Off-line battery charger
First Claim
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1. A battery charger circuit comprising, in combination:
- an a-c to d-c converter circuit having a pair of a-c input terminals and a pair of d-c terminals;
a pair of input terminals for connection to an a-c source;
first, and second polarized d-c capacitors having anode and cathode terminals connected between respective ones of said pairs of input terminals and a-c terminals;
first and second diodes having anode and cathode terminals;
said anodes of said first and second diodes connected to said cathodes of said first and second capacitors respectively;
said cathodes of said first and second diodes connected to said anodes of said first and second capacitors, respectively;
said first and second diodes comprising bypass diodes for biasing said first and second polarized d-c capacitors respectively; and
voltage clamp circuit means connected to said d-c terminals to clamp the output voltage which can be applied to a battery connected to said d-c terminals.
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Abstract
A universal battery charger circuit has polarized capacitors disposed in the input a-c lines to a bridge-connected rectifier. A voltage clamping circuit is connected to the d-c terminals of the bridge and diodes are connected in parallel with each of the polarized capacitors to define a circuit for the flow of charging current. Regulation circuits are provided for both battery voltage and charging current so that any battery of given voltage output can be charged from different input voltage sources.
13 Citations
13 Claims
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1. A battery charger circuit comprising, in combination:
- an a-c to d-c converter circuit having a pair of a-c input terminals and a pair of d-c terminals;
a pair of input terminals for connection to an a-c source;
first, and second polarized d-c capacitors having anode and cathode terminals connected between respective ones of said pairs of input terminals and a-c terminals;
first and second diodes having anode and cathode terminals;
said anodes of said first and second diodes connected to said cathodes of said first and second capacitors respectively;
said cathodes of said first and second diodes connected to said anodes of said first and second capacitors, respectively;
said first and second diodes comprising bypass diodes for biasing said first and second polarized d-c capacitors respectively; and
voltage clamp circuit means connected to said d-c terminals to clamp the output voltage which can be applied to a battery connected to said d-c terminals. - View Dependent Claims (2, 3, 4, 5, 6)
- an a-c to d-c converter circuit having a pair of a-c input terminals and a pair of d-c terminals;
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7. A battery charger circuit comprising, in combination:
- an a-c to d-c converter circuit having a pair of a-c input terminals and a pair of d-c terminals;
a pair of input terminals for connection to an a-c source;
first and second polarized d-c capacitors having anode and cathode terminals connected between respective ones of said pairs of input terminals and a-c terminals;
first and second diodes having anode and cathode terminals;
said anodes of said first and second diodes connected to said cathodes of said first and second capacitors respectively;
said cathodes of said first and second diodes connected to said anodes of said first and second capacitors, respectively;
voltage clamp circuit means connected to said d-c terminals to clamp the output voltage which can be applied to a battery connected to said d-c terminals;
a MOSFET having its main terminals connected to said d-c terminals;
a voltage regulation circuit means defining said clamp circuit; and
a current regulation circuit means and output circuit means coupling said voltage and current regulation circuit means to the gate of said MOSFET for controlling the output voltage across said d-c terminals and the charging current through a battery connected across said d-c terminals. - View Dependent Claims (8, 9, 10, 11, 12, 13)
- an a-c to d-c converter circuit having a pair of a-c input terminals and a pair of d-c terminals;
Specification