JPS625630A - Aluminum electrolytic capacitor - Google Patents
Aluminum electrolytic capacitorInfo
- Publication number
- JPS625630A JPS625630A JP14556785A JP14556785A JPS625630A JP S625630 A JPS625630 A JP S625630A JP 14556785 A JP14556785 A JP 14556785A JP 14556785 A JP14556785 A JP 14556785A JP S625630 A JPS625630 A JP S625630A
- Authority
- JP
- Japan
- Prior art keywords
- aluminum electrolytic
- electrolytic capacitor
- capacitor
- comb
- shaped terminal
- 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
Links
Landscapes
- Oscillators With Electromechanical Resonators (AREA)
- Diaphragms For Electromechanical Transducers (AREA)
Abstract
(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.
Description
【発明の詳細な説明】
産業上の利用分野
本発明はアルミ電解コンデンサに関するものであり、さ
らに詳しく言えば、チップ形アルミ電解コンデンサに関
するものである。DETAILED DESCRIPTION OF THE INVENTION Field of the Invention The present invention relates to aluminum electrolytic capacitors, and more particularly to chip-type aluminum electrolytic capacitors.
従来の技術
従来のリードレス電子部品、例えばチップ形アルミ電解
コンデンサは第2図a、bに示すように構成されている
。すなわち、アルミニウム箔を粗面化しさらに陽極酸化
により誘電体皮膜を形成した陽極箔と、アルミニウム箔
を粗面化して形成した陰極箔とをセパレータを介して巻
回し、駆動用電解液を含浸してコンデンサ素子1を構成
し、このコンデンサ素子1を有底筒状の金属ケース2に
収納するとともに、開放端をゴムなどの弾性を有する封
口材3を用いて封口してアルミ電解コンデンサを構成し
、そして前記アルミ電解コンデンサから引出されている
リード線4をコム状端子5に溶接などの方法により電気
的9機械的に接続し、さらにコム状端子5を除く全体に
モールド樹脂外装6を施して完成品としていた。2. Description of the Related Art A conventional leadless electronic component, such as a chip-type aluminum electrolytic capacitor, is constructed as shown in FIGS. 2a and 2b. That is, an anode foil made by roughening aluminum foil and forming a dielectric film by anodizing and a cathode foil made by roughening aluminum foil are wound through a separator and impregnated with a driving electrolyte. Constructing a capacitor element 1, housing the capacitor element 1 in a bottomed cylindrical metal case 2, and sealing the open end with an elastic sealing material 3 such as rubber to constitute an aluminum electrolytic capacitor, Then, the lead wire 4 drawn out from the aluminum electrolytic capacitor is electrically and mechanically connected to the comb-shaped terminal 5 by a method such as welding, and then a molded resin sheath 6 is applied to the entire body except for the comb-shaped terminal 5, and the finished product is completed. It was considered a good item.
発明が解決しようとする問題点−
このようなチップ形アルミ電解コンデンサは、プリント
基板への実装に際して、半田tm=ts性をもたせるた
めに、前述したようにモールド樹脂外装6を施している
が、一般にモールド樹脂外装では、100℃〜150℃
の温度で、5分間程度10ゆ/iの圧力で加圧しておシ
、このような過酷な条件下では、電解コンデンサの駆動
用電解液が蒸散して、静電容量の減少やtanδの増大
などの特性劣化をきだしていた。Problems to be Solved by the Invention - Such chip-type aluminum electrolytic capacitors are coated with a molded resin exterior 6 as described above in order to provide solderability tm=ts when mounted on a printed circuit board. Generally, mold resin exterior is 100℃~150℃
Under such harsh conditions, the driving electrolyte of the electrolytic capacitor evaporates, causing a decrease in capacitance and an increase in tanδ. This resulted in deterioration of characteristics such as.
本発明はこのような問題点を解決するものであり、チッ
プ形アルミ電解コンデンサの半田耐熱性を向上させ、モ
ールド外装を施しても静電容量の減少やtanδの増大
などの特性劣化を生じないチップ形アルミ電解コンデン
サを提供することを目的としている。The present invention solves these problems, and improves the soldering heat resistance of chip-type aluminum electrolytic capacitors, and does not cause characteristic deterioration such as a decrease in capacitance or an increase in tanδ even when a molded exterior is applied. The purpose is to provide chip-type aluminum electrolytic capacitors.
