JP2002075464A - Charger - Google Patents

Charger

Info

Publication number
JP2002075464A
JP2002075464A JP2000261819A JP2000261819A JP2002075464A JP 2002075464 A JP2002075464 A JP 2002075464A JP 2000261819 A JP2000261819 A JP 2000261819A JP 2000261819 A JP2000261819 A JP 2000261819A JP 2002075464 A JP2002075464 A JP 2002075464A
Authority
JP
Japan
Prior art keywords
unit
charging
charging contact
contact
battery
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
JP2000261819A
Other languages
Japanese (ja)
Inventor
Koichi Inoue
浩一 井上
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sanyo Electric Co Ltd
Original Assignee
Sanyo Electric Co Ltd
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 Sanyo Electric Co Ltd filed Critical Sanyo Electric Co Ltd
Priority to JP2000261819A priority Critical patent/JP2002075464A/en
Publication of JP2002075464A publication Critical patent/JP2002075464A/en
Pending legal-status Critical Current

Links

Classifications

    • 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

Landscapes

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

Abstract

PROBLEM TO BE SOLVED: To effectively prevent a plating on a contact or a terminal of a charger from exfoliation, and to reduce a contact failure to the utmost by thoroughly pressing the charging contact to the charging terminal through long time. SOLUTION: The charger charges a secondary cell housed in a cell housing unit by mounting the cell housing unit 1 detachment freely to a mounting part 3 and connecting a charging terminal 4 of the cell housing unit 1 to the charging contact 5. The charger has a lock mechanism 6 locking the cell housing unit 1 to the mounting part 3. The charging contact 5 has a protrusion part 5A elastically protruded at the mounting part 3, and a part of the protrusion part is jointed to the lock mechanism 6. The lock mechanism 6 compulsorily pulls the charging contact 5 inside the mounting part 3 by dint of the cell housing unit 1 which is put on the mounting part 3 but not located at the mounting position, and when the cell housing unit 1 is mounted to the regular mounting position of the mounting part 3, the cell housing unit 1 is locked and the compulsorily pulled state of the charging contact 5 is released.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、パック電池や二次
電池を内蔵している電気機器を脱着できるように装着し
て充電する充電器に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a charger for removably mounting and charging an electric device containing a battery pack or a secondary battery.

【0002】[0002]

【従来の技術】パック電池の充電器は、充電接点をパッ
ク電池の充電端子に接続して二次電池を充電する。充電
接点と充電端子の接触不良を防止するために、充電接点
を弾性的に充電端子に押圧している。弾性的に充電端子
に押圧される充電接点は、たとえば、弾性変形する線材
で製作される。弾性線材の充電接点は、長期間にわたっ
て接触不良を少なくするために、パック電池の装着部に
突出するように設けられる。突出量の少ない充電接点
は、次第に充電端子の押圧力が低下して接触不良を起こ
しやすくなる。弾性線材が充電端子に押されて変形する
からである。この欠点は充電接点を装着部に突出させる
突出量を大きくして少なくできる。
2. Description of the Related Art In a battery pack charger, a charging contact is connected to a charging terminal of the battery pack to charge a secondary battery. In order to prevent contact failure between the charging contact and the charging terminal, the charging contact is elastically pressed against the charging terminal. The charging contact elastically pressed to the charging terminal is made of, for example, an elastically deformable wire. The charging contact of the elastic wire is provided so as to protrude from the mounting portion of the battery pack in order to reduce poor contact over a long period of time. A charging contact having a small amount of protrusion gradually reduces the pressing force of the charging terminal and easily causes poor contact. This is because the elastic wire is pressed and deformed by the charging terminal. This disadvantage can be reduced by increasing the amount of protrusion of the charging contact to the mounting portion.

