CN104133383B - A kind of intelligent monitoring circuit of electric capacity production scene - Google Patents

A kind of intelligent monitoring circuit of electric capacity production scene Download PDF

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Publication number
CN104133383B
CN104133383B CN201410251724.3A CN201410251724A CN104133383B CN 104133383 B CN104133383 B CN 104133383B CN 201410251724 A CN201410251724 A CN 201410251724A CN 104133383 B CN104133383 B CN 104133383B
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resistance
electrochemical capacitor
electric capacity
operational amplifier
potentiometer
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CN104133383A (en
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陈巍龙
龙立平
聂伟安
刘长辉
陈昌贵
王瑞清
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Yiyang Hetian Electronics Co Ltd
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Yiyang Hetian Electronics Co Ltd
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Abstract

The present invention provides the intelligent monitoring circuit of a kind of electric capacity production scene, this programme is by the relevant induction installation collecting device information on the equipment of being installed at, information after simultaneously collecting is sent to controller by data reception module, and the data collected are analyzed arranging by controller by data analysis module;And by reduced data store and show at the scene or send to other data terminal, facilitating manager to consult at any time, understand equipment running status, the counting of native system is accurate, be conducive to the maintaining of equipment, and there is advantages such as being automatically reminded to equipment consumable accessory replacing construction.

