JP3999892B2 - Charger - Google Patents

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Publication number
JP3999892B2
JP3999892B2 JP29815198A JP29815198A JP3999892B2 JP 3999892 B2 JP3999892 B2 JP 3999892B2 JP 29815198 A JP29815198 A JP 29815198A JP 29815198 A JP29815198 A JP 29815198A JP 3999892 B2 JP3999892 B2 JP 3999892B2
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Japan
Prior art keywords
pack
charged
electrode terminal
elastic wire
contact convex
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Expired - Fee Related
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JP29815198A
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Japanese (ja)
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JP2000123885A (en
Inventor
浩市 福川
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Sanyo Electric Co Ltd
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Sanyo Electric Co Ltd
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Priority to JP29815198A priority Critical patent/JP3999892B2/en
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    • 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

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  • Secondary Cells (AREA)
  • Battery Mounting, Suspending (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Description

【0001】
【発明の属する技術分野】
本発明は、被充電パックを脱着自在に装着して、内蔵している二次電池を充電する充電器に関する。とくに、本発明は、被充電パックを傾動できるようにケースの装着部に装着している充電器に関する。
【0002】
本明細書において、「被充電パック」とは、二次電池を内蔵している携帯用電気機器やパック電池を意味するものとする。
【0003】
【従来の技術】
二次電池を内蔵している携帯電話等の携帯電気機器の充電器は、ケースの上面に、携帯電気機器を脱着できるようにセットする装着部を設けている。装着部に携帯電気機器がセットされると、携帯電気機器に設けた電極端子は充電器に接続されて、内蔵している二次電池が充電される。この構造の充電器は、携帯電気機器を装着部に傾動できるように装着して、装着を簡単にできる。傾動できない装着部は、携帯電気機器を正確に挿入する必要があって、簡単に装着できない。
【0004】
携帯電気機器を装着部にセットしたときに、電極端子に接続するために、装着部に表出して弾性線材を設けている。弾性線材は、装着部の底面に設けられ、あるいは、装着部の側面に設けられる。ケースの底面に電極端子を設けた被充電パックの充電器は、装着部の底面に弾性線材を配設する。これに対して、ケースの側面に電極端子を設けた携帯電気機器の充電器は、装着部の側面に弾性線材を設ける必要がある。装着部の側面に設けた弾性線材は、被充電パックを脱着するときに、電極端子を摺動して接触不良を少なくできる特長がある。
【0005】
【発明が解決しようとする課題】
しかしながら、装着部の側面に設けた弾性線材は、被充電パックを傾動させるときに変形しやすい欠点がある。とくに、被充電パックは、ほとんど例外なく電極端子を凹部に配設しているので、凹部に弾性線材を挿入する状態で、被充電パックを傾動させると、弾性線材が変形して歪んでしまう欠点がある。弾性線材が変形すると、被充電パックを装着部にセットしたときに、確実に電極端子に接触できなくなって、接触不良の原因となる。
【0006】
本発明は、このような欠点を解決することを目的に開発されたもので、本発明の重要な目的は、側面に電極端子を設けた被充電パックを傾動させても、これに電気接続される弾性線材の変形を有効に防止して、接触不良を少なくできる充電器を提供することにある。
【0007】