【0003】[0003]

【発明が解決しようとする課題】しかしながら、装着部
に高く突出している充電接点は、パック電池等を装着す
るときに、パック電池の充電端子を摺動して表面のメッ
キが剥離する等の弊害が発生する。充電接点や充電端子
は、表面の腐食を防止して長期間にわたって安定して電
気接続できるように、ほとんど例外なく金やニッケル等
で表面をメッキしている。とくに、充電接点はバネ材で
ある弾性線材を使用するので、表面をメッキして腐食し
ないように処理する必要がある。表面のメッキが剥離す
ると、バネ材が表出して酸化して接触不良の原因とな
る。
However, the charging contact protruding from the mounting portion at a high position may cause an adverse effect such that the charging terminal of the battery pack slides when the battery pack or the like is mounted and the plating on the surface is peeled off. Occurs. The charging contact and the charging terminal are almost always plated with gold, nickel, or the like so that corrosion of the surface is prevented and stable electrical connection can be performed for a long period of time. In particular, since the charging contact uses an elastic wire, which is a spring material, it is necessary to treat the surface of the charging contact so as to prevent corrosion. When the plating on the surface is peeled off, the spring material is exposed and oxidized, which causes a contact failure.

【0004】以上のように、充電接点は、突出量を多く
することで、充電端子に対する押圧力を増加して接触不
良を少なくできるが、メッキが剥離しやすくなって接触
不良を起こしやすくなる。したがって、実際には、充電
接点の突出量を大きくしても、長期間にわたって接触不
良を防止しながら安定に電気接続するのは極めて難しか
った。
[0004] As described above, by increasing the amount of protrusion of the charging contact, the pressing force against the charging terminal can be increased to reduce the contact failure, but the plating is easily peeled off and the contact failure is liable to occur. Therefore, in practice, even if the amount of protrusion of the charging contact is increased, it has been extremely difficult to stably make an electrical connection while preventing poor contact over a long period of time.

【0005】本発明は、この欠点を解決することを目的
に開発されたものである。本発明の重要な目的は、長期
間にわたって充電接点を充電端子に充分に押圧しなが
ら、充電接点や充電端子のメッキの剥離を有効に防止し
て、接触不良を極減して安定に電気接続できる充電器を
提供することにある。
The present invention has been developed to solve this drawback. It is an important object of the present invention to effectively prevent the peeling of the plating of the charging contact and the charging terminal while sufficiently pressing the charging contact against the charging terminal for a long period of time, thereby minimizing contact failure and stably connecting the electric connection. It is to provide a charger that can be used.

【0006】[0006]

【課題を解決するための手段】本発明の充電器は、電池
内蔵ユニット1を装着部3に脱着できるように装着し
て、電池内蔵ユニット1に内蔵している二次電池を充電
する。電池内蔵ユニット1は、二次電池を内蔵している
電気機器やパック電池である。装着部3にセットされた
電池内蔵ユニット1は、内蔵する二次電池を充電するた
めに、充電端子4を充電器の充電接点5に接続する。さ
らに、充電器は、装着部3に装着される電池内蔵ユニッ
ト1のロック機構6を備えている。
In the battery charger of the present invention, the battery built-in unit 1 is detachably mounted on the mounting portion 3 to charge a secondary battery built in the battery built-in unit 1. The battery built-in unit 1 is an electric device or a battery pack containing a secondary battery. The battery built-in unit 1 set in the mounting unit 3 connects the charging terminal 4 to the charging contact 5 of the charger in order to charge the built-in secondary battery. Further, the charger includes a lock mechanism 6 of the battery built-in unit 1 mounted on the mounting section 3.

