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FIP4F8S датащи(PDF) 29 Page - Fuji Electric |
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FIP4F8S датащи(HTML) 29 Page - Fuji Electric |
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29 / 33 page ![]() AN-087E Rev.1.0 April-2011 29 FA5526/5527/5528/5536/5537/5538 Fuji Electric Co., Ltd. http://www.fujielectric.co.jp/products/semiconductor/ (7) Improvement of input power at light load This IC is provided with a function to lower switching frequency at light load in order to reduce power dissipation. However, depending on the circuit used, switching frequency cannot be sufficiently reduced, leading to insufficient reduction of power dissipation at light load. In such a case, connect R6 between the auxiliary winding and the IS pin as shown in Fig.36. When R4 is 1k ohm, R6 is several hundreds of k ohm to 1Meg ohm. The smaller the R6 is, the lower the switching frequency at light load. However, negative voltage is applied to the IS pin due to R6 for some time while MOSFET is ON. Be aware that the negative voltage shall not be lower than absolute maximum rationg,-0.3V. In addition, when switching frequency is set too low at light load, transformer or other apparatus may produce noise. (8) Prevention of malfunction caused by noise This IC is an analog IC, and noise applied to anyone of the pins may cause malfunction. If malfunction is detected, use the IC through referring to the following description and fully checking a power supply unit. In addition, arrange the capacitors connected to pins as close to the IC as possible and take great care of wiring, for effective noise suppression. (8-1) FB pin The FB pin sets the threshold voltage of the current comparator. Any noise applied to the FB pin may disturb output pulses. Usually the capacitor C5 is connected as shown in Fig.37 to suppress noise. (8-2) IS pin As described in “9.-(4) Blanking,” this IC has a blanking function, and malfunction caused by a surge current produced at turn-on of the MOSFET is hard to occur. A malfunction, however, may occur when a surge current is excessively large or when any noise is externally applied at other than turn-off. In such a case, add a CR filter to the IS pin as shown in Fig.38. (8-3) VCC pin Relatively large noise may occur at the VCC pin because a large current flows from the VCC pin at the instant of driving the MOSFET. If noise is excessively large, a malfunction may occur of the IC. Pay full attention to capacitance and characteristics of the capacitor between the VCC pin and GND to reduce noise as much as possible. Fig.36 Input power improvement circuit at light load Fig.37 Prevention of malfunction caused by noise (FB pin) Fig.38 Prevention of malfunction caused by noise (IS pin) |
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