【課題を解決するための手段】
本発明の充電器は、ケース3に設けた装着部4に被充電パック1を装着して、被充電パック1の電極端子2に、装着部4に設けた弾性線材5を接続して被充電パック1の二次電池を充電する。被充電パック1は、充電器の装着部4に傾動できるように装着される。さらに、被充電パック1は、側面に電極端子2を設けている。充電器は、この電極端子2に接続される弾性線材5を、装着部4の側面に配設している。
【0008】
ところで、本明細書において、被充電パック1の側面は、傾動させる方向を基準に特定するものとし、被充電パック1を前後に傾動させる場合は、被充電パック1の左右面を側面とし、被充電パック1を左右に傾動できる場合は、被充電パック1の前後面を側面と定義する。
【0009】
さらに、本発明の請求項1の充電器は、以下の独特の構成を有することを特徴とする。
(a) 被充電パック1を装着部4で傾動させたときに、電極端子2が移動する横ずれ方向に延長して電極窓6を開口している。
(b) 弾性線材5は、被充電パック1の電極端子2に接触する接触凸部5Aを先端部に有する。
(c) 接触凸部5Aは、電極窓6から外部に表出して、装着部4に装着される被充電パック1の電極端子2に接続する形状をしている。
(d) 接触凸部5Aは、被充電パック1の脱着方向に延長している。
(e) 弾性線材5は、固定部5Bと接触凸部5Aとの間に、接触凸部5Aを電極窓6に沿って横ずれ方向に弾性変形させる横ずれ弾性変形部5Cを有し、被充電パック1を傾動させたときに、横ずれ弾性変形部5Cを弾性変形させるように構成している。
【0010】
本発明の充電器は、弾性線材5の横ずれ弾性変形部5Cを、渦巻状に巻いたコイルバネ状とする。また、本発明の充電器は、弾性線材5の横ずれ弾性変形部5Cを、ジグザグ状に折曲する形状とする。
【0011】
さらに、本発明の充電器は、弾性線材5の電極窓6に、横ずれ方向に延長するスリット11を設け、このスリット11に接触凸部5Aの両側を移動させて、接触凸部5Aを横ずれ方向に移動させるようにしている。
【0012】
【発明の実施の形態】
以下、本発明の実施例を図面に基づいて説明する。ただし、以下に示す実施例は、本発明の技術思想を具体化するための充電器を例示するものであって、本発明は充電器を以下のものに特定しない。
【0013】
さらに、この明細書は、特許請求の範囲を理解しやすいように、実施例に示される部材に対応する番号を、「特許請求の範囲の欄」、および「課題を解決するための手段の欄」に示される部材に付記している。ただ、特許請求の範囲に示される部材を、実施例の部材に特定するものでは決してない。
【0014】
図1に示す充電器は、ケース3にプリント基板7を内蔵している。プリント基板7は、被充電パック1の二次電池を充電する電源回路8を実装している。電源回路8には、弾性線材5を接続している。弾性線材5は、ケース3に設けた装着部4に装着される被充電パック1の電極端子2に接続されて、被充電パック1の二次電池を充電する。
【0015】
図1は、被充電パック1を充電器に装着して充電する状態を示している。この図に示す充電器は、ケース3の上面に、被充電パック1を脱着自在に装着する装着部4を設けている。
【0016】
装着部4は、被充電パック1の下部を挿入して、被充電パック1を、図1に示すように、傾斜する姿勢で自立させる深さを有する。装着部4の幅は、図7に示すように、被充電パック1の横幅よりも少し広くしている。装着部4は、傾斜する姿勢で被充電パック1を保持し、かつ、被充電パック1を脱着するときに、図2の矢印で示すように、上方を前方に移動できるように、保持する。装着部4は、図1と図2の断面図に示すように、被充電パック1の背面を支持する背面支持部9と、被充電パック1の前面を支持する前面支持部10とを、互いに対向する位置に配設している。
【0017】
装着部4の側面には、被充電パック1の電極端子2に接触する弾性線材5を充電用の端子として設けている。弾性線材5は、弾性変形できる金属線を加工して製作される。弾性線材5は、充電器のケース3に内蔵されたプリント基板7に固定されて、装着部4の側面に開口している電極窓6から、装着部4に弾性的に突出している。さらに、弾性線材5は、プリント基板7に実装される充電回路である電源回路8に接続されて、電極端子2に接触して被充電パック1の二次電池を充電する。
【0018】
弾性線材5は、被充電パック1の電極端子2に接触する接触凸部5Aを先端部に有する。この接触凸部5Aは、金属線を山形に折曲して設けている。接触凸部5Aは、図3の断面図に示すように、電極窓6から装着部4に表出して、被充電パック1の電極端子2に接続される。さらに、接触凸部5Aは、被充電パック1の電極端子2にスムーズに接触できるように、いいかえると、被充電パック1を装着部4に脱着するときに、電極端子2を摺動するように、脱着方向に延長している。図の被充電パック1は、上下に移動して装着部4に脱着される。したがって、接触凸部5Aは上下方向に延長している。
【0019】
接触凸部5Aの下端には、電極窓6の下方のケース3の内面を摺動する摺動片5Dを設けている。弾性線材5は、接触凸部5Aと摺動片5Dとの境界を折曲して、摺動片5Dをケース3の内面に沿う形状としている。摺動片5Dは、弾性線材5の弾性で、ケース3の内面に弾性的に押圧されて、弾性変形する接触凸部5Aの突出量を特定する。
