JP3156699U - Capacitor platform - Google Patents
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- JP3156699U JP3156699U JP2009007668U JP2009007668U JP3156699U JP 3156699 U JP3156699 U JP 3156699U JP 2009007668 U JP2009007668 U JP 2009007668U JP 2009007668 U JP2009007668 U JP 2009007668U JP 3156699 U JP3156699 U JP 3156699U
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Abstract
【課題】コンデンサーの耐震性を向上することができるコンデンサーの載せ台を提供する。【解決手段】本コンデンサー10の載せ台20は底座21及び複数の定位アーム22を具え、底座はコンデンサーの本体の引き受けに用いられ、かつ底座にはそれぞれ二つの接脚の設置に用いられる二つの連接溝213が設けられる。複数の定位アームは底座の外縁に設けられてコンデンサー本体の外周縁を形成し、定位アームのコンデンサーの内側に相対して定位面24が設けられ、定位面は第一当て面241、第二当て面242及び突起243を具え、第一当て面は底座に連接され、第二当て面は底座から遠ざかり、突起は第一当て面と第二当て面の間に形成され、かつ突起はコンデンサーの凹部に対応する。突起とコンデンサーの凹部の間には粘着剤が設けられてコンデンサーと載せ台を結合する。【選択図】図2A capacitor mount is provided that can improve the earthquake resistance of the capacitor. A mounting base 20 of the condenser 10 includes a bottom seat 21 and a plurality of positioning arms 22. The bottom seat is used for taking over the main body of the condenser, and the bottom seat is provided with two contact legs each used for installation of two contact legs. A connecting groove 213 is provided. The plurality of stereotaxic arms are provided on the outer edge of the bottom seat to form the outer peripheral edge of the condenser body, and the stereotaxic surface 24 is provided opposite to the inside of the condenser of the stereotaxic arm. The first contact surface is connected to the bottom seat, the second contact surface is moved away from the bottom seat, the protrusion is formed between the first contact surface and the second contact surface, and the protrusion is a concave portion of the capacitor. Corresponds to. An adhesive is provided between the protrusion and the concave portion of the condenser to couple the condenser and the mount. [Selection] Figure 2
Description
本考案はコンデンサー(condenser)の載せ台に係り、特にコンデンサーの耐震性を向上することができるコンデンサーの載せ台に関するものである。 The present invention relates to a capacitor platform, and more particularly to a capacitor platform that can improve the earthquake resistance of the capacitor.
添付の中華人民共和国特許出願第00262181.9号「電解コンデンサーの立て型固定座」を参照ください。その固定座は矩形状に現われ、上端面の四つ隅には上方へ四本の固定支柱が延伸され、中間部分には二本の支え脚の孔が設けられ、かつ固定座の下端面にはそれぞれ孔の相対外側に位置する凹溝が設けられているので、コンデンサーの二本の支え脚を下方の孔に通し、それからそれぞれ外へ折り曲げて二つの凹溝に貼り合わせれば、固定座を具える電解コンデンサーは表面粘着工程をもって印刷回路板の上に結合することができる。 Please refer to the attached Chinese Patent Application No. 00262181.9 “Vertical Fixing Seat for Electrolytic Capacitors”. The fixed seat appears in a rectangular shape, with four fixed struts extending upward at the four corners of the upper end surface, two support leg holes in the middle, and the lower end surface of the fixed seat. Since each has a concave groove located on the outer side of the hole, pass the two support legs of the condenser through the lower hole, and then bend each outward and attach it to the two concave grooves to secure the fixing seat. The provided electrolytic capacitor can be bonded onto the printed circuit board with a surface adhesion process.