【0007】充電器の充電接点5は、装着部3に弾性的
に突出する突出部5Aを有すると共に、ロック機構6に
連結している。ロック機構6は、装着部3に当接される
が装着位置にない電池内蔵ユニット1で充電接点5を装
着部3の内側に強制的に引き込みし、電池内蔵ユニット
1が装着部3の決められた位置に装着されると、電池内
蔵ユニット1をロックすると共に、充電接点5を強制引
き込みする状態を解除する。ロック機構6で引き込みが
解除された充電接点5は、電池内蔵ユニット1の充電端
子4に弾性的に押圧されて電気接続される。
[0007] The charging contact 5 of the charger has a protruding portion 5 A elastically protruding from the mounting portion 3 and is connected to a lock mechanism 6. The lock mechanism 6 forcibly pulls the charging contact 5 into the inside of the mounting portion 3 with the battery built-in unit 1 that is in contact with the mounting portion 3 but is not at the mounting position. When the battery pack is installed in the position, the battery built-in unit 1 is locked and the state in which the charging contact 5 is forcibly pulled is released. The charging contact 5 released by the lock mechanism 6 is elastically pressed by the charging terminal 4 of the battery built-in unit 1 and is electrically connected.

【0008】ロック機構6は、電池内蔵ユニット1をロ
ックするロック爪7Aを先端に有し、かつ弾性変形する
ロックレバー7と、このロックレバー7で傾動されると
共に、傾動できるように一端をケース2に連結している
駆動レバー8とで構成できる。このロック機構6は、電
池内蔵ユニット1でロック爪7Aを押圧してロックレバ
ー7を弾性変形し、変形するロックレバー7で駆動レバ
ー8を傾動して、駆動レバー8でもって充電接点5を強
制的に引き込みすることができる。弾性変形するロック
レバー7は、プラスチックでケース2に一体成形して設
けることができる。
The lock mechanism 6 has a lock claw 7A at its tip for locking the battery built-in unit 1 and has a lock lever 7 which is elastically deformed, and one end thereof which is tilted by the lock lever 7 and which can be tilted. 2 and a drive lever 8 connected to the drive lever 2. The lock mechanism 6 presses the lock claw 7A with the battery built-in unit 1 to elastically deform the lock lever 7, tilts the drive lever 8 with the deformable lock lever 7, and forcibly charges the charging contact 5 with the drive lever 8. Can be pulled in. The elastically deformable lock lever 7 can be provided integrally with the case 2 with plastic.

【0009】[0009]

【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。
Embodiments of the present invention will be described below with reference to the drawings. However, the embodiments described below exemplify a charger for embodying the technical idea of the present invention, and the present invention does not limit the charger to the following.

【0010】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。
Further, in this specification, in order to make it easy to understand the claims, the numbers corresponding to the members shown in the embodiments will be referred to as “claims” and “ In the column of “means”.
However, the members described in the claims are not limited to the members of the embodiments.

