IP Library Granted Patent US 7,391,188
Granted Patent B2
US 7,391,188 · App. 11/193,635 · Granted Jun 24, 2008

Current prediction in a switching power supply

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Quick Facts
Patent No.
US 7,391,188
App. No.
11/193,635
Granted
Jun 24, 2008
Kind
B2
Abstract

A high efficiency switching power supply including an analog front end, a battery control circuitry portion, a display and equalization circuitry portion, field effect transistor (FET) drivers, an isolated power supply transformer circuitry (and three associated sets of tap circuitry), microcontroller circuitry, oscillator circuitry, overcharge protection circuitry, programmable logic circuitry portion, and a zero current predictor. Overbiasing of the FET power supply switches, and/or other various circuitry features disclosed herein, helps achieve electrical power efficiencies of preferably greater than 95%, even more preferably greater than 98% and even more preferably greater than 99%. Preferably, the switching power supply has one or more of the following: (1) high electrical power efficiency (>95%. >98%, >99%); (2) overbiasing of a gate of a power supply switch; (3) a power supply switch with a low gate capacitance ratio; (4) multiple modes of operation; and (5) current prediction wherein an inductor voltage is used to control a constant current capacitor whose voltage indicates the level of current in the inductor.

Claims (22)

1. A switching power supply comprising:

at least one power signal input structured as circuitry for providing an input electrical power signal to the switching power supply;

at least one power signal output structured as circuitry for providing an output electrical power signal from the switching power supply;

a passive component set comprising at least one inductor and a capacitor;

an active component set comprising a first power supply switch connected in series between the inductor and capacitor; and

zero current predictor circuitry structured and electrically connected to predict when inductor current will fall to zero and to send a signal to close the first power supply switch based on this prediction.

2. A switching power supply comprising:

at least one power signal input structured as circuitry for providing an input electrical power signal to the switching power supply;

at least one power signal output structured as circuitry for providing an output electrical power signal from the switching power supply;

a passive component set comprising at least one inductor and a capacitor;

an active component set comprising a first power supply switch connected in series between the inductor and capacitor; and

zero current predictor circuitry structured and electrically connected to predict when inductor current will fall to zero and to send a signal to close the first power supply switch based on this prediction, wherein the zero current predictor circuitry comprises a zcp capacitor electrically connected and controlled based on the voltage across the inductor so that the zcp capacitor's voltage proportionally mirrors the inductor current.

3. The supply of claim 2 wherein the zero current predictor further comprises a reset circuit structured and electrically connect to short the zcp capacitor after a zero current prediction is made.

4. A switching power supply comprising:

at least one power signal input structured as circuitry for providing an input electrical power signal to the switching power supply;

at least one power signal output structured as circuitry for providing an output electrical power signal from the switching power supply;

a passive component set comprising at least one inductor and a capacitor;

an active component set comprising a first power supply switch connected in series between the inductor and capacitor; and

zero current predictor circuitry structured and electrically connected to predict when inductor current will fall to zero and to send a signal to close the first power supply switch based on this prediction, wherein the zero current predictor circuitry comprises:

a zcp capacitor electrically connected and controlled based on the voltage across the inductor so that the zcp capacitor's voltage proportionally mirrors the inductor current;

a zcp integrator is structured and electrically connected to integrate the rate of change of zcp capacitor voltage to determine zcp capacitor voltage; and

a zcp comparator is structured to indicate in an output signal the condition that the zcp voltage determined by the integrator has fallen below a minimum threshold.

Assignments (3)
SECURITY INTEREST Recorded Mar 18, 2025
From: ELECTROVAYA INC.
To: BANK OF MONTREAL
Reel/Frame 070543/0894 →
SECURITY INTEREST Recorded Mar 7, 2025
From: ELECTROVAYA INC.
To: EXPORT-IMPORT BANK OF THE UNITED STATES
Reel/Frame 070441/0428 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 29, 2007
From: DASGUPTA, SANKAR, DR.; JACOBS, JAMES K., DR.; VANDERMEER, DAVID, MR.
To: ELECTROVAYA INC.
Reel/Frame 019497/0714 →
Continuity (7)
Provisional Application 6065741700 · Mar 2, 2005
Provisional Application 6065691100 · Mar 1, 2005
Provisional Application 6065688900 · Mar 1, 2005
Provisional Application 6065691300 · Mar 1, 2005
Provisional Application 6065691400 · Mar 1, 2005
Provisional Application 6059238600 · Aug 2, 2004
Related Publication 20060119331A1 · Jun 8, 2006