ところが、現有技術のコンデンサー製品に対する要求はますます厳しくなり、特に交通工具または機械に載せられる場合、コンデンサーの耐震性に対する要求はますます高くなり、従来の立て型固定座はコンデンサーを固定することができず、立て型固定座は耐震性がよくないので、コンデンサーの縁が折れて切れてしまうことがある。折れてしまう現象の主な原因は二つあり、一つ目は固定座とコンデンサーに接合個所がないことであり、二つ目はコンデンサーと固定板の組み合わせが使用される場合、導線個所と回路板だけが半田で接合されているので、震動が発生するとコンデンサーと固定座は相対した移動関係が発生しやすくなり、更に導線が曲げられて折れてしまうことである。上述問題は早急に改善する必要がある。 However, the requirements for current technology capacitor products are becoming more and more demanding, especially when mounted on a traffic tool or machine, and the capacitor's requirement for seismic resistance is increasing, and conventional vertical fixed seats can fix the capacitor. This is not possible, and the vertical fixed seats are not earthquake resistant, so the edges of the capacitor may break. There are two main causes of the broken phenomenon, the first is that there is no joint between the fixed seat and the capacitor, and the second is when the combination of the capacitor and the fixed plate is used. Since only the plates are joined by solder, when a vibration occurs, the capacitor and the fixed seat are likely to have a relative movement relationship, and the conductor is bent and broken. The above problems need to be improved immediately.
上述従来構造の欠点に鑑み、本考案の考案者はコンデンサーの載せ台を考案し、それは上述従来構造のすべての欠点を克服することができる。 In view of the disadvantages of the conventional structure described above, the inventor of the present invention devised a capacitor mount, which can overcome all the disadvantages of the conventional structure described above.
本考案が解決しようとする技術問題は、現在技術に存在する上記欠点に対してコンデンサーの載せ台の一種を提供することである。 The technical problem to be solved by the present invention is to provide a kind of capacitor mount for the above-mentioned drawbacks existing in the present technology.
本考案の主要目的は、粘着剤をコンデンサーの凹部と載せ台の突起間の隙間に設け、それによってコンデンサーと載せ台を結合固定することである。 The main object of the present invention is to provide an adhesive in the gap between the recess of the capacitor and the protrusion of the mount, thereby coupling and fixing the capacitor and the mount.
本考案の次の目的は、定位アームをコンデンサーの凹部の底座に反する一端に覆い被せ、それによってコンデンサーの振動状況を減少することである。 The next object of the present invention is to cover the stereotaxic arm on one end opposite to the bottom of the recess of the condenser, thereby reducing the vibration situation of the condenser.
本考案のもう一つの目的は、突起を第一当て面及び第二当て面の間に形成し、それによってあまり大きな揺れ移動空間を発生させないことである。 Another object of the present invention is to form a protrusion between the first contact surface and the second contact surface, thereby not generating a very large shaking movement space.
本考案のまた一つの目的は、防震接脚の嵌め付け部を補助溝の嵌め溝に嵌め付け、防震接脚は半田によって回路板に溶接し、それによって載せ台の耐震強度を向上させ、安定性を高めることである。 Another object of the present invention is to fit the fitting part of the seismic contact leg into the fitting groove of the auxiliary groove, and the seismic contact leg is welded to the circuit board by soldering, thereby improving the seismic strength of the platform and stabilizing it. It is to increase sex.
本考案の更に一つの目的は、底座の四つの突塊を完全に回路板に載せ、導電接脚の高さが違うために載せ台が揺れ動く可能性を防ぐことである。 Another object of the present invention is to completely mount the four protrusions of the bottom seat on the circuit board and prevent the platform from swinging because the height of the conductive contact legs is different.
