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SMP402 데이터시트(PDF) 5 Page - Power Integrations, Inc. |
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SMP402 데이터시트(HTML) 5 Page - Power Integrations, Inc. |
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5 / 16 page ![]() D 1/96 SMP402 5 POLARITY current threshold. Regulation of the output voltage is detected by a comparator which looks for error amplifier saturation in the output high (maximum duty cycle) state. Power supply turn on and turn off with a slowly changing input voltage is shown in Figure 4 as measured using the circuit shown in Figure 6. Also shown are the level and polarity outputs. The input voltage must rise above 32 V before the SMP402 will turn on. At this input voltage the current through R1 into the SENSE+ input exceeds the threshold current (typically 23 µA), the LEVEL and POLARITY outputs go high, and the power supply turns on. As the input voltage goes down, LEVEL will go low at approximately 30 V, but POLARITY will stay high. As the input voltage continues to drop, POLARITY goes low at approximately 12 V and the converter loses regulation at approximately 10 V and turns off. The LEVEL output will go high and the power supply turns on when the input voltage reaches -32 V. POLARITY stays low to indicate that the input voltage has reversed polarity. As the negative input voltage falls toward zero, LEVEL goes low at approximately -30 V and the converter loses regulation and turns off at approximately -10 V. Enable The power supply can be shut down by pulling the ENABLE pin low. It is internally pulled up to V S with a 100 µA (nominal) current source. However, it is recommended that this pin be tied to V S if it is unused. P-Channel Output Transistor The output MOSFET is a 90 V pass transistor capable of supplying >200 mA. To minimize switching noise and EMI, it is important to keep the path from OUT through the output diode, the input storage capacitor, and into V IN as short as possible. Functional Description (cont.) Figure 5. LEVEL/POLARITY Truth Table. The LEVEL and POLARITY signals are only valid when the output voltage is in regulation. INPUT VOLTAGE CONDITION POLARITY LEVEL Negative voltage, level too low 0 0 Negative voltage, correct level 0 1 Positive voltage, level too low 1 0 Positive voltage, correct level 1 1 |
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