
Yageo
Very close parametric match, differing only in resistance (499Ω vs 510Ω). Strong candidate for pin-to-pin replacement.
RT0805BRD07510RL is a precision 510 Ohm thin-film chip resistor from Yageo in an 0805 package, featuring a tight ±0.1% tolerance and a low 25 ppm/°C TCR for stable, high-accuracy circuits.
Resistance, tolerance, and TCR are critical for precision applications and any deviation requires analysis.
The 0805 package is a widely available industry standard, ensuring mechanical compatibility.
Direct replacement for RT0805BRD07510RL should use only Datasheet verified or Strong match candidates; many approved options still require engineering review.
The closest alternative is RT0805BRD07499RL, which matches all key specs except for a minor resistance difference (499Ω vs 510Ω).
The primary risk is substituting with a part that has a different resistance value, wider tolerance, or higher TCR, which can affect circuit accuracy and stability.

Yageo
Very close parametric match, differing only in resistance (499Ω vs 510Ω). Strong candidate for pin-to-pin replacement.
| Feature / factor | RT0805BRD07510RL | RT0805BRD07499RL | RT0805BRD07470RL | Alt 3 | Compatibility / risk |
|---|---|---|---|---|---|
| Package | 0805 | 0805 | 0805 | 0805 — Standard 0805 package.; RT0805BRD07470RL: Standard 0805 package. | |
| Resistance | 510 Ω | 499 Ω | 470 Ω | 499 Ω / 470 Ω — Very close E96 value, ~2.2% difference.; RT0805BRD07470RL: Standard value, but ~7.8% lower. | |
| Tolerance | ±0.1% | ±0.1% | ±0.1% | ±0.1% — Matches precision requirement.; RT0805BRD07470RL: Matches precision requirement. | |
| Tcr | 25 ppm/°C | 25 ppm/°C | 25 ppm/°C | 25 ppm/°C — Matches temperature stability.; RT0805BRD07470RL: Matches temperature stability. | |
| Technology | Thin Film | Thin Film | - | Thin Film — Same high-stability technology. |
Verified drop-in options for RT0805BRD07510RL are limited in the current batch. Review candidates marked Strong match or Datasheet verified, and validate package, pinout, and electrical limits before committing a BOM change.