PROTECTION CIRCUIT AND ILLUMINATION DRIVING CIRCUIT
20180241195 ยท 2018-08-23
Assignee
Inventors
- Junming Zhang (Hangzhou, CN)
- Guoqiang Liu (Hangzhou, CN)
- Pitleong Wong (Hangzhou, CN)
- Yuancheng Ren (Hangzhou, CN)
- Xunwei Zhou (Hangzhou, CN)
Cpc classification
H05B47/20
ELECTRICITY
H02H11/005
ELECTRICITY
H05B31/006
ELECTRICITY
H05B31/28
ELECTRICITY
H05B6/00
ELECTRICITY
Y02B20/30
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
A protection circuit and an illumination driving circuit are described herein. The protection circuit comprises a detection circuit, detecting a current flowing through a first switch to obtain a current detection signal and determining whether there is leakage at an input terminal according to the current detection signal; a control circuit, controlling the first switch to switch on intermittently, detecting the current flowing through the first switch by the detection circuit during a switch-on period of the first switch, and keeping the load at a disconnection state if the detection circuit determines there is leakage; and the first switch, connected to the input terminal, and a control terminal of the first switch being connected to the control circuit, and the first switch being controlled by the control circuit to be switched on intermittently. The present invention has the protection function and enhances safety during load removing and installation processes.
Claims
1. A protection circuit, comprising: a detection circuit, detecting a current flowing through a first switch to obtain a current detection signal indicating the current flowing through the first switch, and determining whether there is leakage at an input terminal of a power supply according to the current detection signal; a control circuit, controlling the first switch to switch on intermittently, detecting the current flowing through the first switch by the detection circuit during a switch-on period of the first switch, and keeping a load in a disconnection state if the detection circuit determines there is leakage; and the first switch, connected to the input terminal of the power supply, a control terminal of the first switch being connected to the control circuit, and the first switch being controlled by the control circuit to be switched on intermittently, wherein if the detection circuit determines there is no leakage, the control circuit sends out a control signal indicating that the load is supplied with power normally and the first switch is in a switched-off state.
2. The protection circuit of claim 1, wherein the detection circuit detects a voltage at the input terminal of the power supply to obtain a voltage detection signal, and the first switch is controlled to be switched on intermittently when the voltage detection signal reaches a first threshold.
3. The protection circuit of claim 2, wherein the detection circuit comprises a voltage detection module and a current detection module, the voltage detection module is connected to the input terminal of the power supply and the control circuit, respectively, one terminal of the current detection module samples the current flowing through the first switch, and another terminal is connected to the control circuit.
4. The protection circuit of claim 1, wherein the control circuit comprises a pulse generation circuit, and the pulse generation circuit is connected to a voltage detection module and the control terminal of the first switch, respectively.
5. The protection circuit of claim 2, wherein the control circuit comprises a pulse generation circuit, and the pulse generation circuit is connected to a voltage detection module and the control terminal of the first switch, respectively.
6. The protection circuit of claim 3, wherein the control circuit comprises a pulse generation circuit, and the pulse generation circuit is connected to the voltage detection module and the control terminal of the first switch, respectively.
7. The protection circuit of claim 3, wherein the current detection module is connected to the control terminal of the first switch through a logic circuit.
8. The protection circuit of claim 2, wherein the first switch is connected in series with a resistor.
9. An illumination driving circuit, comprising: a rectifying bridge, receiving AC input and rectifying the AC input; and a protection circuit, a first terminal of the protection circuit being connected to an output terminal of the rectifying bridge, a second terminal of the protection circuit being connected to another output terminal of the rectifying bridge or one of terminals of AC input power supply; wherein, a current in the protection circuit is detected to determine whether there is leakage, a load is kept in a disconnection state if the leakage is determined; and the load is supplied with power normally and the detected current in the protection circuit is disconnected if no leakage is determined.
10. The illumination driving circuit of claim 9, wherein the protection circuit comprises: a detection circuit, detecting a current flowing through a first switch to obtain a current detection signal indicating the current flowing through the first switch, and determining whether there is leakage at an input terminal of the AC input power supply according to the current detection signal; a control circuit, controlling the first switch to switch on intermittently, detecting the current flowing through the first switch by the detection circuit during a switch-on period of the first switch, and keeping the load in the disconnection state if the detection circuit determines there is leakage; and the first switch, a first terminal of the first switch being connected to the output terminal of the rectifying bridge, a second terminal of the first switch being connected to another output terminal of the rectifying bridge or one of the terminals of the AC input power supply, and a control terminal of the first switch being connected to the control circuit and being controlled to be switched on intermittently by the control circuit, wherein if the detection circuit determines there is no leakage, the load is supplied with power normally and the first switch is in a switched-off state.
