
KNSCHA
KNSCHA 126RV0132 is a strong alternative with matching key electrical parameters and package.
Find and compare alternatives for the KNSCHA RVT47UF10V67RV0174, a 47µF 10V aluminum electrolytic capacitor. This guide helps identify pin-compatible and functional replacements for your design.
Key parameters match across top candidates; minor differences in secondary specs like ripple current should be checked.
Pin-compatible options in the same 4x5.4mm package are available, minimizing layout changes.
Multiple vendors offer compatible parts, improving supply chain resilience.
Direct replacement for RVT47UF10V67RV0174 should use only Datasheet verified or Strong match candidates; many approved options still require engineering review.
The most direct replacement is KNSCHA 126RV0132, which matches all critical parameters. For cross-vendor options, CX RVT1A470M0405 is a strong candidate.
The main risk is ensuring secondary electrical parameters like ripple current and ESR are within the application's tolerance, especially when switching manufacturers.

KNSCHA
KNSCHA 126RV0132 is a strong alternative with matching key electrical parameters and package.
| Feature / factor | RVT47UF10V67RV0174 | 126RV0132 | RVT1A470M0405 | Alt 3 | Compatibility / risk |
|---|---|---|---|---|---|
| Package | SMD, 4mm x 5.4mm | SMD, 4mm x 5.4mm | SMD, 4mm x 5.4mm | SMD, 4mm x 5.4mm — Identical package and dimensions.; RVT1A470M0405: Identical package and dimensions. | |
| Voltage | 10.0V | 10.0V | 10.0V | 10.0V — Voltage rating matches.; RVT1A470M0405: Voltage rating matches. | |
| Capacitance | 47µF | 47µF | 47µF | 47µF — Capacitance matches.; RVT1A470M0405: Capacitance matches. | |
| Ripple Current | 31mA | 31mA | 26mA | 31mA / 26mA — Ripple current matches.; RVT1A470M0405: Slightly lower ripple current. | |
| Lifetime | 2000 hours @ 105°C | 2000H @ 105℃ | - | 2000H @ 105℃ — Load life matches. |
Verified drop-in options for RVT47UF10V67RV0174 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.