1. Field of Invention
The present invention relates to an electronic switch circuit, and more particularly, to a switch circuit with independent direct current (DC) power supply.
2. Related Art
Generally, a switch unit and a control unit of an electronic switch circuit share a power supply unit. However, power consumption of the control unit is low, generally from tens of microamperes to milliamps, while the switch unit has higher power consumption than the control unit. For example, a driving current of a relay or controlled silicon is about tens of milliamps, and the power consumption of the switch unit may be over ten times higher than the control unit. In this way, in order to meet the requirements of the switch unit for power supply when the switch unit is turned on, the power supply unit needs to maintain a redundant power supply capability much greater than that required by the control unit. When the power supply unit adopts a capacitor voltage dropping DC power source, the input current is approximately constant, so when the switch unit is turned off, the redundant current is consumed on a voltage stabilizer, thereby resulting in a waste of the power consumption.
The present invention is directed to solve the above problems, and provides a switch circuit, where a switch unit has an independent power supply unit different from a power supply unit of a control unit, the power supply unit of the switch unit may be turned on or turn off under the control of the control unit, so that the power supply unit of the switch unit is turned on for power supply only when the switch unit needs to be turned on. This switch circuit effectively solves the problem of a waste of power consumption generated when a switch unit is turned off in a conventional switch circuit sharing a DC power source with a control unit.
A difference between the switch circuit of the present invention and a driving circuit of an Alternating Current (AC) contactor should be illustrated here. The AC contactor is directly driven by an AC current of an external power source, and the AC contactor can be turned on as long as a control unit turns on an AC loop of the external power source and the AC contactor can be turned off as long as the control unit turns off the AC loop of the external power source. The switch circuit of the present invention is applicable to a switch circuit adopting a DC power supply source, and a switch device thereof adopts a relay driven by a low-voltage DC, so the switch circuit of the present invention is different from the driving circuit of the AC contactor directly driven by the AC current of the external power source.
In addition to the driving circuit of the AC contactor, in some switch circuits applied to industrial control, in order to prevent an interference signal at one side of the switch circuit from affecting the control part, power supply circuits independent from each other are respectively applied in the switch circuit and the control part. However, the power supply circuit of the switch circuit is set for anti-interference, and is not turned off when the switch circuit is turned off. The difference is that, in the switch circuit with independent DC power supply of the present invention, the power supply circuit of the switch unit is turned off when or after the switch unit is turned off to save power consumption.
In order to achieve the above objectives, a switch circuit with independent DC power supply is provided, where the switch circuit includes:
a switch unit;
a power supply unit of the switch unit, connected to the switch unit, an on/off unit of the power supply unit, and an external power source;
the on/off unit of the power supply unit, connected to the power supply unit of the switch unit and an on/off control signal transmission unit; and
the on/off control signal transmission unit, connected to the on/off unit of the power supply unit and a control unit.
A switch device of the switch unit is a DC-driven replay or controlled silicon.
The power supply unit of the switch unit is a DC power supply circuit for providing a driving current for the switch unit.
The power supply unit of the switch unit has a capacitor voltage dropping circuit, a resistor voltage dropping circuit, or a transformer voltage dropping circuit.
A rectification circuit of the power supply unit of the switch unit is a bridge diode rectification circuit or a half-bridge diode rectification circuit.
When the power supply unit of the switch unit is turned on for power supply, the switch unit is turned on; and when the power supply unit of the switch unit is turned off, the switch unit is turned off, so as to save the power consumption when the switch unit is turned off.
The on/off unit of the power supply unit is used to turn on or turn off the power supply unit of the switch unit.
A switch device used by the on/off unit of the power supply unit is a crystal switch tube, controlled silicon or a relay.
The on/off control signal transmission unit is used to transmit an on/off signal of the control unit to the on/off unit of the switch unit.
The on/off control signal transmission unit is directly and electrically connected when the power supply unit of the control unit and the power supply unit of the switch unit are commonly grounded.
The on/off control signal transmission unit is a photoelectric coupling circuit, a capacitor circuit or a mutual inductor circuit for isolating and transmitting a signal when the power supply unit of the control unit and the power supply unit of the switch unit are not commonly grounded.
In order to achieve the above objectives, a switch circuit with independent DC power supply is provided, where the switch circuit includes:
a switch unit;
a power supply unit of the switch unit, connected to the switch unit, an on/off unit of the power supply unit, and an external power source;
an on/off unit of the switch unit, connected to the switch unit and an on/off control signal transmission unit;
the on/off unit of the power supply unit, connected to the power supply unit of the switch unit and the on/off control signal transmission unit; and
the on/off control signal transmission unit, connected to the on/off unit of the power supply unit, an on/off unit of the switch unit, and a control unit.
A switch device of the switch unit is a DC-driven replay or controlled silicon.
The power supply unit of the switch unit is a DC power supply circuit for providing a driving current for the switch unit.
The power supply unit of the switch unit has a capacitor voltage dropping circuit, a resistor voltage dropping circuit, or a transformer voltage dropping circuit.
A rectification circuit of the power supply unit of the switch unit is a bridge diode rectification circuit or a half-bridge diode rectification circuit.
After the power supply unit of the switch unit is turned on, the switch unit is turned on; and after the switch unit is turned off, the power supply unit of the switch unit is turned off, so as to save the power consumption when the switch unit is turned off.
The on/off unit of the power supply unit is used to turn on or turn off the power supply unit of the switch unit.
A switch device used by the on/off unit of the power supply unit is a crystal switch tube, controlled silicon or a relay.
The on/off unit of the switch unit is used to turn on or turn off the switch unit.
A switch device used by the on/off unit of the switch unit is a crystal switch tube, controlled silicon or a relay.
The on/off control signal transmission unit is used to transmit an on/off signal of the control unit to the on/off unit of the power supply unit and the on/off unit of the switch unit.
The on/off control signal transmission unit is directly and electrically connected when the power supply unit of the control unit and the power supply unit of the switch unit are commonly grounded.
The on/off control signal transmission unit is a photoelectric coupling circuit, a capacitor circuit or a mutual inductor circuit for isolating and transmitting a signal when the power supply unit of the control unit and the power supply unit of the switch unit are not commonly grounded.
The present invention effectively solves the problem of a waste of power consumption due to redundant power supply generated by the power supply unit when the switch unit is turned off in the conventional switch circuit sharing the DC power supply source with the control unit. Then, the present invention provides a switch circuit, in which the control unit and the switch unit respectively have independent power supply units, the power supply unit of the switch unit is turned on only when the switch unit needs to be turned on, and the power supply unit is turned off when the switch unit is turned off.
A switch circuit with independent DC power supply of the present invention adopts an independent power supply unit different from a power supply unit of a control unit, and the power supply unit of the switch unit is turned on as the switch unit is turned on and is turned off as the switch unit is turned off.
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The devices used by the above units may all be common devices.
The present invention has been disclosed through the foregoing embodiments, but the scope of the present invention is not limited thereto. The components of the present invention can be replaced with similar or the same elements known by persons skilled in the art without departing from the idea of the present invention.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN09/72779 | 7/15/2009 | WO | 00 | 1/11/2012 |