
Yageo
Strong parametric alternative with closer resistance (15kΩ vs 15.4kΩ) and superior TCR (10ppm vs 25ppm).
Yageo's RT0603BRD0715K4L is a 15.4 kΩ, 0.1% tolerance, 0603 thin-film precision resistor. Finding a replacement requires matching its high precision, stability, and low temperature coefficient.
Resistance value mismatch requires circuit analysis.
All viable candidates share the same 0603 package.
No exact drop-in replacement is identified. Several parts from the same family are parametrically similar but have different resistance values requiring design review.
Use another precision thin-film resistor from the Yageo RT series with the closest available resistance value, such as RT0603BRB0715KL.
The primary risk is a shift in circuit performance due to the resistance value difference, as the target is a high-precision component.

Yageo
Strong parametric alternative with closer resistance (15kΩ vs 15.4kΩ) and superior TCR (10ppm vs 25ppm).
| Feature / factor | RT0603BRD0715K4L | RT0603BRB0715KL | RT0603BRD0716K5L | RT0603BRD0716K9L | Compatibility / risk |
|---|---|---|---|---|---|
| Resistance | 15.4 kΩ | 15 kΩ | 16.5 kΩ | 16.9 kΩ | 15 kΩ / 16.5 kΩ / 16.9 kΩ / 16 kΩ — -2.6% deviation from target.; RT0603BRD0716K5L: +7.1% deviation from target.; RT0603BRD0716K9L: +9.7% deviation from target.; RT0603BRD0716KL: +3.9% deviation from target. |
| Tcr | 25 ppm/°C | 10 ppm/°C | 25 ppm/°C | 25 ppm/°C | 10 ppm/°C / 25 ppm/°C — Candidate has better temperature stability.; RT0603BRD0716K5L: matched; RT0603BRD0716K9L: matched; RT0603BRD0716KL: matched |
| Tolerance | 0.1% | 0.1% | 0.1% | 0.1% | 0.1% — matched; RT0603BRD0716K5L: matched; RT0603BRD0716K9L: matched; RT0603BRD0716KL: matched |
| Package | 0603 | 0603 | 0603 | 0603 | 0603 — matched; RT0603BRD0716K5L: matched; RT0603BRD0716K9L: matched; RT0603BRD0716KL: matched |
| Technology | Thin Film | - | - | - | Thin Film — matched |
The best alternative identified is RT0603BRB0715KL. It has a very close resistance value (15kΩ vs 15.4kΩ) and a superior temperature coefficient (10ppm/°C), but the resistance difference must be verified for your application.