CN203365595U - Optoelectronic coupler detector - Google Patents
Optoelectronic coupler detector Download PDFInfo
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- CN203365595U CN203365595U CN 201320497292 CN201320497292U CN203365595U CN 203365595 U CN203365595 U CN 203365595U CN 201320497292 CN201320497292 CN 201320497292 CN 201320497292 U CN201320497292 U CN 201320497292U CN 203365595 U CN203365595 U CN 203365595U
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Abstract
The utility model provides an optoelectronic coupler detector. The optoelectronic coupler detector is characterized in that: the optoelectronic coupler detector comprises a 6V DC power source, an astable multi-resonant oscillating circuit and an oscillation signal output and photoelectric coupler detection display circuit. The astable multi-resonant oscillating circuit is composed of a time-base circuit IC1, a resistor R1, a resistor R2 and an electrolytic capacitor C1, wherein the model of the time-base circuit IC1 is NE555. The oscillation signal output and photoelectric coupler detection display circuit is composed of a photoelectric coupler G1, a light emitting diode LED1, a resistor R3, and a light emitting diode LED2. The circuits of the optoelectronic coupler detector are made of common electronic components, so that the performance of the optoelectronic coupler can be accurately and dynamically tested, and the working state of the optoelectronic coupler can be dynamically and visually observed.
Description
Technical field
The utility model belongs to the electronic components test technical field, relates to a kind of photoelectrical coupler detector.
Background technology
Photoelectrical coupler is to take a kind of electricity~light that light is the media transmission electric signal~power conversion device.It is comprised of light emitting source and light-receiving device two parts.Light emitting source and light-receiving device are assembled in same airtight housing, isolate with transparent insulator to each other.The pin of light emitting source is input end, the pin of light-receiving device is output terminal, common light emitting source is light emitting diode, light-receiving device is that phototriode, its principle of work of phototriode are: add electric signal at the photoelectrical coupler input end and make light emitting source luminous, light intensity depends on the size of exciting current, after this illumination is mapped on the light-receiving device be packaged together, because photoelectric effect has produced photocurrent, drawn by the light-receiving device output terminal, so just can realize the conversion of electricity~light~electricity.
Generally, use the performance that common multimeter can only the simple test photoelectrical coupler, to more accurately hold the performance of photoelectrical coupler, you need to be linked into photoelectrical coupler in side circuit and be surveyed, once the performance of photoelectrical coupler has problem, by its lower very trouble of changing of burn-oning.The circuit of photoelectrical coupler detector described in the utility model is all used the ordinary electronic element to be made, it can be relatively the accurate performance of testing photoelectronic coupling mechanism dynamically, it can dynamically observe the duty of photoelectrical coupler intuitively.
Below describe photoelectrical coupler detector described in the utility model related relevant technologies content in implementation process in detail.
The utility model content
Goal of the invention and beneficial effect: more accurately hold the performance of photoelectrical coupler, you need to be linked into photoelectrical coupler in side circuit and be surveyed, once the performance of photoelectrical coupler has problem, the lower replacing of its weldering of burn-oning are got up and are very bothered.The circuit of photoelectrical coupler detector described in the utility model is all used the ordinary electronic element to be made, it can be relatively the accurate performance of testing photoelectronic coupling mechanism dynamically, it can dynamically observe the duty of photoelectrical coupler intuitively.
The circuit working principle: the photoelectrical coupler detector forms the stable multi-oscillation circuit by time base circuit IC1 and resistance R 1, resistance R 2 and electrochemical capacitor C1.After connecting the 6V direct supply, because the voltage on electrochemical capacitor C1 is very low, the 3rd pin of time base circuit IC1 output terminal is high level.The 6V direct supply charges to electrochemical capacitor C1 through resistance R 1 and resistance R 2, voltage on electrochemical capacitor C1 progressively rises, when the voltage on electrochemical capacitor C1 rises to 2/3 direct supply voltage, the upset of time base circuit IC1 internal trigger, the 3rd pin output low level of time base circuit IC1, the internal discharge pipe conducting of time base circuit IC1 simultaneously, electrochemical capacitor C1 powers on and presses off the 7th pin electric discharge by time base circuit IC1 through resistance R 2 of beginning.Voltage drop on electrochemical capacitor C1 is during to 1/3 direct supply voltage, time base circuit IC1 internal trigger overturns again, the 3rd pin output high level of time base circuit IC1, internal discharge pipe cut-off simultaneously, the 6V direct supply charges to electrochemical capacitor C1 through resistance R 1 and resistance R 2 again, so goes round and begins again and forms vibration.
