WO2014089917A1 - 一种高效太阳能平板电脑充电护套 - Google Patents

一种高效太阳能平板电脑充电护套 Download PDF

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Publication number
WO2014089917A1
WO2014089917A1 PCT/CN2013/070106 CN2013070106W WO2014089917A1 WO 2014089917 A1 WO2014089917 A1 WO 2014089917A1 CN 2013070106 W CN2013070106 W CN 2013070106W WO 2014089917 A1 WO2014089917 A1 WO 2014089917A1
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WO
WIPO (PCT)
Prior art keywords
solar panel
jacket
tablet computer
charging
efficiency solar
Prior art date
Application number
PCT/CN2013/070106
Other languages
English (en)
French (fr)
Inventor
韦海贵
Original Assignee
Wei Haigui
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.)
Filing date
Publication date
Application filed by Wei Haigui filed Critical Wei Haigui
Publication of WO2014089917A1 publication Critical patent/WO2014089917A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1628Carrying enclosures containing additional elements, e.g. case for a laptop and a printer

Definitions

  • the utility model relates to a tablet computer charging sheath, in particular to a high-efficiency solar computer charging sheath which can use solar energy to charge a tablet computer.
  • the prior art tablet sheath includes a sheath body that can be attached to the outer casing of the tablet to protect the tablet casing from being scratched by hard objects.
  • This kind of sheath has a relatively simple function and cannot meet the long-term entertainment needs of people. For this reason, people began to install rechargeable batteries on the sheath body, thereby prolonging the standby and use time of the tablet.
  • the standby and use time of the tablet is quite limited, and it is still unsatisfactory for users who are traveling for a long time or traveling.
  • the purpose of the utility model is to overcome the deficiencies of the prior art, and to provide an efficient tablet charging jacket for charging an outdoor battery by using a solar battery to charge a tablet computer.
  • a high-efficiency solar tablet charging cover including
  • a solar panel comprising a high-efficiency solar module embedded in a back surface of the sheath body to convert solar energy into electrical energy
  • An integrated circuit wherein the integrated circuit integrates a control processor, an oscillating circuit, a protection circuit, and a detection circuit, and outputs power of the constant voltage constant current after the electric energy of the solar panel is adjusted by oscillation;
  • the tablet charging port is electrically connected to the integrated circuit power output end, and is disposed at a position corresponding to the tablet charging socket of the sheath body.
  • the sheath body comprises a main body and a cover body, and the main body and the cover body are movably connected, and a slot is provided on the back surface of the main body.
  • the solar panel is sleeved in a slot of the body of the sheath body.
  • the solar panel includes
  • High-efficiency solar module consisting of a number of single-crystal silicon high-efficiency solar cells that can be bent along the arc
  • a plate-shaped high-efficiency solar module is formed on the PCB substrate; a transparent protective layer is used to package the high-efficiency solar module.
  • the solar panel is a back-mounted solar panel.
  • the transparent protective layer is selected from one of PET, ETFE, PVDF, transparent TPT or ultra-thin glass.
  • the PCB substrate is a flexible PCB substrate.
  • the solar tablet computer of the present invention can facilitate the socket of the sheath and the tablet computer by combining the high-efficiency solar battery on the tablet sheath, and can provide a continuous supply of the tablet computer through the high-efficiency solar panel.
  • the power supply ensures long standby and use of the tablet.
  • Figure 1 is a schematic view of the structure of the present invention
  • Figure 2 is an exploded view of the back structure of the present invention
  • Figure 3 is a schematic view of the utility model installed on the computer
  • Figure 4 is a circuit block diagram of the utility model
  • FIG. 5 is a schematic structural view of a solar panel of the present invention.
  • a solar panel charging jacket includes
  • the sheath body 1, the solar panel 2, the integrated circuit 3 and the charging output port 5, the sheath body 1 is composed of a main body 10 and a cover body 11, and the main body 10 is movably connected with the cover body 11, and the back surface of the main body 10 is provided Slot 12.
  • the solar panel 2 is a flexible high-efficiency solar panel mainly composed of a substrate 21, a solar module 22 and a transparent protective layer 23.
  • the PCB substrate 21 can be curved and curved for carrying the back-connected solar component 22; the solar component 22 is formed by a plurality of back-connected high-efficiency solar cells in series to form a plate-like solar component 22, and the solar component 22 is fixed on the PCB substrate 21;
  • the protective layer 23 is used to encapsulate the protective solar module 22, and the material thereof is selected from one of PET, ETFE, PVDF, transparent TPT or ultra-thin glass.
  • the utility model preferentially selects a monocrystalline silicon high-efficiency solar cell produced by Simpower Company of the United States, and the photoelectric conversion efficiency of the solar cell sheet is up to 23%, and the back electrode type electrical connection design is adopted, which can greatly improve the charging efficiency.
  • the integrated circuit 3 includes a control processor 31, an oscillating circuit 32, a protection circuit 33, and a detection circuit 34, and is mainly used for controlling the charging of the tablet 100 by the photoelectric conversion of the solar panel 2.
  • a charging output port 5 electrically connected to the integrated circuit 3 is disposed on the sheath body 1 corresponding to the charging socket of the tablet 100, and a decorative panel 4 is further disposed on the front surface of the sheath corresponding to the charging and charging output port 5.
  • the PCB substrate 21 is preferably a TPT (polyvinyl fluoride composite film) sheet, which has a good Good bending performance; transparent protective layer 23 is preferred PET (polyethylene terephthalate) film, high transmittance; between PCB substrate 21 and solar cell module, and transparent protective layer and solar module
  • the fixing layer is fixedly connected by a fixing adhesive layer, and the fixing adhesive layer is a fixing adhesive layer of EVA (copolymer of ethylene and vinyl acetate).

