
Yageo
Similar thick film resistor in 0603 package, but with 6.49kΩ resistance. Requires engineering review.
RC0603FR-076K2L is a general-purpose 6.2kΩ 1% 0603 thick film resistor from Yageo. While no exact drop-in replacement is available, several parametric alternatives exist with slight variations in resistance and technology.
Resistance values differ by 4-10%. This is acceptable for many applications but must be verified.
All suggested alternatives use the same 0603 package, ensuring form and fit compatibility.
Some options are Thin Film, which may have different pulse/surge handling than the target's Thick Film.
No direct drop-in replacement was found. The closest option is RC0603FR-076K49L, which has a slightly different resistance of 6.49kΩ compared to the original 6.2kΩ.
RC0603FR-076K49L is the most direct path, offering the same technology with a minor resistance change. For higher precision, consider thin film options like RT0603BRD076K8L, but verify technology suitability.
The primary risk is parametric mismatch. All viable alternatives have a different resistance value, and some use a different resistor technology (thin film vs. thick film).

Yageo
Similar thick film resistor in 0603 package, but with 6.49kΩ resistance. Requires engineering review.
| Feature / factor | RC0603FR-076K2L | RC0603FR-076K49L | RT0603BRD075K6L | RT0603BRD076K8L | Compatibility / risk |
|---|---|---|---|---|---|
| Package | 0603 (1608 metric) | 0603 | - | - | 0603 — Same package and pin count. |
| Resistance | 6.2 kΩ | 6.49 kΩ | - | - | 5.6 kΩ — Resistance differs by -9.7%. |
| Technology | Thick Film | Thick Film | - | - | Thin Film — Different technology may affect noise and pulse handling. |
| Tolerance | ±1% | ±1% | - | - | ±0.1% — Tighter tolerance is an upgrade. |
| Tcr | ±100 ppm/°C | ±100 ppm/°C | - | - | 25 ppm/°C — Improved TCR provides better stability. |
The best alternative is likely RC0603FR-076K49L. It shares the same manufacturer, series, and specifications, with only a minor difference in resistance (6.49kΩ vs 6.2kΩ).