コンデンサーの載せ台であって、コンデンサー本体の引き受けに用いられ、かつそれにはそれぞれコンデンサーの二本の接脚の設置に用いられる二つの連接溝が設けられる底座と、底座の外縁に設けられてコンデンサー本体の外周縁を形成し、それのコンデンサーの内側に相対して定位面が設けられ、定位面は第一当て面、第二当て面及び突起を含み、第一当て面は底座に連接し、第二当て面は底座から遠ざかり、突起は第一当て面と第二当て面の間に形成し、かつ突起はコンデンサーの凹部に相対する複数の定位アームとを含み、突起とコンデンサーの凹部の間には粘着剤が設けられてコンデンサー及び載せ台を結合することを特徴とする。 A condenser mount, which is used for taking over the capacitor body and has two connecting grooves each used for installing two condenser legs, and a condenser provided on the outer edge of the bottom seat. Forming an outer peripheral edge of the main body, and a positioning surface is provided relative to the inside of the capacitor, the positioning surface includes a first contact surface, a second contact surface and a protrusion, the first contact surface is connected to the bottom seat; The second abutment surface is spaced from the bottom seat, the protrusion is formed between the first abutment surface and the second abutment surface, and the protrusion includes a plurality of stereotaxic arms facing the recesses of the capacitor, between the protrusions and the recesses of the capacitor Is characterized in that an adhesive is provided to couple the condenser and the platform.
上述から本考案は次の長所を具えることがわかる。
1.本考案のコンデンサーの載せ台の粘着剤はコンデンサーの凹部と載せ台の突起間の隙間に設けられ、それによってコンデンサーと載せ台は結合される。
From the above, it can be seen that the present invention has the following advantages.
1. The pressure-sensitive adhesive for the capacitor platform of the present invention is provided in the gap between the recess of the capacitor and the projection of the platform, thereby coupling the capacitor and the platform.
2.本考案のコンデンサーの載せ台の定位アームはコンデンサーの凹部の底座に反する一端を覆い被さり、それによってコンデンサーの震動が減少する。 2. The stereotaxic arm of the condenser platform of the present invention covers one end opposite the bottom of the condenser recess, thereby reducing the condenser vibration.
3.本考案のコンデンサーの載せ台の突起は第一当て面と第二当て面の間に形成され、それによって突起はあまり大きな動揺移行空間を発生しない。 3. The protrusion of the capacitor mount of the present invention is formed between the first contact surface and the second contact surface, so that the protrusion does not generate a very large fluctuation transition space.
4.本考案のコンデンサーの載せ台の防震接脚の嵌め部は補助溝の嵌め溝に嵌め付けられ、防震接脚は半田によって回路板に溶接されているので、載せ台の耐震動性が向上し安定性を高める。 4). The fitting part of the capacitor mount of the present invention is fitted in the auxiliary groove fitting groove, and the anti-seismic contact legs are welded to the circuit board by soldering, improving the vibration resistance of the platform and stabilizing Increase sex.
5.本考案のコンデンサーの載せ台の底座は四つの突起によって完全に回路板に載せられ、それによって導電の接脚の高さが違うために載せ台が揺れる可能性が防止される。 5. The bottom of the capacitor platform of the present invention is completely mounted on the circuit board by four protrusions, thereby preventing the platform from shaking due to the difference in the height of the conductive contact legs.
其の他の目的、長所と本考案の新型特性については次の詳細説明と関連図面によって更に明白になる。 Other objects, advantages and novel features of the present invention will become more apparent from the following detailed description and associated drawings.
本考案が採用した技術、手段及び効能について、ここに最適実施例を取り上げ、図面と合わせて次の如く詳細説明するが、それは説明に用いるだけで、実用新案登録請求の請求に於いてはこの種の構造の制限を受けない。 The technology, means, and effects adopted by the present invention will be described in detail as follows in conjunction with the drawings, taking the best example, but this is only used for explanation, and this is not used in the request for utility model registration. Not subject to species structure restrictions.
