A BUCK type DCDC output constant current detection control circuit and method
A technology for detecting control and output voltage, used in control/regulation systems, output power conversion devices, conversion of DC power input to DC power output, etc. The effect of constant current control, simple structure and high precision
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Embodiment 1
[0026] Please refer to figure 1 , this embodiment provides a BUCK type DCDC output constant current detection control circuit, including an input voltage compensation network, an output voltage divider network, an input current sampling network, a loop control circuit and a step-down circuit; the input voltage compensation network is connected The output voltage divider network, the output voltage divider network and the input current sampling network are connected to the loop control circuit, and the step-down circuit is connected to the input current sampling network and the loop control circuit.
[0027] Specifically, the input voltage compensation network samples the input voltage error ΔVIN to generate the output compensation current Ic, the output voltage divider network samples the output voltage VOUT and the compensation current Ic to obtain the compensation voltage V2, the input current sampling network samples the input current Iin, and passes the input The current s...
Embodiment 2
[0037] This embodiment provides a BUCK type DCDC output constant current detection and control method, including the following steps:
[0038] S1. The input voltage compensation network samples the input voltage error amount ΔVIN, and generates an output compensation current Ic through the input voltage compensation network.
[0039] Wherein, the input voltage error amount ΔVIN is the difference between the actual input voltage VINact and the ideal input voltage VINideal. Specifically, step S1 specifically includes the following process: the input voltage compensation network samples the input voltage error amount ΔVIN, and the input voltage error amount ΔVIN passes through the resistor R4 The voltage divider network composed of R5 and ΔVIN×β is sent to the transconductance amplifier, and the output compensation current Ic=±(ΔVIN×β) / R6, where β is the voltage division coefficient of resistors R4 and R5.
[0040] S2. The output voltage divider network samples the output voltage...
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