CN109490781A - A kind of method for rapidly testing for CdTe solar battery stable electrical parameter - Google Patents

A kind of method for rapidly testing for CdTe solar battery stable electrical parameter Download PDF

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Publication number
CN109490781A
CN109490781A CN201811347496.4A CN201811347496A CN109490781A CN 109490781 A CN109490781 A CN 109490781A CN 201811347496 A CN201811347496 A CN 201811347496A CN 109490781 A CN109490781 A CN 109490781A
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CN
China
Prior art keywords
solar battery
cdte solar
electrical parameter
cdte
stable electrical
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201811347496.4A
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Chinese (zh)
Inventor
王大鹏
牛改宇
潘智林
黄胜源
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Zhongshan Ruike New Energy Co Ltd
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Zhongshan Ruike New Energy Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Zhongshan Ruike New Energy Co Ltd filed Critical Zhongshan Ruike New Energy Co Ltd
Priority to CN201811347496.4A priority Critical patent/CN109490781A/en
Publication of CN109490781A publication Critical patent/CN109490781A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R31/00Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
    • G01R31/36Arrangements for testing, measuring or monitoring the electrical condition of accumulators or electric batteries, e.g. capacity or state of charge [SoC]
    • G01R31/3644Constructional arrangements

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Photovoltaic Devices (AREA)

Abstract

The invention discloses a kind of method for rapidly testing for CdTe solar battery stable electrical parameter, the following steps are included: A, heating battery, B, photogalvanic cell, will be heated in step A the CdTe solar battery finished take out and put into carried out in incubator heat preservation and illumination;C, cooling battery, the CdTe solar battery that illumination finishes is taken out and is cooled down;D, performance detection carries out electric performance test to the CdTe solar battery that cooling finishes using detection device.By the light source for increasing illumination in incubator, and combine packaging technology, efficiently use the component waste heat that laminating technology provides, CdTe solar battery can be quickly set to activate, reach stable power output state, accurate unit for electrical property parameters is obtained when measurement, while the consumption to energy is effectively reduced.