【0020】
さらに、図に示す弾性線材5は、固定部5Bと接触凸部5Aとの間に、接触凸部5Aを電極窓6に沿って横ずれ方向に弾性変形させる横ずれ弾性変形部5Cを設けている。横ずれ弾性変形部5Cは、被充電パック1を傾動させたときに、弾性変形して、弾性線材5が歪むのを防止する。図の弾性線材5は、金属線を渦巻状に巻してコイルバネ状の横ずれ弾性変形部5Cを設けている。ただし、横ずれ弾性変形部は、図示しないが、ジグザグ状に折曲することもできる。
【0021】
弾性線材5の斜視図を図4に示す。この図の弾性線材5は、上端部に横ずれ弾性変形部5Cを設けている。図において、横ずれ弾性変形部5Cの右側を垂直部としてプリント基板7等に固定する。横ずれ弾性変形部5Cの左側には接触凸部5Aを設けている。比較のために、従来の弾性線材5を図5に示す。この図の弾性線材5は、横ずれ弾性変形部がないので、矢印Aで示す方向にのみ、無理なく弾性変形する。これに対して図4に示す弾性線材5は、矢印Aで示す方向に加えて、横ずれ弾性変形部5Cによって、矢印Bで示す横ずれ方向にも無理なく弾性変形する。
【0022】
弾性線材5を装着部4に表出させる電極窓6は、被充電パック1を装着部4で傾動させたときに、電極端子2が移動する横ずれ方向に延長して開口される。図7と図8に示す電極窓6は、左右に延長して開口している。被充電パック1を図7から図8に示す方向に傾動させるときに、電極端子2が左右に移動するからである。この図において、電極端子2の「横ずれ方向」は左右方向となる。
【0023】
さらに、電極窓6は図6の拡大正面図に示すように、2列のスリット11を横ずれ方向である左右方向に延長して設けている。2列のスリット11には、図3の断面図に示すように、接触凸部5Aの両側を移動させる。2列のスリット11の間には、山形に折曲している接触凸部5Aの背面に水平ロッド12を設けている。この構造の電極窓6は、弾性線材5をスムーズに横ずれ方向に弾性変形できる。
【0024】
この構造の充電器は、装着部4に被充電パック1を装着して充電するとき、図1と図7に示すように、接触凸部5Aを電極端子2に接触させる。被充電パック1を前方に傾動させると、図2と図8に示すように、横ずれ弾性変形部5Cが弾性変形して、接触凸部5Aを電極端子2に接触させる。図の被充電パック1は、電極端子2をケースの凹部13に設けている。この被充電パック1の電極端子2に接触する接触凸部5Aは、ケースの凹部13に挿入される状態で、電極端子2に接触する。被充電パック1が傾動されると、横ずれ弾性変形部5Cが弾性変形して、接触凸部5Aを凹部13に挿入させる状態に保持する。このとき、横ずれ弾性変形部5Cが弾性変形するので、弾性線材5は局部的に無理に変形することがない。このため、被充電パック1を傾動させても、弾性線材5が歪むことはない。
【0025】
【発明の効果】
本発明の充電器は、側面に電極端子を設けた被充電パックを傾動させても、これに電気接続される弾性線材の変形を有効に防止して、接触不良を少なくできる特長がある。それは、本発明の充電器が、装着部に装着した被充電パックの電極端子に、弾性線材を接続して被充電パックを充電しており、弾性線材が、被充電パックの電極端子に接触する接触凸部を先端部に有すると共に、固定部と接触凸部との間に、接触凸部を横ずれ方向に弾性変形させる横ずれ弾性変形部を設けているからである。このため、本発明の充電器は、装着部に装着した被充電パックを傾動させても、弾性変形する横ずれ弾性変形部によって、接触凸部を横ずれ方向に無理なく弾性変形できる。したがって、側面に電極端子を設けた被充電パックを装着部で傾動させても、電極端子に電気接続される弾性線材が変形して歪んでしまうのを有効に防止して、確実に電極端子に接触できる特長が実現される。
【図面の簡単な説明】
【図1】本発明の実施例の充電器に被充電パックを装着した状態を示す断面図
【図2】図1に示す充電器に装着した被充電パックを傾斜させた状態を示す断面図
【図3】充電器と被充電パックの接触部分を示す拡大断面図
【図4】本発明の実施例の充電器に使用する弾性線材の拡大斜視図
【図5】従来の充電器に使用する弾性線材の拡大斜視図
【図6】本発明の実施例の充電器の装着部に設けられる電極窓の一部断面拡大正面図
【図7】図1に示す充電器を底から見た水平断面図
【図8】図2に示す充電器を底から見た水平断面図
【符号の説明】
1…被充電パック
2…電極端子
3…ケース
4…装着部
5…弾性線材 5A…接触凸部 5B…固定部
5C…横ずれ弾性変形部 5D…摺動片
6…電極窓
7…プリント基板
8…電源回路
9…背面支持部
10…前面支持部
11…スリット
12…水平ロッド
13…凹部
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a charger for charging a built-in secondary battery by detachably attaching a charged pack. In particular, the present invention relates to a charger that is mounted on a mounting portion of a case so that the pack to be charged can be tilted.
