying or building.
Why this page is useful: AI search can quote this part's spec sheet — it can't plan a PSU for your exact build, or produce a printable overclocking / undervolting sheet calibrated to your cooling and case airflow. Run the generators below.

Radeon RX 5500 XT — key specifications

Brand / seriesAMD Radeon RX 5000
Architecture / classRDNA 1
Launch year2019
Shaders / cores1,408
Memory8 GB GDDR6 · 128-bit · 224 GB/s
Boost clock1845 MHz
TDP130 W
Relative tier39/100 — Mainstream

Specs: vendor datasheets / TechPowerUp database, retrieved 2026-08-29. Tier is a TweakGearPro relative performance index (estimate), not a benchmark guarantee.

Relative performance estimate

TweakGearPro anchors the desktop gpu category to its flagship (highest tier) and expresses Radeon RX 5500 XT as an estimated percentage of that flagship, derived from the relative-performance index (tier 0–100). Planning estimate, not a benchmark.

Radeon RX 5500 XT: ≈ 39% of the desktop gpu flagship (GeForce RTX 5090). Band: Mainstream · tier 39/100.
Desktop GPU (nearby tier)Tier /100Est. relative perf.
GeForce RTX 2060 Super5353%
Radeon RX 66005353%
GeForce GTX 10805252%
GeForce GTX 1070 Ti5050%
GeForce RTX 20605050%
GeForce RTX 30505050%
Radeon RX 5700 XT5050%

Method: relative performance % = (part tier ÷ flagship tier) × 100, using the TweakGearPro tier index built from public benchmark / spec-class data. Source: vendor datasheets / TechPowerUp database, retrieved 2026-08-29. Real-world performance varies by workload, drivers and cooling.

Build compatibility & pairing guidance

Practical build notes derived from this part's dataset fields and TweakGearPro reference constants. Planning guidance, not purchase advice.

Estimated system PSU350 W (this part's 130 W TDP + ~150 W system overhead, with 20% headroom). Confirm with the PSU Wattage Calculator.
Cooler / thermalPlan cooling rated above this part's 130 W TDP; typical desktop safe ceiling is ~90°C (TweakGearPro reference). Check the Thermal Headroom tool.
Pairing balanceMatch with a CPU whose tier is within ~20 of this part's tier (39/100) to avoid a bottleneck. Run the Bottleneck Estimator.
VRAM fit8 GB GDDR6 — for gaming/ML sizing see the VRAM Recommendation tool.

Reference constants (PSU headroom 20%, safe CPU/GPU ceiling 90°C) from the TweakGearPro PC reference dataset, retrieved 2026-08-29. Adapter/case clearance and exact board power vary by model — verify with vendor datasheets.

Tune & power-plan your build

Input your cooling, case airflow and goal to generate a printable tuning sheet, or size your whole-system PSU.

Silicon-level tuning sheet

Estimates from typical thermal behavior — always verify with your own stress tests.

My Radeon RX 5500 XT tuning sheet

Headroom available
Estimated load temp44 °C
Thermal headroom to 90 °C46 °C
Clock delta (estimate)+14.3%
Voltage offset+0.06 V

Air cooler: modest OC is fine; consider an undervolt first for better sustained clocks.

Stability checklist

  1. Record your current temps at load (HWiNFO or the vendor tool) as the baseline.
  2. Apply a +0.06 V voltage offset in BIOS/Afterburner (overclock).
  3. Test with a 10-minute stress run (OCCT / Cinebench for CPU, FurMark/3DMark for GPU) — stop if temps exceed 90 °C.
  4. Expected sustained clock change: +14.3% (estimate).
  5. If unstable, step the offset back by half and retest; stability wins over a few hundred MHz.
  6. Re-check after driver updates — reapply and re-verify.

Generated at TweakGearPro · 2026-09-13

Whole-system power plan

Typical board-power sums; exact figures vary by model and workload.

My power plan — Radeon RX 5500 XT

Recommended PSU: 350 W
Estimated peak load272 W
Typical load (gaming/AI)200 W
Typical idle48.8 W
Headroom applied25%

PSUs are most efficient at 50–70% load. For transient GPU spikes, choose a quality 80 PLUS Gold+ unit. Generated at TweakGearPro · 2026-09-13

Release & generational notes

Radeon RX 5500 XT launched in 2019 on the RDNA 1 architecture as part of the Radeon RX 5000 family, sitting at tier 39/100 (Mainstream).

SeriesRadeon RX 5000
ArchitectureRDNA 1
Launch year2019
SuccessorRadeon RX 5600 XT (2020, tier 43/100)

In the Radeon RX 5000 series

Generational context is summarized from official release year and architecture only; TweakGearPro does not invent patch or refresh dates. For the full generational ranking, see the Desktop GPU Tier List.

Related hardware to compare

Same-tier peers plus a pairing from another category — open any profile.

● Data updated 2026-08-29

Sources & methodology

  • Specifications: vendor datasheets (NVIDIA, AMD, Intel, Samsung, WD, Crucial, Corsair, Seagate, Noctua, ASUS, LG, Dell and others) and the TechPowerUp database, retrieved 2026-08-29.
  • Relative-performance index: TweakGearPro estimate built from public benchmark / spec-class data; flagship-anchored percentages are planning estimates, not measured scores.
  • Reference constants (PSU headroom, safe thermal ceiling) from the TweakGearPro PC reference dataset, retrieved 2026-08-29.
  • Tuning, PSU and VRAM figures are planning estimates — verify with your own stress tests and the component vendor's documentation.
How this page's estimates are computed

The relative-performance percentage anchors the category flagship (highest tier) at 100 and scales each part by its tier ratio. The estimated system PSU adds a base system overhead to the part's TDP and applies a 20% headroom from the reference dataset, rounded to a common PSU rating. The tuning sheet estimates load temperature from TDP, cooling class and case airflow, then suggests a voltage offset and expected clock delta — always confirm with a stress test. The LLM planner converts model parameters and quantization to an approximate VRAM footprint (weights + KV-cache) and divides by the card's usable VRAM to suggest a card count. None of these outputs are benchmark guarantees. For non-CPU/GPU parts the tier reflects the part's spec class relative to the best current model in that category.

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