Time base circuit IC1 output terminal connects photoelectrical coupler G1 and LED 1 by LED 2, when LED 1 and LED 2 flashing, shows that tested photoelectrical coupler performance is intact.If after energising, LED 1 is normal bright or do not work, illustrate that tested photoelectrical coupler damages.
Technical scheme: the photoelectrical coupler detector, it comprises 6V direct supply, stable multi-oscillation circuit, oscillator signal output and photoelectrical coupler detection display circuit, it is characterized in that:
The stable multi-oscillation circuit: it is by time base circuit IC1, resistance R 1, resistance R 2, electrochemical capacitor C1 forms, the model that time base circuit IC1 selects is NE555, the anodal VCC of the 4th pin of time base circuit IC1 and the 8th pin connection circuit, the end of the 7th pin connecting resistance R1 of time base circuit IC1 and an end of resistance R 2, the anodal VCC of the other end connection circuit of resistance R 1, the 2nd pin of time base circuit IC1 and the 6th pin connect the positive pole of electrochemical capacitor C1 and the other end of resistance R 2, the 1st pin of time base circuit IC1 and the negative pole connection circuit ground GND of electrochemical capacitor C1, the 3rd pin of time base circuit IC1 connects oscillatory signal output circuit and photoelectrical coupler detection display circuit,
Oscillator signal output and photoelectrical coupler detection display circuit: it is comprised of photoelectrical coupler G1, LED 1 and resistance R 3, LED 2, the positive pole of the 3rd pin sending and receiving optical diode LED2 of time base circuit IC1, the negative pole of LED 2 connects the 1st pin of photoelectrical coupler G1, the 2nd pin of photoelectrical coupler G1 and the 3rd pin connection circuit ground GND, the 4th pin of photoelectrical coupler G1 passes through the negative pole of resistance R 3 sending and receiving optical diode LED1, the anodal VCC of the anodal connection circuit of LED 1;
The anodal VCC of 6V DC power anode connection circuit, the 6V DC power cathode is connected with circuit ground GND.
The accompanying drawing explanation
Accompanying drawing is the embodiment circuit working schematic diagram that the utility model provides a photoelectrical coupler detector; 6V DC power cathode in accompanying drawing is connected with circuit ground GND.
Embodiment
According to photoelectrical coupler detector circuit working schematic diagram shown in the drawings and accompanying drawing explanation, and according to annexation between components and parts in the described each several part circuit of utility model content, and the components and parts technical parameter described in embodiment requires and the circuit production main points are implemented to realize the utility model, below in conjunction with embodiment, correlation technique of the present utility model is further described.
The selection of components and parts and technical parameter
IC1 is time base circuit, the model NE555 selected, and time base circuit IC1 is 8 pin DIP encapsulation, each pin function: 1 pin is circuit ground GND, 2 pin are trigger end, 3 pin output terminals, and 4 pin preset ends, 5 pin are for controlling voltage, 6 pin thresholdings (threshold value), 7 pin are discharge end, 8 pin are positive source VCC;
C1 is electrochemical capacitor, capacity and withstand voltage be 10 μ F/16V;
The multiway socket that photoelectrical coupler uses, can select 16 pin DIP, zero plug socket;
The 6V direct supply can use the 6V laminated cell.
