
HONOR
An upgrade with higher voltage rating (16V); requires datasheet review for ESR and ripple current.
Find replacements for the Panasonic EEEFTA471XAP, a 470µF 10V low-ESR aluminum electrolytic capacitor. Alternatives with matching or higher voltage ratings are available but require datasheet review for key performance specs.
ESR and ripple current are critical for performance and must be verified.
Candidates with 6.3mm x 7.7mm packages are physically compatible.
Yes, parts like Lelon's VZT471M1ATR-0607 offer the same core specs and package, but require datasheet verification for secondary parameters like ESR.
Use a candidate with 470µF capacitance and a 10V or higher voltage rating, after verifying ESR and ripple current specs from its datasheet.
The main risk is a mismatch in ESR or ripple current rating, which can affect circuit stability, filtering performance, and component lifetime.

HONOR
An upgrade with higher voltage rating (16V); requires datasheet review for ESR and ripple current.
| Feature / factor | EEEFTA471XAP | GVE1C471M0607 | VZT471M1ATR-0607 | Alt 3 | Compatibility / risk |
|---|---|---|---|---|---|
| Package | 6.3 mm x 7.7 mm | 6.3 mm x 7.7 mm | 6.3 mm x 7.7 mm | 6.3 mm x 7.7 mm — Package dimensions match.; VZT471M1ATR-0607: Package dimensions match. | |
| Capacitance | 470 µF | 470 µF | 470 µF | 470 µF — Capacitance values are identical.; VZT471M1ATR-0607: Capacitance values are identical. | |
| Voltage | 10 V | 16 V | 10 V | 16 V / 10 V — Higher voltage rating provides more margin.; VZT471M1ATR-0607: Voltage ratings are identical. | |
| Esr | 0.16 Ω | Unknown | Unknown | Unknown — Target is low ESR (0.16Ω); candidate is 'Low Impedance' but needs specific value verification.; VZT471M1ATR-0607: Target is low ESR (0.16Ω); candidate must be verified. | |
| Lifetime | 2000-5000h | - | 2000h | 2000h — Candidate may have shorter lifetime. |
Verified drop-in options for EEEFTA471XAP are limited in the current batch. Review candidates marked Strong match or Datasheet verified, and validate package, pinout, and electrical limits before committing a BOM change.