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CN201898278U - Control circuit for laser power device - Google Patents

Control circuit for laser power device Download PDF

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Publication number
CN201898278U
CN201898278U CN2010206531711U CN201020653171U CN201898278U CN 201898278 U CN201898278 U CN 201898278U CN 2010206531711 U CN2010206531711 U CN 2010206531711U CN 201020653171 U CN201020653171 U CN 201020653171U CN 201898278 U CN201898278 U CN 201898278U
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China
Prior art keywords
laser
power supply
laser power
unit
control unit
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Expired - Fee Related
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CN2010206531711U
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Chinese (zh)
Inventor
姚为正
张建
胡四全
董朝阳
景兆杰
俎立峰
于敏华
肖正虎
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XJ Electric Co Ltd
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Xuji Group Co Ltd
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Abstract

本实用新型涉及一种激光电源控制电路,控制电路由控制单元、激光电源、激光电源控制模块、激光发射单元和光电开关监测单元组成。本实用新型采用对光发射插件各个安装部位设置相应的光电开关,通过检查光电开关的光通道是否被遮挡来判断光发射插件的安装位置是否正确,光电开关的判断结果输出到控制单元,控制单元根据判断结果和控制单元的自检结果,输出控制信号到激光电源、激光管的控制回路,从而控制激光管发光回路电源的通断,达到安全可靠的控制激光发射回路的目的,进而更加可靠的保护激光发射插件和操作人员的安全。

Figure 201020653171

The utility model relates to a laser power supply control circuit. The control circuit is composed of a control unit, a laser power supply, a laser power supply control module, a laser emitting unit and a photoelectric switch monitoring unit. The utility model adopts the corresponding photoelectric switch for each installation position of the light emitting plug-in, and judges whether the installation position of the light emitting plug-in is correct by checking whether the light channel of the photoelectric switch is blocked, and the judgment result of the photoelectric switch is output to the control unit, and the control unit According to the judgment result and the self-test result of the control unit, the control signal is output to the laser power supply and the control circuit of the laser tube, so as to control the on-off of the power supply of the laser tube light-emitting circuit, to achieve the purpose of safely and reliably controlling the laser emission circuit, and then more reliable. Protect the safety of laser emitting plug-ins and operators.

