Quick response loop compensation circuit, loop compensation chip and switching power supply
A loop compensation and fast response technology, applied in electrical components, regulating electrical variables, output power conversion devices, etc., can solve the problems of high designer requirements, output voltage overshoot, large debugging workload, etc. Stress, avoid output voltage overshoot, save manpower
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Embodiment 1
[0040] Such as Figure 6 As shown, it is a functional block diagram of the first implementation mode of the fast response loop compensation circuit of the present invention, including: a variable output slew rate differential amplifier, a dynamic current sensing operational amplifier, a zero resistor R1, a pole resistor R2, and a compensation capacitor C C. The signal input positive port 101 of the variable output slew rate differential amplifier is used as the signal input positive port of the fast response loop compensation circuit. The signal input negative port 102 of the variable output slew rate differential amplifier is used as the signal input negative port of the fast response loop compensation circuit, and the voltage difference between port 101 and port 102 is the input voltage of the fast response loop compensation circuit. The voltage input positive port 103 of the variable output slew rate differential amplifier is connected to the positive VCC of the power supp...
Embodiment 2
[0071] Such as Figure 7 As shown, it is a functional block diagram of the second implementation of the fast response loop compensation circuit of the present invention. On the basis of the first embodiment, a low transconductance differential amplifier is added, and the signal input positive port 201 of the low transconductance differential amplifier can be connected to The signal input positive port 101 of the variable output slew rate differential amplifier is connected as the signal input positive port of the fast response loop compensation circuit, and its signal input negative port 202 is in phase with the signal input negative port 102 of the variable output slew rate differential amplifier. Connection, as the signal input negative port of the fast response loop compensation circuit, its output port 205 is connected with the output terminal 111 of the dynamic current sensing operational amplifier, its voltage input positive port 203 is connected with the power supply pos...
Embodiment 3
[0079] This embodiment provides a loop compensation chip, such as Figure 14 As shown, it includes the fast-response loop compensation circuit of Embodiment 1 or Embodiment 2. The loop compensation chip at least includes a high-voltage power input positive pin VDD (port 401), a low-voltage power output pin VCC (port 402), a feedback voltage input pin FB (port 403), and a power input negative pin GND (port 404) , soft start time setting pin SS (port 405), optocoupler drive pin V Opt (port 406).
[0080] The loop compensation chip of the present invention also includes a reference voltage source generating circuit, an optocoupler drive tube PM0, a soft-start resistor R SS , Soft-start cut-off diode D SS . The input end of the reference voltage source generation circuit is connected to the positive input pin VDD of the high-voltage power supply, the first output end of the reference voltage source generation circuit is connected to the signal input positive port of the fast r...
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