【0011】図1ないし図4に示す充電器は、ケース2
の上面に、電池内蔵ユニット1の装着部3を設けてい
る。電池内蔵ユニット1は、二次電池を内蔵している電
気機器、あるいはパック電池である。装着部3は、電池
内蔵ユニット1を脱着できるように装着する。装着部3
は、図において電池内蔵ユニット1を水平方向にスライ
ドして装着する溝形で、図5の平面図に示すように、溝
内面の両側に、電池内蔵ユニット1を引っかける凸条1
0を設けている。電池内蔵ユニット1は、図示しないが
凸条を案内する連結溝を設けている。溝形の装着部3
は、図において左端にストッパ壁11を設けている。電
池内蔵ユニット1は、ストッパ壁11に当たるまで右か
ら左にスライドして装着される。ストッパ壁11に当接
すると、決められた定位置にセットされる。定位置に装
着された電池内蔵ユニット1は、凸条10を連結溝に案
内して、装着部3に外れないように連結される。この状
態で、装着部3の充電接点5は電池内蔵ユニット1の充
電端子4に接続される。充電された電池内蔵ユニット1
を充電器から外すときは、図において電池内蔵ユニット
1を左から右にスライドさせる。図の充電器は、装着部
3に設けた凸条10を連結溝に連結するので、電池内蔵
ユニット1を外れないように連結できる。ただ、本発明
の充電器は、電池内蔵ユニットの自重で装着部に外れな
いように連結し、あるいは、装着部を中空の筒状とし
て、筒内に電池内蔵ユニットを挿入して連結することも
できる。
The charger shown in FIGS.
The mounting part 3 of the battery built-in unit 1 is provided on the upper surface of the battery. The battery built-in unit 1 is an electric device having a built-in secondary battery or a battery pack. The mounting section 3 is mounted so that the battery built-in unit 1 can be detached. Mounting part 3
5 is a groove shape in which the battery built-in unit 1 is slid in the horizontal direction in the drawing, and as shown in the plan view of FIG.
0 is provided. The battery built-in unit 1 is provided with a connecting groove (not shown) for guiding the ridge. Groove-shaped mounting part 3
Has a stopper wall 11 at the left end in the figure. The battery built-in unit 1 is mounted by sliding from right to left until it hits the stopper wall 11. When it comes into contact with the stopper wall 11, it is set at the determined fixed position. The battery built-in unit 1 mounted in the fixed position guides the ridge 10 into the connection groove and is connected to the mounting portion 3 so as not to come off. In this state, the charging contact 5 of the mounting section 3 is connected to the charging terminal 4 of the battery built-in unit 1. Charged battery built-in unit 1
Is removed from the charger, the battery built-in unit 1 is slid from left to right in the figure. In the illustrated charger, since the ridge 10 provided on the mounting portion 3 is connected to the connection groove, the battery built-in unit 1 can be connected so as not to come off. However, the charger of the present invention may be connected so that it does not come off the mounting portion due to its own weight of the battery built-in unit, or may be formed such that the mounting portion is formed into a hollow cylindrical shape and the battery built-in unit is inserted into the tube and connected. it can.

【0012】装着部3は、充電接点5を突出させる電極
窓12を底面に開口している。充電接点5は、電極窓1
2から装着部3に突出して、電池内蔵ユニット1の充電
端子4に弾性的に押圧する状態で電気接続される。充電
接点5は、弾性金属線の表面をメッキしているバネ材で
製作され、途中をループ状としてケース2に連結してい
る。ケース2は、ループ5Bに挿入されるピン13を一
体成形しており、このピン13を充電接点5のループ5
Bに挿入して充電接点5をケース2に連結している。図
の充電接点5は、ループ5Bから下方に伸びる一方の端
部を図示しないが充電回路に接続し、他方の端部を山形
に折曲して、充電端子4に電気接続するための突出部5
Aとしている。充電接点5は、電池内蔵ユニット1の充
電端子4に接触しない状態においては、図1に示すよう
に突出部5Aを電極窓12から装着部3に突出させてい
る。突出部5Aの先端は、突出部5Aが装着部3に突出
する高さを一定とするために、ロック機構6に当接する
係止部5Cとしている。係止部5Cは、電極窓12から
ケース2の内面に向かって突出して、電極窓12から突
出しない。
The mounting portion 3 has an electrode window 12 on the bottom surface for projecting the charging contact 5. The charging contact 5 is connected to the electrode window 1
2 and is electrically connected to the charging terminal 4 of the battery built-in unit 1 while being elastically pressed. The charging contact 5 is made of a spring material in which the surface of the elastic metal wire is plated, and is connected to the case 2 in a loop partway. In the case 2, a pin 13 inserted into the loop 5 </ b> B is integrally formed, and this pin 13 is connected to the loop 5 of the charging contact 5.
B and the charging contact 5 is connected to the case 2. The charging contact 5 shown in the drawing has one end extending downward from the loop 5B connected to a charging circuit (not shown), and the other end bent into a chevron to electrically connect to the charging terminal 4. 5
A. When the charging contact 5 does not contact the charging terminal 4 of the battery built-in unit 1, the protruding portion 5 </ b> A protrudes from the electrode window 12 to the mounting portion 3 as shown in FIG. 1. The tip of the protruding portion 5A serves as a locking portion 5C that abuts on the lock mechanism 6 so that the protruding portion 5A protrudes into the mounting portion 3 at a constant height. The locking portion 5C protrudes from the electrode window 12 toward the inner surface of the case 2 and does not protrude from the electrode window 12.

