JP2005293879A - Charger - Google Patents

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JP2005293879A
JP2005293879A JP2004103130A JP2004103130A JP2005293879A JP 2005293879 A JP2005293879 A JP 2005293879A JP 2004103130 A JP2004103130 A JP 2004103130A JP 2004103130 A JP2004103130 A JP 2004103130A JP 2005293879 A JP2005293879 A JP 2005293879A
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battery
electrode
cover body
charger
pressing
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JP4241470B2 (en
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Eiji Satsuma
栄治 薩摩
Toshiki Nakao
年紀 中生
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Sanyo Electric Co Ltd
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Sanyo Electric Co Ltd
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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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  • Battery Mounting, Suspending (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)
  • Secondary Cells (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a charger pressing a charging terminal on an electrode of a battery with enough pressing force and biasing force. <P>SOLUTION: The charger 1 mounting a chargeable battery 4 in free detachment on a battery mounting part 3 is provided with a battery 4 having an electrode part 4M at one end, a charging terminal 7 getting in touch with the electrode part 4M of the battery 4 from outside with biasing force, and a cover body 10 covering at least a part of the battery mounting part 3 with the battery in a mounted state and equipped with a pressing body 10C pivotally supported to the charger 1 in free opening and closing for pressing the charging terminal 7 from outside. When the cover body 10 is rotated to be closed with the battery 4 in a mounted state, the pressing body 10C comes closer to the electrode part 4M of the battery 4 than its position when the cover body 10 is opened to increase biasing force of the charging terminal 7. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、充電式電池を充電する充電器に関する。   The present invention relates to a charger for charging a rechargeable battery.

従来の充電器については、下記の特許文献に開示がある。この充電器は、電池装着部に、円筒型充電式電池を着脱自在に装着充電器であって、充電端子の一方を、弾性金属線又は弾性金属板等で構成して、電池を装着した状態で、充電端子が電池の電極に押圧されて、電気接続を得ている。
特開2002−42757号
Conventional chargers are disclosed in the following patent documents. This charger is a charger in which a cylindrical rechargeable battery is detachably attached to the battery mounting portion, and one of the charging terminals is constituted by an elastic metal wire or an elastic metal plate, and the battery is mounted. Thus, the charging terminal is pressed against the electrode of the battery to obtain an electrical connection.
JP 2002-42757 A

しかしながら、上記従来の構造においては、充電端子は、弾性金属板等の弾性力により、電池の電極に押圧されているだけでなるので、例えば、長期使用による経時変化等により、弾性金属板の弾性力が小さくなると、この部分での接触抵抗が大きくなる問題があった。最近の技術動向としては、充電時間を短縮するために、大きな電流を充電式電池に印加するので、特に、この部分での接触抵抗を小さくすることが重要である。   However, in the above conventional structure, the charging terminal is merely pressed against the electrode of the battery by the elastic force of the elastic metal plate or the like. When the force is reduced, there is a problem that the contact resistance at this portion increases. As a recent technical trend, in order to shorten the charging time, a large current is applied to the rechargeable battery. Therefore, it is particularly important to reduce the contact resistance in this portion.

本発明は、上述のような問題点を解決するために成されたものであり、充電端子を、電池の電極に、十分な押圧力、付勢力で押圧する充電器を提供することを目的とする。   The present invention has been made to solve the above-described problems, and an object thereof is to provide a charger that presses a charging terminal against a battery electrode with sufficient pressing force and biasing force. To do.

本発明は、電池装着部に、両端方向に延在する充電式電池を着脱自在に装着する充電器であって、前記両端に電極部を備える前記電池と、前記電池の前記両電極部を前記延在方向の外側より当接する両充電端子と、前記電池を装着した状態で前記電池装着部の少なくとも一部を覆い、前記電池の延在方向と直角方向の軸に軸支されて開閉自在であって、一方の前記充電端子を前記延在方向の外側より押圧する押圧体を有するカバー体とを備え、前記充電端子の少なくとも一つは、付勢力をもって前記電池の一つの電極部に当接し、前記電池を装着した状態で前記カバー体が回転して閉められるとき、前記カバー体が開いたときの前記押圧体の位置より、前記押圧体が、前記延在方向において、前記両充電端子の間隔が狭くなる方向に移動して、前記充電端子の一つは、付勢力が増加することを特徴とする。   The present invention is a battery charger in which a rechargeable battery extending in both end directions is detachably mounted on a battery mounting portion, wherein the battery includes electrode portions at both ends, and the both electrode portions of the battery are Both charging terminals abutting from the outside in the extending direction, and covering at least a part of the battery mounting portion in a state where the battery is mounted, are pivotally supported by an axis perpendicular to the extending direction of the battery and can be opened and closed. A cover body having a pressing body that presses one of the charging terminals from the outside in the extending direction, and at least one of the charging terminals abuts against one electrode portion of the battery with a biasing force. When the cover body is rotated and closed while the battery is mounted, the pressing body is positioned between the charging terminals in the extending direction from the position of the pressing body when the cover body is opened. Move in the direction of narrowing One of the charging terminal is characterized in that the biasing force is increased.

