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LM2575 Datasheet(PDF) 19 Page - Motorola, Inc |
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LM2575 Datasheet(HTML) 19 Page - Motorola, Inc |
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19 / 28 page ![]() LM2575 19 MOTOROLA ANALOG IC DEVICE DATA Figure 26. Inverting Buck–Boost Regulator with Delayed Startup D1 1N5819 L1 100 µH Output 2 4 Feedback Unregulated DC Input 12 V to 25 V Cin 100 µF /50 V 1 3 5ON/OFF Gnd +Vin Regulated Output –12 V @ 0.35 A Cout 1800 µF /16 V LM2575–12 C1 0.1 µF R1 47 k R2 47 k It has been already mentioned above, that in some situations, the delayed startup or the undervoltage lockout features could be very useful. A delayed startup circuit applied to a buck–boost converter is shown in Figure 26. Figure 32 in the “Undervoltage Lockout” section describes an undervoltage lockout feature for the same converter topology. Figure 27. Inverting Buck–Boost Regulator Shut Down Circuit Using an Optocoupler LM2575–XX 1 3 5 Gnd ON/OFF +Vin R2 47 k Cin 100 µF NOTE: This picture does not show the complete circuit. R1 47 k R3 470 Shutdown Input MOC8101 –Vout Off On 5.0 V 0 +Vin With the inverting configuration, the use of the ON/OFF pin requires some level shifting techniques. This is caused by the fact, that the ground pin of the converter IC is no longer at ground. Now, the ON/OFF pin threshold voltage (1.4 V approximately) has to be related to the negative output voltage level. There are many different possible shut down methods, two of them are shown in Figures 27 and 28. Figure 28. Inverting Buck–Boost Regulator Shut Down Circuit Using a PNP Transistor NOTE: This picture does not show the complete circuit. R2 5.6 k Q1 2N3906 LM2575–XX 1 3 5 Gnd ON/OFF R1 12 k –Vout +Vin Shutdown Input Off On +V 0 +Vin Cin 100 µF Negative Boost Regulator This example is a variation of the buck–boost topology and is called a negative boost regulator. This regulator experiences relatively high switch current, especially at low input voltages. The internal switch current limiting results in lower output load current capability. The circuit in Figure 29 shows the negative boost configuration. The input voltage in this application ranges from –5.0 V to –12 V and provides a regulated –12 V output. If the input voltage is greater than –12 V, the output will rise above –12 V accordingly, but will not damage the regulator. Figure 29. Negative Boost Regulator 1N5817 150 µH Output 2 4 Feedback Regulated Output Vout = –12 V Load Current from 200 mA for Vin = –5.2 V to 500 mA for Vin = –7.0 V Unregulated DC Input –Vin = –5.0 V to –12 V L1 D1 Cout 1000 µF /16 V Cin 100 µF /50 V LM2575–12 1 5 3 ON/OFF Gnd +Vin |
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