【0013】さらに、図の充電接点5は、係止部5Cを
ロック機構6に連結している。ロック機構6は、図2と
図3に示すように、電池内蔵ユニット1を装着部3の底
面に沿ってスライドさせるときに、充電接点5の突出部
5Aを電極窓12の内側に強制引き込みして、充電接点
5の突出部5Aが強く充電端子4を押圧するのを防止す
る。電池内蔵ユニット1が装着部3の決められた位置に
装着されると、ロック機構6は充電接点5の強制引き込
みを解除する。
Further, in the charging contact 5 in the figure, the locking portion 5C is connected to the lock mechanism 6. As shown in FIGS. 2 and 3, when the battery built-in unit 1 is slid along the bottom surface of the mounting portion 3, the lock mechanism 6 forcibly pulls the protrusion 5 </ b> A of the charging contact 5 into the inside of the electrode window 12. Thus, the protrusion 5A of the charging contact 5 is prevented from strongly pressing the charging terminal 4. When the battery built-in unit 1 is mounted at a predetermined position of the mounting section 3, the lock mechanism 6 releases the forced withdrawal of the charging contact 5.

【0014】図のロック機構6は、弾性変形するロック
レバー7と、このロックレバー7で傾動されて、充電接
点5を強制引き込みする駆動レバー8とを備える。ロッ
クレバー7は、プラスチック製のケース2に一体成形し
て設けられる。装着部3の底にロックレバー7を設ける
状態を図5の平面図に示している。このロックレバー7
は、図において左端を装着部3の底面に連結し、その周
囲にスリット14を設けて装着部3から分離している。
ロックレバー7は、先端にロック爪7Aを突出して設け
ている。ロック爪7Aは電池内蔵ユニット1に設けたロ
ック凹部9に案内されて、電池内蔵ユニット1が装着部
3から外れるのをロックする。さらに、図のロックレバ
ー7は、駆動レバー8を押し下げる押下部7Bを下面に
突出して設けている。押下部7Bはロックレバー7の先
端部分に設けている。
The illustrated lock mechanism 6 includes a lock lever 7 that is elastically deformed, and a drive lever 8 that is tilted by the lock lever 7 and forcibly pulls the charging contact 5. The lock lever 7 is provided integrally with the plastic case 2. The state in which the lock lever 7 is provided at the bottom of the mounting portion 3 is shown in the plan view of FIG. This lock lever 7
In the figure, the left end is connected to the bottom surface of the mounting portion 3, and a slit 14 is provided around the left end to separate from the mounting portion 3.
The lock lever 7 is provided with a lock claw 7A protruding at the tip. The lock claw 7 </ b> A is guided by a lock recess 9 provided in the battery built-in unit 1, and locks the battery built-in unit 1 from being detached from the mounting section 3. Further, the illustrated lock lever 7 is provided with a pressing portion 7B that pushes down the drive lever 8 protruding from the lower surface. The pressing portion 7B is provided at the tip of the lock lever 7.