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • Human Computer Interaction (AREA)
  • Photovoltaic Devices (AREA)

Abstract

一种高效太阳能平板电脑蓄电充电护套,包括护套本体(1)、太阳能电池板(2)、集成电路(3)以及平板电脑充电端口(5),太阳能电池板(2)套嵌于护套本体(1)上将太阳能转化为电能,通过集成电路进行调压稳流后给套在护套本体(1)上的平板电脑充电。本实用新型的太阳能平板电脑蓄电充电护套充电效率更高,可在短时间内给平板电脑充满电;而且,由于使用背电极连接技术,使太阳能电池片更容易连接,使护套外形美观大方。另外,通过将高效太阳能电池结合在平板电脑护套上,既方便护套与平板电脑的套接,同时可通过高效太阳能电池板为平板电脑提供源源不断的电源,保证平板电脑的长时间待机和使用。

Description

一种高效太阳能平板电脑充电护套 技术领域
本实用新型涉及一种平板电脑充电护套, 尤其涉及一种可利用太阳能为平板电脑充电的 高效太阳能电脑充电护套。
背景技术
目前, 平板电脑以其便携性和娱乐性深受人们的喜欢。 为了保护平板电脑的精美外壳, 与平板电脑配套的护套应运而生。 现有技术中的平板电脑护套,包括护套本体, 护套本体可 贴合于平板电脑的外壳, 保护平板电脑外壳不被硬物划伤。 这种护套功能相对单一, 无法满 足人们长时间的娱乐需求, 为此, 人们开始在护套本体上安装充电电池, 从而延长了平板电 脑的待机和使用时间。 然而, 即使加上充电电池, 平板电脑的待机和使用时间还是相当有 限, 对于长时间户外出差或旅游的用户来说, 仍然无法满足。
因此, 如何快速且源源不断的取得电量一直人们的面临的问题。
实用新型内容
本实用新型的目的是为了克服现有技术的不足, 提供一种利用太阳能电池为平板电脑充 电, 为户外用户提供源源不断电量的高效平板电脑充电护套。
为了达到上述目的, 本实用新型采用了以下技术方案: 一种高效太阳能平板电脑充电护 套, 包括
护套本体;
太阳能电池板, 所述太阳能电池板包括高效太阳能组件, 套嵌于护套本体的背面, 将太阳能 转化为电能;
集成电路, 所述集成电路集成了控制处理器、 振荡电路、 保护电路以及检测电路, 将太阳能 电池板的电能通过振荡调节后, 输出恒压恒流的电能;
平板电脑充电端口, 所述平板电脑充电端口与集成电路电源输出端电连接, 设置在护套本体 对应于平板电脑充电插口的位置。
所述的护套本体包括主体和盖体, 主体和盖体活动连接, 在主体的背面板面上设有槽 位。
所述的太阳能电池板套嵌于护套本体主体的槽位上。
所述的太阳能电池板包括
PCB基板, 该 PCB基板用于承载高效太阳能组件; 高效太阳能组件, 由若干可沿弧形弯曲的单晶硅高效太阳能电池片正负极背接触串联封装在
PCB基板上形成板状高效太阳能组件; 透明保护层, 用于封装高效太阳能组件。
所述的太阳能电池板为背接式太阳能电池板。
所述的透明保护层选自 PET、 ETFE、 PVDF、 透明 TPT或超薄玻璃之一。
所述的 PCB基板为可弯曲 PCB基板。
由于采用了上述结构, 本实用新型的太阳能平板电脑通过将高效太阳能电池结合在平板 电脑护套上, 既方便护套与平板电脑的套接, 同时可通过高效太阳能电池板为平板电脑提供 源源不断的电源, 保证平板电脑的长时间待机和使用。
附图说明
图 1为本实用新型的结构示意图;
图 2为本实用新型的背面结构分解图;
图 3为本实用新型装上平析电脑示意图;
图 4为本实用新型的电路原理框图;
图 5为本实用新型太阳能电池板的结构示意图。
具体实施方式
正面结合附图和具体实施方式对本实用新型作进一步详细的说明。
如图 1至 5所示, 一种太阳能平板电脑充电护套, 包括
护套本体 1、 太阳能电池板 2、 集成电路 3和充电输出端口 5, 护套本体 1 由主体 10和盖体 11组成, 主体 10与盖体 11活动连接, 主体 10的背面板面上设有槽位 12。 太阳能电池板 2 为可弯曲高效太阳能电池板, 主要由基板 21、 太阳能组件 22和透明保护层 23 组成。 PCB 基板 21可作弧形弯曲, 用于承载背连接太阳能组件 22; 太阳能组件 22, 由若干背接式高效 太阳能电池片串联形成板状太阳能组件 22, 太阳能组件 22固定于 PCB基板 21上; 透明保 护层 23, 用于封装保护太阳能组件 22, 其材料选自 PET、 ETFE、 PVDF、 透明 TPT或超薄 玻璃之一。 本实用新型优先选用美国 Simpower 公司生产的单晶硅高效太阳能电池片, 该太 阳能电池片的光电转换效率高达 23%, 且采用背电极式电连接设计, 可大幅提高充电效率。 集成电路 3包括控制处理器 31、 振荡电路 32、 保护电路 33及检测电路 34, 主要用于控制 太阳能电池板 2光电转换对平板电脑 100的充电。 在护套本体 1上对应于平板电脑 100充电 插口的位置, 设置有与集成电路 3 电连接的的充电输出端口 5, 对应于充电充电输出端口 5 的护套正面还设有一装饰面板 4。
在太阳能电池板 2中, PCB基板 21优先选用 TPT (聚氟乙烯复合膜) 板材, 其具有良 好的弯曲性能; 透明保护层 23 为优先选用 PET (聚对苯二甲酸乙二酯) 薄膜, 透光率极 高; 在 PCB基板 21与太阳能电池组件之间, 以及透明保护层与太阳能组件之间均采用固定 胶层固定连接, 所述固定胶层均为 EVA (乙烯与醋酸乙烯脂的共聚物) 固定胶层。

