CN204031545U - LED light-emitting diode connection in series-parallel automatic switching circuit - Google Patents
LED light-emitting diode connection in series-parallel automatic switching circuit Download PDFInfo
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- CN204031545U CN204031545U CN201420434921.4U CN201420434921U CN204031545U CN 204031545 U CN204031545 U CN 204031545U CN 201420434921 U CN201420434921 U CN 201420434921U CN 204031545 U CN204031545 U CN 204031545U
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Abstract
The utility model discloses a kind of LED light-emitting diode connection in series-parallel automatic switching circuit, comprise power input terminal and a plurality of LED light-emitting diode, described power input comprises direct-flow positive pole input terminal, direct current negative input, exchanges driver module electrode input end and exchanges driver module negative input, described a plurality of LED light-emitting diode is connected in series in successively and exchanges driver module electrode input end and exchange between driver module negative input, is connected in series a diode between adjacent LED light-emitting diode; Between described direct-flow positive pole input terminal and the positive pole of each LED light-emitting diode, be all connected in series a diode, between the negative pole of each LED light-emitting diode and direct current negative input, be connected in series respectively a diode.The utility model circuit structure is simple, can input the conversion that contact carries out a plurality of LED light-emitting diode connection in series-parallel types of attachment by change.
Description
Technical field
The utility model relates to electronic circuit technology field, particularly a kind of circuit that carries out the automatic conversion of connection in series-parallel according to input.
Background technology
LED light source has the advantages such as luminous efficiency is high, long service life and is widely used because of it.LED light-emitting diode has the characteristic of low voltage drive, therefore can directly use lithium battery power supply, realize emergency lighting, the utility functions such as field illuminating, LED light-emitting diode, when using the power supply of lithium electricity, must adopt the form of being connected in parallel to power between each LED light-emitting diode.Certainly also can adopt Alternating Current Power Supply, high-power LED, when adopting AC-powered, must be used the special-purpose driver module power supply of series model, and between each high-power LED, need to adopt the circuit form being connected in series.Realize the conversion of the supplied by AC/DC electricity of LED light-emitting diode, must solve the automatic conversion of LED light-emitting diode series connection and this two states in parallel.
When LED light-emitting diode quantity is two, circuit conversion is comparatively simple, by many-contact relay, can realize.But when three above series connection are used, every light-emitting diode has two pins, three LED light-emitting diodes are connected and turned connection in parallel, minimumly need to change at 6 o'clock to the conversion of 12 contacts, if there are 6 LED light-emitting diodes to connect, turn connection in parallel, to have so more point to need switching, relay, owing to being subject to number of contacts quantitative limitation, cannot meet design requirement.
Summary of the invention
The utility model technical issues that need to address are to provide a kind of simple in structure, connection in series-parallel automatic switching circuit of being applied to a plurality of LED light-emitting diodes.
For solving the problems of the technologies described above, technical solution adopted in the utility model is as follows.
LED light-emitting diode connection in series-parallel automatic switching circuit, comprise power input terminal and a plurality of LED light-emitting diode, described power input comprises direct-flow positive pole input terminal, direct current negative input, exchanges driver module electrode input end and exchanges driver module negative input, described a plurality of LED light-emitting diode is connected in series in successively and exchanges driver module electrode input end and exchange between driver module negative input, is connected in series a diode between adjacent LED light-emitting diode; Between described direct-flow positive pole input terminal and the positive pole of each LED light-emitting diode, be all connected in series a diode, between the negative pole of each LED light-emitting diode and direct current negative input, be connected in series respectively a diode.
Improvement of the present utility model is: described diode is the low conduction voltage drop diode of Schottky.
Owing to having adopted above technical scheme, the obtained technological progress of the utility model is as follows.
The utility model circuit structure is simple, can input the conversion that contact carries out a plurality of LED light-emitting diode connection in series-parallel types of attachment by change, easy to operate, applicable to the conversion of a plurality of LED circuit of LED, met the requirement of different supply power modes to circuit.
Accompanying drawing explanation
Fig. 1 is the circuit diagram of embodiment 1;
Wherein: D1 ~ D8 is Schottky diode, LED1 ~ LED3 is LED light-emitting diode.
Embodiment
Below in conjunction with the drawings and specific embodiments, the utility model is further elaborated.
A kind of LED light-emitting diode connection in series-parallel automatic switching circuit, comprise power input terminal and a plurality of LED light-emitting diode, power input comprises direct-flow positive pole input terminal A, the sub-C of direct current negative input, exchanges the sub-B of driver module electrode input end and exchanges the sub-D of driver module negative input.Described a plurality of LED light-emitting diode is connected in series in successively and exchanges the sub-B of driver module electrode input end and exchange between the sub-D of driver module negative input, is connected in series a diode between adjacent LED light-emitting diode; Between described direct-flow positive pole input terminal A and the positive pole of each LED light-emitting diode, be all connected in series a diode, between the negative pole of each LED light-emitting diode and the sub-C of direct current negative input, be connected in series respectively a diode.
The present embodiment be take three LED light-emitting diodes and operation principle of the present utility model is described as example, and the circuit diagram of the present embodiment as shown in Figure 1.
Three LED LED 1 ~ LED3 are connected in series in successively and exchange the sub-B of driver module electrode input end and exchange between the sub-D of driver module negative input, the positive pole of LED1 light-emitting diode connects the sub-B of interchange driver module electrode input end, and the negative pole of LED3 light-emitting diode connects the sub-D of interchange driver module negative input.