図1から図3に示す本考案コンデンサーの載せ台の立体外観図及び立体分解図を参照ください。本考案はコンデンサー10及び載せ台20を含み、コンデンサー10は載せ台20に取り付けられて回路板に接続され、コンデンサー10と載せ台20の間には粘着剤30が設けられ(図5をご参照)、それによってコンデンサー10及び載せ台20を結合する。 Please refer to the three-dimensional external view and three-dimensional exploded view of the capacitor base shown in Figs. The present invention includes a capacitor 10 and a mount 20, which is attached to the mount 20 and connected to a circuit board, and an adhesive 30 is provided between the capacitor 10 and the mount 20 (see FIG. 5). ), Thereby coupling the condenser 10 and the mounting base 20 together.
コンデンサー10は本体11及び二本の接脚12を具え、本体11は円柱体であり、二本の接脚12は本体11の一端端部に挿し込まれ、本体11の二本の接脚12に近隣する一端の外周縁には環状の凹部111が設けられてある。 The capacitor 10 includes a main body 11 and two contact legs 12, and the main body 11 is a cylindrical body, and the two contact legs 12 are inserted into one end of the main body 11. An annular recess 111 is provided on the outer peripheral edge of one end adjacent to.
同時に図4から図6を参照ください。載せ台20は底座21及び三本の定位アーム(arm)22を含み、底座21は第一面211、第二面212及び二つの連接溝213を具え、第一面211はコンデンサー10を引き受け、第二面212は回路板を連接し、二つの連接溝213は二つの接脚12の設置に用いられ、かつ二つの連接溝213は互いに連通しない。連接溝213は孔2131、収容溝2132及び補助接脚2133を具え、孔2131は底座21の二つの面211、212を貫通し、収容溝2132は底座21の第二面212に形成し、補助接脚2133は収容溝2132に嵌め付けられ、孔2131は接脚12を通すことに用いられ、かつ接脚12は折り曲げられて収容溝2132の補助接脚2133に嵌め付けられ、補助接脚2133は収容溝2132及び接脚12の間に設けられ、それによって接脚12の耐震動性を高め、接脚12に震動が発生することを避けて安定性を高める。 Please refer to Fig. 4 to Fig. 6 at the same time. The platform 20 includes a bottom seat 21 and three positioning arms (arms) 22, the bottom seat 21 includes a first surface 211, a second surface 212, and two connecting grooves 213, and the first surface 211 takes over the capacitor 10, The second surface 212 connects the circuit boards, the two connecting grooves 213 are used for installing the two connecting legs 12, and the two connecting grooves 213 do not communicate with each other. The connecting groove 213 includes a hole 2131, a receiving groove 2132, and an auxiliary contact leg 2133, the hole 2131 passes through the two surfaces 211 and 212 of the bottom seat 21, and the receiving groove 2132 is formed on the second surface 212 of the bottom seat 21 to assist The contact leg 2133 is fitted into the receiving groove 2132, the hole 2131 is used to pass the contact leg 12, and the contact leg 12 is bent and fitted into the auxiliary contact leg 2133 of the receiving groove 2132, and the auxiliary contact leg 2133. Is provided between the receiving groove 2132 and the contact leg 12, thereby improving the vibration resistance of the contact leg 12, and avoiding the occurrence of vibration in the contact leg 12 to increase the stability.