問題点を解決するだめの手段
本発明は上記の問題点を解決するため、コンデンサ素子
を有底筒状の金属ケースに収納するとともに、開放端を
ゴムなどの弾性を有する封口材を用いて封口し、外側に
耐熱性を有し、かつ内側に熱収縮性を有する二層構造の
チューブにより外装を施してアルミ電解コンデンサ本体
を構成し、そして前記アルミ電解コンデンサ本体から引
出されているリード線をコム状端子に溶接などの方法に
より電気的2機械的に接続し、さらにコム状端子を除く
全体にモールド樹脂外装を施して完成品とするものであ
る。Means for Solving the Problems In order to solve the above problems, the present invention houses a capacitor element in a cylindrical metal case with a bottom, and seals the open end using an elastic sealing material such as rubber. The main body of the aluminum electrolytic capacitor is constructed by sheathing with a two-layered tube having heat resistance on the outside and heat shrinkable on the inside, and the lead wire drawn out from the aluminum electrolytic capacitor main body. The comb-shaped terminals are electrically and mechanically connected by methods such as welding, and the entire body except the comb-shaped terminals is coated with molded resin to complete the product.
作用
本発明は上記した構成により、すなわち外側に耐熱性を
有するチューブにて外装しているため、モールド外装を
施した時の熱の影響がアルミ電解コンデンサ内部に伝播
しないだめ、駆動用電解液の蒸散を押えることができ、
静電容量の減小やtanδの増大などの特性劣化が無い
。Function The present invention has the above-mentioned configuration, in other words, it is covered with a heat-resistant tube on the outside, so that the influence of heat when the molded covering is applied does not propagate inside the aluminum electrolytic capacitor. Can suppress transpiration,
There is no characteristic deterioration such as a decrease in capacitance or an increase in tan δ.
さらに本発明によるチューブは内側が熱収縮性を有する
ものとの二層構造となっているため、スリーブ外装に際
しては若干の加熱てより内側の熱収縮性を有する部分が
収縮しそれに伴って耐熱性を有する部分も引きつられて
縮むだめ簡単にスリーブ外装を施すことができる。Furthermore, since the tube according to the present invention has a two-layer structure with a heat-shrinkable inner part, when making the sleeve exterior, the inner heat-shrinkable part shrinks due to slight heating, resulting in a heat-shrinkable part. Since the part with the rim will also be stretched and shrunk, a sleeve can be easily applied.
実施例
本発明の一実施例を図面を用いて説明する。なお、図面
中、従来と同じものについては同一の番号を付している
。Embodiment An embodiment of the present invention will be described with reference to the drawings. In addition, in the drawings, the same numbers are given to the same parts as in the prior art.
第1図において、陽極箔、陰極箔およびセパレータを巻
回し駆動用電解液を含浸してコンデンサ素子1を作成し
、金属ケース2に収納するとともに、開放端を封口材3
を用いて封口し、本発明による二層構造のチューブ7を
装着してアルミ電解コンデンサ本体を構成し、そして前
記アルミ電解コンデンサ本体から引出されているリード
線4をコム状端子6に接続し、コム状端子を除く全体に
モールド樹脂外装6を施して完成品としだ。In FIG. 1, a capacitor element 1 is made by winding an anode foil, a cathode foil, and a separator and impregnating it with a driving electrolyte. The capacitor element 1 is housed in a metal case 2, and the open end is covered with a sealing material 3.
A two-layered tube 7 according to the present invention is attached to form an aluminum electrolytic capacitor body, and a lead wire 4 drawn out from the aluminum electrolytic capacitor body is connected to a comb-shaped terminal 6. A molded resin exterior 6 is applied to the entire product except for the comb-shaped terminals, and the finished product is prepared.
つぎに本発明品と従来品との対比を示した。Next, a comparison between the product of the present invention and the conventional product is shown.
定格16Vi OμFのアルミ電解コンデンサ6o個を
用意し、これを2分して、25個を本発明品として、外
側がポリイミド、内側が塩化ビニルからなる二層構造の
チューブを被着させ、その後モールド外装を行った。残
シの25個は、従来品として、チューブ外装をせずにモ
ールド外装を行った。Prepare 60 aluminum electrolytic capacitors with a rating of 16 Vi OμF, divide them into two, make 25 of them as products of the present invention, cover them with a two-layered tube consisting of polyimide on the outside and vinyl chloride on the inside, and then mold them. I did the exterior. The remaining 25 pieces were molded without tube packaging as conventional products.
これらの本発明品および従来品のモールド外装前後の特
性(tanδ値12%で良否判定を実施)変化を調べ、
表に示した。We investigated the changes in the characteristics of these inventive products and conventional products before and after the mold exterior (pass/fail judgment was performed using a tan δ value of 12%).
Shown in the table.