また、前記電池は、前記カバー体に保持された状態で、前記電池装着部に着脱されることを特徴とする。   Further, the battery is attached to and detached from the battery mounting portion while being held by the cover body.

更に、本発明は、電池装着部に、充電式電池を着脱自在に装着する充電器であって、一端に電極部を備える前記電池と、前記電池の前記電極部の外側より付勢力をもって当接する充電端子と、前記電池を装着した状態で前記電池装着部の少なくとも一部を覆い、前記充電器に軸支されて開閉自在であって、前記充電端子を外側より押圧する押圧体を有するカバー体とを備え、前記電池を装着した状態で前記カバー体が回転して閉められるとき、前記カバー体が開いたときの前記押圧体の位置より、前記押圧体が、前記電池の前記電極部に接近して、前記充電端子の付勢力が増加することを特徴とする。   Furthermore, the present invention is a battery charger in which a rechargeable battery is detachably attached to a battery attachment part, and the battery having an electrode part at one end is brought into contact with an urging force from the outside of the electrode part of the battery. A cover body including a charging terminal and a pressing body that covers at least a part of the battery mounting portion in a state where the battery is mounted, is pivotally supported by the charger, and is openable and closable, and presses the charging terminal from the outside. When the cover body is rotated and closed with the battery attached, the pressing body approaches the electrode portion of the battery from the position of the pressing body when the cover body is opened. Then, the urging force of the charging terminal is increased.

本発明は、電池を装着した状態でカバー体が回転して閉められるとき、カバー体が開いたときの押圧体の位置より、押圧体が、延在方向において両充電端子の間隔が狭くなる方向に移動、或いは、電池の電極部に接近するので、充電端子の一つは、付勢力が増加する。よって、十分に電気接触を得ることができる。つまり、カバー体は押圧体を備えているので、電池を充電する時のカバー体の回転による開閉に動作により、自動的に充電端子が、電池の電極部に押圧される押圧力、付勢力が大きくなることより、別途操作することなく、このような押圧力を大きくすることができる。   In the present invention, when the cover body is rotated and closed in a state where the battery is mounted, the pressing body has a direction in which the distance between the charging terminals becomes narrower in the extending direction than the position of the pressing body when the cover body is opened. Or one of the charging terminals increases in urging force. Therefore, sufficient electrical contact can be obtained. In other words, since the cover body has a pressing body, the charging terminal is automatically pressed and pressed by the battery electrode portion by the opening and closing operation by rotating the cover body when charging the battery. Since it becomes large, such a pressing force can be increased without separate operation.

たとえば、電池をカバー体に保持する構造でなく、予め、充電端子間に電池を使用者が装着する構造であるなら、カバー体が開いた状態で電池を取り出すことになることより、この時、充電端子の間隔は大きく、又は、押圧体は電池から離れる方向に位置することになるので、充電端子が電池を押圧する押圧力が小さく、容易に電池を取り出すことができる。   For example, if it is not a structure for holding the battery in the cover body but a structure in which the user installs the battery between the charging terminals in advance, the battery will be taken out with the cover body open. Since the interval between the charging terminals is large or the pressing body is located in a direction away from the battery, the pressing force with which the charging terminal presses the battery is small, and the battery can be easily taken out.

また、電池はカバー体に保持される構造のとき、カバー体を閉める動作により電池を電池装着部に装着することができ、また、カバー体を開く動作により、電池も充電端子間より簡単に取り出すことができる。   In addition, when the battery is structured to be held by the cover body, the battery can be attached to the battery mounting portion by the operation of closing the cover body, and the battery can be easily taken out between the charging terminals by the operation of opening the cover body. be able to.