[0002]
In the present specification, the “charged pack” means a portable electric device or a battery pack that incorporates a secondary battery.
[0003]
[Prior art]
A charger for a portable electric device such as a mobile phone that has a built-in secondary battery has a mounting portion that is set on the upper surface of the case so that the portable electric device can be attached and detached. When the portable electric device is set in the mounting portion, the electrode terminal provided in the portable electric device is connected to the charger, and the built-in secondary battery is charged. The charger having this structure can be easily attached by attaching the portable electric device to the attachment portion so as to be tilted. A mounting portion that cannot tilt cannot be easily mounted because it is necessary to accurately insert the portable electric device.
[0004]
When the portable electric device is set on the mounting portion, an elastic wire is provided on the mounting portion so as to be connected to the electrode terminal. The elastic wire is provided on the bottom surface of the mounting portion or on the side surface of the mounting portion. The charger of the to-be-charged pack which provided the electrode terminal in the bottom face of the case arrange | positions an elastic wire material in the bottom face of a mounting part. On the other hand, a charger for a portable electrical device having an electrode terminal on the side surface of the case needs to be provided with an elastic wire on the side surface of the mounting portion. The elastic wire provided on the side surface of the mounting portion has a feature that the contact failure can be reduced by sliding the electrode terminal when the charged pack is detached.
[0005]
[Problems to be solved by the invention]
However, the elastic wire provided on the side surface of the mounting portion has a drawback that it is easily deformed when the charged pack is tilted. In particular, the chargeable pack has the electrode terminals in the recesses with almost no exception. Therefore, if the chargeable pack is tilted with the elastic wire inserted in the recesses, the elastic wire is deformed and distorted. There is. If the elastic wire is deformed, when the charged pack is set on the mounting portion, it cannot reliably contact the electrode terminal, causing a contact failure.
[0006]
The present invention has been developed for the purpose of solving such drawbacks, and an important object of the present invention is that even if a charged pack having electrode terminals on its side is tilted, it is electrically connected to this. An object of the present invention is to provide a charger that can effectively prevent deformation of the elastic wire and reduce contact failure.
[0007]
[Means for Solving the Problems]
The charger of the present invention attaches the charge pack 1 to the attachment portion 4 provided in the case 3, and connects the elastic wire 5 provided in the attachment portion 4 to the electrode terminal 2 of the charge pack 1 to be charged. The secondary battery of pack 1 is charged. The to-be-charged pack 1 is attached so that it can tilt to the attachment part 4 of a charger. Furthermore, the to-be-charged pack 1 is provided with the electrode terminal 2 on the side surface. In the charger, the elastic wire 5 connected to the electrode terminal 2 is disposed on the side surface of the mounting portion 4.
[0008]
By the way, in this specification, the side surface of the to-be-charged pack 1 is specified with reference to the tilting direction. When the charging pack 1 can be tilted left and right, the front and rear surfaces of the charged pack 1 are defined as side surfaces.
[0009]
Furthermore, the charger according to claim 1 of the present invention has the following unique configuration.
(A) When the to-be-charged pack 1 is tilted by the mounting portion 4, the electrode window 2 extends in the lateral displacement direction in which the electrode terminal 2 moves to open the electrode window 6.
(B) The elastic wire 5 has a contact convex portion 5 </ b> A in contact with the electrode terminal 2 of the pack 1 to be charged at the tip.
(C) The contact convex portion 5 </ b> A is exposed to the outside from the electrode window 6 and connected to the electrode terminal 2 of the charged pack 1 attached to the attachment portion 4.
(D) The contact convex portion 5 </ b> A extends in the detaching direction of the charged pack 1.