同時に図7を参照ください。前記載せ台20の第二面212には更に四つの突塊214及び二つの補助溝215が設けられ、四つの突塊214は底座21の第二面212に設けられ、かつ四つの突塊214は底座21の四つの角に近隣し、底座21は四つの突塊214によって回路板に載せられ、導電接脚12の高さの違いによって載せ台20が揺れ動く可能性を防止る。二つの補助溝215は底座21の第二面212の相対両側辺に設けられ、かつ補助溝215の底座21の側辺には嵌め溝2151が形成され、二つの補助溝215は二つの防震接脚23の取り付けに用いられ、防震接脚23は補助溝215に嵌め付けることができ、かつ防震接脚23には補助溝215の嵌め溝2151に嵌め付けられる嵌め部231を具え、防震接脚23は半田によって回路板に溶接され、それによって載せ台20の耐震動性を向上し、安定性を高める。 See Fig. 7 at the same time. Four protrusions 214 and two auxiliary grooves 215 are further provided on the second surface 212 of the mounting table 20, and the four protrusions 214 are provided on the second surface 212 of the bottom seat 21, and the four protrusions 214. Is adjacent to the four corners of the bottom seat 21, and the bottom seat 21 is placed on the circuit board by the four protrusions 214, thereby preventing the platform 20 from swinging due to the difference in height of the conductive contact legs 12. Two auxiliary grooves 215 are provided on both sides of the second surface 212 of the bottom seat 21, and fitting grooves 2151 are formed on the sides of the bottom seat 21 of the auxiliary groove 215, and the two auxiliary grooves 215 have two seismic contact. The seismic contact leg 23 can be fitted into the auxiliary groove 215, and the seismic contact leg 23 includes a fitting portion 231 fitted into the fitting groove 2151 of the auxiliary groove 215. 23 is welded to the circuit board by solder, thereby improving the vibration resistance of the platform 20 and improving the stability.
前記三本の定位アーム22と底座21は一体に連接され、かつ三本の定位アーム22は底座21の第一面211の外縁に設けられ、三角環状にコンデンサー10の本体11の外周縁に形成され、それによってコンデンサー10は載せ台20に定位される。前記三本の定位アーム22中の二本は隣接する二つの角に位置し、別の定位アーム22は前記二本の定位アーム22に反する側辺に位置し、側辺に位置する定位アーム22の中心の厚さT1は二つの角に位置する定位アーム22の中心の厚さT2より小さく、そのために側辺に位置する定位アーム22は二つの角に位置する定位アーム22よりも弾性を具え、コンデンサー10が載せ台20に取り付けられる場合は容易に側辺に位置する定位アーム22を押しのけ、便利快速に載せ台20に取り付けられる。 The three positioning arms 22 and the bottom seat 21 are integrally connected, and the three positioning arms 22 are provided on the outer edge of the first surface 211 of the bottom seat 21, and are formed on the outer peripheral edge of the main body 11 of the capacitor 10 in a triangular ring shape. As a result, the condenser 10 is localized on the platform 20. Two of the three stereotaxic arms 22 are positioned at two adjacent corners, and another stereotaxic arm 22 is positioned on the side opposite to the two stereotaxic arms 22 and the stereotactic arm 22 positioned on the side. The center thickness T1 is smaller than the center thickness T2 of the stereotaxic arm 22 located at the two corners, so that the stereotactic arm 22 located on the side is more elastic than the stereotactic arm 22 located at the two corners. When the condenser 10 is attached to the mounting base 20, the positioning arm 22 located on the side is easily pushed away and attached to the mounting base 20 at a convenient and rapid speed.
前記定位アーム22の内側はコンデンサー10の外形に合わせて円弧形状の定位面24に形成され、定位面24は本体11の外周縁に設けられ、かつ定位面24はコンデンサー10を定位制限して震動の発生を減少させる。定位面24の内側は第一当て面241、第二当て面242及び突起243を含み、第一当て面241は底座21に連接し、第二当て面242は底座21から離れた一端に位置し、突起243は第一当て面241と第二当て面242の間に位置し、かつ突起243はコンデンサー10の凹部111に嵌め付けられてコンデンサー10を載せ台20に嵌め付け固定することができる。 The inner side of the localization arm 22 is formed on an arc-shaped localization surface 24 in accordance with the outer shape of the capacitor 10, the localization surface 24 is provided on the outer peripheral edge of the main body 11, and the localization surface 24 restricts the localization of the capacitor 10 and vibrates. Reduce the occurrence of The inner surface of the positioning surface 24 includes a first contact surface 241, a second contact surface 242, and a protrusion 243. The first contact surface 241 is connected to the bottom seat 21, and the second contact surface 242 is located at one end away from the bottom seat 21. The protrusion 243 is located between the first contact surface 241 and the second contact surface 242, and the protrusion 243 is fitted into the recess 111 of the capacitor 10 so that the capacitor 10 can be fitted and fixed to the mounting table 20.