Circuit production main points and circuit debugging
Because of the circuit structure of photoelectrical coupler detector fairly simple, as long as the electronic devices and components performance of generally selecting is intact, and the components and parts annexation in accompanying drawing is welded to specifications, physical connection line and welding quality are after careful inspection is correct, circuit of the present utility model does not need to carry out any debugging substantially, and connecting the 6V direct supply can work;
The capacity of electrochemical capacitor C1 is crucial, it has determined the oscillation frequency of stable multi-oscillation circuit, by adjusting the oscillation frequency of stable multi-oscillation circuit, can change the frequency of LED 1 flicker, can realize by the resistance of changing resistance R 1, resistance R 2 or the capacity that changes electrochemical capacitor C1.
Claims (1)
1. a photoelectrical coupler detector, it comprises 6V direct supply, stable multi-oscillation circuit, oscillator signal output and photoelectrical coupler detection display circuit, it is characterized in that:
Described stable multi-oscillation circuit is by time base circuit IC1, resistance R 1, resistance R 2, electrochemical capacitor C1 forms, the model that time base circuit IC1 selects is NE555, the anodal VCC of the 4th pin of time base circuit IC1 and the 8th pin connection circuit, the end of the 7th pin connecting resistance R1 of time base circuit IC1 and an end of resistance R 2, the anodal VCC of the other end connection circuit of resistance R 1, the 2nd pin of time base circuit IC1 and the 6th pin connect the positive pole of electrochemical capacitor C1 and the other end of resistance R 2, the 1st pin of time base circuit IC1 and the negative pole connection circuit ground GND of electrochemical capacitor C1, the 3rd pin of time base circuit IC1 connects oscillatory signal output circuit and photoelectrical coupler detection display circuit,
Described oscillator signal output and photoelectrical coupler detection display circuit are comprised of photoelectrical coupler G1, LED 1 and resistance R 3, LED 2, the positive pole of the 3rd pin sending and receiving optical diode LED2 of time base circuit IC1, the negative pole of LED 2 connects the 1st pin of photoelectrical coupler G1, the 2nd pin of photoelectrical coupler G1 and the 3rd pin connection circuit ground GND, the 4th pin of photoelectrical coupler G1 passes through the negative pole of resistance R 3 sending and receiving optical diode LED1, the anodal VCC of the anodal connection circuit of LED 1;
The anodal VCC of described 6V DC power anode connection circuit, the 6V DC power cathode is connected with circuit ground GND.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201320497292 CN203365595U (en) | 2013-08-15 | 2013-08-15 | Optoelectronic coupler detector |
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CN 201320497292 CN203365595U (en) | 2013-08-15 | 2013-08-15 | Optoelectronic coupler detector |
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CN 201320497292 Expired - Fee Related CN203365595U (en) | 2013-08-15 | 2013-08-15 | Optoelectronic coupler detector |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103399242A (en) * | 2013-08-15 | 2013-11-20 | 黄勇 | Photoelectric coupler detector |
CN103884942A (en) * | 2014-03-31 | 2014-06-25 | 苏州热工研究院有限公司 | Aging test system and method for photoelectric couplers |
CN110233780A (en) * | 2019-07-30 | 2019-09-13 | 漯河医学高等专科学校 | A kind of computer network signal supervisory instrument |
-
2013
- 2013-08-15 CN CN 201320497292 patent/CN203365595U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103399242A (en) * | 2013-08-15 | 2013-11-20 | 黄勇 | Photoelectric coupler detector |
CN103884942A (en) * | 2014-03-31 | 2014-06-25 | 苏州热工研究院有限公司 | Aging test system and method for photoelectric couplers |
CN103884942B (en) * | 2014-03-31 | 2016-08-31 | 苏州热工研究院有限公司 | A kind of degradation system and method for photoelectrical coupler |
CN110233780A (en) * | 2019-07-30 | 2019-09-13 | 漯河医学高等专科学校 | A kind of computer network signal supervisory instrument |
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Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20131225 Termination date: 20140815 |
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EXPY | Termination of patent right or utility model |