(E) The elastic wire 5 has a lateral displacement elastic deformation portion 5C that elastically deforms the contact convex portion 5A in the lateral displacement direction along the electrode window 6 between the fixed portion 5B and the contact convex portion 5A. When the 1 is tilted, the lateral displacement elastic deformation portion 5C is elastically deformed.
[0010]
Charger present invention, the lateral elastic deformation portion 5C of the elastic wire members 5, and a coil spring shape had wound spirally. Moreover, the charger of this invention makes it the shape which bends the lateral-shift elastic deformation part 5C of the elastic wire 5 in a zigzag shape.
[0011]
Further, the charger of the present invention, the electrode window 6 of the elastic wire 5, a slit 11 extending in the lateral direction is provided to move the sides of the convex contact portions 5A in the slit 11, the lateral shift direction convex contact portion 5A To move to.
[0012]
DETAILED DESCRIPTION OF THE INVENTION
Embodiments of the present invention will be described below with reference to the drawings. However, the embodiment described below exemplifies a charger for embodying the technical idea of the present invention, and the present invention does not specify the charger as follows.
[0013]
Further, in this specification, in order to facilitate understanding of the scope of claims, the numbers corresponding to the members shown in the examples are referred to as “the scope of claims” and “the means for solving the problems”. It is added to the member shown by. However, the members shown in the claims are not limited to the members in the embodiments.
[0014]
The charger shown in FIG. 1 includes a printed circuit board 7 in a case 3. The printed circuit board 7 is mounted with a power supply circuit 8 that charges the secondary battery of the pack 1 to be charged. An elastic wire 5 is connected to the power supply circuit 8. The elastic wire 5 is connected to the electrode terminal 2 of the charged pack 1 mounted on the mounting portion 4 provided in the case 3 and charges the secondary battery of the charged pack 1.
[0015]
FIG. 1 shows a state in which the to-be-charged pack 1 is attached to a charger and charged. The charger shown in this figure is provided with a mounting portion 4 on the upper surface of the case 3 for detachably mounting the charged pack 1.
[0016]
The mounting portion 4 has a depth for inserting the lower portion of the charged pack 1 and allowing the charged pack 1 to stand on its own in an inclined posture as shown in FIG. As shown in FIG. 7, the width of the mounting portion 4 is slightly wider than the lateral width of the charged pack 1. The mounting portion 4 holds the charged pack 1 in an inclined posture and holds the charged pack 1 so that it can move forward as indicated by the arrow in FIG. 2 when the charged pack 1 is detached. As shown in the cross-sectional views of FIG. 1 and FIG. 2, the mounting portion 4 includes a back support portion 9 that supports the back surface of the charged pack 1 and a front support portion 10 that supports the front surface of the charged pack 1. It is disposed at the opposite position.
[0017]
On the side surface of the mounting portion 4, an elastic wire 5 that contacts the electrode terminal 2 of the charged pack 1 is provided as a charging terminal. The elastic wire 5 is manufactured by processing a metal wire that can be elastically deformed. The elastic wire 5 is fixed to a printed circuit board 7 built in the case 3 of the charger, and elastically protrudes from the electrode window 6 opened on the side surface of the mounting portion 4 to the mounting portion 4. Further, the elastic wire 5 is connected to a power supply circuit 8 that is a charging circuit mounted on the printed circuit board 7, and contacts the electrode terminal 2 to charge the secondary battery of the charged pack 1.
[0018]
The elastic wire 5 has a contact convex portion 5 </ b> A that contacts the electrode terminal 2 of the pack 1 to be charged at the tip. The contact convex portion 5A is provided by bending a metal wire into a mountain shape. As shown in the sectional view of FIG. 3, the contact convex portion 5 </ b> A is exposed from the electrode window 6 to the mounting portion 4 and connected to the electrode terminal 2 of the charged pack 1. Furthermore, the contact convex portion 5A is configured to slide on the electrode terminal 2 when the charged pack 1 is attached to or detached from the mounting portion 4 so that the contact convex portion 5A can smoothly contact the electrode terminal 2 of the charged pack 1. , Extended in the removal direction. The charged pack 1 shown in the figure moves up and down and is attached to and detached from the mounting portion 4. Therefore, the contact convex portion 5A extends in the vertical direction.
[0019]
A sliding piece 5D that slides on the inner surface of the case 3 below the electrode window 6 is provided at the lower end of the contact convex portion 5A. The elastic wire 5 bends the boundary between the contact convex portion 5 </ b> A and the sliding piece 5 </ b> D so that the sliding piece 5 </ b> D is shaped along the inner surface of the case 3. The sliding piece 5 </ b> D is elastically pressed by the inner surface of the case 3 due to the elasticity of the elastic wire 5, and specifies the protruding amount of the contact convex portion 5 </ b> A that is elastically deformed.