本発明の実施例を、図1〜5を用いて、詳細に説明する。また、特に、説明がない場合は、本実施例において、図3(a)、図4(a)の紙面において、充電器1の右側が一端側、左側が他端側とし、この図の状態での上下方向を充電器1の上下方向とし、紙面の左右方向を水平方向又は平面方向とする。また、図1(a)、図2(a)の紙面の状態で、充電器1の左右側を両側とする。   An embodiment of the present invention will be described in detail with reference to FIGS. Further, unless otherwise described, in this embodiment, the right side of the charger 1 is one end side and the left side is the other end side in the paper surface of FIGS. 3 (a) and 4 (a). The up and down direction at 1 is the up and down direction of the charger 1, and the left and right direction of the paper is the horizontal or plane direction. Moreover, let the right and left sides of the charger 1 be both sides in the paper surface state of FIG. 1 (a) and FIG. 2 (a).

本実施例の充電器1は略平たい箱型の形状を備え、充電器1の一端側に、4つの円筒型充電式電池4を着脱自在に収納する略直方体状の凹み形状の電池装着部3を備えている。このような電池4は、円筒型の軸方向である一方向に、細長く延在しており、単3型又は単4型電池を利用することができる。電池4は、一端面にマイナス側の電極部4Mを備え、他端面にはプラス側の円柱体の凸状体の電極部4Pを備えている。なお、図において電池4は、2点鎖線の輪郭線のみで示され、図1においては、電池4の下に位置する充電器1の構造をわかりやくするために、実際には電池4は透明でないが、透明体として示されている。   The charger 1 of the present embodiment has a substantially flat box shape, and a battery mounting portion 3 having a substantially rectangular parallelepiped shape that detachably accommodates four cylindrical rechargeable batteries 4 on one end side of the charger 1. It has. Such a battery 4 is elongated in one direction, which is a cylindrical axial direction, and an AA or AAA battery can be used. The battery 4 includes a negative electrode portion 4M on one end surface, and a positive cylindrical electrode portion 4P on the other end surface. In the figure, the battery 4 is shown only by a two-dot chain line outline. In FIG. 1, the battery 4 is actually transparent in order to make the structure of the charger 1 located below the battery 4 clear. Not shown as transparent.

但し、このような形状の電池に限定されることなく、電池が延在する一方向の一端面に電極部を有する電池であるなら利用することができる。例えば、角型電池でも利用することができる。   However, the present invention is not limited to a battery having such a shape, and any battery having an electrode portion on one end surface in one direction in which the battery extends can be used. For example, a square battery can be used.

充電器1は、略箱型の本体2を備え、この本体2は、樹脂材料からなる上ケース2Uと、下ケース2Dとを有し、本体2内部にプリント基板5を保持している。上ケース2Uは、図1(b)のB−B線断面で確認されるように、4本の電池4が沿うように断面を波状部2UWとし、また、図1(c)のC−C線断面で確認できるように凹状部2UCとすることにより、電池装着部3を形成している。   The charger 1 includes a substantially box-shaped main body 2. The main body 2 has an upper case 2U made of a resin material and a lower case 2D, and holds a printed circuit board 5 inside the main body 2. The upper case 2U has a corrugated portion 2UW so that the four batteries 4 are along, as confirmed by the cross section taken along the line B-B in FIG. 1B. The battery mounting part 3 is formed by setting it as the recessed part 2UC so that it can confirm with a wire cross section.

また、充電器1は、電池4を装着した状態で閉塞して電池装着部3を覆い、本体2に軸支される開閉自在の樹脂製カバー体10を備えている。図1において、カバー体10は、透明であるため、その下に位置する本体2の形状も表れている。   In addition, the charger 1 includes a resin cover body 10 that is closed with the battery 4 attached, covers the battery attachment portion 3, and is pivotally supported by the main body 2. In FIG. 1, since the cover body 10 is transparent, the shape of the main body 2 located below it also appears.

このようなカバー体10は、閉塞時に電池装着部3の上面3Uを覆う板状の上面体10Uと、各電池4の円柱体が貫通する4つの空洞である電池保持部10Hが形成できるように配置された断面視が波板状の裏面部10Rとを備えている。本実施例においては、カバー体10は、電池装着部3の上面3Uの略半分を覆っているが、上面3Uのほぼ全面を覆う構造としてもよい。このようなカバー体は、電池2が飛び出ることを防止したら、異物が電池装着部3に入り込むことを防止する目的もある。   Such a cover body 10 can form a plate-shaped upper surface body 10U that covers the upper surface 3U of the battery mounting portion 3 when closed and a battery holding portion 10H that is four cavities through which the cylindrical body of each battery 4 passes. The arranged cross-sectional view includes a corrugated back surface portion 10R. In the present embodiment, the cover body 10 covers substantially half of the upper surface 3U of the battery mounting portion 3, but may have a structure that covers substantially the entire upper surface 3U. Such a cover body also has an object of preventing foreign matter from entering the battery mounting portion 3 if the battery 2 is prevented from jumping out.