Description

A kind of intelligent monitoring circuit of electric capacity production scene
Technical field
The present invention relates to electric capacity and produce equipment, refer in particular to the intelligent monitoring circuit of a kind of electric capacity production scene.
Background technology
Electric capacity is one of a large amount of electronic components used in electronic equipment, be widely used in circuit every straight-through friendship, coupling, bypass, filtering, resonant tank, the aspects such as energy changes, control.Along with making rapid progress of electronic information technology, the update speed of digital electronic goods is more and more faster, based on the consumer electronics product volume of production and marketing sustainable growth of the products such as flat panel TV LCD and PDP, notebook computer, digital camera, capacitor industry has been driven to increase.And driven the development of associated materials, equipment Industry, China to have become as whole world capacitor big producing country.
But the relevant device of existing production electric capacity is all manually to go to carry out to detect, safeguard and counting etc..Adopt tool in this way to have disadvantages that, such as: the first, can not the running status of discovering device in time, workman's set time section often goes to check, but the output of equipment every day is frequently not fixing, so, often causes machine utilization excess to damage;The second, the processing assembly on equipment is just replaced often after there is defective products in a large number, causes waste of raw materials;3rd, the processing quantity of equipment is also to use artificial counting, situation false often occur, failing to report;4th, the switching on and shutting down time of workman calculates by checking card, it is impossible to determines the operation time of equipment, is unfavorable for equipment maintenance etc..
Summary of the invention
It is an object of the invention to provide the intelligent monitoring circuit of a kind of electric capacity production scene.
For achieving the above object, technical scheme provided by the present invention is: the intelligent monitoring circuit of a kind of electric capacity production scene, and described circuit includes the first electrochemical capacitor, the second electrochemical capacitor, the 4th electrochemical capacitor, the 5th electrochemical capacitor, the first operational amplifier, the second operational amplifier;Wherein, 4th electrochemical capacitor, the 5th electrochemical capacitor one end are connected with power supply, the 4th electrochemical capacitor other end and the 8th resistance one end connect, and the 5th electrochemical capacitor other end and the 9th resistance one end connect, and the 8th resistance other end and the 9th resistance other end are then connected to the tenth resistance one end after being connected;The 9th resistance other end is connected to the negative input end of the first operational amplifier, the output of the first operational amplifier and the tenth resistance other end are then connected to the 6th electrochemical capacitor one end after connecting, the 6th electrochemical capacitor other end and first potentiometer one end connect, first potentiometer other end ground connection, adjustable side is connected with the 7th electrochemical capacitor one end, the 7th electrochemical capacitor other end and the 12nd resistance one end are connected, and the 12nd resistance other end is connected with the 6th resistance, the 7th resistance, the negative input end of the second operational amplifier respectively;The positive input terminal of the first operational amplifier is connected with positive input terminal, the positive input terminal of the 3rd operational amplifier and the tenth electrochemical capacitor one end of the second operational amplifier respectively;7th resistance other end output with the 17th resistance, the 13rd resistance and the second operational amplifier respectively is connected;The 13rd resistance other end and second potentiometer one end connect, and the second potentiometer other end ground connection, adjustable side is connected with the 15th resistance, the 3rd operational amplifier negative input end respectively;The 15th resistance other end is connected with output, the 8th electrochemical capacitor one end of the 3rd operational amplifier respectively, the 8th electrochemical capacitor other end is connected with the 16th resistance, the 11st electrochemical capacitor, second diode one end respectively, the 16th resistance, the 11st electrochemical capacitor, the second diode other end and ammeter interconnection ground connection;Tenth electrochemical capacitor one end is connected