WO2014079071A1 - 接触式电能传导供电板结构 - Google Patents
接触式电能传导供电板结构 Download PDFInfo
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- WO2014079071A1 WO2014079071A1 PCT/CN2012/085297 CN2012085297W WO2014079071A1 WO 2014079071 A1 WO2014079071 A1 WO 2014079071A1 CN 2012085297 W CN2012085297 W CN 2012085297W WO 2014079071 A1 WO2014079071 A1 WO 2014079071A1
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- WIPO (PCT)
- Prior art keywords
- negative electrode
- positive electrode
- power supply
- supply board
- piece
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Classifications
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J7/00—Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
- H02J7/0042—Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries characterised by the mechanical construction
Definitions
- the utility model relates to the field of electronics, in particular to a contact type electric energy conduction power supply board. Background technique
- the conventional charging device needs to connect the output terminal and the input terminal to each other in order to realize the power transmission when charging the battery inside the electric appliance.
- the charging device needs to convert the commercial AC power to a DC power through a rectifier to be used by an electrical device that uses a DC power source; however, the DC power source has a positive and negative poles, The correct polarity must be connected to ensure that the DC power supply is obtained. It is not only convenient to use, but once the polarity is connected incorrectly, it is more likely to cause damage to the electrical equipment.
- the "P-way contact-type electric energy transmission structure" which is not related to the positive and negative application number is 201020569898.1, however, the electric energy transmission structure can be directly connected without being separated from the positive and negative electrodes.
- the expected power efficiency of the power supply but it is found in the actual operation that the structure has only two corresponding electrode ends, so that there is still a limitation in the use contact angle in use, and the various contact angles cannot be arbitrarily adjusted. Therefore, there is still room for improvement in the design of the overall structure.
- a plurality of sets of positive and negative staggered electrodes are provided to supply different sizes of electrical products for contact charging, and the electrodes of the same electric charge are first welded through the connecting wires. And the electrodes of the same charge are connected in series, and then the last positive and negative electrodes are connected. Connected to form a loop.
- This method is complicated to implement, and it is necessary to first conduct the electrodes of the same electric charge by the connecting wires. If the number of electrodes is large, it takes a long time and the labor cost is high.
- the purpose of the utility model is to provide a contact type electric energy conduction power supply board structure, thereby simplifying the manufacturing process, reducing the time consuming, and reducing the labor cost.
- the technical solution of the present invention is to provide a contact type power conduction power supply board structure, including a power supply board for charging a load, the power supply board including a substrate, a positive power meter, and a negative power meter.
- the positive electric piece includes a plurality of positive electrode sheets and a positive electrode connecting piece, and a corresponding one end of the positive electrode piece is integrally formed with the positive electrode connecting piece, and the positive electrode piece is pasted on the substrate, the negative electrode piece And comprising a plurality of parallel negative electrode sheets and a negative electrode connecting piece, wherein a corresponding end of the negative electrode piece is integrally formed with the negative electrode connecting piece, and the negative electrode piece is pasted on the substrate, the negative electrode piece and the positive electrode piece Arranged in phase.
- the contact type power transmission power supply board structure further includes a power input portion, the output end of the power input portion is electrically connected to the positive electric piece and the negative electric piece, and the input end of the power input part and the external power supply are electrically connected Docked.
- the substrate can be bent and wound. Easy to carry and collect.
- the positive electrode sheets and the plurality of negative electrode sheets of the contact type electric energy conduction power supply board structure of the present invention are integrally formed and connected through a positive electrode connecting piece and a negative electrode connecting piece, thereby simplifying the processing and manufacturing process, thereby saving cost. Improve efficiency.
- FIG. 1 is a structural view of an application embodiment of a contact type electric energy conduction power supply board structure of the present invention.
- FIG. 2 is a structure of a substrate bending and retracting state of a contact type electric energy conduction power supply plate structure of the present invention
- the contact charging assembly 1000 includes a contact type power conducting power supply board structure 100 and a charging tab 200.
- the contact type power conducting power supply board structure 100 includes a power supply board 10 for charging a load and a power input unit 20 for connecting a power source.
- the power supply board 10 includes a substrate 11, a positive electrode 12, and a negative power supply 13.
- the positive electrode sheet 12 includes a plurality of positive electrode tabs 121 and a positive electrode tab 122. One end of the positive electrode tab 121 is integrally formed with the positive electrode tab 122, and the positive electrode tab 12 is attached to the substrate 11.
- the negative electrode sheet 13 includes a plurality of parallel negative electrode sheets 131 and a negative electrode connecting piece 132. One end of the negative electrode sheet 131 is integrally formed with the negative electrode connecting piece 132.
- the negative electrode tab 13 is attached to the substrate 11.
- the negative electrode sheet 131 and the positive electrode sheet 121 are arranged in phase.
- the substrate 11 can be bent and retracted (as shown in FIG. 2).
- the power input unit 20 is disposed on the substrate 11 , and the output end of the power input unit 20 is electrically connected to the positive electrode 12 and the negative electrode 13 , and the input end of the power connection 20 Connected to the external power supply.