次に、カバー体10が、充電器1の本体2に軸支される構造を説明する。本体2の一端側両コーナーの側面には、軸支用円柱体突起2H、2Hが形成され、カバー体10の上面体10Uの両側より側面に延在する側面体10S、10Sには、それらの一端側に円柱体の空洞10P、10Pが形成され、突起2Hが空洞10Pに嵌合、軸支されることより、カバー体10は、充電器1の本体2に開閉自在に軸支され、回転自在になる。このような軸支する構造においては、カバー体10は、電池2の延在方向と直角方向で水平(=平面)方向の軸に軸支されて、開閉自在となっている。   Next, a structure in which the cover body 10 is pivotally supported by the main body 2 of the charger 1 will be described. Cylindrical columnar protrusions 2H and 2H are formed on the side surfaces of both corners on one end side of the main body 2, and the side bodies 10S and 10S extending from both sides of the upper surface body 10U of the cover body 10 to the side surfaces thereof Cylindrical cavities 10P and 10P are formed on one end side, and the projection 2H is fitted and pivotally supported in the cavity 10P, so that the cover body 10 is pivotally supported by the main body 2 of the charger 1 so as to be opened and closed. Become free. In such a shaft-supporting structure, the cover body 10 is pivotally supported on a horizontal (= planar) axis in a direction perpendicular to the extending direction of the battery 2 and can be opened and closed.

更に、カバー体10は、後述するように、各充電端子6を押圧する4つの押圧体10Cを有している。この押圧体10Cは、カバー体10が軸支される軸方向に延在する円柱体構造であって、この円柱体の軸は、軸支する軸とは平行に内側上方にずれて配置されている(図3(b)、図4(b)参照)。   Furthermore, the cover body 10 has four pressing bodies 10 </ b> C that press the respective charging terminals 6 as will be described later. The pressing body 10C has a cylindrical structure that extends in the axial direction in which the cover body 10 is pivotally supported, and the axis of the cylindrical body is arranged to be shifted inward and upward in parallel with the pivotal axis. (See FIGS. 3 (b) and 4 (b)).

本体2内には、本体2の平面視において、本体2の外周より少し小さいサイズの矩形のプリント基板5が保持されている。プリント基板5上の他端側には、各種電子部品(図示せず)が配置され、両端方向における中央部上においては4つの金属板状のプラス側の充電端子6が支持されている。このようなプラス側充電端子6の裏面6R側は、電池装着部3を形成する上ケース2Uの中央壁2C面にも支持されている。プリント基板5上の一端側には、4つのマイナス側の充電端子7が配置されている。このマイナス側の充電端子7は、細長い金属片を折曲したものであって、ばねのように、力を加えない通常時から移動、変形すると復元力、付勢力が発生する。充電端子7は、その下側で本体2側のプリント基板5に固定される固定部7Fと、これより上側で電池4の電極部4Mに押圧される電極押圧部7Pとを備えている。電極押圧部7Pは、固定部7Fより上側に延在する起立部7PSと、該起立部7PSの延在方向から折曲されて、電池4の電極部4Mに押圧され接触する電極接触部7PCとからなる。このように、充電端子7は、いわゆる、断面U字状の金属片端子である。   In the main body 2, a rectangular printed board 5 having a size slightly smaller than the outer periphery of the main body 2 in the plan view of the main body 2 is held. Various electronic components (not shown) are arranged on the other end side on the printed circuit board 5, and four metal plate-shaped positive-side charging terminals 6 are supported on the central portion in both end directions. The back surface 6R side of the positive charging terminal 6 is also supported by the surface of the central wall 2C of the upper case 2U that forms the battery mounting portion 3. Four negative charging terminals 7 are disposed on one end side of the printed circuit board 5. The minus-side charging terminal 7 is formed by bending a long and narrow metal piece, and a restoring force and an urging force are generated when it is moved and deformed from a normal time when no force is applied like a spring. The charging terminal 7 includes a fixing portion 7F fixed to the printed circuit board 5 on the main body 2 on the lower side and an electrode pressing portion 7P pressed on the electrode portion 4M of the battery 4 on the upper side. The electrode pressing portion 7P includes an upright portion 7PS that extends upward from the fixed portion 7F, an electrode contact portion 7PC that is bent from the extending direction of the upright portion 7PS and that is pressed against and contacts the electrode portion 4M of the battery 4 Consists of. Thus, the charging terminal 7 is a so-called metal piece terminal having a U-shaped cross section.