with the 20th resistance, the 21st resistance one end respectively, after the tenth electrochemical capacitor other end and the connection of the 21st resistance other end with dc source in succession;The 20th resistance other end is connected with the 9th electrochemical capacitor, first electric capacity one end respectively;One end that first electric capacity and the 20th resistance connect is connected with transformer, the other end ground connection of the first electric capacity;The 6th resistance other end and second electric capacity one end connect, and the second electric capacity other end and the 3rd potentiometer are connected;3rd potentiometer one end is connected with second electrochemical capacitor one end, and the other end and the 4th resistance are connected with peripheral hardware after connecting again;The other end of the 4th resistance and the first transistor emitter connect;The second electrochemical capacitor other end is connected with the second resistance, the 3rd resistance and the first transistor collector respectively;The second resistance other end is connected with the first transistor base and first electrochemical capacitor one end respectively;The first electrochemical capacitor other end is connected with peripheral hardware, first resistance one end respectively;The D pin of the first resistance other end and the 3rd resistance, FET is then connected on transformer after connecting;The G pin of FET is connected with the 3rd electric capacity, the 4th electric capacity, the 18th resistance one end respectively, and the i.e. the 3rd electric capacity, the 4th electric capacity, the 18th resistance are parallel relationship;The 4th electric capacity other end is connected with the first inductance, the 5th electric capacity, tunable capacitor one end respectively, and the i.e. first inductance, the 5th electric capacity, tunable capacitor are for being connected in parallel, and the 5th electric capacity other end is connected with the 17th resistance, the first diode respectively;The first diode other end is then connected on the emitter stage of the second triode after being connected with tunable capacitor, the first inductance, the 18th resistance, the 6th electric capacity, the second inductance, the other end of the 19th resistance successively;The 6th electric capacity other end and the 3rd electric capacity are connected;The S pin of FET is connected with the 3rd electric capacity, the 6th electric capacity, the second inductance, the 7th electric capacity respectively;The 7th electric capacity other end is connected with the 19th resistance, the base stage of the second triode respectively;The colelctor electrode of the second triode is connected with transformer, transformer grounding.
The present invention is after using such scheme, by the relevant induction installation collecting device information on the equipment of being installed at, information after simultaneously collecting is sent to controller by data reception module, and the data collected are analyzed arranging by controller by data analysis module;And by reduced data store and show at the scene or send to other data terminal, facilitating manager to consult at any time, understand equipment running status, the counting of native system is accurate, be conducive to the maintaining of equipment, and there is advantages such as being automatically reminded to equipment consumable accessory replacing construction.
Accompanying drawing explanation
Fig. 1 is the circuit theory diagrams of the present invention.
Detailed description of the invention
Below in conjunction with all accompanying drawings, the invention will be further described, presently preferred embodiments of the present invention is: see accompanying drawing 1, and the circuit described in the present embodiment includes the first electrochemical capacitor C1, the second electrochemical capacitor C2, the 4th electrochemical capacitor C4, the 5th electrochemical capacitor C5, the first operational amplifier CF1, the second operational amplifier CF2;Wherein, 4th electrochemical capacitor C4, the 5th electrochemical capacitor C5 one end are connected with power supply, the 4th electrochemical capacitor C4 other end and the 8th resistance R8 one end connect, the 5th electrochemical capacitor C5 other end and the 9th resistance R9 one end connect, and the 8th resistance R8 other end and the 9th resistance R9 other end are then connected to the tenth resistance R10 one end after being connected;The 9th resistance R9 other end is connected to the negative input end of the first operational amplifier CF1, the output of the first operational amplifier CF1 and the tenth resistance R10 other end are then connected to the 6th electrochemical capacitor C6 one end after