【0015】駆動レバー8は、傾動できるように回転軸
15を介してケース2に連結している。図の駆動レバー
8は、右端を回転軸15でケース2に連結して、左端を
充電接点5の係止部5Cに連結している。駆動レバー8
は、ロックレバー7の押下部7Bが降下する移動量を増
加して充電接点5を降下させる。ロックレバー7の押下
部7Bが駆動レバー8を押圧する位置を駆動レバー8の
回転軸15に接近させると駆動レバー8の傾動角は大き
くなって係止部5Cの降下量を大きくし、回転軸15か
ら遠ざけると駆動レバー8の傾動角は小さくなって係止
部5Cの移動量を少なくする。駆動レバー8が、押下部
7Bの降下量を大きくして係止部5Cを降下させる割合
は、(回転軸15から先端までの距離)/(回転軸15
から押下位置まで距離)のテコ比で決定される。図に示
すように、ロックレバー7の押下部7Bが、駆動レバー
8の約1/3の位置を押圧する構造は、押下部7Bの降
下量の約3倍の移動量で係止部5C、すなわち充電接点
5の突出部5Aを降下できる。したがって、ロックレバ
ー7が駆動レバー8を傾動させる機構は、ロック爪7A
の降下量を少なくして、充電接点5の突出部5Aを大き
く強制的に引き込みできる特長がある。
The drive lever 8 is connected to the case 2 via a rotating shaft 15 so as to be tiltable. The drive lever 8 shown in the figure has the right end connected to the case 2 via the rotating shaft 15 and the left end connected to the locking portion 5C of the charging contact 5. Drive lever 8
Increases the amount by which the pressing portion 7B of the lock lever 7 moves down to lower the charging contact 5. When the position where the pressing portion 7B of the lock lever 7 presses the drive lever 8 approaches the rotary shaft 15 of the drive lever 8, the tilt angle of the drive lever 8 increases, and the descending amount of the locking portion 5C increases. When the distance from the drive lever 15 is increased, the tilt angle of the drive lever 8 is reduced, and the amount of movement of the locking portion 5C is reduced. The ratio of the drive lever 8 increasing the amount of depression of the pressing portion 7B and lowering the locking portion 5C is (distance from the rotation shaft 15 to the tip) / (rotation shaft 15
To the pressed position). As shown in the drawing, the structure in which the pressing portion 7B of the lock lever 7 presses the position about 1/3 of the drive lever 8 has a structure in which the locking portion 5C is moved by about three times the amount of drop of the pressing portion 7B, That is, the protrusion 5A of the charging contact 5 can be lowered. Therefore, the mechanism by which the lock lever 7 tilts the drive lever 8 is a lock claw 7A.
This has the advantage that the protrusion 5A of the charging contact 5 can be largely forcibly pulled in by reducing the amount of drop of the contact.

【0016】ただ、本発明の充電器は、図6に示すよう
に、ロックレバー7で直接に充電接点5の突出部5Aを
引き込みする機構とすることもできる。この図のロック
機構6は、ロックレバー7のみからなり、ロックレバー
7を直接に充電接点5の係止部に連結している。電池内
蔵ユニット1でロックレバー7が押し下げられると、ロ
ックレバー7の押下部7Bが係止部5Cを押し下げて突
出部5Aを引き込みする。
However, as shown in FIG. 6, the charger according to the present invention may have a mechanism in which the protrusion 5A of the charging contact 5 is directly pulled in by the lock lever 7. The lock mechanism 6 in this figure comprises only a lock lever 7 and connects the lock lever 7 directly to the locking portion of the charging contact 5. When the lock lever 7 is pushed down by the battery built-in unit 1, the pressing portion 7B of the lock lever 7 pushes down the locking portion 5C and pulls the projecting portion 5A.

【0017】[0017]

