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公开(公告)号:US20140266377A1
公开(公告)日:2014-09-18
申请号:US14162297
申请日:2014-01-23
Applicant: ANALOG DEVICES TECHNOLOGY
Inventor: Kareem Atout
IPC: H03K3/011
CPC classification number: H03K3/011 , H02M3/157 , H02M2001/008
Abstract: In one example, there is disclosed a hybrid analog-digital point-of-load controller (ADPOL) for use in a power supply. The ADPOL is configured to respond to transient current loads. In the presence of moderate current transients, power is clocked by a digital power core, which may be programmatically configured to adjust pulse width in response to the transient. In the presence of larger current transients, control may be passed to an analog transient compensator, which includes high-speed circuitry selecting between a very high-duty-cycle clock and a very low-duty-cycle clock, which will drive the transient back to the digital control domain.
Abstract translation: 在一个示例中,公开了一种用于电源的混合模拟 - 数字点负载控制器(ADPOL)。 ADPOL配置为响应瞬态电流负载。 在存在中等电流瞬变的情况下,功率由数字电源核心计时,数字电源核心可以被编程配置为响应于瞬态来调整脉冲宽度。 在存在较大的电流瞬变的情况下,可以将控制传递到模拟瞬态补偿器,其包括在非常高占空比时钟和非常低占空比时钟之间的高速电路选择,这将驱动瞬态回 到数字控制领域。
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公开(公告)号:US08947148B2
公开(公告)日:2015-02-03
申请号:US14162297
申请日:2014-01-23
Applicant: Analog Devices Technology
Inventor: Kareem Atout
CPC classification number: H03K3/011 , H02M3/157 , H02M2001/008
Abstract: In one example, there is disclosed a hybrid analog-digital point-of-load controller (ADPOL) for use in a power supply. The ADPOL is configured to respond to transient current loads. In the presence of moderate current transients, power is clocked by a digital power core, which may be programmatically configured to adjust pulse width in response to the transient. In the presence of larger current transients, control may be passed to an analog transient compensator, which includes high-speed circuitry selecting between a very high-duty-cycle clock and a very low-duty-cycle clock, which will drive the transient back to the digital control domain.
Abstract translation: 在一个示例中,公开了一种用于电源的混合模拟 - 数字点负载控制器(ADPOL)。 ADPOL配置为响应瞬态电流负载。 在存在中等电流瞬变的情况下,功率由数字电源核心计时,数字电源核心可以被编程配置为响应于瞬态来调整脉冲宽度。 在存在较大的电流瞬变的情况下,可以将控制传递到模拟瞬态补偿器,其包括在非常高占空比时钟和非常低占空比时钟之间的高速电路选择,这将驱动瞬态回 到数字控制领域。
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