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AN708 bảng dữ liệu(PDF) 6 Page - Vishay Siliconix |
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AN708 bảng dữ liệu(HTML) 6 Page - Vishay Siliconix |
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6 / 7 page ![]() AN708 Vishay Siliconix www.vishay.com S FaxBack 408-970-5600 6 Document Number: 70581 CONCLUSION The simple universal-input power supply design that has been presented combines economy and performance which should prove more than adequate for the majority of applications. The overall cost of the supply should rival linear regulators of similar power level if heatsink cost is considered. Good regulation has been achieved while maintaining the 3750-V ac input-to-output isolation mandated by VDE. The Si9120 eliminates the need for any external start-up circuitry. Also, foldback current-limiting is demonstrated which requires no feedback across the isolation boundary. APPENDIX A The SMP4N60 was tested for ability to withstand repetitive avalanche currents and for non-repetitive capability. Inductance values of 12 mH and 94 mH were used. Repetitive tests were run at 3 A, with 94 mH at 25_C. Failure current was measured at 25 _C and 100_C. Results were as follows: L = 94 mH L = 12 mH 25 _C 100 _C 25 _C 100 _C 4.25 A 2.40 A 7.28 A 6.40 A For the 11.1-W flyback supply presented here, the leakage inductance is specified at 60 mH maximum. The maximum drain current is set to approximately 1.0 A. Therefore, based on the above data, adequate margin is present to prevent avalanche failure. APPENDIX B A number of performance parameters of the Si9120 can be altered by setting Ibias to a value other that 15 mA. At lower Ibias, higher efficiency can be obtained. At higher Ibias, lower propagation delays and a wider error amplifier bandwidth are possible. Also, if a VCC supply other than 10 V is used, Rbias should be something other than 390 k W. Figure 3 below relates VCC to Rbias and typical Ibias. The equation given can be used for points not on the graph. 14.0 8.0 515 25 35 45 55 65 75 85 9.0 10.0 11.0 12.0 13.0 mA FIGURE 3. Relationship of VCC to Rbias an Typical Ibias R bias + V CC –2.3V –484 I bias I bias REFERENCES 1) Liu, K.H., “Effects of Leakage Inductance on the Cross Regulation in a Discontinuous-Mode Flyback Converter,” Proceedings, 1989 High Frequency Power Conference, Naples, Florida. 2) Chryssis, G., “High Frequency Switching Power Supplies,” McGraw Hill 1984. 3) Billings, K., “Switchmode Power Supply Handbook,” McGraw Hill 1989. 4) McLyman, Col. W.T., “Transformer and Inductor Design Handbook,” McGraw Hill 1988. |
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