- the input end of the power input unit 20 can be a USB connector (as shown in FIG. 1) or a mains plug.
- the charging tab 200 can be directly mounted on the load 300 or a separate structural mating load 300.
- the bottom of the charging tab 200 is distributed with at least three contacts 210, which are the input terminals of the charging tab 200. In this embodiment, the number of the contacts 210 is three.
- the load 300 can be a mobile phone (as shown in Figure 1) or other electrical appliances.
- the power input unit 20 is first connected to the power source, and then the load 300 is connected to the output end of the charging connection piece 200, and then the charging connection piece 200 is placed on the power supply board.
- any two contacts 210 of the three contacts 210 respectively contact an adjacent positive electrode 121 and a negative electrode 131, and the input end of the charging connecting piece 200 is turned on to charge the load 300.
- the positive electrode piece and the plurality of negative electrode pieces of the contact type electric energy conduction power supply plate structure of the utility model are integrally formed and connected through a positive electrode connecting piece and a negative electrode connecting piece, thereby simplifying the processing and manufacturing process, thereby saving cost and improving efficiency.
- the substrate can be bent and retracted for easy carrying and collection.
- the contact type power transmission power supply board structure can not only charge a single load connected with the charging connection piece, but also simultaneously charge a plurality of loads connected with the charging connection piece.
- the load is a variety of electrical products.
Landscapes
- Engineering & Computer Science (AREA)
- Power Engineering (AREA)
- Charge And Discharge Circuits For Batteries Or The Like (AREA)
Abstract
一种接触式电能传导供电板结构,包括用于对负载进行充电的供电板,所述供电板包括基板、正电片以及负电片,所述正电片包括若干平行而置的正极片及一正极连接片,所述正极片对应的一端与所述正极连接片一体成型,所述正电片粘贴于所述基板上,所述负电片包括若干平行而置的负极片及一负极连接片,所述负极片对应的一端与所述负极连接片一体成型,所述负电片粘贴于所述基板上,所述负极片与所述正极片呈相间排列。若干正极片及若干负极片分别通过一正极连接片以及一负极连接片一体成型连接,简化了加工制作程序,从而节省成本,提高效益。
Description
接触式电能传导供电板结构 技术领域
本实用新型涉及电子领域,尤其涉及一种接触式电能传导供电板。 背景技术
随着电子技术的发展,消费性电子产品以非常快的速度普及至人们的生活 , 例如小型电器产品手机、 数码相机、 PDA、 笔记本电脑及 MP3随身听等。 类似 的电器产品,不仅要做到轻薄短小,更要能随身携带,使用也就要用到电池。 为响应环保,充电电池已被大量引入使用。 充电电池一般常用的有镍镉电池、 镍氢电池及锂电池,这些充电电池均需要有一充电装置对其进行充电。
传统的充电装置在对电器产品内部的电池充电时需要借由输出端子及输入 端子互相连接,才能实现电力的传输。 而就一般使用直流电源的电器设备而言, 该充电装置均需要将市电交流电经过整流器转为直流电,才能供使用直流电源 的电器设备使用;但该直流电源由于具有正负极之分,在使用上需对应连接正 确的极性,方能确保获得直流电源的供应,不仅在使用上不够方便,且一旦极 性连接错误,更有可能造成电器设备的损坏。 因而,不分正负极申请号为 201020569898.1的 "P道意接触型电能传导结构"应运而生,然而,该电能传导结 构虽可达到使用时不需分出正负极,即可直接连接获得电能供应的预期功效, 但在其实际操作时发现,该结构由于仅设置两相对应的电极端,使得其在使用 上仍存在有使用接触角度上的限制,无法任意调整各种使用接触角度,因而其 在整体结构的设计上仍存在改进的空间。
另,就上述的电极端的设置,因需供应各种电器产品充电,所以会设置多 组正、 负交错的电极供应不同尺寸的电器产品接触充电,而相同电荷的电极会 先经焊接连接线,而将各相同电荷的电极串连导通,再让最后的正、 负电极连
