WO2011035630A1 - 一种太阳能充电电池手机 - Google Patents

一种太阳能充电电池手机 Download PDF

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Publication number
WO2011035630A1
WO2011035630A1 PCT/CN2010/074774 CN2010074774W WO2011035630A1 WO 2011035630 A1 WO2011035630 A1 WO 2011035630A1 CN 2010074774 W CN2010074774 W CN 2010074774W WO 2011035630 A1 WO2011035630 A1 WO 2011035630A1
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WIPO (PCT)
Prior art keywords
rechargeable battery
mobile phone
solar
battery
battery cover
Prior art date
Application number
PCT/CN2010/074774
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English (en)
French (fr)
Inventor
费祝军
Original Assignee
中兴通讯股份有限公司
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Publication of WO2011035630A1 publication Critical patent/WO2011035630A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0262Details of the structure or mounting of specific components for a battery compartment
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/42Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
    • H01M10/46Accumulators structurally combined with charging apparatus
    • H01M10/465Accumulators structurally combined with charging apparatus with solar battery as charging system
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M16/00Structural combinations of different types of electrochemical generators
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/34Parallel operation in networks using both storage and other dc sources, e.g. providing buffering
    • H02J7/35Parallel operation in networks using both storage and other dc sources, e.g. providing buffering with light sensitive cells
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Definitions