Description

A kind of method for rapidly testing for CdTe solar battery stable electrical parameter
Technical field
CdTe solar battery, which can be quickly detected, the present invention relates to sun-generated electric power production field, especially one kind stablizes electricity The test method of performance parameter.
Background technique
It is well known that CdTe solar battery will measure its unit for electrical property parameters after packaging, needs strong light and shine for a long time Penetrating could stablize, and measurement is time-consuming long, seriously affected the production efficiency of enterprise, reduced the competitiveness of society of enterprise.
Summary of the invention
To solve the above-mentioned problems, it is simple that the purpose of the present invention is to provide one kind, while can quickly detect CdTe again The test method of solar battery stable electrical parameter.
The present invention be solve its technical problem and the technical solution adopted is that:
A kind of method for rapidly testing for CdTe solar battery stable electrical parameter, comprising the following steps:
A, battery is heated, CdTe solar battery to be detected is placed in laminating machine, and passes through the laminating machine pair CdTe solar battery is heated;
B, photogalvanic cell will heat the CdTe solar battery finished and take out and put into incubator and protects in step A Temperature is provided with the light source that can be shone in the incubator, during CdTe solar battery is kept the temperature in incubator, Light source electrified light emitting simultaneously carries out illumination to CdTe solar battery;
C, cooling battery, the CdTe solar battery that illumination in step B finishes is taken out and is cooled down, so that CdTe is too The temperature of positive energy battery drops to room temperature;
D, performance detection carries out electrical property survey to the CdTe solar battery finished that cools down in step C using detection device Examination.
As an improvement of the above technical solution, in the step A, the laminating machine heats CdTe solar battery When temperature be 120-160 DEG C, the time be 10-16 minutes.
As a further improvement of the above technical scheme, in the step A, the laminating machine to CdTe solar battery into Temperature when row heating is 140 DEG C, and the time is 13 minutes.
Herein, the battery degree of cross linking of CdTe solar battery to be detected is 70-90% in the step A.
Preferably, in the step B, light source electrified light emitting simultaneously carries out the time of illumination to CdTe solar battery as 100- 200 seconds.
Wherein, in the step B, light source electrified light emitting and to CdTe solar battery carry out illumination time be 150 seconds.
Further, in the step B, the light source being arranged in the incubator is LED chip module.
In the present invention, the quantity of the LED chip module is 24 groups, and each LED chip module is each equipped with independent Power supply.
A preferred embodiment of the present invention, 24 groups of LED chip modules are respectively arranged at the different positions of the heat preservation chamber interior wall Set place.
Further, in the step C, the CdTe solar battery that illumination in step B finishes is taken out and puts cooler bin into In cool down.
The beneficial effects of the present invention are: since the present invention uses above-mentioned detection method, by increasing light in incubator According to light source, and combine packaging technology, effective use laminating technology provide component waste heat, can quickly make CdTe solar energy It is battery activated, reach stable power output state, when measurement obtains accurate unit for electrical property parameters, while being effectively reduced to energy Consumption.
Specific embodiment
A kind of method for rapidly testing for CdTe solar battery stable electrical parameter, comprising the following steps:
A, battery is heated, CdTe solar battery to be detected is placed in laminating machine, and passes through the laminating machine pair CdTe solar battery is heated,
Herein, as a preferred embodiment of the present invention, when the laminating machine heats CdTe solar battery Temperature be 120-160 DEG C, the time be 10-16 minutes, further preferably, the laminating machine adds CdTe solar battery Temperature when hot is 140 DEG C, and the time is 13 minutes;
B, photogalvanic cell will heat the CdTe solar battery finished and take out and put into incubator and protects in step A Temperature is provided with the light source that can be shone in the incubator, during CdTe solar battery is kept the temperature in incubator, Light source electrified light emitting simultaneously carries out illumination to CdTe solar battery, herein, as a preferred embodiment of the present invention, the light Source electrified light emitting and to CdTe solar battery carry out illumination time be 100-200 seconds;Further preferably, the light source is powered It shines and the time for carrying out illumination to CdTe solar battery is 150 seconds;
C, cooling battery, the CdTe solar battery that illumination in step B finishes is taken out and is cooled down, so that CdTe is too The temperature of positive energy battery drops to room temperature, wherein in order to accelerate the cooling rate of CdTe solar battery, herein, as this hair A bright preferred embodiment, the CdTe solar battery that illumination in step B finishes takes out and put into cooler bin cool down, The temperature fall time of CdTe solar battery can greatly be shortened;
D, performance detection carries out electrical property survey to the CdTe solar battery finished that cools down in step C using detection device Examination.
Wherein, in order to guarantee that testing result is accurate and reliable, herein, it is preferable that CdTe to be detected is too in the step A The battery degree of cross linking of positive energy battery is 70-90%.
In order to enable light source preferably can carry out illumination to CdTe solar battery, herein, it is preferable that the step In B, the light source being arranged in the incubator is LED chip module.Further preferably, the quantity of the LED chip module is 24 Group, each LED chip module are each equipped with independent power supply.Still further preferably, 24 groups of LED chip modules are respectively set At the different location of the heat preservation chamber interior wall.By using above-mentioned structure, allow each LED chip module independently Work, and can direction from all quarter irradiate CdTe solar battery to be detected so that light source is to the CdTe sun The effect that energy battery carries out illumination is more preferable, meets the needs of users.
The above description is only a preferred embodiment of the present invention, as long as realizing the skill of the object of the invention with essentially identical means Art scheme belongs within protection scope of the present invention.

Claims (10)