[0020]
Furthermore, the elastic wire 5 shown in the drawing is provided with a laterally-shifted elastic deformation portion 5C that elastically deforms the contact convex portion 5A along the electrode window 6 in the lateral shift direction between the fixed portion 5B and the contact convex portion 5A. The lateral displacement elastic deformation portion 5C prevents the elastic wire 5 from being distorted by being elastically deformed when the charged pack 1 is tilted. The elastic wire 5 shown in the figure is provided with a coil spring-like laterally-displaced elastic deformation portion 5C by winding a metal wire in a spiral shape. However, although the laterally-slip elastic deformation portion is not illustrated, it can be bent in a zigzag shape.
[0021]
A perspective view of the elastic wire 5 is shown in FIG. The elastic wire 5 in this figure is provided with a lateral displacement elastic deformation portion 5C at the upper end. In the figure, the right side of the laterally elastic deformation portion 5C is fixed to the printed circuit board 7 or the like as a vertical portion. A contact convex portion 5A is provided on the left side of the lateral displacement elastic deformation portion 5C. For comparison, a conventional elastic wire 5 is shown in FIG. The elastic wire 5 in this figure has no laterally elastic deformation portion, so that it elastically deforms only in the direction indicated by the arrow A. On the other hand, the elastic wire 5 shown in FIG. 4 is easily elastically deformed in the lateral displacement direction indicated by the arrow B by the lateral displacement elastic deformation portion 5C in addition to the direction indicated by the arrow A.
[0022]
The electrode window 6 through which the elastic wire 5 is exposed to the mounting portion 4 is extended and opened in the lateral displacement direction in which the electrode terminal 2 moves when the charged pack 1 is tilted by the mounting portion 4. The electrode window 6 shown in FIGS. 7 and 8 is extended to the left and right and opened. This is because the electrode terminal 2 moves to the left and right when the charged pack 1 is tilted in the direction shown in FIGS. In this figure, the “lateral displacement direction” of the electrode terminal 2 is the left-right direction.
[0023]
Furthermore, as shown in the enlarged front view of FIG. 6, the electrode window 6 is provided with two rows of slits 11 extending in the left-right direction which is the lateral displacement direction. As shown in the sectional view of FIG. 3, the two rows of slits 11 are moved on both sides of the contact convex portion 5A. Between the two rows of slits 11, a horizontal rod 12 is provided on the back surface of the contact convex portion 5 </ b> A bent in a mountain shape. The electrode window 6 having this structure can smoothly elastically deform the elastic wire 5 in the lateral displacement direction.
[0024]
In the charger having this structure, when the chargeable pack 1 is attached to the attachment portion 4 for charging, the contact protrusion 5A is brought into contact with the electrode terminal 2 as shown in FIGS. When the charged pack 1 is tilted forward, as shown in FIGS. 2 and 8, the lateral displacement elastic deformation portion 5 </ b> C is elastically deformed to bring the contact convex portion 5 </ b> A into contact with the electrode terminal 2. The to-be-charged pack 1 of the figure has the electrode terminal 2 provided in the recess 13 of the case. The contact convex portion 5A that contacts the electrode terminal 2 of the charged pack 1 contacts the electrode terminal 2 while being inserted into the concave portion 13 of the case. When the charged pack 1 is tilted, the lateral displacement elastic deformation portion 5 </ b> C is elastically deformed, and the contact convex portion 5 </ b> A is held in a state of being inserted into the concave portion 13. At this time, since the laterally elastic deformation portion 5C is elastically deformed, the elastic wire 5 is not deformed locally locally. For this reason, even if the to-be-charged pack 1 is tilted, the elastic wire 5 is not distorted.