【発明の効果】本発明の充電器は、長期間にわたって充
電接点を充電端子に充分に押圧しながら、充電接点や充
電端子のメッキの剥離を有効に防止できる特長がある。
それは、本発明の充電器が、装着部に装着される電池内
蔵ユニットのロック機構を備えており、このロック機構
は、電池内蔵ユニットが装着部に当接するが装着位置に
ないときには、充電接点を装着部の内側に強制的に引き
込みするが、電池内蔵ユニットが装着部の決められた位
置に装着されると、電池内蔵ユニットをロックすると共
に、充電接点を強制引き込みする状態を解除しているか
らである。この構造の充電器は、電池内蔵ユニットを装
着部にセットするときに、ロック機構が充電接点の突出
部を強制引き込みするので、充電端子が充電接点の突出
部に強く押圧されて、充電接点や充電端子のメッキが剥
離するのを防止できる。さらに、充電器は、電池内蔵ユ
ニットが装着部の決められた位置に装着されると、ロッ
ク機構が充電接点の突出部の強制引き込みを解除するの
で、充電接点の突出部で充電端子を確実に押圧して、接
触不良を極減して電気接続できる。
The charger of the present invention has a feature that the charging contact and the charging terminal can be effectively prevented from peeling off the plating while sufficiently pressing the charging contact against the charging terminal for a long period of time.
That is, the charger of the present invention is provided with a lock mechanism of a battery built-in unit to be mounted on the mounting portion. When the battery built-in unit comes into contact with the mounting portion but is not at the mounting position, the charging contact is formed. Although the battery is forcibly pulled into the inside of the mounting part, when the battery built-in unit is mounted in the predetermined position of the mounting part, the battery built-in unit is locked and the state of forcibly pulling in the charging contact is released. It is. In the battery charger having this structure, when the battery built-in unit is set in the mounting portion, the locking mechanism forcibly pulls the protruding portion of the charging contact, so that the charging terminal is strongly pressed by the protruding portion of the charging contact, and the charging contact or The plating of the charging terminal can be prevented from peeling off. Furthermore, when the built-in battery unit is mounted at a predetermined position of the mounting part, the lock mechanism releases the forced withdrawal of the protruding part of the charging contact, so that the charging terminal is securely held by the protruding part of the charging contact. By pressing, electrical connection can be made with minimal contact failure.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の実施例の充電器の断面図FIG. 1 is a sectional view of a charger according to an embodiment of the present invention.

【図2】図1に示す充電器に電池内蔵ユニットを装着す
る状態を示す断面図
FIG. 2 is a sectional view showing a state where the battery built-in unit is mounted on the charger shown in FIG. 1;

【図3】図1に示す充電器に電池内蔵ユニットを装着す
る状態を示す断面図
FIG. 3 is a sectional view showing a state where the battery built-in unit is mounted on the charger shown in FIG. 1;

【図4】図1に示す充電器に電池内蔵ユニットを装着し
た状態を示す断面図
FIG. 4 is a sectional view showing a state where the battery built-in unit is mounted on the charger shown in FIG. 1;

【図5】図1に示す充電器の装着部の平面図FIG. 5 is a plan view of a mounting portion of the charger shown in FIG. 1;

【図6】本発明の他の実施例の充電器の断面図FIG. 6 is a sectional view of a charger according to another embodiment of the present invention.

【符号の説明】[Explanation of symbols]

1…電池内蔵ユニット 2…ケース 3…装着部 4…充電端子 5…充電接点 5A…突出部 5
B…ループ 5C…係止部 6…ロック機構 7…ロックレバー 7A…ロック爪 7
B…押下部 8…駆動レバー 9…ロック凹部 10…凸条 11…ストッパ壁 12…電極窓 13…ピン 14…スリット 15…回転軸
DESCRIPTION OF SYMBOLS 1 ... Battery built-in unit 2 ... Case 3 ... Mounting part 4 ... Charge terminal 5 ... Charge contact 5A ... Protrusion 5
B: Loop 5C: Locking section 6: Lock mechanism 7: Lock lever 7A: Lock claw 7
B: Depressed portion 8: Drive lever 9: Lock recess 10: Convex ridge 11: Stopper wall 12: Electrode window 13: Pin 14: Slit 15: Rotating shaft

