Electrical conversion
An apparatus and method for use in electrical conversion are described. The apparatus includes a bridge rectifier having an input side and an output side, and a switched capacitor line connected across the output side of the rectifier, wherein the switched capacitor line includes a capacitor, a charging leg and a switched discharge leg, and wherein the charging leg incorporates a transistor controlled so as to maintain a substantially constant charging current when the transistor is conductive.
1. An apparatus for use in electrical conversion comprising:
a bridge rectifier having an input side and an output side; and
a switched capacitor line connected across the output side of the rectifier, wherein the switched capacitor line comprises a capacitor, a charging leg and a switched discharge leg including a switch, and wherein the charging leg incorporates a transistor controlled so as to maintain a substantially constant charging current when the transistor is conductive, wherein when the output from the bridge rectifier is greater than a predetermined value and is higher than that of the capacitor then the transistor is controlled such that charging of the capacitor at a constant current occurs, once a point is reached at which the capacitor charge exceeds the rectifier output to the capacitor charging will cease, the switched discharge leg being controlled such that the capacitor charge is maintained, and subsequently controlling the switch of the switched discharge leg to allow discharge of the capacitor.
2. The apparatus according to claim 1 , wherein the transistor is connected such that a voltage applied to a base thereof is controlled, at least in part, by a zener diode.
3. The apparatus according to claim 1 , wherein the transistor is connected such that a voltage applied to a base thereof is controlled, at least in part, using a resistor based potential divider.
4. The apparatus according to claim 1 , wherein the period of time over which charging occurs is substantially symmetrical about the peak output voltage from the bridge rectifier.
5. The apparatus according to claim 1 and forming part of a power supply for electrical or electronic equipment.
6. An electrical conversion method comprising:
providing a bridge rectifier having an input side and an output side, and a switched capacitor line connected across the output side of the rectifier, wherein the switched capacitor line comprises a capacitor, a charging leg and a switched discharge leg including a switch, the charging leg incorporating a transistor; and
controlling the transistor so as to maintain a substantially constant charging current when the transistor is conductive, wherein when the output from the bridge rectifier is greater than a predetermined value and is higher than that of the capacitor then the transistor is controlled such that charging of the capacitor at a constant current occurs, once a point is reached at which the capacitor charge exceeds the rectifier output to the capacitor charging will cease, the switched discharge leg being controlled such that the capacitor charge is maintained, and subsequently controlling the switch of the switched discharge leg to allow discharge of the capacitor.
7. The method according to claim 6 , wherein the period of time over which charging occurs is substantially symmetrical about the peak output voltage from the bridge rectifier.