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CSR09B565KB 데이터시트(PDF) 78 Page - Kemet Corporation |
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CSR09B565KB 데이터시트(HTML) 78 Page - Kemet Corporation |
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78 / 84 page ![]() ® KEMET 78 KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606 (864) 963-6300 monolithic ceramic capacitors) it is insignificant at the basic measurement frequencies of 120 and 1000 Hz. RS — Represents the actual ohmic series resistance in series with the capacitance. Lead wires and capacitor electrodes are contributing sources. RL — Capacitor Leakage Resistance. Typically it can reach 50,000 megohms in a tantalum capacitor. It can exceed 1012 ohms in monolithic ceramics and in film capacitors. Rd — The dielectric loss contributed by dielectric absorption and molecular polarization. It becomes very significant in high frequency measurements and applica- tions. Its value varies with frequency. Cd — The inherent dielectric absorption of the solid tantalum capacitor which typically equates to 1-2% of the applied voltage. As frequency increases, X c continues to decrease according to its equation above. There is unavoidable inductance as well as resistance in all capacitors, and at some point in frequency, the reactance ceases to be capacitive and becomes inductive. This frequency is called the self-resonant point. In solid tantalum capacitors, the resonance is damped by the ESR, and a smooth, rather than abrupt, transition from capacitive to inductive reac- tance (XL = 2pfL) follows. Typical ESR and Z performance is given for repre- sentative capacitor ratings in Figures 9 through 11. Measured impedance will be affected by the length of lead wire included. Data for the curves were taken by including 1/2" of each lead wire in the measuring circuit. Despite the fact that the reactance is entirely induc- tive above the self-resonance, these capacitors find use as decoupling devices above 10 MHz. Special designs have been developed for minimum inductance and are used above 100 MHz. ESR and Z are also affected by temperature. At 100 kHz, ESR decreases with increasing temperature. The amount of change is influenced by the size of the capaci- tor and is generally more pronounced on smaller ratings. 13. POWER DISSIPATION Permissible power dissipation has been empirically established for all Series and is listed in each respective product section. See pages 6-41 for herm seal, 42-50 for axial and radial molded, and 61-70 for tantalum dipped. It is usually most convenient to translate the permis- sible power into an AC voltage rating. Assuming a sinu- soidal waveform, the “ripple voltage” permissible may be calculated from the impedance and ESR data shown in the respective product section. However, three criteria must be observed: APPLICATION NOTES FOR TANTALUM CAPACITORS 10VDC Rated Frequency (MHz) 1 10 100 0.1 Impedance ESR (Ohms) 10 µ Fd 33 µFd 100 µFd 220 µFd 100 10M 1M 100K 10K 1000 ESR and Impedance vs. Frequency Figure 9. Frequency (MHz) 0.1 35VDC Rated 100 10M 1M 100K 10K 1000 Frequency (MHz) 1 10 100 0.1 Impedance ESR (Ohms) 2.7 µ Fd 4.7 µ Fd 22 µ Fd 47 µ Fd 2.7 µ Fd 47 µFd 22 µFd 4.7 µFd Figure 11a. ESR and Impedance vs. Frequency 20VDC Rated Frequency (MHz) 1 3 10 0.1 Impedance ESR (Ohms) 100 µFd 0.3 30 47 µ Fd 68 µFd 100 10M 1M 100K 10K 1000 Figure 10. ESR and Impedance vs. Frequency 10 1 0.1 -50 Temperature - Degrees Centigrade -25 0 25 50 75 100 125 Multiplier of 100kHz ESR Figure 11b Typical Effect of Temperature on 100 kHz ESR |
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