connecting, the 6th electrochemical capacitor C6 other end and first potentiometer RP1 one end connect, first potentiometer RP1 other end ground connection, adjustable side is connected with the 7th electrochemical capacitor C7 one end, the 7th electrochemical capacitor C7 other end and the 12nd resistance R12 one end are connected, the 12nd resistance R12 other end respectively with the 6th resistance R6, 7th resistance R7, the negative input end of the second operational amplifier CF2 is connected;The positive input terminal of the first operational amplifier CF1 is connected with positive input terminal, the positive input terminal of the 3rd operational amplifier CF3 and the tenth electrochemical capacitor C10 one end of the second operational amplifier CF2 respectively;7th resistance R7 other end output with the 17th resistance R17, the 13rd resistance R13 and the second operational amplifier CF2 respectively is connected;The 13rd resistance R13 other end and second potentiometer RP2 one end connect, and the second potentiometer RP2 other end ground connection, adjustable side is connected with the 15th resistance R15, the 3rd operational amplifier CF3 negative input end respectively;The 15th resistance R15 other end is connected with output, the 8th electrochemical capacitor C8 one end of the 3rd operational amplifier CF3 respectively, the 8th electrochemical capacitor C8 other end is connected with the 16th resistance R16, the 11st electrochemical capacitor C11, second diode VD2 one end respectively, the 16th resistance R16, the 11st electrochemical capacitor C11, the second diode VD2 other end and ammeter interconnection ground connection;Tenth electrochemical capacitor C10 one end is connected with the 20th resistance R20, the 21st resistance R21 one end respectively, after the tenth electrochemical capacitor C10 other end and the connection of the 21st resistance R21 other end with dc source in succession;The 20th resistance R20 other end is connected with the 9th electrochemical capacitor C9, first electric capacity C21 one end respectively;One end that first electric capacity C21 and the 20th resistance R20 connects is connected with transformer T1, the other end ground connection of the first electric capacity C21;The 6th resistance R6 other end and second electric capacity C22 one end connect, and the second electric capacity C22 other end and the 3rd potentiometer RP3 are connected;3rd potentiometer RP3 one end is connected with second electrochemical capacitor C2 one end, and the other end and the 4th resistance R4 are connected with peripheral hardware W after connecting again;The other end of the 4th resistance R4 and the first triode Q1 emitter stage connect;The second electrochemical capacitor C2 other end is connected with the second resistance R2, the 3rd resistance R3 and the first triode Q1 colelctor electrode respectively;The second resistance R2 other end is connected with the first triode Q1 base stage and first electrochemical capacitor C1 one end respectively;The first electrochemical capacitor C1 other end is connected with peripheral hardware W, first resistance R1 one end respectively;The D pin of the first resistance R1 other end and the 3rd resistance R3, FET Q11 is then connected on transformer T1 after connecting;The G pin of FET Q11 is connected with the 3rd electric capacity C23, the 4th electric capacity C24, the 18th resistance R18 one end respectively;The 4th electric capacity C24 other end is connected with the first inductance L1, the 5th electric capacity C25, tunable capacitor CD2 one end respectively, and the 5th electric capacity C25 other end is connected with the 17th resistance R17, the first diode VD1 respectively;The first diode VD1 other end is then connected on the emitter stage of the second triode Q2 after being connected with tunable capacitor CD2, the first inductance L1, the 18th resistance R18, the 6th electric capacity C26, the second inductance L2, the other end of the 19th resistance R19 successively;The 6th electric capacity C26 other end and the 3rd electric capacity C23 are connected;The S pin of FET Q11 is connected with the 3rd electric capacity C23, the 6th electric capacity C26, the second inductance L2, the 7th electric capacity C27 respectively;7th electric capacity C27 other end base stage with the 19th resistance R19, the second triode Q2 respectively is connected;The colelctor electrode of the second triode Q2 is connected with transformer T1, transformer T1 ground connection.
The embodiment of the above is only the preferred embodiments of the invention, not limits the practical range of the present invention with this, therefore the change that all shapes according to the present invention, principle are made, all should contain within the scope of the present invention.

