Invention Grant
US07961023B2 Pulse width modulation sequence maintaining maximally flat voltage during current transients
有权
脉冲宽度调制序列在电流瞬变期间保持最大平坦的电压
- Patent Title: Pulse width modulation sequence maintaining maximally flat voltage during current transients
- Patent Title (中): 脉冲宽度调制序列在电流瞬变期间保持最大平坦的电压
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Application No.: US12781724Application Date: 2010-05-17
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Publication No.: US07961023B2Publication Date: 2011-06-14
- Inventor: Andrew Roman Gizara
- Applicant: Andrew Roman Gizara
- Applicant Address: US DE Wilmington
- Assignee: IPower Holdings LLC
- Current Assignee: IPower Holdings LLC
- Current Assignee Address: US DE Wilmington
- Agency: Sterne, Kessler, Goldstein & Fox P.L.L.C.
- Main IPC: H03K3/017
- IPC: H03K3/017

Abstract:
A digital circuit implementing pulse width modulation controls power delivered in what one can model as a second order or higher order system. An exemplary control plant could embody a step-down switch mode power supply providing a precise sequence of voltages or currents to any of a variety of loads such as the core voltage of a semiconductor unique compared to its input/output ring voltage. One of several algorithms produce a specific predetermined sequence of pulses of varying width such that the voltage maintains maximally flat characteristics while the current delivered to the load from the system plant varies within a range bounded only by inductive element continuous conduction at the low power extreme and non-saturation of the inductor core at the high power extreme. The specific pulse width modulation sequence controls a plant such that the voltage maintains maximally flat characteristics in one embodiment without a feed-forward or feedback loop physically embodied in the control system thereby reducing the parts cost or control semiconductor production yield cost while enhancing noise immunity and long term reliability of the control system. Several specific algorithms maintain maximally flat voltage despite extreme load variations therewith control plant element parameters otherwise exacerbating excessive voltage fluctuation during the given current transients.
Public/Granted literature
- US20100271097A1 Pulse Width Modulation Sequence Maintaining Maximally Flat Voltage During Current Transients Public/Granted day:2010-10-28
Information query
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