このような構造の充電端子7は、特に、電極押圧部7Pにおいて、起立部7PSと電極接触部7PCとの間隔が、通常時に比べて小さくなると復元力である付勢力が発生し、電極接触部7PCが電池4の電極部4Mに押圧される付勢力が増加することになる。   In the charging terminal 7 having such a structure, particularly in the electrode pressing portion 7P, when the distance between the standing portion 7PS and the electrode contact portion 7PC is smaller than that in the normal state, a biasing force as a restoring force is generated, and the electrode contact portion The urging force by which 7PC is pressed by the electrode part 4M of the battery 4 will increase.

本体2の一端側の辺(図1(a)の紙面における下側辺)においては、図3、図4に開示されるように、外周壁2Wを有しており、この外周壁2Wは、電池装着部3側壁面2WIとこれと空間を隔てて外周壁面2WOを備えている。各電池4が延在する方向の延長上における外周壁2Wにおいて、電池装着部3側に、4つのマイナス側の充電端子7用の切欠部2WICを有している。各切欠部2WICにて、電池押圧部7Pが配置されている。更に、各電池4が延在する方向の延長上における外周壁2Wにおいて、外周側に、カバー体10の押圧体10Cが移動できるように、4つの切欠部2WOCを備えている。   As shown in FIGS. 3 and 4, the side on one end side of the main body 2 (the lower side in the drawing of FIG. 1A) has an outer peripheral wall 2 </ b> W. The battery mounting portion 3 has a side wall surface 2WI and an outer peripheral wall surface 2WO with a space therebetween. On the outer peripheral wall 2W on the extension in the direction in which each battery 4 extends, there are four notch portions 2WIC for the negative charging terminal 7 on the battery mounting portion 3 side. A battery pressing portion 7P is arranged at each notch 2WIC. Furthermore, on the outer peripheral wall 2W on the extension in the direction in which each battery 4 extends, four notches 2WOC are provided on the outer peripheral side so that the pressing body 10C of the cover body 10 can move.

本実施例は、以上の構造であり、カバー体10を開けた状態から閉じることにより、電池4を電池装着部3に装着すると共に、電池4が充電端子6、7間に、十分な押圧力で保持される。つまり、充電端子6、7は、電池4の両電極部4M、4Pに、延在方向の外側より付勢力をもって当接することになる。
以下に詳細に説明する。
In the present embodiment, the structure is as described above. By closing the cover body 10 from the opened state, the battery 4 is mounted on the battery mounting portion 3, and the battery 4 is sufficiently pressed between the charging terminals 6 and 7. Held in. That is, the charging terminals 6 and 7 come into contact with both electrode portions 4M and 4P of the battery 4 with an urging force from the outside in the extending direction.
This will be described in detail below.

図3に示されるように、カバー体10を開けた状態においては、カバー体10の押圧体10Cは、本体2の外周壁2Wの切欠部2WOCに位置して、電池押圧部7Pにほとんど力を加えない状態で、電池押圧部7Pと当接する。ここで、このように力がほとんど加わらない状態においては、電池押圧部7Pの起立部7PSは一端側に傾斜した状態となっている。この状態で、電池4がカバー体10の電池保持部10Hに挿入され保持される(図において電池4は2点鎖線で表示されている)。   As shown in FIG. 3, when the cover body 10 is opened, the pressing body 10 </ b> C of the cover body 10 is located at the notch 2 </ b> WOC of the outer peripheral wall 2 </ b> W of the main body 2 and exerts almost a force on the battery pressing section 7 </ b> P. It contacts with the battery pressing part 7P in a state where it is not added. Here, in a state where almost no force is applied in this way, the standing portion 7PS of the battery pressing portion 7P is inclined to one end side. In this state, the battery 4 is inserted and held in the battery holding portion 10H of the cover body 10 (in the figure, the battery 4 is indicated by a two-dot chain line).