1. a kind of method for rapidly testing for CdTe solar battery stable electrical parameter, which is characterized in that including following Step:
A, heat battery, by CdTe solar battery to be detected place laminating machine in, and by the laminating machine to CdTe too Positive energy battery is heated;
B, photogalvanic cell, will heat the CdTe solar battery finished and takes out and put into incubator and keep the temperature in step A, institute The light source that is provided with and can shine in incubator is stated, during CdTe solar battery is kept the temperature in incubator, light source Electrified light emitting simultaneously carries out illumination to CdTe solar battery;
C, cooling battery, the CdTe solar battery that illumination in step B finishes is taken out and is cooled down, so that CdTe solar energy The temperature of battery drops to room temperature;
D, performance detection carries out electric performance test to the CdTe solar battery finished that cools down in step C using detection device.
2. a kind of method for rapidly testing for CdTe solar battery stable electrical parameter according to claim 1, It is characterized by:
In the step A, the temperature when laminating machine heats CdTe solar battery is 120-160 DEG C, and the time is 10-16 minutes.
3. a kind of method for rapidly testing for CdTe solar battery stable electrical parameter according to claim 2, It is characterized by:
In the step A, the temperature when laminating machine heats CdTe solar battery is 140 DEG C, and the time is 13 points Clock.
4. a kind of method for rapidly testing for CdTe solar battery stable electrical parameter according to claim 1, It is characterized by:
The battery degree of cross linking of CdTe solar battery to be detected is 70-90% in the step A.
5. a kind of method for rapidly testing for CdTe solar battery stable electrical parameter according to claim 1, It is characterized by:
In the step B, light source electrified light emitting and to CdTe solar battery carry out illumination time be 100-200 seconds.
6. a kind of method for rapidly testing for CdTe solar battery stable electrical parameter according to claim 5, It is characterized by:
In the step B, light source electrified light emitting and to CdTe solar battery carry out illumination time be 150 seconds.
7. one kind described in any one of -6 claims is used for CdTe solar battery stable electrical parameter according to claim 1 Method for rapidly testing, it is characterised in that:
In the step B, the light source being arranged in the incubator is LED chip module.
8. a kind of method for rapidly testing for CdTe solar battery stable electrical parameter according to claim 7, It is characterized by:
The quantity of the LED chip module is 24 groups, and each LED chip module is each equipped with independent power supply.
9. a kind of method for rapidly testing for CdTe solar battery stable electrical parameter according to claim 8, It is characterized by:
24 groups of LED chip modules are respectively arranged at the different location of the heat preservation chamber interior wall.
10. a kind of method for rapidly testing for CdTe solar battery stable electrical parameter according to claim 1, It is characterized by:
In the step C, the CdTe solar battery that illumination in step B finishes is taken out and put into cooler bin cools down.
CN201811347496.4A 2018-11-13 2018-11-13 A kind of method for rapidly testing for CdTe solar battery stable electrical parameter Pending CN109490781A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201811347496.4A CN109490781A (en) 2018-11-13 2018-11-13 A kind of method for rapidly testing for CdTe solar battery stable electrical parameter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201811347496.4A CN109490781A (en) 2018-11-13 2018-11-13 A kind of method for rapidly testing for CdTe solar battery stable electrical parameter

Publications (1)

Publication Number Publication Date
CN109490781A true CN109490781A (en) 2019-03-19

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0943321A (en) * 1995-07-26 1997-02-14 Canon Inc Measuring device and method for solar battery output characteristic
CN101320760A (en) * 2008-07-11 2008-12-10 北京航空航天大学 Solar cell module and preparation method thereof
US7646176B2 (en) * 2005-11-30 2010-01-12 Panasonic Ev Energy Co., Ltd. Controller for rechargeable battery and temperature estimation method and deterioration determination method for rechargeable battery
CN201749175U (en) * 2010-03-12 2011-02-16 上海太阳能电池研究与发展中心 I-V characteristic test system used for solar battery chips and components
CN202275138U (en) * 2011-07-08 2012-06-13 泉州市博泰半导体科技有限公司 Temperature changeable solar energy cell I-V characteristic testing arrangement
CN202453462U (en) * 2012-02-01 2012-09-26 杭州大华仪器制造有限公司 Multifunctional testing device for overall characteristics of solar cell
CN103336236A (en) * 2013-06-14 2013-10-02 晶澳(扬州)太阳能科技有限公司 Monitoring testing method of long-time photo induced deterioration property of solar battery

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0943321A (en) * 1995-07-26 1997-02-14 Canon Inc Measuring device and method for solar battery output characteristic
US7646176B2 (en) * 2005-11-30 2010-01-12 Panasonic Ev Energy Co., Ltd. Controller for rechargeable battery and temperature estimation method and deterioration determination method for rechargeable battery
CN101320760A (en) * 2008-07-11 2008-12-10 北京航空航天大学 Solar cell module and preparation method thereof
CN201749175U (en) * 2010-03-12 2011-02-16 上海太阳能电池研究与发展中心 I-V characteristic test system used for solar battery chips and components
CN202275138U (en) * 2011-07-08 2012-06-13 泉州市博泰半导体科技有限公司 Temperature changeable solar energy cell I-V characteristic testing arrangement
CN202453462U (en) * 2012-02-01 2012-09-26 杭州大华仪器制造有限公司 Multifunctional testing device for overall characteristics of solar cell
CN103336236A (en) * 2013-06-14 2013-10-02 晶澳(扬州)太阳能科技有限公司 Monitoring testing method of long-time photo induced deterioration property of solar battery

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Application publication date: 20190319