  • the invention relates to a solar rechargeable battery, in particular to a solar rechargeable battery mobile phone.
  • the invention provides a solar rechargeable battery mobile phone, which solves the problem that the whole mobile phone must be exposed to sunlight when the solar energy is used as a charging power source in the prior art, thereby causing damage to the mobile phone.
  • the present invention provides a solar rechargeable battery mobile phone including a mobile phone main body, a mobile phone battery cover, a rechargeable battery, and a solar charging circuit board, wherein
  • the outer surface of the battery cover of the mobile phone is packaged with a solar wafer assembly that converts solar energy into electrical energy, and the solar charging circuit board is respectively connected to the rechargeable battery and the solar wafer assembly;
  • the solar charging circuit board is connected to the rechargeable battery through a connector, and the rechargeable battery is charged by the electrical energy converted by the solar wafer unit.
  • the side of the rechargeable battery is provided with two contacts, which are respectively connected to the connector and the mobile phone body.
  • the connector is bent from an elastic metal piece, and is crimped to the front surface of the rechargeable battery to conduct current.
  • the inner surface of the battery cover of the mobile phone is further fixedly provided with a barbed buckle, and the barb-shaped buckle corresponds to a groove provided on the rechargeable battery, and is configured to fix the rechargeable battery in the The phone battery cover.
  • the inner surface of the battery cover of the mobile phone is further fixed with a spring clip
  • the elastic clip includes two fixing posts and a spring piece
  • the fixing post is fixedly disposed on the inner surface of the battery cover of the mobile phone;
  • the ends are respectively fixed on the two fixing posts, and the elastic piece forms an arc shape, and the curved top portion is caught in the groove on the side of the rechargeable battery.
  • the mobile phone further includes an additional casing
  • the rechargeable battery is embedded in the additional casing
  • the side of the additional casing is provided with a groove corresponding to the buckle provided on the inner surface of the battery cover of the mobile phone. Fix the rechargeable battery to the inner surface of the battery cover of the mobile phone.
  • the solar charger and the mobile phone are integrated as a whole, and can be separately removed when charging in the sunlight to avoid exposure of the mobile phone body to the sun, so as to avoid damage to the mobile phone body.
  • FIG. 1 is a structural view of a solar rechargeable battery handset of the present invention
  • FIG. 2 is a structural view of a battery cover of a mobile phone according to the present invention.
  • FIG. 3 is a structural view of a solar charging circuit board in the present invention.
  • Figure 4 is a structural view of a rechargeable battery in the present invention.
  • FIG. 5 is a structural diagram of a combination of a rechargeable battery and a battery cover of the mobile phone when the buckle is a barbed buckle according to the present invention
  • FIG. 6 is a combination diagram of a rechargeable battery and a battery cover of a mobile phone when the buckle is a snap fastener in the present invention
  • Figure 7 is a plan view of the snap fastener of the present invention.
  • FIG 8 to 10 are structural views of an additional casing in the present invention.
  • the invention provides a solar rechargeable battery mobile phone, which comprises a mobile phone main body, a mobile phone battery cover, a rechargeable battery and a solar charging circuit board, wherein the outer surface of the mobile phone battery cover is packaged with a solar silicon wafer assembly, the solar silicon wafer assembly will be solar energy Converting into electrical energy, the solar charging circuit board is respectively connected to the rechargeable battery and the solar wafer assembly; the solar charging circuit board is connected to the rechargeable battery through a connector, and the rechargeable battery is converted by the solar silicon wafer assembly Charge it.
  • a solar rechargeable battery handset of the present invention mainly comprises: a rechargeable battery 2, a solar wafer assembly 3, a mobile phone battery cover 4, a solar charging circuit board 5, a connector 6, and a buckle 7.
  • the solar wafer assembly 3 is packaged on the outer surface of the mobile phone battery cover 4.
  • the solar wafer assembly 3 mainly comprises a silicon wafer and a surface transparent package (such as glass, resin, PET, etc.) to convert solar energy into electrical energy.
  • the solar charging circuit board 5 is respectively connected to a rechargeable battery 2 and a solar wafer assembly 3, and the solar wafer assembly 3 outputs electric energy to the solar charging circuit board 5 through a wire; wherein the solar charging circuit
  • the board 5 includes a charge and discharge control circuit and a device, and controls the output voltage and current to avoid excessive current and high voltage.
  • the output end of the solar charging circuit board 5 is a connector 6 fixedly disposed on the outer surface.
  • the connector is generally made of metal shrapnel and is gold-plated on the surface for realizing the rechargeable battery 2 and the solar charging circuit board 5. Conductive connection.
  • a certain side of the rechargeable battery is provided with a first contact 11 and a second contact 12, and the first contact 11 and the second contact 12 are respectively disposed in the front and side directions, and
  • the two contacts are respectively connected to the connector 6 and the mobile phone main body 9, the first contact 11 is connected to the connector 6, and the rechargeable battery 2 and the solar charging circuit board 5 are turned on (charging the battery), and the second contact 12
  • the mobile phone main body 9 is connected, and the rechargeable battery 2 and the mobile phone main body 9 are turned on to realize the charging battery to supply electric energy to the main body of the mobile phone.
  • a plurality of buckles are disposed on the inner surface of the battery cover 4 of the mobile phone, and the buckle can have various forms.
  • the buckle is a barb-shaped buckle 7, and the buckle is fixedly disposed on an inner surface of the mobile phone battery cover 4, and the barb of the barb-shaped buckle 7 is connected to the rechargeable battery 2.
  • the buckle is a spring clip 8
  • the shrapnel buckle 8 when the shrapnel buckle 8 is in use, the shrapnel is curved toward the battery to fix the battery. When the shrapnel top faces the battery, the shrapnel opens to remove the battery.
  • the barb snap 7 and the snap snap 8 can be used together or separately.
  • the present invention also provides an additional housing 10 for some rechargeable batteries that do not have a recess corresponding to the buckle on the rechargeable battery.
  • the rechargeable battery is embedded in the additional casing 10, and the side of the additional casing 10 is provided with a recess.
  • a buckle on the inner surface of the battery cover of the mobile phone corresponds to a recess in the additional casing 10 for fixing the rechargeable battery 2 to the inner surface of the battery cover of the mobile phone.
  • the solar charger and the battery cover of the mobile phone are integrally formed, which is convenient to carry and low in cost.
  • the solar charger and the mobile phone are integrated as a whole when they are used normally. When charging in the sun, they can be removed separately to avoid the sun exposure to the mobile phone body, so as to avoid damage to the mobile phone body.
  • the rechargeable battery is a separate device that can be replaced at any time to overcome the shortcoming that solar energy can only charge a spare battery.
  • the solar charger and the mobile phone are integrated as a whole when used normally, and can be separately removed when charging in the sunlight to avoid exposure of the mobile phone body to the sun, so as to avoid damage to the mobile phone body.

