
Yageo
Strong parametric alternative from the same series with slightly lower resistance (11kΩ).
The Yageo RT0402BRD0711K5L is a precision 0402 thin-film chip resistor with 11.5 kΩ resistance, ±0.1% tolerance, and a 25 ppm/°C TCR. This page provides analysis of potential alternatives.
Resistance deviates by <5%. TCR and tolerance match on best options. Requires circuit analysis.
All strong candidates share the same 0402 package and footprint.
No exact direct replacement with 11.5kΩ resistance was found in this batch. The closest options are 11kΩ and 12kΩ parts from the same manufacturer series.
Use a part from the same Yageo RT series with a nearby resistance value, like RT0402BRD0711KL (11kΩ) or RT0402BRD0712KL (12kΩ).
The main risk is the slight deviation in resistance value, which may affect circuit performance in precision applications.

Yageo
Strong parametric alternative from the same series with slightly lower resistance (11kΩ).
| Feature / factor | RT0402BRD0711K5L | RT0402BRD0711KL | RT0402BRD0712K1L | RT0402BRD0712KL | Compatibility / risk |
|---|---|---|---|---|---|
| Resistance | 11.5 kΩ | 11 kΩ | 12.1 kΩ | 12 kΩ | 11 kΩ / 12.1 kΩ / 12 kΩ — Candidate resistance is ~4.3% lower than target.; RT0402BRD0712K1L: Candidate resistance is ~5.2% higher than target.; RT0402BRD0712KL: Candidate resistance is ~4.3% higher than target.; RT0402BRE0711KL: Candidate resistance is ~4.3% lower than target. |
| Tcr | 25 ppm/°C | 25 ppm/°C | 25 ppm/°C | 25 ppm/°C | 25 ppm/°C / 50 ppm/°C — matched; RT0402BRD0712K1L: matched; RT0402BRD0712KL: matched; RT0402BRE0711KL: Candidate has worse temperature stability. |
| Tolerance | ±0.1% | ±0.1% | ±0.1% | ±0.1% | ±0.1% — matched; RT0402BRD0712K1L: matched; RT0402BRD0712KL: matched; RT0402BRE0711KL: matched |
| Package | 0402 | 0402 | 0402 | 0402 | 0402 — Same package and pin count.; RT0402BRD0712K1L: Same package and pin count.; RT0402BRD0712KL: Same package and pin count.; RT0402BRE0711KL: Same package and pin count. |
Yageo's RT0402BRD0711KL (11kΩ) and RT0402BRD0712KL (12kΩ) are strong candidates from the same series, matching all key parameters except for a small difference in resistance. Review your circuit's tolerance for this deviation.