CAP CER 0.47UF 10V X7R 0603 Product overview: GRM188R71A474KA61D from Murata Electronics is a Capacitor for filtering, decoupling, timing, energy storage, power supply smoothing, and signal conditioning. It is useful for engineers and buyers comparing datasheets, replacement parts, BOM lines, package options, lifecycle status, and procurement availability. Key searchable attributes include 0.47UF, 10V. Search-friendly keywords include capacitor, decoupling, filtering, ceramic, electrolytic, 0.47UF, 10V, Ceramic Capacitors. This listing supports clearer product discovery for industrial, commercial, repair, automation, power, sensing, and embedded system projects. Product number 60-GRM188R71A474KA61
0.47µF ±10% 10V Ceramic Capacitor X7R 0603 (1608 Metric)
0.47µF ±10% 10V Ceramic Capacitor X7R 0603 (1608 Metric)
0.47µF ±10% 10V Ceramic Capacitor X7R 0603 (1608 Metric)
10V 470nF X7R ±10% 0603 Multilayer Ceramic Capacitors MLCC - SMD/SMT ROHS
CAP CER 0.47UF 10V X7R 0603
| ERSAELECTRONICS PTE. LTD. | DigiKey | DigiKey | LCSC Electronics Technology (HK) Limited | ODG (Origin Data Global) | |
|---|---|---|---|---|---|
| Product Category | Capacitors | Capacitors | Capacitors | Capacitors | Capacitors |
| Product Number | 60-GRM188R71A474KA61D | 490-6420-2-ND | 490-6420-6-ND | GRM188R71A474KA61D | GRM188R71A474KA61D |
| Product Name | 0.47UF 10V Capacitor | Ceramic Capacitors | Ceramic Capacitors | Capacitors >> Multilayer Ceramic Capacitors MLCC - SMD/SMT | Ceramic Capacitors |
| Configuration / Form Factor | Leaded Capacitor | Chip Capacitor | Chip Capacitor | Chip Capacitor | Chip Capacitor; Surface Mount, MLCC |
| RoHS Compliant | Yes | Yes | |||
| Operating Temperature | -55 to 125 C (-67 to 257 F) | -55 to 125 C (-67 to 257 F) | -55 to 125 C (-67 to 257 F) | -55 to 125 C (-67 to 257 F) | |
| Electrostatic Capacitors | Ceramic Composition | Ceramic Composition | Ceramic Composition | Ceramic Composition | Ceramic Composition |
| Capacitance Range | 0.4700 microF | 0.4700 microF | 0.4700 microF | 0.4700 microF | 0.4700 microF |