Product Overview
The RF Series Miniature Aluminum Electrolytic Capacitors are designed for high-performance applications requiring low impedance and downsized components. These capacitors are suitable for power supply output and operate reliably at 105 for 4000 to 8000 hours. They are RoHS2.0 compliant, ensuring adherence to environmental standards.
Product Attributes
- Series: RF Series
- Type: Miniature Aluminum Electrolytic Capacitors
- Key Features: Low impedance, downsized
- Temperature Rating: 105
- Expected Lifetime: 4000~8000 hours
- Compliance: RoHS2.0 Compliant
Technical Specifications
| Item | Characteristic | Details | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| Category Temperature Range | -40 ~ +105 | |||||||||
| Rated Voltage | 6.3 ~ 100V.DC | |||||||||
| Capacitance Tolerance | 20%(M) (at 20, 120Hz) | |||||||||
| Leakage Current | I 0.01CV or 3A, whichever is greater (After 2 minutes application of rated voltage) (at 20) | |||||||||
| Dissipation Factor (tan) | tan | See table for specific voltage ratings. Additional 0.02 for every 1000 F exceeding 1000 F (at 20, 120Hz). | ||||||||
| Low Temperature Characteristics | Impedance ratio Z(-25)/Z(+20) 2 (Max.); Z(-40)/Z(+20) 3 (Max.) (at 120Hz) | |||||||||
| Endurance | Capacitance change 25% of initial value; D.F.(tan) 200% of initial specified value; Leakage current initial specified value. Conditions: Applied max. allowable ripple current within rated voltage at 105 for specified time. | |||||||||
| Shelf Life | Capacitance change 25% of initial value; D.F.(tan) 200% of initial specified value; Leakage current 200% of initial specified value. Conditions: Stored at 105 without voltage for 500 hours. | |||||||||
| Dimensions (Unit: mm) |
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| Rated Ripple Current Coefficient | See frequency coefficient table. | |||||||||
| Standard Ratings | See detailed table for WV(V), Cap.(F), Case size DL (mm), Impedance () Max. 20/100kHz, and Rated ripple current (mArms) 105/100KHz. | |||||||||
| Note on Endurance | 5 | Endurance is halved for every 5 rise in temperature due to self-heating from ripple current. Reduce ripple current for longer life. |
2411201855_BERYL-Electronic-Tech-RF063M561LO13-20TA-1A1E_C2837922.pdf
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