
FOJAN
A form-fit alternate with the same capacitance and voltage, but a wider tolerance of ±5%.
Yageo's CC0402GRNPO9BN200 is a 20pF, 50V, ±2% precision NP0 ceramic capacitor in a standard 0402 package. Finding a direct replacement requires matching capacitance, voltage, and tight tolerance.
Tolerance relaxation from ±2% to ±5% requires circuit analysis.
Candidates share the same 0402 package.
Many similar 0402 capacitors are available from multiple vendors.
No direct, fully equivalent replacement was found in this batch. Alternatives have relaxed tolerances or slightly different capacitance values.
Consider parametric alternatives like FCC0402N200J500AT, but verify the impact of its wider ±5% tolerance on your circuit's performance.
The primary risk is substituting the target's ±2% precision tolerance with a more common ±5% tolerance, which can impact timing or filtering accuracy.

FOJAN
A form-fit alternate with the same capacitance and voltage, but a wider tolerance of ±5%.
| Feature / factor | CC0402GRNPO9BN200 | FCC0402N200J500AT | CC0402JRNPO0BN220 | Alt 3 | Compatibility / risk |
|---|---|---|---|---|---|
| Package | 0402 (1005 metric) | 0402 (1005 Metric) | 0402 (1005 Metric) | 0402 (1005 Metric) — Identical package ensures physical compatibility.; CC0402JRNPO0BN220: Identical package ensures physical compatibility. | |
| Capacitance | 20pF | 20pF | 22pF | 20pF / 22pF — Capacitance value is identical.; CC0402JRNPO0BN220: Slightly higher capacitance (+10%). | |
| Voltage | 50V | 50V | 100V | 50V / 100V — Voltage rating is identical.; CC0402JRNPO0BN220: Higher voltage rating provides more margin. | |
| Tolerance | ±2% | ±5% | ±5% | ±5% — Wider tolerance may affect precision circuits.; CC0402JRNPO0BN220: Wider tolerance may affect precision circuits. | |
| Dielectric | NP0 (C0G) | C0G (NP0) | - | C0G (NP0) — Dielectric material is equivalent. |
FCC0402N200J500AT is a strong candidate with identical capacitance and voltage, but has a wider ±5% tolerance. This is suitable for general applications but requires review for precision circuits.