CAP CER 0.012UF 10V C0G/NP0 0805 Product overview: 0805J0100123FCR from Knowles Syfer 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 0.012UF, 10V. Search-friendly keywords include capacitor, decoupling, filtering, ceramic, electrolytic, 0.012UF, 10V, Ceramic Capacitors. This listing supports clearer product discovery for industrial, commercial, repair, automation, power, sensing, and embedded system projects. Product number 60-0805J0100123FCR can be used for catalog matching and distributor lookup.
Manufacturer: Knowles Syfer
Win Source Part Number: 760063-0805J0100123F
Packaging: Reel package
Operating Temperature Range: -55°C ~ 125°C
Features: Epoxy Mountable
Package: 0805
Applications: General
Mounting: Surface Mount, MLCC
Capacitance: 0.012μF
Tolerance: ±1%
Temperature Coefficient: C0G, NP0
Family Name: 805
Categories: Capacitors
Dimension: 0.079" L x 0.049" W (2.00mm x 1.25mm)
Voltage Rating DC: 10V
Thickness (Maximum): 0.051" (1.30mm)
Alternative Parts (Cross-Reference): C0805C123F8GAC7210; 0805N123F100LT; VJ0805A123FXQRW1BC;
Introduction Date: June 02, 2011
ECCN: EAR99
Country of Origin: China
Estimated EOL Date: 2029
Popularity: Medium
Fake Threat In the Open Market: 86 pct.
Supply and Demand Status: Limited
Quantity per package: 12k pcs
| ERSAELECTRONICS PTE. LTD. | Win Source Electronics | |
|---|---|---|
| Product Category | Capacitors | Capacitors |
| Product Number | 60-0805J0100123FCR | 760063-0805J0100123FCR |
| Product Name | 0.012UF 10V Capacitor | Ceramic Capacitors - 0805J0100123FCR |
| Configuration / Form Factor | Leaded Capacitor | |
| RoHS Compliant | Yes | |
| Operating Temperature | -55 to 125 C (-67 to 257 F) | -55 to 125 C (-67 to 257 F) |
| Electrostatic Capacitors | Ceramic Composition | |
| Capacitance Range | 0.0120 microF | 0.0120 microF |