接出去形成回路。 此方式实施起来较为繁杂,需先以连接线导通各相同电荷的 电极,若电极数量多,耗费时间长,人工成本高。
因此,亟待一种接触式电能传导供电板结构,从而简化制造过程,减少耗 费时间,降低人工成本。 实用新型内容
本实用新型的目的在于提供一种接触式电能传导供电板结构,从而简化制 造过程,减少耗费时间, P牵低人工成本。
为了实现上述目的,本实用新型的技术方案为:提供一种接触式电能传导 供电板结构,包括用于对负载进行充电的供电板,所述供电板包括基板、 正电 片以及负电片,所述正电片包括若干平行而置的正极片及一正极连接片,所述 正极片对应的一端与所述正极连接片一体成型,所述正电片粘贴于所述基板上, 所述负电片包括若干平行而置的负极片及一负极连接片,所述负极片对应的一 端与所述负极连接片一体成型,所述负电片粘贴于所述基板上,所述负极片与 所述正极片呈相间排列。
接触式电能传导供电板结构还包括电源输入部,所述电源输入部的输出端 与所述正电片及所述负电片电性相接,所述电源输入部的输入端与外部电源电 性相接。
所述基板可弯折卷收。 方便携带和收藏。
与现有技术相比,本实用新型接触式电能传导供电板结构的若干正极片及 若干负极片分别通过一正极连接片以及一负极连接片一体成型连接,简化了加 工制作程序,从而节省成本,提高效益。
通过以下的描述并结合附图,本实用新型将变得更加清晰,这些附图用于 解释本实用新型的实施例。 附图说明
图 1为本实用新型接触式电能传导供电板结构一应用实施例的结构图。
图 2为本实用新型接触式电能传导供电板结构的基板弯曲卷收状态的结构
图。 具体实施方式
下面结合附图和较佳的实施例对本实用新型作进一步说明。
参考图 1 ,接触式充电组件 1000包括接触式电能传导供电板结构 100以及 充电连接片 200。
接触式电能传导供电板结构 100包括用于对负载进行充电的供电板 10及用 于连接电源的电源输入部 20。
所述供电板 10包括基板 11、 正电片 12以及负电片 13。 所述正电片 12包 括若干平行而置的正极片 121及一正极连接片 122。所述正极片 121对应的一端 与所述正极连接片 122—体成型,所述正电片 12粘贴于所述基板 11上。 所述 负电片 13包括若干平行而置的负极片 131及一负极连接片 132 ,所述负极片 131 对应的一端与所述负极连接片 132—体成型。所述负电片 13粘贴于所述基板 11 上。所述负极片 131与所述正极片 121呈相间排列。所述基板 11可弯折卷收(如 图 2所示
所述电源输入部 20设于所述基板 11上,所述电源输入部 20的输出端与所 述正电片 12及所述负电片 13电性相接,所述电源连接部 20的输入端与外部电 源电性相接。 该电源输入部 20的输入端可为 USB接头 (如图 1所示 )或者市 电插头。
充电连接片 200可为直接架构在负载 300上或独立的结构配合负载 300使 用,所述充电连接片 200的底部分布有至少三接点 210 ,该接点 210为充电连接 片 200的输入端。 本实施例中,该接点 210的数量为三个。 负载 300可为手机 (如图 1所示 )或者其它用电器。
使用本实用新型接触式电能传导供电板结构 100时,首先将电源输入部 20 与电源相接,再将负载 300与充电连接片 200的输出端相接,之后将充电连接 片 200放置于供电板 10上,三接点 210中的任意两接点 210分别接触到相邻的 一正极片 121和一负极片 131 ,充电连接片 200的输入端得以导通进而对负载 300进行充电。
本实用新型接触式电能传导供电板结构的若干正极片及若干负极片分别通 过一正极连接片以及一负极连接片一体成型连接,简化了加工制作程序,从而 节省成本,提高效益。 另外,基板可弯折卷收,便于携带和收藏。
需要注意的是,接触式电能传导供电板结构不仅可对单一个的接有充电连 接片的负载充电,还可对多个接有充电连接片的负载同时进行充电。 负载为各 种电器产品。
以上结合最佳实施例对本实用新型进行描述,但本实用新型并不局限于以 上揭示的实施例,而应当涵盖各种根据本实施例的本质进行的修改、 等效组合。
Claims
1 .一种接触式电能传导供电板结构,包括用于对负载进行充电的供电板, 其特征在于,所述供电板包括:
基板;
正电片,所述正电片包括若干平行而置的正极片及一正极连接片,所述正 极片对应的一端与所述正极连接片一体成型,所述正电片粘贴于所述基板上; 以及
负电片,所述负电片包括若干平行而置的负极片及一负极连接片,所述负 极片对应的一端与所述负极连接片一体成型,所述负电片粘贴于所述基板上, 所述负极片与所述正极片呈相间排列。
2 .如权利要求 1所述的接触式电能传导供电板结构,其特征在于:还包括 电源输入部,所述电源输入部的输出端与所述正电片及所述负电片电性相接, 所述电源输入部的输入端与外部电源电性相接。
3 .如权利要求 1或者 2所述的接触式电能传导供电板结构,其特征在于: 所述基板可弯折卷收。
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Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN201369671Y (zh) * | 2009-01-19 | 2009-12-23 | 陈治荣 | 电源供应器结构 |
CN101859868B (zh) * | 2010-05-31 | 2011-11-23 | 中南大学 | 叉指状电极 |
CN202930604U (zh) * | 2012-11-14 | 2013-05-08 | 东莞市钛隆电子科技有限公司 | 接触式电能传导供电板结构 |
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Publication number | Priority date | Publication date | Assignee | Title |
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CN201369671Y (zh) * | 2009-01-19 | 2009-12-23 | 陈治荣 | 电源供应器结构 |
CN101859868B (zh) * | 2010-05-31 | 2011-11-23 | 中南大学 | 叉指状电极 |
CN202930604U (zh) * | 2012-11-14 | 2013-05-08 | 东莞市钛隆电子科技有限公司 | 接触式电能传导供电板结构 |
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