Light-adjusting glass

文档序号:1942753 发布日期:2021-12-07 浏览:22次 中文

阅读说明:本技术 调光玻璃 (Light-adjusting glass ) 是由 王永波 肖月磊 孟晨 于 2020-02-24 设计创作,主要内容包括:一种调光玻璃,包括玻璃膜组(1)和温差发电组件(2),温差发电组件(2)用于根据温差产生电能,以对玻璃膜组(1)供电。(The utility model provides a dimming glass, includes glass membrane group (1) and thermoelectric generation subassembly (2), thermoelectric generation subassembly (2) are used for producing the electric energy according to the difference in temperature to supply power to glass membrane group (1).)

The dimming glass comprises a glass film group and a thermoelectric generation assembly; the thermoelectric generation assembly is used for generating electric energy according to temperature difference so as to supply power to the glass film group.

The dimming glass of claim 1, wherein the glass film group comprises a first protective glass and a second protective glass which are oppositely arranged, and a dimming component arranged between the first protective glass and the second protective glass; the thermoelectric generation assembly comprises a first conducting strip, a second conducting strip and a thermoelectric generation strip clamped between the first conducting strip and the second conducting strip; the first conducting strip is arranged on one side, close to the dimming assembly, of the first protective glass; the second conducting strip is arranged on one side, close to the dimming assembly, of the second protective glass.

The light control glass of claim 1, wherein the thermoelectric generation assembly is located in a peripheral region of the glass film group.

The light control glass according to claim 1, wherein the thermoelectric generation element is provided in plurality, and the plurality of thermoelectric generation elements are connected in parallel.

The privacy glass of claim 1, wherein the privacy glass further comprises an energy storage module; the energy storage module can store the electric energy generated by the temperature difference generating unit and supply power to the glass module through the stored electric energy.

The privacy glass of claim 5, wherein the privacy glass further comprises a charge management module; the charging management module is used for controlling the electric energy generated by the thermoelectric generation assembly to be stored through the energy storage module or directly supply power to the glass module according to the electric signal output by the thermoelectric generation assembly.

The light control glass of claim 6, wherein the light control glass further comprises a first input voltage stabilization module and a first diode;

the first voltage stabilizing module is used for stabilizing the voltage of the electric energy generated by the temperature difference power generation assembly and outputting the electric energy to the charging management module through the first diode.

The privacy glass of claim 5, wherein the privacy glass further comprises a control module and an acquisition module;

the acquisition module is used for acquiring the electric quantity condition stored by the energy storage module;

the control module is used for controlling the charging management module to charge the energy storage module according to the electric quantity condition stored by the energy storage module.

The privacy glass of any of claims 5-8, wherein the privacy glass further comprises a first output control channel and a second output control channel;

the first output control channel is used for providing power for the dimming glass through electric energy generated by the thermoelectric generation assembly under the control of the charging control module;

the second control channel is used for charging the energy storage module through electric energy generated by the thermoelectric generation assembly under the control of the charging control module.

The privacy glass of claim 9, wherein the first output control channel and the second output control channel each comprise a metal oxide semiconductor field effect transistor.

The light control glass of claim 6, wherein the light control glass further comprises a solar power supply assembly for converting solar energy into electric energy and outputting the electric energy to the charging management module.

The light control glass of claim 11, wherein the light control glass further comprises a second input voltage stabilization module and a second diode; the second input voltage stabilizing module is used for outputting the electric energy generated by the solar power supply assembly to the charging management module through the second diode.

The privacy glass of claim 5, wherein the energy storage module comprises a battery and/or a super capacitor.

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