Claims (1)

1. the intelligent monitoring circuit of an electric capacity production scene, it is characterised in that: described circuit includes the first electrochemical capacitor (C1), the second electrochemical capacitor (C2), the 4th electrochemical capacitor (C4), the 5th electrochemical capacitor (C5), the first operational amplifier (CF1), the second operational amplifier (CF2);Wherein, 4th electrochemical capacitor (C4), the 5th electrochemical capacitor (C5) one end are connected with power supply, 4th electrochemical capacitor (C4) other end and the 8th resistance (R8) one end connect, 5th electrochemical capacitor (C5) other end and the 9th resistance (R9) one end connect, and the 8th resistance (R8) other end and the 9th resistance (R9) other end are then connected to the tenth resistance (R10) one end after being connected;9th resistance (R9) other end is connected to the negative input end of the first operational amplifier (CF1), the output of the first operational amplifier (CF1) and the tenth resistance (R10) other end are then connected to the 6th electrochemical capacitor (C6) one end after connecting, 6th electrochemical capacitor (C6) other end and the first potentiometer (RP1) one end connect, first potentiometer (RP1) other end ground connection, adjustable side is connected with the 7th electrochemical capacitor (C7) one end, 7th electrochemical capacitor (C7) other end and the 12nd resistance (R12) one end are connected, 12nd resistance (R12) other end respectively with the 6th resistance (R6), 7th resistance (R7), the negative input end of the second operational amplifier (CF2) is connected;The positive input terminal of the first operational amplifier (CF1) is connected with positive input terminal, the positive input terminal of the 3rd operational amplifier (CF3) and the tenth electrochemical capacitor (C10) one end of the second operational amplifier (CF2) respectively;7th resistance (R7) other end output with the 17th resistance (R17), the 13rd resistance (R13) and the second operational amplifier (CF2) respectively is connected;13rd resistance (R13) other end and the second potentiometer (RP2) one end connect, and the second potentiometer (RP2) other end ground connection, adjustable side is connected with the 15th resistance (R15), the 3rd operational amplifier (CF3) negative input end respectively;15th resistance (R15) other end is connected with output, the 8th electrochemical capacitor (C8) one end of the 3rd operational amplifier (CF3) respectively, 8th electrochemical capacitor (C8) other end is connected with the 16th resistance (R16), the 11st electrochemical capacitor (C11), the second diode (VD2) one end respectively, the 16th resistance (R16), the 11st electrochemical capacitor (C11), the second diode (VD2) other end and ammeter interconnection ground connection;Tenth electrochemical capacitor (C10) one end is connected with the 20th resistance (R20), the 21st resistance (R21) one end respectively, after the tenth electrochemical capacitor (C10) other end and the connection of the 21st resistance (R21) other end with dc source in succession;20th resistance (R20) other end is connected with the 9th electrochemical capacitor (C9), the first electric capacity (C21) one end respectively;One end that first electric capacity (C21) is connected with the 20th resistance (R20) is connected with transformer (T1), the other end ground connection of the first electric capacity (C21);6th resistance (R6) other end and the second electric capacity (C22) one end connect, and the second electric capacity (C22) other end and the 3rd potentiometer (RP3) are connected;3rd potentiometer (RP3) one end is connected with the second electrochemical capacitor (C2) one end, and the other end and the 4th resistance (R4) are connected with peripheral hardware (W) after connecting again;The other end of the 4th resistance (R4) and the first triode (Q1) emitter stage connect;Second electrochemical capacitor (C2) other end is connected with the second resistance (R2), the 3rd resistance (R3) and the first triode (Q1) colelctor electrode respectively;Second resistance (R2) other end is connected with the first triode (Q1) base stage and the first electrochemical capacitor (C1) one end respectively;First electrochemical capacitor (C1) other end is connected with peripheral hardware (W), the first resistance (R1) one end respectively;The D pin of the first resistance (R1) other end and the 3rd resistance (R3), FET (Q11) is then connected on transformer (T1) after connecting;The G pin of FET (Q11) is connected with the 3rd electric capacity (C23), the 4th electric capacity (C24), the 18th resistance (R18) one end respectively;4th electric capacity (C24) other end is connected with the first inductance (L1), the 5th electric capacity (C25), tunable capacitor (CD2) one end respectively, and the 5th electric capacity (C25) other end is connected with the 17th resistance (R17), the first diode (VD1) respectively;First diode (VD1) other end is then connected on the emitter stage of the second triode (Q2) after being connected with tunable capacitor (CD2), the first inductance (L1), the 18th resistance (R18), the 6th electric capacity (C26), the second inductance (L2), the other end of the 19th resistance (R19) successively;6th electric capacity (C26) other end and the 3rd electric capacity (C23) are connected;The S pin of FET (Q11) is connected with the 3rd electric capacity (C23), the 6th electric capacity (C26), the second inductance (L2), the 7th electric capacity (C27) respectively;7th electric capacity (C27) other end is connected with the 19th resistance (R19), the base stage of the second triode (Q2) respectively;The colelctor electrode of the second triode (Q2) is connected with transformer (T1), transformer (T1) ground connection.
CN201410251724.3A 2014-06-09 2014-06-09 A kind of intelligent monitoring circuit of electric capacity production scene Active CN104133383B (en)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5557549A (en) * 1992-09-28 1996-09-17 Praxair Technology, Inc. Knowledge based diagnostic advisory system and method for an air separation plant
CN2752287Y (en) * 2004-09-27 2006-01-18 曹新良 Production monitoring and managing device for shuttleless loom
CN104007689A (en) * 2014-06-09 2014-08-27 益阳市和天电子有限公司 Intelligent monitoring system for capacitor production field
CN203941400U (en) * 2014-06-09 2014-11-12 益阳市和天电子有限公司 The intelligent monitoring circuit that a kind of electric capacity production scene is used

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5557549A (en) * 1992-09-28 1996-09-17 Praxair Technology, Inc. Knowledge based diagnostic advisory system and method for an air separation plant
CN2752287Y (en) * 2004-09-27 2006-01-18 曹新良 Production monitoring and managing device for shuttleless loom
CN104007689A (en) * 2014-06-09 2014-08-27 益阳市和天电子有限公司 Intelligent monitoring system for capacitor production field
CN203941400U (en) * 2014-06-09 2014-11-12 益阳市和天电子有限公司 The intelligent monitoring circuit that a kind of electric capacity production scene is used

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Denomination of invention: An intelligent monitoring circuit for capacitor production site

Effective date of registration: 20210806

Granted publication date: 20160907

Pledgee: Yiyang branch of China Everbright Bank Co.,Ltd.

Pledgor: YIYANG HETIAN ELECTRONIC Co.,Ltd.

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Date of cancellation: 20220811

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