次に、例えば、カバー体10の他端側を使用者が下方に押さえられカバー体10が回転することで、カバー体10が閉塞される(図4参照)。このとき、カバー体10が回転することにより、押圧体10Cは回転軸を中心に回転することになる。押圧体10Cは、電池押圧部7Pの起立部7PSの一端側を押圧しつつ、電池4の延在方向において、両充電端子6、7の間隔が狭くなる電池に近づく方向に移動する。また、このような押圧体10Cの移動については、装着が完了した電池4の位置と比較するなら、カバー体10が回転することにより、押圧体10Cは、電池押圧部7Pの起立部7PSの一端側を押圧しつつ、電池4のマイナス側の電極部4Mに接近することになる(図4(b)の上側の矢印方向に、図3の位置より起立部7PSは動く)。電池4が充電端子6、7間に装着された状態で、電極押圧部7Pにおいて、起立部7PSと電極接触部7PCとの間隔が、通常時に比べて小さくなることより、電極接触部7PCが復元力が発生し、電極接触部7PCが電池4の電極部4Mを押圧する付勢力が強くなる(図4(b)の下側の矢印方向に2点鎖線の位置より電極接触部7PCは動く)。   Next, for example, when the user presses the other end side of the cover body 10 downward and the cover body 10 rotates, the cover body 10 is closed (see FIG. 4). At this time, when the cover body 10 rotates, the pressing body 10C rotates around the rotation axis. The pressing body 10C moves in a direction approaching the battery in which the distance between the charging terminals 6 and 7 is narrowed in the extending direction of the battery 4 while pressing one end side of the rising part 7PS of the battery pressing part 7P. Further, with respect to such movement of the pressing body 10C, when compared with the position of the battery 4 that has been mounted, the pressing body 10C is rotated by one end of the upright portion 7PS of the battery pressing portion 7P. The electrode 4M on the negative side of the battery 4 is approached while pressing the side (the upright portion 7PS moves from the position of FIG. 3 in the direction of the arrow on the upper side of FIG. 4B). In a state where the battery 4 is mounted between the charging terminals 6 and 7, in the electrode pressing portion 7P, the distance between the standing portion 7PS and the electrode contact portion 7PC becomes smaller than normal, so that the electrode contact portion 7PC is restored. A force is generated, and the urging force by which the electrode contact portion 7PC presses the electrode portion 4M of the battery 4 becomes stronger (the electrode contact portion 7PC moves from the position of the two-dot chain line in the lower arrow direction in FIG. 4B). .

また、カバー体10を閉じた状態より、使用者がカバー体10を開くとき、図3(b)に示すように、起立部7PSは元の状態に戻ろうとして、矢印で示す一端方向への復元力を示し、押圧体10Cが起立部7PSの上部の一端側に押されて(作用する力の方向を矢印で示す)、カバー体10を開き易くする。   Further, when the user opens the cover body 10 from the state in which the cover body 10 is closed, as shown in FIG. 3 (b), the upright portion 7PS tries to return to the original state and moves toward the one end direction indicated by the arrow. The restoring force is shown, and the pressing body 10C is pushed toward one end of the upper portion of the upright portion 7PS (the direction of the acting force is indicated by an arrow), so that the cover body 10 can be easily opened.

ここで、上記の本実施例に代わって、充電端子6を、上記の充電端子7と同様に、付勢力を有する断面U字状の金属片端子としてもよい。   Here, in place of the above-described embodiment, the charging terminal 6 may be a U-shaped metal piece terminal having an urging force in the same manner as the charging terminal 7 described above.

また、上記の本実施例に代わって、充電端子6を付勢力を有する断面U字状の金属片端子とし、上記の充電端子7において電極接触部7PCのみを省略した形状としてもよい。この構造においてもは、カバー体10の押圧体10Cは、閉塞時に、電池押圧部7Pの起立部7PSの一端側を押圧しつつ、電池4の延在方向において、両充電端子6、7の間隔が狭くなる前記電池に近づく方向に移動する。よって、充電端子6の付勢力が強くなることになる。   Further, in place of the above-described embodiment, the charging terminal 6 may be a metal piece terminal having a U-shaped cross section having an urging force, and only the electrode contact portion 7PC in the charging terminal 7 may be omitted. Also in this structure, the pressing body 10C of the cover body 10 presses the one end side of the upright portion 7PS of the battery pressing portion 7P when closed, and the distance between the charging terminals 6 and 7 in the extending direction of the battery 4 is. Move in a direction approaching the battery. Therefore, the urging force of the charging terminal 6 is increased.

上記の本実施例においては、充電端子7に付勢力を持たせるために、断面U字状の金属片端子を利用したが、これに代わって、起立部7PSの上端で電池接触部7PCを切り離し、起立部7PSと電池接触部7PCとの間にスプリングバネを設置して付勢力を付けてもよい。   In the present embodiment, a metal piece terminal having a U-shaped cross section is used to give the charging terminal 7 an urging force. Instead, the battery contact portion 7PC is cut off at the upper end of the upright portion 7PS. A spring spring may be installed between the upright portion 7PS and the battery contact portion 7PC to apply an urging force.

