The Vishay VJ Commercial Series capacitor has a capacitance of 0.1 ¬µF and a voltage rating of 100V, with a tolerance of ¬±10%. It features an X7R dielectric, which is suitable for applications requiring stable capacitance over a wide temperature range of -55 ¬8C to +150 ¬8C. The capacitor is designed for surface mount technology in a 1210 case size, making it compatible with various PCB layouts. It is ideal for decoupling, filtering, and surge suppression applications. The component is RoHS compliant, ensuring it meets environmental regulations. Its reliable performance characteristics include a maximum dissipation factor of 2.5% at 1 kHz for voltages above 25V and an insulating resistance of at least 100,000 MOc at +25 ¬8C. This capacitor is suitable for commercial applications where reliability and stability are essential.
0.1µF ±10% 100V Ceramic Capacitor X7R 1210 (3225 Metric)
0.1µF ±10% 100V Ceramic Capacitor X7R 1210 (3225 Metric)
0.1µF ±10% 100V Ceramic Capacitor X7R 1210 (3225 Metric)
CAP, 0.1UF, 100V, MLCC, 1210 ROHS COMPLIANT: YES
CAP, 0.1µF, 100V, 10%, X7R, 1210; Capacitance:0.1µF; Voltage Rating:100V; Ceramic Capacitor Case:1210 [3225 Metric]; Capacitance Tolerance:± 10%; Dielectric Characteristic:X7R; Product Range:VJ Series; Operating Temperature RoHS Compliant: Yes
| DigiKey | DigiKey | Newark, An Avnet Company | Newark, An Avnet Company | |
|---|---|---|---|---|
| Product Category | Capacitors | Capacitors | Capacitors | Capacitors |
| Product Number | 720-1820-2-ND | 720-1820-6-ND | 69AH3607 | 62AC8704 |
| Product Name | Ceramic Capacitors | Ceramic Capacitors | Cap, 0.1Uf, 100V, Mlcc, 1210 Rohs Compliant Vishay | Cap, 0.1Μf, 100V, 10%, X7R, 1210; Capacitance Vishay |
| Configuration / Form Factor | Chip Capacitor | Chip Capacitor | ||
| Applications | General Purpose | General Purpose | ||
| Operating Temperature | -55 to 150 C (-67 to 302 F) | -55 to 150 C (-67 to 302 F) | ||
| Electrostatic Capacitors | Ceramic Composition | Ceramic Composition | ||
| Capacitance Range | 0.1000 microF | 0.1000 microF | 0.1000 microF |