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 二次電池を内蔵している電気機器、また
はパック電池である電池内蔵ユニット(1)を装着部(3)に
脱着自在に装着して、電池内蔵ユニット(1)の充電端子
(4)に充電接点(5)を接続して、内蔵している二次電池を
充電すると共に、装着部(3)に装着される電池内蔵ユニ
ット(1)のロック機構(6)を備える充電器において、 充電接点(5)は装着部(3)に弾性的に突出する突出部(5A)
を有すると共に、一部をロック機構(6)に連結してお
り、 ロック機構(6)は、装着部(3)に当接されるが装着位置に
ない電池内蔵ユニット(1)で充電接点(5)を装着部(3)の
内側に強制的に引き込みし、電池内蔵ユニット(1)が装
着部(3)の決められた位置に装着されると、電池内蔵ユ
ニット(1)をロックすると共に、充電接点(5)を強制的に
引き込みする状態を解除するようにしてなる充電器。
An electric device containing a secondary battery or a battery built-in unit (1) which is a battery pack is detachably mounted on a mounting portion (3), and a charging terminal of the battery built-in unit (1) is provided.
The charging contact (5) is connected to (4) to charge the built-in rechargeable battery, and the charging unit is equipped with a lock mechanism (6) for the battery built-in unit (1) mounted on the mounting part (3). The charging contact (5) has a protruding part (5A) that elastically protrudes from the mounting part (3).
And a part thereof is connected to a lock mechanism (6) .The lock mechanism (6) is in contact with the mounting portion (3) but is not in the mounting position. 5) Forcibly pull the battery built-in unit (3) inside the mounting part (3), and when the battery built-in unit (1) is mounted in the predetermined position of the mounting part (3), lock the battery built-in unit (1) and A charger configured to release a state in which the charging contact (5) is forcibly pulled in.
【請求項2】 ロック機構(6)が、電池内蔵ユニット(1)
をロックするロック爪(7A)を先端に有すると共に弾性変
形するロックレバー(7)と、このロックレバー(7)で傾動
されると共に、一端をケース(2)に傾動自在に連結して
いる駆動レバー(8)とを備え、電池内蔵ユニット(1)がロ
ック爪(7A)を押してロックレバー(7)を弾性変形させる
と、このロックレバー(7)が駆動レバー(8)を傾動させ、
駆動レバー(8)が充電接点(5)を強制的に引き込みするよ
うにしてなる請求項1に記載される充電器。
The lock mechanism (6) includes a battery built-in unit (1).
A lock lever (7) having a lock claw (7A) at its tip and elastically deforming, and a drive that is tilted by the lock lever (7) and has one end connected to the case (2) so as to be tiltable. When the battery built-in unit (1) pushes the lock claw (7A) to elastically deform the lock lever (7), the lock lever (7) tilts the drive lever (8),
2. The charger according to claim 1, wherein the drive lever (8) forcibly pulls the charging contact (5).
【請求項3】 ロックレバー(7)がプラスチックでケー
ス(2)に一体成形されてなる請求項1に記載される充電
器。
3. The battery charger according to claim 1, wherein the lock lever (7) is made of plastic and integrally formed with the case (2).
JP2000261819A 2000-08-30 2000-08-30 Charger Pending JP2002075464A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2000261819A JP2002075464A (en) 2000-08-30 2000-08-30 Charger

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2000261819A JP2002075464A (en) 2000-08-30 2000-08-30 Charger

Publications (1)

Publication Number Publication Date
JP2002075464A true JP2002075464A (en) 2002-03-15

Family

ID=18749600

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2000261819A Pending JP2002075464A (en) 2000-08-30 2000-08-30 Charger

Country Status (1)

Country Link
JP (1) JP2002075464A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008092738A (en) * 2006-10-04 2008-04-17 Kyocera Corp Cradle device for portable terminal
JP2013502949A (en) * 2009-08-28 2013-01-31 ハイブ・ディー・オー・オー Medical pressure transducer and contact holder
CN112202216A (en) * 2020-09-10 2021-01-08 苏州斯卫浦电器有限公司 Dust collector charging device with seesaw type top block

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008092738A (en) * 2006-10-04 2008-04-17 Kyocera Corp Cradle device for portable terminal
JP2013502949A (en) * 2009-08-28 2013-01-31 ハイブ・ディー・オー・オー Medical pressure transducer and contact holder
CN112202216A (en) * 2020-09-10 2021-01-08 苏州斯卫浦电器有限公司 Dust collector charging device with seesaw type top block

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