Best Alternatives to FRC0402F2204TS

Package: 0402FOJANChip Resistor - Surface MountResistance: 2.2 MΩTolerance: ±1%Power Rating: 1/16 WPackage / Case: 0402 (1005 Metric)Max Working Voltage: 50 V

Find alternatives for the FRC0402F2204TS, a 2.2MΩ, 1% tolerance, 1/16W 0402 chip resistor. Substitutes may have different tolerance or resistance values, requiring careful review.

AI replacement insight

Electrical riskmedium

Substitutes have different tolerance or resistance values.

Package risklow

All viable alternatives share the same 0402 package.

Can it be replaced directly?

No direct drop-in replacement with identical key parameters was found. Alternatives require review of tolerance or resistance value.

Best replacement path

If tolerance is flexible, RC0402JR-072M2L is a strong candidate. If resistance value can be slightly lower, FRC0402F2004TS is a good option.

Main risk

The primary risk is parametric mismatch, specifically in resistance tolerance or the exact resistance value.

Recommended alternatives

2
RC0402JR-072M2L package
Needs validationmedium risk

A 0402 resistor with same resistance and power, but wider tolerance (±5%).

View details

Alternative comparison matrix

Feature / factorFRC0402F2204TSRC0402JR-072M2LFRC0402F2004TSAlt 3Compatibility / risk
Package04020402 (1005 metric)04020402 (1005 metric) — Package size matches.; FRC0402F2004TS: Package size matches.
Resistance2.2 MΩ2.2 MΩ2.0 MΩ2.2 MΩ / 2.0 MΩ — Resistance value matches.; FRC0402F2004TS: Resistance is ~9% lower.
Tolerance±1%±5%±1%±5% / ±1% — Wider tolerance is a downgrade.; FRC0402F2004TS: Tolerance matches.
Power1/16 W1/16 W1/16 W1/16 W — Power rating matches.; FRC0402F2004TS: Power rating matches.
Tcr±100 ppm/°C±100 ppm/°C±100 ppm/°C±100 ppm/°C — Temperature coefficient matches.; FRC0402F2004TS: Temperature coefficient matches.

Application & sourcing insights

Questions & answers

RC0402JR-072M2L has the same 2.2MΩ resistance but a wider ±5% tolerance. FRC0402F2004TS has the same ±1% tolerance but a lower 2.0MΩ resistance. The best choice depends on your circuit's sensitivity to tolerance versus resistance value.