发明授权
US07859868B2 Synchronous rectifier control circuit with deadtime adjustment to prevent crossover conduction 有权
同步整流控制电路具有死区时间调节功能,可防止交叉传导

  • 专利标题: Synchronous rectifier control circuit with deadtime adjustment to prevent crossover conduction
  • 专利标题(中): 同步整流控制电路具有死区时间调节功能,可防止交叉传导
  • 申请号: US12078008
    申请日: 2008-03-26
  • 公开(公告)号: US07859868B2
    公开(公告)日: 2010-12-28
  • 发明人: Ming-Ho Huang
  • 申请人: Ming-Ho Huang
  • 申请人地址: TW San Chung
  • 专利权人: Hipro Electronics Co., Ltd.
  • 当前专利权人: Hipro Electronics Co., Ltd.
  • 当前专利权人地址: TW San Chung
  • 代理机构: Apex Juris, PLLC
  • 代理商 Tracy M Heims
  • 主分类号: H02H7/125
  • IPC分类号: H02H7/125
Synchronous rectifier control circuit with deadtime adjustment to prevent crossover conduction
摘要:
A synchronous rectification control circuit is connected with a secondary-side rectification circuit and includes a driving circuit, a dead-time acquisition circuit, and a zero-voltage detection circuit. The driving circuit includes a differentiating circuit, a first comparator, and a capacitor, wherein the differentiating circuit generates a signal to the first comparator and the capacitor functions to charge and discharge to form a cycle. The dead-time acquisition circuit includes a second comparator and a third comparator, wherein the second comparator has a positive input connected to an output of the first comparator of the driving circuit, the second comparator has an output connected to a positive input of the third comparator, and the third comparator has a negative input connected to the output of the first comparator to acquire a dead-time signal. The zero-voltage detection circuit includes a fourth comparator and a totem pole circuit, wherein the fourth comparator has a negative input connected to an input terminal of the driving circuit for detecting a potential present in the input terminal of the driving circuit and the fourth comparator has an output that is connected to the totem pole circuit to supply an output of a signal. With such an arrangement, shorting is prevented from occurring in the secondary-side rectification circuit.
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