また、カバー体10は、充電器1の一端側に軸支されているが、これに代わって、電池装着部3における他端側付近、つまり、充電器1の両端方向における中央付近で、両端方向と直角方向する水平(=平面)方向に軸支されてもよい。この場合、図3に示すカバー体10が開いた状態とは、左右反対の状態となる。   In addition, the cover body 10 is pivotally supported on one end side of the charger 1, but instead, near the other end side in the battery mounting portion 3, that is, near the center in the both end direction of the charger 1. It may be supported in a horizontal (= planar) direction perpendicular to the direction. In this case, the cover body 10 shown in FIG. 3 is opposite to the left and right states.

なお、上記実施例においては、電池4は、カバー体10の電池保持部10Hに保持された状態で、カバー体10と共に移動するが、これに代わって、カバー体10の電池保持部10Hをなくして、予め、充電端子6、7間に電池2を装着した状態で、カバー体10を閉める構造としてもよい。この場合は、カバー体10が開いた状態においては、充電端子の間隔は大きく、押圧体は電池から離れる方向に位置することになるので、充電端子が電池を押圧する押圧力、付勢力が小さく、容易に電池を取り出すことができる。   In the above embodiment, the battery 4 moves together with the cover body 10 while being held by the battery holding section 10H of the cover body 10, but instead of this, the battery holding section 10H of the cover body 10 is eliminated. The cover body 10 may be closed with the battery 2 mounted between the charging terminals 6 and 7 in advance. In this case, when the cover body 10 is open, the charging terminals are spaced apart and the pressing body is positioned away from the battery, so that the pressing force and urging force with which the charging terminal presses the battery are small. The battery can be easily taken out.

上記実施例においては、延在方向の両端に電極部を有する電池を利用しているが、一端に電極部を有する電池においても利用できる。このような電池を装着する充電器は、電池の一端の電極部に、付勢力をもって当接する充電端子(例えば、充電端子7のような断面U字状の金属片端子)を採用する。   In the said Example, although the battery which has an electrode part in the both ends of the extension direction is utilized, it can utilize also in the battery which has an electrode part in one end. A charger in which such a battery is mounted employs a charging terminal (for example, a metal piece terminal having a U-shaped cross section such as the charging terminal 7) that abuts against an electrode portion at one end of the battery with an urging force.

本発明の一実施例の充電器の本体を示す図であり、(a)は平面図、(b)は(a)におけるB−B線断面図、(c)は(a)におけるC−C線断面図である。It is a figure which shows the main body of the charger of one Example of this invention, (a) is a top view, (b) is the BB sectional drawing in (a), (c) is CC in (a). It is line sectional drawing. 本発明の一実施例の充電器のカバー体を示す図であり、(a)は平面図、(b)は(a)におけるD−D線断面図である。It is a figure which shows the cover body of the charger of one Example of this invention, (a) is a top view, (b) is the DD sectional view taken on the line in (a). 本発明のカバー体を開いた状態での両端方向の断面図であり、(a)は全体断面、(b)は(a)における2点鎖線円で示される要部の拡大断面図である。It is sectional drawing of the both ends direction in the state which opened the cover body of this invention, (a) is a whole cross section, (b) is an expanded sectional view of the principal part shown with the dashed-two dotted line circle in (a). 本発明のカバー体を閉じた状態での両端方向の断面図であり、(a)は全体断面、(b)は(a)における2点鎖線円で示される要部の拡大断面図である。It is sectional drawing of the both ends direction in the state which closed the cover body of this invention, (a) is a whole section, (b) is an expanded sectional view of the principal part shown by the dashed-two dotted line circle in (a). 本発明の一実施例の充電器の本体を示す平面図である。It is a top view which shows the main body of the charger of one Example of this invention.

符号の説明Explanation of symbols

1 充電器
2 本体
3 電池装着部
4 電池
4M マイナス側の電極部
5 プリント基板
6 充電端子
7 充電端子
7F 固定部
7P 電極押圧部
7PS 起立部
7PC 電極接触部
10 カバー体

DESCRIPTION OF SYMBOLS 1 Charger 2 Main body 3 Battery mounting part 4 Battery 4M Negative electrode part 5 Printed circuit board 6 Charging terminal 7 Charging terminal 7F Fixing part 7P Electrode pressing part 7PS Standing part 7PC Electrode contact part 10 Cover body

Claims (5)