Claims

权利要求
1. 一种高效太阳能平板电脑充电护套, 其特征在于: 包括护套本体 (1); 太阳能电池板 (2), 所述太阳能电池板包括高效太阳能组件 (22), 套嵌于护套本体 (1) 的背面, 将太阳 能转化为电能; 集成电路 (3), 所述集成电路 (3) 集成了控制处理器 (31)、 振荡电路 (32)、 保护电路 (33) 以及检测电路 (34), 将太阳能电池板 (2) 的电能通过振荡调节 后, 输出恒压恒流的电源; 平板电脑充电端口 (5), 所述平板电脑充电端口 (5) 与集成电 路 (3) 的电源输出端电连接, 设置在护套本体 (1) 对应于平板电脑充电插口的位置。
2. 根据权利要求 1 所述的高效太阳能平板电脑充电护套, 其特征是所述的护套本体 (1) 包 括主体 (10) 和盖体 (11), 主体 (10) 和盖体 (11) 活动连接, 在主体 (10) 的背面板面 上设有槽位 (12)。
3. 根据权利要求 2 所述的高效太阳能平板电脑充电护套, 其特征是所述的太阳能电池板 (2) 套嵌于护套本体 (1) 主体 (10) 的槽位 (12) 上。
4. 根据权利要求 1 所述的高效太阳能平板电脑充电护套, 其特征是所述的太阳能电池板 (2) 包括 PCB基板 (21), 该 PCB基板 (21) 用于承载高效太阳能组件; 高效太阳能组件
(22), 由若干可沿弧形弯曲的单晶硅高效太阳能电池片正负极背接触串联封装在 PCB基板 (21) 上形成板状高效太阳能组件; 透明保护层 (23), 用于封装高效太阳能组件 (22)。
5. 根据权利要求 4 所述的高效太阳能平板电脑充电护套, 其特征是所述的太阳能电池板 (2) 为背接式太阳能电池板。
6. 根据权利要求 4 所述的高效太阳能平板电脑充电护套, 其特征是所述的透明保护层
(23) 选自 PET、 ETFE、 PVDF、 透明 TPT或超薄玻璃之一。
7. 根据权利要求 6所述的高效太阳能平板电脑充电护套, 其特征是所述的 PCB基板 (21) 为可弯曲 PCB基板。
PCT/CN2013/070106 2012-12-12 2013-01-06 一种高效太阳能平板电脑充电护套 WO2014089917A1 (zh)

Applications Claiming Priority (2)

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CN2012206834145U CN203084604U (zh) 2012-12-12 2012-12-12 一种高效太阳能平板电脑充电护套
CN201220683414.5 2012-12-12

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WO2014089917A1 true WO2014089917A1 (zh) 2014-06-19

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CN103885528A (zh) * 2012-12-12 2014-06-25 深圳市神达实业有限公司 一种高效太阳能平板电脑充电护套

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