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Solar module

A solar energy and solar cell technology, applied in the field of solar photovoltaic, can solve the problems of property and life loss, spontaneous combustion, inability to work state control, etc., and achieve the effect of reducing property and life loss, reducing the incidence of disasters, and high photoelectric conversion rate

Inactive Publication Date: 2015-06-03
厦门镁尔捷能源技术有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Since the solar module itself has no monitoring and protection functions, but only a simple photoelectric conversion function, it cannot reflect its own working status, and cannot control its own working status.
Without a perfect monitoring and protection system, in the actual use process, the solar silicon wafer battery and the driving circuit will generate a lot of heat when they are working. If they cannot be monitored and taken measures in time, it will cause serious consequences, and even spontaneous combustion will occur. Reports about spontaneous combustion of solar modules at home and abroad are not uncommon, most of which are due to the short circuit caused by the local overheating of solar modules during the working process, which leads to the burning of the entire solar module, resulting in huge property and loss of life

Method used

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Embodiment 1

[0028] refer to figure 1 , figure 2 and image 3 As shown, a solar module includes a solar cell module 1 and a single-chip microcomputer control system 3, the solar cell module 1 includes a back plate 11, and the first packaging EVA adhesive film layer 12 is provided on the back plate 11 , the first encapsulating EVA adhesive film layer 12 is provided with a battery plate, and the described battery plate includes a plurality of neatly arranged solar silicon wafer cells 13, and the second encapsulating EVA adhesive film layer 14 is arranged on the described battery plate, A glass layer 15 is provided on the second packaging EVA adhesive film layer 14, and a piece of DT series NTC thermosensitive chip of DT103F3435A is provided on the back plate 11 corresponding to the temperature measuring point of each solar silicon wafer cell 13 16, the heat-sensitive chip 16 is arranged on the backplane 11 together with the printed cable using the printed cable method, and then the above-...

Embodiment 2

[0035] The basic structure of this embodiment is the same as that of Embodiment 1, except that the solar module also includes a solar charge controller and a storage battery, and the solar charge controller is connected to the solar battery module and the single-chip microcomputer control system respectively. . The output control module includes a control circuit connected to the output end of the single-chip microcomputer, and a relay connected to the control circuit, the input end of the relay is connected to the output end of the single-chip microcomputer, and the output end of the relay is connected to the output end of the single-chip microcomputer. The solar charge controller is electrically connected.

[0036] The solar module of the present invention selects a suitable and optimal system configuration for the temperature control system of the single-chip microcomputer in the single-chip microcomputer control system, that is, configures peripheral equipment according to...

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Abstract

The invention relates to the solar photovoltaic technical field and particularly discloses a solar module with a temperature control structure. The solar module comprises a solar cell module and a single chip microcomputer control system, wherein the solar cell module comprises a back board; a first packaging adhesive film layer is arranged on the upper surface of the back board; a solar panel is arranged on the first packaging adhesive film layer; a second packaging adhesive film layer is arranged on the solar panel; a glass layer is arranged on the second packaging adhesive film layer; the solar panel comprises a plurality of solar silicon wafer cells; a thermistor is arranged on the back board corresponding to the temperature measuring point of each solar silicon wafer cell; each thermistor is electrically connected with the single chip microcomputer control system; and the single chip microcomputer control system receives and processes a temperature signal acquired by each thermistor, and controls the on and off of the solar module according to the processed result. The solar module disclosed by the invention can carry out chip-level monitoring and protecting in real time, automatically find and remove fire hazards, and carry out fire alarm.

Description

technical field [0001] The invention relates to the field of solar photoelectric technology, in particular to a solar module with a temperature control structure. Background technique [0002] With the rapid development of industry, the gradual depletion of fossil fuels and the emission of greenhouse gases have attracted worldwide attention, and the stable supply of energy has become a major global issue. [0003] Compared with traditional coal-fired, gas-fired or nuclear power generation, solar cells use the photoelectricity effect to directly convert solar energy into electrical energy, so there is no accompanying greenhouse gas such as carbon dioxide, nitrogen oxides, and sulfur oxides. And can reduce dependence on fossil fuels to provide a safe and independent source of electricity. [0004] The general solar cell structure is to integrate the solar silicon wafer battery and driving circuit on a backplane, the solar silicon wafer battery is electrically connected to the...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01L31/052G08B17/00
CPCY02E10/50
Inventor 黄浩陈煦马德林
Owner 厦门镁尔捷能源技术有限公司
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