前記突起243は第一当て面241と第二当て面242の間に形成され、突起243は定位アーム22の末端に形成されないので、突起243にはあまり大きな揺れ移動の空間がなく、定位アーム22の突起243はコンデンサー10の凹部111に確実に嵌め付けることができ、コンデンサー10は載せ台20から離脱せず、かつ突起243の両端はそれぞれ第一当て面241及び第二当て面242によってコンデンサー10の外周面に当て付け、それによって定位アーム22はコンデンサー10の凹部111の底座21に反する一端を覆い被さり、コンデンサー10の震動状況が減少される。コンデンサー10の接脚12の一端端部から凹部111の底座21に遠ざかる一端端部には長さL1を具え、定位アーム22は長さL2を具え、コンデンサー10の接脚12の一端端縁から凹部111の第二端113の長さL1は定位アーム22の長さL2より小さい。 The protrusion 243 is formed between the first abutting surface 241 and the second abutting surface 242, and the protrusion 243 is not formed at the end of the stereotaxic arm 22. The projection 243 of the capacitor 10 can be securely fitted into the recess 111 of the capacitor 10, the capacitor 10 is not detached from the mounting table 20, and both ends of the projection 243 are respectively connected to the capacitor 10 by the first contact surface 241 and the second contact surface 242. Accordingly, the stereotaxic arm 22 covers one end opposite to the bottom seat 21 of the recess 111 of the condenser 10, and the vibration situation of the condenser 10 is reduced. A length L1 is provided at one end of the capacitor 10 from the one end of the contact leg 12 to the bottom seat 21 of the recess 111, a localization arm 22 is provided with a length L2, and from one end of the contact leg 12 of the capacitor 10 The length L1 of the second end 113 of the recess 111 is smaller than the length L2 of the stereotaxic arm 22.
コンデンサー10の凹部111と載せ台20の突起243の間には隙間Sを具える。突起243の幅W1はコンデンサー10の凹部111の両端間の幅W2より小さく、突起243が突き出す高さHは凹部111が凹入する深さDより小さいので、コンデンサー10の凹部111と載せ台20の突起243の間に隙間Sが形成され、粘着剤30は点粘着の方式をもってコンデンサー10の凹部111と載せ台20の突起243の間の隙間に設けられ、それによってコンデンサー10と載せ台20は相対的な移動関係を起こさず、コンデンサー10の耐震性が高められる。前記粘着剤30の材質はエポキシレジン(epoxy resin)、アクリル(acryl)またはシリコンゴム(silicon
gum)でもよい。
A gap S is provided between the recess 111 of the capacitor 10 and the protrusion 243 of the mounting table 20. Since the width W1 of the protrusion 243 is smaller than the width W2 between both ends of the concave portion 111 of the capacitor 10, and the height H at which the protrusion 243 protrudes is smaller than the depth D into which the concave portion 111 is recessed, the concave portion 111 of the capacitor 10 and the mount 20 A gap S is formed between the protrusions 243, and the adhesive 30 is provided in a gap between the concave portion 111 of the capacitor 10 and the protrusions 243 of the mount 20 in a point adhesive manner, whereby the capacitor 10 and the mount 20 are The seismic resistance of the capacitor 10 is enhanced without causing a relative movement relationship. The material of the adhesive 30 is epoxy resin, acrylic or silicon rubber.
gum).
以上に述べたのは本考案の最適実施例だけであり、それは本考案の実施範囲を制限するものではなく、およそ数値の変更または同等効果の部材の入れ替え、または本実用新案登録請求の範囲によって行われた同等の変化または改修は、すべて本考案の請求範囲に含まれる範疇に属するべきである。 The above description is only the optimum embodiment of the present invention, and does not limit the scope of the present invention. It depends on the change of numerical values or replacement of members with the same effect, or the scope of the request for registration of the utility model. All equivalent changes or modifications made should fall within the scope of the claimed invention.