Description

一种太阳能充电电池手机
技术领域
本发明涉及一种太阳能充电电池, 尤其涉及一种太阳能充电电池手机。
背景技术
太阳能作为新型环保能源, 在近年来得到广泛应用, 近 10年来全球光伏 行业产量以 40%的复合增长率增长。 随着太阳能技术的不断成熟, 太阳能电 池的转换效率在不断提升, 同时成本逐渐下降。
将太阳能电池和传统的手机充电电池结合起来的太阳能手机电池目前已 经成为手机电池研究的热点。 现有技术中对手机太阳能电池充电时通常需要 将整个手机曝露在太阳下, 结果手机充电的同时损坏了手机。 发明内容
本发明提供一种太阳能充电电池手机, 解决现有技术中使用太阳能作为 充电电源时, 整个手机必须曝露在阳光下, 从而导致手机损坏的问题。
为解决上述问题, 本发明提供一种太阳能充电电池手机, 该手机包括手 机主体、 手机电池盖、 充电电池和太阳能充电线路板, 其中,
所述手机电池盖的外表面封装有太阳能硅片组件, 该太阳能硅片组件将 太阳能转化为电能, 所述太阳能充电线路板分别连接充电电池和太阳能硅片 组件;
所述太阳能充电线路板通过连接器连接所述充电电池, 利用所述太阳能 硅片组件转化的电能对所述充电电池进行充电。
优选地, 所述充电电池的侧面设置有两个触点, 该两个触点分别连接所 述连接器和手机主体。
优选地, 所述连接器为弹性金属片弯折而成, 与充电电池正面压接, 导 通电流。 优选地, 所述手机电池盖的内表面还固定设置有倒钩形卡扣, 该倒钩形 卡扣与充电电池上设置的凹槽——对应, 用于将所述充电电池固定在所述手 机电池盖上。
优选地, 所述手机电池盖的内表面还固定有弹片卡扣, 该弹片卡扣包括 两根固定柱和弹片, 固定柱固定设置在所述手机电池盖的内表面上; 所述弹 片的两端分别固定在两根固定柱上, 该弹片形成弧形, 该弧形顶部卡入所述 充电电池侧面的凹槽中。
优选地, 上述手机还包括附加外壳, 所述充电电池内嵌在该附加外壳中, 该附加外壳的侧面设置有凹槽, 该凹槽与手机电池盖内表面设置的卡扣—— 对应, 用于将充电电池固定在手机电池盖的内表面。
本发明提供的太阳能充电电池手机中, 太阳能充电器与手机正常使用时 是一个整体, 而在阳光下充电时可以单独取下, 避免阳光对手机本体的暴晒, 以免手机本体受损伤。 附图概述
图 1为本发明的一种太阳能充电电池手机的结构图;
图 2为本发明中手机电池盖的结构图;
图 3为本发明中太阳能充电线路板的结构图;
图 4为本发明中充电电池的结构图;
图 5为本发明中当卡扣为倒钩形卡扣时, 充电电池与手机电池盖的组合 结构图;
图 6为本发明中当卡扣为弹片卡扣时, 充电电池与手机电池盖的组合结 构图;
图 7为本发明中弹片卡扣的俯视图;
图 8~10为本发明中附加外壳的结构图。
本发明的较佳实施方式 本发明提供一种太阳能充电电池手机, 该手机包括手机主体、 手机电池 盖、 充电电池和太阳能充电线路板, 所述手机电池盖的外表面封装有太阳能 硅片组件, 该太阳能硅片组件将太阳能转化为电能, 所述太阳能充电线路板 分别连接充电电池和太阳能硅片组件; 所述太阳能充电线路板通过连接器连 接所述充电电池, 利用所述太阳能硅片组件转化的电能对所述充电电池进行 充电。
如图 1 所示, 本发明一种太阳能充电电池手机主要包括: 充电电池 2, 太阳能硅片组件 3 , 手机电池盖 4, 太阳能充电线路板 5 , 连接器 6, 卡扣 7。
所述太阳能硅片组件 3封装在所述手机电池盖 4的外表面, 该太阳能硅 片组件 3主要包含硅片、 表面透光封装(如玻璃、 树脂, PET等) , 实现太 阳能转换为电能。
如图 2所示, 所述太阳能充电线路板 5分别连接充电电池 2和太阳能硅 片组件 3,所述太阳能硅片组件 3通过导线将电能输出到太阳能充电线路板 5; 其中, 该太阳能充电线路板 5包含充放电控制电路及器件, 对输出的电 压、 电流大小进行控制, 避免电流过大、 电压过高等情况。
如图 3所示, 该太阳能充电线路板 5的输出端是固定设置在外表面的连 接器 6 , 该连接器一般选用金属弹片, 表面镀金处理, 用于实现充电电池 2 和太阳能充电线路板 5的导电连接。
如图 4所示, 所述充电电池的某一侧面设置有第一触点 11 和第二触点 12, 第一触点 11和第二触点 12分别设置在正面和侧面两个方向, 并且上述 两个触点分别与连接器 6和手机主体 9相连, 第一触点 11与连接器 6连接, 导通充电电池 2和太阳能充电线路板 5 (对电池进行充电) , 第二触点 12与 手机主体 9连接, 导通充电电池 2和手机主体 9, 实现充电电池为手机主体 提供电能。
为了使得充电电池 2固定在手机电池盖 4的内表面, 手机电池盖 4的内 表面还设置多个卡扣, 卡扣可具有多种形式。
如图 5所示, 所述卡扣为倒钩形卡扣 7 , 该卡扣固定设置在所述手机电 池盖 4的内表面, 并且该倒钩形卡扣 7的倒钩与充电电池 2上的凹槽——对 应, 用于将该充电电池 2固定在手机电池盖 4的内表面。
如图 6所示, 所述卡扣为弹片卡扣 8, 该弹片卡扣 8包括两根固定柱和 弹片, 固定柱固定设置在所述手机电池盖 4的内表面上; 所述弹片的两端分 别固定在两^ =艮固定柱上, 该弹片形成弧形, 该弧形顶部卡入手机电池侧面的 凹槽中。
如图 7所示, 该弹片卡扣 8在使用时, 弹片弧形顶向电池, 对电池起固 定作用, 当弹片弧顶背向电池时, 弹片打开, 可取出电池。
在具体的应用中倒钩形卡扣 7和弹片卡扣 8可以配合使用, 也可单独使 用。
如图 8、 9、 10所示, 对于一些没有在充电电池上设置与卡扣对应的凹槽 的充电电池, 本发明还提供一个附加外壳 10。
所述充电电池内嵌在该附加外壳 10中, 该附加外壳 10的侧面设置有凹 槽。
在手机电池盖内表面的卡扣与该附加外壳 10上的凹槽——对应,用于将 充电电池 2固定在手机电池盖的内表面。
在本发明中太阳能充电器和手机的电池盖形成一个整体, 携带方便, 降 低成本。
太阳能充电器与手机正常使用时是一个整体, 在阳光下充电时可以单独 取下, 避免阳光对手机本体的暴晒, 以免手机本体受损伤。
可充电电池为单独器件, 可随时更换, 从而克服太阳能只能为一块备用 电池充电的缺点。
有其他实施例, 在不背离本发明精神及其实质的情况下, 熟悉本领域的技术 人员当可根据本发明作出各种相应的改变和变形, 但这些相应的改变和变形 都应属于本发明的权利要求的保护范围。
工业实用性 本发明提供的太阳能充电电池手机中, 太阳能充电器与手机正常使用时 是一个整体, 在阳光下充电时可以单独取下, 避免阳光对手机本体的暴晒, 以免手机本体受损伤。