Between adjacent LED light-emitting diode, be connected in series a diode.Be to be connected in series diode D7 between LED1 light-emitting diode and LED2 light-emitting diode, the positive pole of diode D7 connects the negative pole of LED1 light-emitting diode, and the negative pole of diode D7 connects the positive pole of LED2 light-emitting diode; Between LED2 light-emitting diode and LED3 light-emitting diode, be connected in series diode D8, the positive pole of diode D8 connects the negative pole of LED2 light-emitting diode, and the negative pole of diode D8 connects the positive pole of LED3 light-emitting diode.
Between the positive pole of direct-flow positive pole input terminal A and each LED light-emitting diode, be all connected in series a diode.Be to be connected in series diode D1 between direct-flow positive pole input terminal A and the positive pole of LED1 light-emitting diode, the positive pole of diode D1 connects direct-flow positive pole input terminal A, and the negative pole of diode D1 connects the positive pole of LED1 light-emitting diode; Between the positive pole of direct-flow positive pole input terminal A and LED2 light-emitting diode, be connected in series diode D2, the positive pole of diode D2 connects direct-flow positive pole input terminal A, and the negative pole of diode D2 connects the positive pole of LED2 light-emitting diode; Between the positive pole of direct-flow positive pole input terminal A and LED3 light-emitting diode, be connected in series diode D3, the positive pole of diode D3 connects direct-flow positive pole input terminal A, and the negative pole of diode D3 connects the positive pole of LED3 light-emitting diode.
Between the negative pole of each LED light-emitting diode and the sub-C of direct current negative input, be connected in series respectively a diode.Be to be connected in series diode D4 between the negative pole of LED1 light-emitting diode and the sub-C of direct current negative input, the positive pole of diode D4 connects the negative pole of LED1 light-emitting diode, and the negative pole of diode D4 connects the sub-C of direct current negative input; Between the negative pole of LED2 light-emitting diode and the sub-C of direct current negative input, be connected in series diode D5, the positive pole of diode D5 connects the negative pole of LED2 light-emitting diode, and the negative pole of diode D5 connects the sub-C of direct current negative input; Between the negative pole of LED3 light-emitting diode and the sub-C of direct current negative input, be connected in series diode D6, the positive pole of diode D6 connects the negative pole of LED3 light-emitting diode, and the negative pole of diode D6 connects the sub-C of direct current negative input.
Diode in the present embodiment adopts the low conduction voltage drop diode of Schottky, to realize its operating voltage between 3.7 ~ 4.2V.
During the present embodiment work, as adopted lithium battery power supply, the cathode output end that is about to lithium battery is connected with direct-flow positive pole input terminal A, the sub-C of direct current negative input respectively with cathode output end, and now, three LED light-emitting diodes consist of parallel circuits automatically.
As adopt Alternating Current Power Supply, and the positive and negative electrode of the special-purpose driver module of Alternating Current Power Supply is connected with the interchange sub-B of driver module electrode input end and the sub-D of interchange driver module negative input respectively, now, three LED light-emitting diodes form series circuit automatically.
Therefore the utility model can be realized the work type of attachment of LED light-emitting diode by conversion electric power access point, realizes series-parallel conversion.
Claims (2)
1.LED light-emitting diode connection in series-parallel automatic switching circuit, comprise power input terminal and a plurality of LED light-emitting diode, described power input comprises direct-flow positive pole input terminal (A), direct current negative input (C), exchange driver module electrode input end (B) and exchange driver module negative input (D), it is characterized in that: described a plurality of LED light-emitting diodes are connected in series in successively and exchange driver module electrode input end (B) and exchange between driver module negative input (D), between adjacent LED light-emitting diode, be connected in series a diode, between described direct-flow positive pole input terminal (A) and the positive pole of each LED light-emitting diode, be all connected in series a diode, between the negative pole of each LED light-emitting diode and direct current negative input (C), be connected in series respectively a diode.
2. LED light-emitting diode connection in series-parallel automatic switching circuit according to claim 1, is characterized in that: described diode is the low conduction voltage drop diode of Schottky.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420434921.4U CN204031545U (en) | 2014-08-04 | 2014-08-04 | LED light-emitting diode connection in series-parallel automatic switching circuit |
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CN201420434921.4U CN204031545U (en) | 2014-08-04 | 2014-08-04 | LED light-emitting diode connection in series-parallel automatic switching circuit |
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CN201420434921.4U Expired - Fee Related CN204031545U (en) | 2014-08-04 | 2014-08-04 | LED light-emitting diode connection in series-parallel automatic switching circuit |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104105271A (en) * | 2014-08-04 | 2014-10-15 | 无锡市市北高级中学 | Automatic LED series-parallel connection switching circuit |
CN109686730A (en) * | 2019-01-23 | 2019-04-26 | 苏州弘磊光电有限公司 | It is a kind of being capable of the mixed LAMP LED of alternating current-direct current |
-
2014
- 2014-08-04 CN CN201420434921.4U patent/CN204031545U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104105271A (en) * | 2014-08-04 | 2014-10-15 | 无锡市市北高级中学 | Automatic LED series-parallel connection switching circuit |
CN109686730A (en) * | 2019-01-23 | 2019-04-26 | 苏州弘磊光电有限公司 | It is a kind of being capable of the mixed LAMP LED of alternating current-direct current |
CN109686730B (en) * | 2019-01-23 | 2024-01-05 | 苏州弘磊光电有限公司 | LAMP LED capable of being used in AC-DC hybrid mode |
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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 | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20141217 Termination date: 20160804 |