
Yageo
A 0603 capacitor with the same voltage rating but much lower capacitance (30pF vs 47pF).
CL10C470JC8NNNC is a general-purpose 47pF, 100V, 0603 C0G ceramic capacitor. While no direct replacements with identical capacitance were found, several parametric alternatives in the same package exist that may be suitable after engineering review.
Capacitance difference requires circuit validation.
Alternatives in the same 0603 package are available.
No, there are no direct drop-in replacements with identical key parameters. Alternatives require engineering validation due to capacitance differences.
Evaluate same-package parametric alternatives, starting with the closest capacitance value (56pF), and confirm circuit tolerance.
Capacitance mismatch. Using a part with different capacitance can affect circuit performance, especially in timing or filter applications.

Yageo
A 0603 capacitor with the same voltage rating but much lower capacitance (30pF vs 47pF).
| Feature / factor | CL10C470JC8NNNC | CC0603JRNPO0BN300 | CC0603JRNPO0BN330 | CC0603JRNPO0BN560 | Compatibility / risk |
|---|---|---|---|---|---|
| Package | 0603 (1608 Metric) | 0603 (1608 metric) | 0603 (1608 metric) | 0603 (1608 metric) | 0603 (1608 metric) — Same package and pin count.; CC0603JRNPO0BN330: Same package and pin count.; CC0603JRNPO0BN560: Same package and pin count. |
| Capacitance | 47 pF | 30 pF | 33 pF | 56 pF | 30 pF / 33 pF / 56 pF — 36% lower capacitance, requires circuit validation.; CC0603JRNPO0BN330: 30% lower capacitance, requires circuit validation.; CC0603JRNPO0BN560: 19% higher capacitance, requires circuit validation. |
| Voltage | 100 V | 100 V | 100 V | 100 V | 100 V — Same voltage rating.; CC0603JRNPO0BN330: Same voltage rating.; CC0603JRNPO0BN560: Same voltage rating. |
| Dielectric | C0G | - | - | NP0 (C0G) | NP0 (C0G) — NP0 is equivalent to C0G. |
The best alternatives are other 0603 C0G capacitors, but they have different capacitance values. Yageo's CC0603JRNPO0BN560 (56pF) is the closest, but requires engineering review to ensure your circuit can tolerate the change.