10 コンデンサー
11 本体
111 凹部
12 接脚
20 載せ台
21 底座
211 第一面
212 第二面
213 連接溝
2131 孔
2132 収容溝
2133 補助接脚
214 突塊
215 補助溝
2151 嵌め溝
22 定位アーム
23 防震接脚
231 嵌め部
24 定位面
241 第一当て面
242 第二当て面
243 突起
30 粘着剤
L1 長さ
L2 長さ
S 隙間
W1 幅
W2 幅
H 高さ
D 深さ
T1 厚さ
T2 厚さ
DESCRIPTION OF SYMBOLS 10 Capacitor 11 Main body 111 Recess 12 Contact leg 20 Platform 21 Bottom seat 211 First surface 212 Second surface 213 Connecting groove 2131 Hole 2132 Housing groove 2133 Auxiliary leg 214 Projection 215 Auxiliary groove 2151 Fit groove 22 Stereotaxic arm 23 Anti-seismic contact leg 231 fitting portion 24 orientation surface 241 first contact surface 242 second contact surface 243 protrusion 30 adhesive L1 length L2 length S gap W1 width W2 width H height D depth T1 thickness T2 thickness
Claims (6)
コンデンサーの本体の引き受けに用いられ、かつそれにはそれぞれコンデンサーの二本の接脚の設置に用いられる二つの連接溝が設けられる底座と、
底座の外縁に設けられてコンデンサー本体の外周縁を形成し、コンデンサーの内側に定位面が設けられ、定位面は第一当て面、第二当て面及び突起を含み、第一当て面は底座に連接し、第二当て面は底座から遠ざかり、突起は第一当て面と第二当て面の間に形成し、かつ突起はコンデンサーの凹部に相対する複数の定位アームとを含み、
突起とコンデンサーの凹部の間には粘着剤が設けられてコンデンサー及び載せ台を結合することを特徴とする、コンデンサーの載せ台。 A capacitor platform,
A bottom seat which is used to take over the body of the condenser and is provided with two connecting grooves each used for the installation of the two legs of the condenser;
It is provided on the outer edge of the bottom seat to form the outer peripheral edge of the capacitor body, and a localization surface is provided on the inner side of the capacitor. The localization surface includes a first contact surface, a second contact surface and a protrusion, and the first contact surface is on the bottom seat. Articulated, the second abutment surface is moved away from the bottom seat, the projection is formed between the first abutment surface and the second abutment surface, and the projection includes a plurality of stereotaxic arms facing the recess of the capacitor;
A capacitor mount, wherein an adhesive is provided between the protrusion and the recess of the capacitor to couple the capacitor and the mount.
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JP2009007668U JP3156699U (en) | 2009-10-28 | 2009-10-28 | Capacitor platform |
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JP2009007668U JP3156699U (en) | 2009-10-28 | 2009-10-28 | Capacitor platform |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107527743A (en) * | 2017-07-14 | 2017-12-29 | 华远电气股份有限公司 | A kind of capacitor installs fixed structure |
CN112563919A (en) * | 2020-12-23 | 2021-03-26 | 何金连 | Compact capacitor reactive power compensation cabinet |
-
2009
- 2009-10-28 JP JP2009007668U patent/JP3156699U/en not_active Expired - Lifetime
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107527743A (en) * | 2017-07-14 | 2017-12-29 | 华远电气股份有限公司 | A kind of capacitor installs fixed structure |
CN112563919A (en) * | 2020-12-23 | 2021-03-26 | 何金连 | Compact capacitor reactive power compensation cabinet |
CN112563919B (en) * | 2020-12-23 | 2023-05-23 | 湛江昆仑电气工程有限公司 | Compactibility condenser reactive power compensation cabinet |
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