Figure 201020653171

Description

A kind of Laser Power Devices control circuit
Technical field
The utility model belongs to the Laser Power Devices technical field, is specifically related to a kind of Laser Power Devices control circuit.
Background technology
In high voltage rectification equipment and static reactive power compensation SVC, the application of photo thyristor more and more widely, safety and photo thyristor is triggered become an important topic reliably how.
Since to the triggering light source of photo thyristor for mostly being laser greatly, the luminous power of lasing fluorescence element output is bigger, if misoperation or system break down, just there is very high danger in the operator, therefore plug-in unit-light emission plug-in unit of directly exporting laser in the trigger equipment is had higher requirement.Domestic and international many producers are to the installation of Laser Power Devices; the guard method of taking mostly is the mechanical contact control mode greatly, when periphery protection equipment mounting condition satisfies job requirement, by the closure of mechanical contact; make the luminous power normal power supply of laser, thereby satisfy the luminous requirement of laser tube.But adopt the mode of mechanical contact to have following several drawback: there is mechanical mechanism in (1), repeatedly operation for a long time, and the mechanical mechanism failure rate is higher; (2) the contact contact reliability is low, occurs the situation of loose contact easily; (3) installation and maintenance inconvenience.
The utility model content
The purpose of this utility model provides a kind of Laser Power Devices control method, and a kind of control circuit of realizing this control method is provided simultaneously.
For achieving the above object, the technical scheme of the Laser Power Devices control circuit that the utility model provides is as follows: a kind of Laser Power Devices control circuit, be made up of control unit, Laser Power Devices control module, laser emission element and optoelectronic switch monitoring means: described photoswitc monitoring means comprises one group of optoelectronic switch that is used to monitor each light emission plug-in unit, each optoelectronic switch is used to be installed in each installation position of corresponding light emission plug-in unit, and the signal output part of photoswitc monitoring means is connected with the installation site detection signal input of control unit; The trigger impulse output of control unit is connected with the trigger impulse input of laser emission element; The status signal output of control unit is connected with the control end of Laser Power Devices control module, and described Laser Power Devices control module is serially connected with on the current supply circuit of laser emission element.
Described Laser Power Devices control module is a triode, and the base stage of triode is connected with the status signal output of control unit, and emitter is connected with the current supply circuit input of laser emission element.
Described Laser Power Devices control module comprises first triode, second triode and diode, the emitter of described first triode is connected with the current supply circuit input of Laser Power Devices, collector electrode is by current supply circuit input defeated be connected of diode with the Laser Power Devices transmitter unit, and the emitter of first triode and base stage also are connected to first resistance and first electric capacity; The base stage of first triode is connected with the collector electrode of second triode by second resistance, the base stage of second triode is connected with the status signal output of control unit, the base stage of second triode is connected with emitter by the 4th resistance, and its emitter is by current supply circuit input defeated be connected of the 5th resistance with the Laser Power Devices transmitter unit.
Described laser emission element is composed in series by the current-limiting resistance that joins in turn, laser tube and control element MOSFET.
The utility model adopts each installation position of light emission plug-in unit is provided with corresponding optoelectronic switch; whether correct by whether the be blocked installation site of judging light emission plug-in unit of the optical channel of checking optoelectronic switch; the judged result of optoelectronic switch outputs to control unit; control unit is according to the self-detection result of judged result and control unit; output a control signal to Laser Power Devices; the control loop of laser tube; thereby the break-make of the luminous ring current of control laser tube; reach the purpose in safe and reliable control Laser emission loop, and then reliable protection Laser emission plug-in unit and operating personnel's safety more.
Description of drawings
Fig. 1 is the schematic diagram of the utility model Laser Power Devices control circuit;
Fig. 2 is the schematic diagram of the utility model Laser Power Devices control module controlable electric current;
Fig. 3 is the control flow chart of the utility model Laser Power Devices control method.
Embodiment
Below in conjunction with specific embodiment the utility model is done further introduction.
Be illustrated in figure 1 as the schematic diagram of the utility model Laser Power Devices control circuit, as seen from the figure, this circuit is by control unit, Laser Power Devices, the Laser Power Devices control module, laser emission element and optoelectronic switch monitoring means are formed: the photoswitc monitoring means comprises the optoelectronic switch K1 that is used to monitor each light emission plug-in unit ... Kn, respectively by working power P1 ... Pn control, each optoelectronic switch is installed in each installation position of corresponding light emission plug-in unit, whether the installation position of mounting points that is used for each installation site of monitoring laser emission plug-in unit is correct, and the signal output part of photoswitc monitoring means is connected with the installation site detection signal input of control unit; The trigger impulse output of control unit is connected with the trigger impulse input of laser emission element; The status signal output of control unit is connected with the control end of Laser Power Devices control module, and described Laser Power Devices control module is serially connected with on the current supply circuit of laser emission element; Laser emission element is made up of the current-limiting resistance R that joins in turn, laser tube D and control element MOSFET, and laser tube D is connected with the drain electrode of control element MOSFET.
The Laser Power Devices control module of present embodiment adopts the working power of triode or controlable electric current control illuminating circuit laser tube, the break-make of control illuminating circuit power supply.Controlable electric current as shown in Figure 2, the emitter of positive-negative-positive triode V1 is connected with Laser Power Devices P2, emitter is connected with diode D1, be connected with resistance R 1 between the emitter of triode V1 and the base stage, C1 is in parallel with R1, the base stage of V1 is connected with the collector electrode of NPN type triode T, and the collector series connection of the base stage of V1 and triode T has resistance R 2, the base stage of triode T is connected with control unit, and be serially connected with resistance R 3, be connected with resistance R 4 between the base stage of T and the emitter, and the emitter of T is connected with the negative pole of diode D by resistance R 5.The effect of this controlable electric current is identical with triode.
As shown in Figure 3, the control principle and the process of the utility model Laser Power Devices control circuit are as follows: when the Laser emission plug-in unit is worked, optoelectronic switch monitor unit K1 ... Kn, monitor each test point that light emission plug-in unit is installed respectively, when the monitoring point of installing detects installing component and is not in place, the light of optoelectronic switch is not blocked, the optoelectronic switch conducting, the position signalling that control unit receives optoelectronic switch is 0, this moment, control unit blocked the output of Laser Power Devices control unit, made Laser Power Devices can not arrive laser tube; When the monitoring point of installing detects installing component and is in place, the light of optoelectronic switch is blocked, optoelectronic switch ends, and the position signalling that control unit receives optoelectronic switch is 1, when all position, monitoring point signals all satisfy condition, when possessing condition of work, control unit detects the self-test signal of self, when self-test signal just often, control unit triggers the Laser Power Devices control module, connect the working power of illuminating circuit laser tube, make Laser Power Devices can arrive laser tube.
The control method and the process of the utility model Laser Power Devices control circuit are as follows:
(1) in each installation position of light emission plug-in unit respectively correspondence one cover optoelectronic switch is set, the mounting points of each installation site of monitoring laser emission plug-in unit respectively;
Control unit is set, the signal output part of each photoswitc is connected with the installation site detection signal input of control unit;
Laser Power Devices control module and laser emission element are set, the trigger impulse output of control unit is connected with the trigger impulse input of laser emission element; The status signal output of control unit is connected with the control end of Laser Power Devices control module, and the Laser Power Devices control module is serially connected with on the current supply circuit of laser emission element;
Whether (2) detect each light emission plug-in unit by each cover optoelectronic switch is in place, if having any one optoelectronic switch to detect corresponding light emission plug-in unit is not in place, then control unit blocks the output of Laser Power Devices control module, makes Laser Power Devices can not arrive laser tube;
(3) if all optoelectronic switches detect each light emission plug-in unit all to be in place, control unit receives the position signalling of optoelectronic switch, and all test point position signallings all satisfy condition, and when possessing condition of work, control unit detects the self-test signal of self;
(4) self-test signal that detects self when control unit also just often, control unit triggers the Laser Power Devices control module, makes Laser Power Devices can arrive laser tube, and connects laser emission element according to the actual requirements, makes laser tube carry out work.