[0025]
【The invention's effect】
The charger according to the present invention has an advantage that even when the charged pack provided with electrode terminals on the side surface is tilted, the deformation of the elastic wire electrically connected to the pack can be effectively prevented and contact failure can be reduced. That is, the charger of the present invention connects an elastic wire to the electrode terminal of the charge pack attached to the attachment portion to charge the charge pack, and the elastic wire contacts the electrode terminal of the charge pack. This is because the laterally projecting elastic deformation portion that elastically deforms the contact convex portion in the lateral displacement direction is provided between the fixed portion and the contact convex portion while having the contact convex portion at the distal end portion. For this reason, the charger of the present invention can easily elastically deform the contact convex portion in the lateral displacement direction by the lateral displacement elastic deformation portion that elastically deforms even when the charged pack attached to the attachment portion is tilted. Therefore, even if the charged pack having the electrode terminal on the side surface is tilted at the mounting portion, the elastic wire material electrically connected to the electrode terminal is effectively prevented from being deformed and distorted, and the electrode terminal is reliably Features that allow contact are realized.
[Brief description of the drawings]
FIG. 1 is a cross-sectional view showing a state where a charged pack is attached to the charger according to the embodiment of the present invention. FIG. 2 is a cross-sectional view showing a state where the charged pack attached to the charger shown in FIG. FIG. 3 is an enlarged cross-sectional view showing a contact portion between a charger and a pack to be charged. FIG. 4 is an enlarged perspective view of an elastic wire used in the charger according to the embodiment of the present invention. Fig. 6 is an enlarged perspective view of a wire rod. Fig. 6 is a partially sectional enlarged front view of an electrode window provided in a mounting portion of a charger according to an embodiment of the invention. Fig. 7 is a horizontal sectional view of the charger shown in Fig. 1 as viewed from the bottom. FIG. 8 is a horizontal sectional view of the charger shown in FIG. 2 as viewed from the bottom.
DESCRIPTION OF SYMBOLS 1 ... Charged pack 2 ... Electrode terminal 3 ... Case 4 ... Mounting part 5 ... Elastic wire 5A ... Contact convex part 5B ... Fixed part 5C ... Lateral displacement elastic deformation part 5D ... Sliding piece 6 ... Electrode window 7 ... Printed circuit board 8 ... Power supply circuit 9 ... back support 10 ... front support 11 ... slit 12 ... horizontal rod 13 ... recess

Claims (3)

ケース(3)に設けた装着部(4)に被充電パック(1)を装着して、被充電パック(1)の電極端子(2)に、装着部(4)に設けた弾性線材(5)を接続して被充電パック(1)の二次電池を充電するように構成され、かつ、被充電パック(1)が装着部(4)に傾動できるように装着されると共に、被充電パック(1)の側面に設けられた電極端子(2)に接続される弾性線材(5)を、装着部(4)の側面に配設してなる充電器において、以下の全ての構成を有することを特徴とする充電器。
(a) 被充電パック(1)を装着部(4)で傾動させたときに、電極端子(2)が移動する横ずれ方向に延長して電極窓(6)を開口している。
(b) 弾性線材(5)は、被充電パック(1)の電極端子(2)に接触する接触凸部(5A)を先端部に有する。
(c) 接触凸部(5A)は、電極窓(6)から外部に表出して、装着部(4)に装着される被充電パック(1)の電極端子(2)に接続する形状をしている。
(d) 接触凸部(5A)は、被充電パック(1)の脱着方向に延長している。
(e) 弾性線材(5)は、固定部(5B)と接触凸部(5A)との間に、接触凸部(5A)を電極窓(6)に沿って横ずれ方向に弾性変形させる横ずれ弾性変形部(5C)を有し、被充電パック(1)を傾動させたときに、横ずれ弾性変形部(5C)を弾性変形させるように構成している。
The charge pack (1) is attached to the attachment part (4) provided in the case (3), and the elastic wire (5) provided in the attachment part (4) is attached to the electrode terminal (2) of the charge pack (1). ) Is connected to charge the secondary battery of the rechargeable pack (1), and the rechargeable pack (1) is mounted so that it can tilt to the mounting portion (4). In the charger in which the elastic wire (5) connected to the electrode terminal (2) provided on the side surface of (1) is disposed on the side surface of the mounting portion (4), it has all the following configurations. A charger characterized by.
(A) When the to-be-charged pack (1) is tilted by the mounting portion (4), the electrode terminal (2) extends in the lateral displacement direction in which the electrode terminal (2) moves to open the electrode window (6).
(B) The elastic wire (5) has a contact protrusion (5A) at the tip that contacts the electrode terminal (2) of the pack (1) to be charged.
(C) The contact convex portion (5A) is formed so as to be exposed to the outside from the electrode window (6) and connected to the electrode terminal (2) of the charged pack (1) attached to the attachment portion (4). ing.
