Phase Shift Circuit for Interleaved PFC Ripple Reduction

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Solution Overview

Problem

Existing phase shift circuits in interleaved power factor correction circuits face challenges in accurately controlling the phase difference between driving signals for switches in main and sub circuits, leading to increased ripple components and electromagnetic interference.

Innovation Solution

A phase shift circuit that includes a ramp generation unit, a reference signal generation unit, and a comparison unit, which generates a clock signal by changing the negative or positive value of offset components within every operating period, ensuring a consistent phase difference of 180° between driving signals for switches in the main and sub circuits.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Object-affected harmful factors

If a phase shift circuit is used to maintain 180° phase difference between driving signals, then electromagnetic interference is reduced, but the circuit has limited conditions for selecting current sources and difficulty in generating required phase difference

Engineering Contradiction:
Improveelectromagnetic interferenceVSAvoidphase shift circuit complexity
Core Design Contradiction:
Object-affected harmful factorsVSDevice complexity

Solution Approach 1:

The patent changes the operating parameters of the phase shift circuit by dynamically adjusting the switching frequency of the secondary circuit based on the phase difference between driving signals. This allows the circuit to adaptively maintain the optimal 180° phase difference without requiring complex fixed-frequency design constraints, thereby reducing electromagnetic interference while simplifying the overall circuit design.

Inventive Principle:
Principle #35Parameter changes

Solution Approach 2:

The patent implements a feedback mechanism that detects the phase difference between driving signals of the main and sub circuits and uses this information to control the switching frequency of the secondary circuit. This feedback loop ensures accurate maintenance of the 180° phase difference, effectively reducing electromagnetic interference while providing clear guidance for current source selection and phase difference generation.

Inventive Principle:
Principle #23Feedback

2Reliability

If the phase difference between driving signals is out of 180°, then ripple component of input current is increased, but controlling the phase difference accurately is difficult with existing phase shift circuits

Engineering Contradiction:
Improvephase difference control accuracyVSAvoidripple component
Core Design Contradiction:
ReliabilityVSObject-generated harmful factors

Solution Approach 1:

The patent employs a feedback mechanism that continuously monitors the phase difference between driving signals and adjusts the switching frequency of the secondary circuit accordingly. This ensures accurate maintenance of the 180° phase difference, preventing increases in input current ripple while providing a practical solution for phase difference control that overcomes the limitations of existing phase shift circuits.

Inventive Principle:
Principle #23Feedback

Solution Approach 2:

The patent introduces dynamic control of the switching frequency in the secondary circuit based on real-time phase difference conditions. This dynamic adjustment capability allows the circuit to adapt to varying operating conditions and maintain accurate 180° phase difference, thereby minimizing ripple components without being constrained by the fixed limitations of traditional phase shift circuit designs.

Inventive Principle:
Principle #15Dynamics

Data Source

PatentUS9252655B2Phase shift circuit and power factor correction circuit including the same
Publication Date: 2016.02.02 SKAICHIPS CO LTD
  • US9252655B2 patent drawing
  • US9252655B2 patent drawing
  • US9252655B2 patent drawing

AI summary

A phase shift circuit may include a ramp generation unit charging or discharging a capacitor connected to a switch device to generate a ramp signal, a reference signal generation unit generating a predetermined reference signal from the ramp signal, and a comparison unit comparing the ramp signal with the reference signal to generate a clock signal, wherein at least one of the reference signal generation unit and the comparison unit changes a negative or positive value of offset components included in the reference signal or the ramp signal within every operating period of the switch device.