11. The illumination driving circuit of claim 9, wherein the detection circuit comprises a voltage detection module and a current detection module, two input terminals of the voltage detection module are respectively connected to two terminals of the rectifying bridges, two terminals of the AC input power supply, or one output terminal of the rectifying bridge and one of the terminals of the AC input power supply, the voltage detection module outputs a voltage detection signal, the first switch is controlled to be switched on intermittently when the voltage detection signal reaches a first threshold; one terminal of the current detection module samples the current flowing through the first switch, and another terminal is connected to the control circuit.
12. The illumination driving circuit of claim 11, further comprising a load switch connected in series with the load, wherein the load switch is kept to be switched off to make the load in the disconnected state if the detection circuit determines there is leakage; and the load switch is switched on to make the load supplied with power normally if the detection circuit determines there is no leakage.
13. The illumination driving circuit of claim 9, wherein the control circuit comprises a pulse generation circuit, the pulse generation circuit is connected to the voltage detection module and the control terminal of the first switch, respectively.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027]
[0028]
[0029]
DETAILED DESCRIPTION OF THE INVENTION
[0030] Preferred embodiments of the present invention are described hereinbelow in detail with reference to the accompanying drawings, but the present invention is not limited to these embodiments. The present invention covers any alternatives, modifications, and equivalent methods and solutions made within the sprit and scope of the present invention.
[0031] In order to make the public thoroughly understand the present invention, specific details are described in detail in the following preferred embodiments of the present invention, and the present invention can be fully understood by persons skilled in the art even without the description of these details.
[0032] The present invention will be described more specifically through examples with reference to the accompanying drawings in the following paragraphs. It needs to be explained that all the accompanying drawings are drawn in simplified forms and in imprecise proportions only for the purpose of conveniently and clearly describing the objectives of the embodiments of the invention.
[0033]
[0034] There are many ways to switch on the first switch M1 intermittently. In the present embodiment, it is realized by using a pulse generation circuit, and the frequency of the pulse generation circuit and the width of the pulse are set according to requirements.
[0035] The driver in
[0036]
[0037] The two input terminals of the voltage detection module are respectively connected at two terminals of the rectifying bridge, two terminals of the AC input power supply, or one output terminal of the rectifying bridge and one of the terminals of the AC input power supply. The output terminal of the voltage detection module is connected to the control circuit, the pulse generation circuit is used in the control circuit, and the output terminal of the voltage detection module is connected to the pulse generation circuit. The voltage detection module outputs a voltage detection signal, and the voltage detection signal reaches a first threshold. The first threshold may be a set threshold, and the pulse generated by the pulse generation circuit controls the first switch M1 to switch on intermittently, i.e., the first switch M1 is switched on at the time period of the pulse width, and switched off at other time. The advantage of using the voltage detection module is that the threshold may be determined by the voltage detection module, i.e., detection is performed at the first threshold. That is to say, the input voltage at this time is certain, and the first switch M1 is switched on at this time and the current detection is performed. The obtained current detection signal actually indicates the internal resistance of the circuit. Since the internal resistance under the conditions whether there is leakage or not is different (i.e., whether there is human body impedance being accessed), if there is leakage caused by human body, it can be indicated by the current detection signal.
[0038]
[0039] The current detection circuit includes a sample resistor R2 and a comparator comp2, and the sample resistor R2 is connected to the first switch M1 in series. uses the current flowing through the first switch M1 during the switch-on period of the first switch M1, and inputs it into the positive terminal of the comparator comp2. The negative terminal of the comparator comp2 receives a signal Vref2 indicating the second threshold. When the current detection signal is lower than Vref2, which means there is leakage, and at this time, level flip occurs at the output terminal of the comparator comp2, and the load switch M2 is kept switched off through the logic circuit. During a period of time, if the current detection signal is always not lower than Vref2, which means there is no leakage, the load switch M2 is switched on at this time so as to have the load supplied with power normally, and the first switch M1 is switched off, finishing the leakage detection.
[0040] In addition to this, though the above describes and explains the embodiments separately, for part of the common technologies, they may be replaced and combined among the embodiments by those ordinary skilled in the art. For contents which are not clearly described in one of the embodiments, please refer to other embodiments which have the related contents.
[0041] The above implementing manners are not restrictions to the protection scope of the technical solution. Any modifications, equivalent alternatives and improvements made within the spirit and principle of the above implementing manners shall be contained in the protection scope of the technical solution.