Claims

权 利 要 求 书
1、 一种太阳能充电电池手机, 包括手机主体、 手机电池盖、 充电电池和 太阳能充电线路板, 其中,
所述手机电池盖的外表面封装有太阳能硅片组件, 该太阳能硅片组件将 太阳能转化为电能, 所述太阳能充电线路板分别连接充电电池和太阳能硅片 组件;
所述太阳能充电线路板通过连接器连接所述充电电池, 利用所述太阳能 硅片组件转化的电能对所述充电电池进行充电。
2、 如权利要求 1所述的太阳能充电电池手机, 其中, 所述充电电池的侧 面设置有两个触点, 该两个触点分别连接所述连接器和手机主体。
3、 如权利要求 2所述的太阳能充电电池手机, 其中, 所述连接器为弹性 金属片弯折而成, 与充电电池正面压接, 导通电流。
4、 如权利要求 1所述的太阳能充电电池手机, 其中, 所述手机电池盖的 内表面还固定设置有倒钩形卡扣, 该倒钩形卡扣与充电电池上设置的凹槽一 一对应, 用于将所述充电电池固定在所述手机电池盖上。
5、 如权利要求 1所述的太阳能充电电池手机, 其中, 所述手机电池盖的 内表面还固定有弹片卡扣, 该弹片卡扣包括两根固定柱和弹片, 固定柱固定 设置在所述手机电池盖的内表面上; 所述弹片的两端分别固定在两根固定柱 上, 该弹片形成弧形, 该弧形顶部卡入所述充电电池侧面的凹槽中。
6、 如权利要求 1所述的太阳能充电电池手机, 还包括附加外壳, 所述充 电电池内嵌在该附加外壳中, 该附加外壳的侧面设置有 IHJ槽, 该 IHJ槽与手机 电池盖内表面设置的卡扣——对应, 用于将充电电池固定在手机电池盖的内 表面。
PCT/CN2010/074774 2009-09-22 2010-06-30 一种太阳能充电电池手机 WO2011035630A1 (zh)

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CN200920177897.X 2009-09-22

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US9484756B2 (en) 2011-08-24 2016-11-01 Getac Technology Corporation Battery having multi-orientation conductions, battery holder having multi-orientation conductions, and battery assembling method
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