Claims (4)

1.一种激光电源控制电路,其特征在于:由控制单元、激光电源控制模块、激光发射单元和光电开关监测单元组成:所述光电开光监测单元包括一组用于监测各光发射插件的光电开关,各光电开关用于安装在相应光发射插件的各个安装部位,光电开光监测单元的信号输出端与控制单元的安装位置检测信号输入端连接;控制单元的触发脉冲输出端与激光发射单元的触发脉冲输入端连接;控制单元的状态信号输出端与激光电源控制模块的控制端连接,所述激光电源控制模块串接于激光发射单元的供电回路上。1. A laser power supply control circuit, characterized in that: it is made up of a control unit, a laser power supply control module, a laser emitting unit and a photoelectric switch monitoring unit: the photoelectric switching on and monitoring unit includes a group of photoelectric switches for monitoring each light emitting plug-in Switches, each photoelectric switch is used to be installed in each installation position of the corresponding light emitting plug-in, the signal output end of the photoelectric switch-on monitoring unit is connected with the installation position detection signal input end of the control unit; the trigger pulse output end of the control unit is connected with the laser emission unit The trigger pulse input terminal is connected; the state signal output terminal of the control unit is connected with the control terminal of the laser power supply control module, and the laser power supply control module is connected in series with the power supply circuit of the laser emitting unit. 2.根据权利要求1所述的激光电源控制电路,其特征在于:所述激光电源控制模块为三极管,三极管的基极与控制单元的状态信号输出端连接,发射极与激光发射单元的供电回路输入端连接。2. The laser power supply control circuit according to claim 1, characterized in that: the laser power supply control module is a triode, the base of the triode is connected to the state signal output end of the control unit, and the emitter is connected to the power supply circuit of the laser emitting unit input connection. 3.根据权利要求1所述的激光电源控制电路,其特征在于:所述激光电源控制模块包括第一三极管、第二三极管和二极管,所述第一三极管的发射极与激光电源的供电回路输入端连接,集电极通过二极管与激光电源发射单元的供电回路输入输连接,第一三极管的发射极与基极并接有第一电阻和第一电容;第一三极管的基极通过第二电阻与第二三极管的集电极连接,第二三极管的基极与控制单元的状态信号输出端连接,第二三极管的基极通过第四电阻与发射极连接,且其发射极通过第五电阻与激光电源发射单元的供电回路输入输连接。3. The laser power supply control circuit according to claim 1, characterized in that: the laser power supply control module comprises a first triode, a second triode and a diode, the emitter of the first triode is connected to the The input terminal of the power supply circuit of the laser power supply is connected, the collector is connected with the input and output of the power supply circuit of the laser power transmitting unit through a diode, and the emitter and base of the first triode are connected in parallel with the first resistor and the first capacitor; the first three The base of the transistor is connected to the collector of the second transistor through the second resistor, the base of the second transistor is connected to the state signal output terminal of the control unit, and the base of the second transistor is connected through the fourth resistor It is connected with the emitter, and its emitter is connected with the input and output of the power supply circuit of the laser power transmitting unit through the fifth resistor. 4.根据权利要求2或3所述的激光电源控制电路,其特征在于:所述激光发射单元由顺次相接的限流电阻、激光管和控制元件MOSFET串联组成。4. The laser power supply control circuit according to claim 2 or 3, characterized in that: the laser emitting unit is composed of a current limiting resistor, a laser tube and a control element MOSFET connected in series in series.
CN2010206531711U 2010-12-10 2010-12-10 Control circuit for laser power device Expired - Fee Related CN201898278U (en)

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Application Number Priority Date Filing Date Title
CN2010206531711U CN201898278U (en) 2010-12-10 2010-12-10 Control circuit for laser power device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021068212A1 (en) * 2019-10-11 2021-04-15 深圳市大疆创新科技有限公司 Light emitting device, distance measuring device and mobile platform

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021068212A1 (en) * 2019-10-11 2021-04-15 深圳市大疆创新科技有限公司 Light emitting device, distance measuring device and mobile platform

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Legal Events

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C14 Grant of patent or utility model
GR01 Patent grant
C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20131128

Address after: No. 1298 Xuchang City, Henan province 461000 XJ Avenue

Patentee after: Xuji Electric Co., Ltd.

Address before: No. 1298 Xuchang City, Henan province 461000 XJ Avenue

Patentee before: Xuji Group Co., Ltd.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20110713

Termination date: 20171210