(D) The contact convex part (5A) is extended in the attachment / detachment direction of the to-be-charged pack (1).
(E) The elastic wire (5) has a laterally elastic property that elastically deforms the contact convex part (5A) in the laterally offset direction along the electrode window (6) between the fixed part (5B) and the contact convex part (5A). It has a deforming portion (5C), and is configured to elastically deform the lateral displacement elastic deforming portion (5C) when the charged pack (1) is tilted.
横ずれ弾性変形部(5C)が、ジグザグ状に折曲されてなる請求項1に記載される充電器。  The charger according to claim 1, wherein the laterally-slip elastic deformation portion (5C) is bent in a zigzag shape. ケース(3)に設けた装着部(4)に被充電パック(1)を装着して、被充電パック(1)の電極端子(2)に、装着部(4)に設けた弾性線材(5)を接続して被充電パック(1)の二次電池を充電するように構成され、かつ、被充電パック(1)が装着部(4)に傾動できるように装着されると共に、被充電パック(1)の側面に設けられた電極端子(2)に接続される弾性線材(5)を、装着部(4)の側面に配設してなる充電器において、以下の全ての構成を有すると共に、
弾性線材(5)の電極窓(6)が、横ずれ方向に延長するスリット(11)を有し、このスリット(11)に接触凸部(5A)の両側を移動させて、接触凸部(5A)を横ずれ方向に移動させることを特徴とする充電器。
(a) 被充電パック(1)を装着部(4)で傾動させたときに、電極端子(2)が移動する横ずれ方向に延長して電極窓(6)を開口している。
(b) 弾性線材(5)は、被充電パック(1)の電極端子(2)に接触する接触凸部(5A)を先端部に有する。
(c) 接触凸部(5A)は、電極窓(6)から外部に表出して、装着部(4)に装着される被充電パック(1)の電極端子(2)に接続する形状をしている。
(d) 接触凸部(5A)は、被充電パック(1)の脱着方向に延長している。
(e) 弾性線材(5)は、固定部(5B)と接触凸部(5A)との間に、接触凸部(5A)を電極窓(6)に沿って横ずれ方向に弾性変形させる横ずれ弾性変形部(5C)を有し、被充電パック(1)を傾動させたときに、横ずれ弾性変形部(5C)を弾性変形させるように構成している。
The charge pack (1) is attached to the attachment part (4) provided in the case (3), and the elastic wire (5) provided in the attachment part (4) is attached to the electrode terminal (2) of the charge pack (1). ) Is connected to charge the secondary battery of the rechargeable pack (1), and the rechargeable pack (1) is mounted so that it can tilt to the mounting portion (4). In the charger in which the elastic wire (5) connected to the electrode terminal (2) provided on the side surface of (1) is disposed on the side surface of the mounting portion (4), the charger has all the following configurations. ,
The electrode window (6) of the elastic wire (5) has a slit (11) extending in the lateral displacement direction, and both sides of the contact convex portion (5A) are moved to the slit (11), so that the contact convex portion (5A ) Is moved in the lateral displacement direction.
(A) When the to-be-charged pack (1) is tilted by the mounting portion (4), the electrode terminal (2) extends in the lateral displacement direction in which the electrode terminal (2) moves to open the electrode window (6).
(B) The elastic wire (5) has a contact protrusion (5A) at the tip that contacts the electrode terminal (2) of the pack (1) to be charged.
(C) The contact convex portion (5A) is formed so as to be exposed to the outside from the electrode window (6) and connected to the electrode terminal (2) of the charged pack (1) attached to the attachment portion (4). ing.
(D) The contact convex part (5A) is extended in the attachment / detachment direction of the to-be-charged pack (1).
(E) The elastic wire (5) has a laterally elastic property that elastically deforms the contact convex part (5A) in the laterally offset direction along the electrode window (6) between the fixed part (5B) and the contact convex part (5A). It has a deforming portion (5C), and is configured to elastically deform the lateral displacement elastic deforming portion (5C) when the charged pack (1) is tilted.
JP29815198A 1998-10-20 1998-10-20 Charger Expired - Fee Related JP3999892B2 (en)

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JP2011249018A (en) * 2010-05-22 2011-12-08 Sanyo Electric Co Ltd Battery charger for battery pack
JP2012230799A (en) * 2011-04-26 2012-11-22 Panasonic Corp Charging base
JP5722147B2 (en) 2011-07-15 2015-05-20 日本光電工業株式会社 Battery storage device

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