電池装着部に、両端方向に延在する充電式電池を着脱自在に装着する充電器であって、
前記両端に電極部を備える前記電池と、
前記電池の前記両電極部を前記延在方向の外側より当接する両充電端子と、
前記電池を装着した状態で前記電池装着部の少なくとも一部を覆い、前記電池の延在方向と直角方向の軸に軸支されて開閉自在であって、一方の前記充電端子を前記延在方向の外側より押圧する押圧体を有するカバー体とを備え、
前記充電端子の少なくとも一つは、付勢力をもって前記電池の一つの電極部に当接し、
前記電池を装着した状態で前記カバー体が回転して閉められるとき、前記カバー体が開いたときの前記押圧体の位置より、前記押圧体が、前記延在方向において、前記両充電端子の間隔が狭くなる方向に移動して、前記充電端子の一つは、付勢力が増加することを特徴とする充電器。
A charger for detachably attaching a rechargeable battery extending in both directions to the battery mounting portion,
The battery comprising electrode portions at both ends;
Both charging terminals that contact the both electrode portions of the battery from the outside in the extending direction;
Covers at least a part of the battery mounting portion in a state where the battery is mounted, is pivotally supported by an axis perpendicular to the extending direction of the battery, and can be opened and closed. One charging terminal extends in the extending direction. A cover body having a pressing body that is pressed from the outside of
At least one of the charging terminals is in contact with one electrode portion of the battery with an urging force,
When the cover body is rotated and closed in a state where the battery is mounted, the distance between the charging terminals in the extending direction is greater than the position of the pressure body when the cover body is opened. The battery charger is characterized in that the urging force of one of the charging terminals is increased by moving in a direction in which the battery becomes narrower.
前記充電端子の一つは、その下側で充電器本体側に固定される固定部と、該固定部より上側で前記電池の前記電極部に押圧される電極押圧部とを有していることを特徴とする請求項1の充電器。 One of the charging terminals has a fixed portion fixed to the charger main body side at the lower side thereof, and an electrode pressing portion pressed against the electrode portion of the battery above the fixed portion. The charger according to claim 1. 前記充電端子の一つは、細長い金属片を折曲したもので、前記電極押圧部は、前記固定部より上側に延在する起立部と、該起立部の延在方向から折曲されて、前記電池の前記電極部に押圧される電極接触部とからなり、
前記起立部と、前記電極部との間隔が小さくなることより、付勢力が増加することを特徴とする請求項2の充電器。
One of the charging terminals is formed by bending an elongated metal piece, and the electrode pressing portion is bent from an extending portion extending upward from the fixing portion, and an extending direction of the rising portion, An electrode contact portion pressed against the electrode portion of the battery,
The charger according to claim 2, wherein a biasing force is increased by reducing a distance between the standing part and the electrode part.
前記電池は、前記カバー体に保持された状態で、前記電池装着部に着脱されることを特徴とする請求項1の充電器。 The charger according to claim 1, wherein the battery is attached to and detached from the battery mounting portion while being held by the cover body. 電池装着部に、充電式電池を着脱自在に装着する充電器であって、
一端に電極部を備える前記電池と、
前記電池の前記電極部の外側より付勢力をもって当接する充電端子と、
前記電池を装着した状態で前記電池装着部の少なくとも一部を覆い、前記充電器に軸支されて開閉自在であって、前記充電端子を外側より押圧する押圧体を有するカバー体とを備え、
前記電池を装着した状態で前記カバー体が回転して閉められるとき、前記カバー体が開いたときの前記押圧体の位置より、前記押圧体が、前記電池の前記電極部に接近して、前記充電端子の付勢力が増加することを特徴とする充電器。



A charger for detachably attaching a rechargeable battery to a battery mounting portion,
The battery comprising an electrode at one end;
A charging terminal abutting with an urging force from the outside of the electrode portion of the battery;
A cover body that covers at least a part of the battery mounting portion in a state in which the battery is mounted, is pivotally supported by the charger and can be opened and closed, and has a pressing body that presses the charging terminal from the outside;
When the cover body is rotated and closed with the battery mounted, the pressing body is closer to the electrode portion of the battery than the position of the pressing body when the cover body is opened. A charger characterized in that the biasing force of the charging terminal is increased.



JP2004103130A 2004-03-31 2004-03-31 Charger Expired - Fee Related JP4241470B2 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007209058A (en) * 2006-01-31 2007-08-16 Sanyo Electric Co Ltd Charger
KR101929189B1 (en) * 2010-05-14 2018-12-14 엑셀리스 인코포레이티드 Battery pack
KR102143135B1 (en) * 2020-02-06 2020-08-10 김동혁 battery holder

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007209058A (en) * 2006-01-31 2007-08-16 Sanyo Electric Co Ltd Charger
KR101929189B1 (en) * 2010-05-14 2018-12-14 엑셀리스 인코포레이티드 Battery pack
KR102143135B1 (en) * 2020-02-06 2020-08-10 김동혁 battery holder

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