表
表より明らかなように、本発明品では、モールド前後で
、tanδ値の増大不良品は25個中○個であった。一
方、従来品では、モールド外装ヲ施すことによりtan
δ値12%を越えた不良品が25個中3個であった。As is clear from the table, in the products of the present invention, out of 25 defective products had an increase in tan δ value before and after molding. On the other hand, with conventional products, the tan is reduced by applying a molded exterior.
There were 3 defective products out of 25 with a δ value exceeding 12%.
発明の詳細
な説明したように本発明によれば、モールド外装の前後
でtanδ値の増大不良は全くなく特性劣化の生じない
チップ形アルミ電解コンデンサが得られ、その工業的価
値は大なるものである。DETAILED DESCRIPTION OF THE INVENTION As described in detail, according to the present invention, a chip-type aluminum electrolytic capacitor is obtained which has no increase in tan δ value before and after the mold exterior and does not suffer from characteristic deterioration, and its industrial value is great. be.
第1図は本発明のアルミ電解コンデンサの要部を示す断
面図、第2図a、bは従来のチップ形アルミ電解コンデ
ンサの断面図および側面図である。
1・・・・・・コンデンサ素子、2・・・・・・ケース
、3・・・・・・封口材、4・・・・・・リード線、5
・・・・・・コム状端子、6・・・・・・・モールド樹
脂外装、7・・・・・・チューブ。
代理人の氏名 弁理士 中 尾 敏 男 ほか1名/−
−−コンナンf
2−m−ケース
6−−−’:IA状扇子
6−m−モールFりHIL
7−−−チユーグFIG. 1 is a sectional view showing essential parts of an aluminum electrolytic capacitor according to the present invention, and FIGS. 2a and 2b are a sectional view and a side view of a conventional chip-type aluminum electrolytic capacitor. 1... Capacitor element, 2... Case, 3... Sealing material, 4... Lead wire, 5
... Comb-shaped terminal, 6 ... Molded resin exterior, 7 ... Tube. Name of agent: Patent attorney Toshio Nakao and 1 other person/-
--Conan f 2-m-case 6--': IA-shaped fan 6-m-mole Fri HIL 7---Chuugue
Claims (2)
動用電解液を含浸してコンデンサ素子を構成し、このコ
ンデンサ素子を有底筒状の金属ケースに収納するととも
に、開放端をゴムなどの弾性を有する封口材を用いて封
口し、さらに外側に耐熱性を有しかつ内側に熱収縮性を
有する二層構造のチューブにより外装を施してアルミ電
解コンデンサ本体を構成し、前記アルミ電解コンデンサ
本体から引出されているリード線をコム状端子に接続し
、コム状端子を除く全体にモールド樹脂外装を施してな
るアルミ電解コンデンサ。(1) Anode foil and cathode foil are wound through a separator and impregnated with driving electrolyte to form a capacitor element, and this capacitor element is housed in a cylindrical metal case with a bottom, and the open end is covered with rubber. The main body of the aluminum electrolytic capacitor is constructed by sealing the cap with an elastic sealing material such as, An aluminum electrolytic capacitor in which the lead wire drawn out from the capacitor body is connected to a comb-shaped terminal, and the entire body except the comb-shaped terminal is covered with molded resin.
イド、内側を塩化ビニルから構成した二層構造チューブ
を用いた特許請求の範囲第1項記載のアルミ電解コンデ
ンサ。(2) The aluminum electrolytic capacitor according to claim 1, which uses a two-layer tube with an outer layer made of polyimide or polyferene sulfide and an inner layer made of vinyl chloride.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP14556785A JPS625630A (en) | 1985-07-02 | 1985-07-02 | Aluminum electrolytic capacitor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP14556785A JPS625630A (en) | 1985-07-02 | 1985-07-02 | Aluminum electrolytic capacitor |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS625630A true JPS625630A (en) | 1987-01-12 |
Family
ID=15388107
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP14556785A Pending JPS625630A (en) | 1985-07-02 | 1985-07-02 | Aluminum electrolytic capacitor |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS625630A (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH04317634A (en) * | 1991-04-16 | 1992-11-09 | Mitsubishi Electric Corp | Radiation treating system |
US6765784B2 (en) | 2002-02-22 | 2004-07-20 | Nec Tokin Corporation | Solid electrolytic capacitor and manufacturing method for the same |
-
1985
- 1985-07-02 JP JP14556785A patent/JPS625630A/en active Pending
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH04317634A (en) * | 1991-04-16 | 1992-11-09 | Mitsubishi Electric Corp | Radiation treating system |
US6765784B2 (en) | 2002-02-22 | 2004-07-20 | Nec Tokin Corporation | Solid electrolytic capacitor and manufacturing method for the same |
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