Claims
- 1. A solid state switch having an improved line-derived control circuit power supply and being operable to control either a D.C. or A.C. load supplied from a respective D.C. or A.C. electrical power supply source comprising:
- a pair of power supply terminals to which either said D.C. or A.C. electrical power supply source is connected;
- a pair of solid state switching means connected in series with each other and said power supply terminals and said D.C. or A.C. load and being opposed with respect to one another so as to be operable to control current flow from said source to said load in positive and negative directions, respectively, on A.C. and in said positive direction on D.C. and each said solid state switching means comprising unidirectional current conducting means in parallel therewith for passing the current controlled by the other solid state switching means;
- a common control circuit for said pair of solid state switching means supplied from said source for applying turn-on signals simultaneously to the same to control current flow from said source to said load;
- external selectively controllable on-off logic signal input means for operating said common control circuit;
- and a power supply circuit for said common control circuit connected to and supplied from said power supply terminals and including means connecting said power supply terminals and said unidirectional current conducting means of one of said solid state switching means in series to said common control circuit exclusive of said load and the other solid state switching means thereby to avoid leakage current in the load during at least alternate half-cycles of the source voltage;
- said power supply circuit comprising a diode-isolated, capacitive-reactively coupled voltage dropping line power supply to said common control circuit.
- 2. The solid state switch claimed in claim 1, wherein:
- said capacitive-reactively coupled voltage dropping line power supply comprises a high impedance voltage dropping means.
- 3. The solid state switch claimed in claim 2, wherein:
- said high impedance voltage dropping means comprises a resistor and a capacitor connected in parallel.
- 4. The solid state switch claimed in claim 1, wherein:
- said pair of solid state switching means comprise a pair of three terminal controlled devices each having a pair of power terminals and a control terminal;
- said common control circuit comprises a control output connected in parallel across said control terminal and one of said power terminals of both of said three terminal controlled devices.
- 5. The solid state switch claimed in claim 4, wherein:
- said pair of controlled devices comprise a pair of FETs and said unidirectional current conducting means therein comprises intrinsic diodes in said FETs.
- 6. The solid state switch claimed in claim 4, wherein said common control circuit comprises:
- an optically coupled isolator connected to said logic signal input means;
- and buffer means connecting said optically coupled isolator to said control terminal and said one power terminal of both said controlled devices.
- 7. A solid state switch operable to control either an A.C. or D.C. load supplied from a respective A.C. or a D.C. power supply line comprising:
- a pair of power supply terminals to which either said A.C. or D.C. power supply line is connected;
- a pair of controlled solid state devices connected in series to one of said power supply terminals and through a load to the other of said power supply terminals said solid state devices being opposed with respect to one another so as to be operable to control current flow from said power supply line to said load in opposite polarity directions, respectively, on A.C. and in one of said polarity directions on D.C. and each said solid state device comprising undirectional current conducting means for passing the current controlled by the other solid state device;
- a common control circuit for said pair of solid state devices for operating the same to control current flow from said line to said load;
- external selectively controllable on-off opto-isolated logic input means for said common control circuit;
- and a diode-isolated line-derived power supply circuit for said common control circuit including means effective when connectd to an A.C. power supply line for supplying half-cycles of power through the unidirectional current conduction means of one of said solid state devices to said common control circuit in parallel with said load when said solid state devices are being operated to prevent collapse of the control power supply;
- said power supply circuit comprising a diode-isolated capacitive-reactively coupled voltage dropping line power supply to said common control circuit.
Parent Case Info
This is a continuation of application Ser. No. 636,032, filed July 30, 1984.
US Referenced Citations (6)
Foreign Referenced Citations (2)
| Number |
Date |
Country |
| 2836325 |
Feb 1980 |
DEX |
| 141771 |
Nov 1981 |
JPX |
Continuations (1)
|
Number |
Date |
Country |
| Parent |
636032 |
Jul 1984 |
|