序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
81 전극 코킹장치 KR1020087011987 2006-11-22 KR1020080063847A 2008-07-07 사이토아키히코; 도노시게루; 야마모토켄
Provided is an electrode caulking device capable of mounting electrodes (2) apart from each other at a predetermined distance on a shape-memory alloy wire (1) which is heated to be restored to an original shape. A roundup caulking device (101) includes: a load mechanism (20) for applying a predetermined tension of the axial direction to the shape-memory alloy wire (1); a pair of support units (4) for supporting the shape-memory alloy wire (1) at two positions arranged apart from each other at a predetermined distance in the axial direction and having a caulking unit; a pair of electric connection contact units (5) which are in contact with the shape-memory alloy wire (1) at two positions sandwiching the pair of support units (4) for making electric connection between the two contact points; and a pair of pressing units (6) for plastically deforming the caulking portion of the electrodes (2) held by the support units (4) so as to caulking-fix the electrodes (2) to the shape-memory alloy wire (1).
82 적어도 하나의 와이어를 접촉 요소에 접속하는 접속 방법 KR1020077003021 2005-06-24 KR1020070033020A 2007-03-23 하인젤안드레; 호젠스키안드레아스
와이어를 전원에 용이하게 접속하도록 적어도 하나의 와이어를 접촉 요소에 접속하는 접속 방법은, (a) 적어도 하나의 와이어를 수용하기 위한 홈이 마련되어 있는 접촉 요소를 준비하는 단계; (b) 접촉 요소의 홈 내로 와이어를 삽입하는 단계; (c) 접촉 요소 상으로 전극을 하강시키는 단계, 및 (d) 전극에 의해 홈 둘레의 영역을 가열하는 동시에, 홈 둘레의 영역을 변형시켜 상기 홈 내에 놓이는 와이어를 매립하는 단계를 포함한다.
83 端子の製造方法及び端子 JP2013256662 2013-12-12 JP6215681B2 2017-10-18 宮川 大亮
84 電気的接続デバイス、電気ケーブルを組み立てる方法、および組み立てられた電気同軸ケーブル JP2017047401 2017-03-13 JP2017168440A 2017-09-21 デ クロエット, オリビエ; シュレットリンガー, クリスティアン; ミュラー, ヴォルフガング; フォルツ, キース リチャード
【課題】ミニ同軸接続デバイス、ならびに改善されたコネクタまたは相手側コネクタ、好ましくはミニコネクタまたはミニ相手側コネクタを、小さく、簡単な構造で、かつ/または取扱いが容易なものとし、柔軟なプロセス管理で、たとえば任意選択で顧客の施設で、この方法を効率的に実施する。
【解決手段】電気的接続デバイス100は、少なくとも2つの個別部分を備え、第1の部分200は、ケーブル60上に設けることができるフェルール200の形態であり、第2の部分300は、電気的コンタクト手段の形態であり、フェルール200は、ケーブル60の第2の導電体640に少なくとも機械的に確実に接続することが可能であり、コンタクト手段は、ケーブルの第1の導電体に電気機械的に確実に接続することが可能である。
【選択図】図18
85 端子、接続構造体及び端子の製造方法 JP2015512935 2014-09-12 JPWO2015037705A1 2017-03-02 昭頼 橘
種類の異なる金属で構成された被覆電線の芯線と端子との間で発生する異種金属腐食を抑制して、導電機能をより確実にする端子及び接続構造体を提供する。端子(11)は、他の端子と接続する接続部としてのボックス部(21)と、被覆電線(12)と圧着接続する圧着部としてのワイヤーバレル部(23)とを備える端子であって、他の端子との接触部(48)、および、被覆電線(12)の芯線(14)の露出部としての端部(14a)との接触部(46)を除いた非接触部が、金属部材の打ち抜き時の切断面としての端面(11C)を含んで、すべて樹脂被覆部(40)により覆われている。
86 調節されたインピーダンスを有する電気コネクタ JP2016142150 2016-07-20 JP2017027940A 2017-02-02 マルティン・ルートヴィヒ; ミヒャエル・ルクス
【課題】本発明は、調節されたインピーダンスを有する電気コネクタシステムに関する。
【解決手段】電気コネクタシステムは、少なくとも2つの導体を備えたケーブルと、そのケーブルの周りに少なくとも部分的に設けられたシェル要素と、を具備している。さらに、電気コネクタシステムは、少なくとも2つの導体およびシェル要素を少なくとも部分的に受容するように形成された、シェル要素とは別個のコネクタハウジングアセンブリを具備している。
【選択図】図4
87 前部保護部を備えるコンタクト部材及びコンタクト装置並びにこのコンタクト装置を製造する方法 JP2015046538 2015-03-10 JP2015173111A 2015-10-01 ブリューメル、ウヴェ; シュミット、ヘルゲ
【課題】可能な限り単純且つ製造が安価であると同時に可能な限り良好に封止され長期間安定したコンタクト装置を提供する。
【解決手段】断面ではコンタクト部材1の完全に圧着された状態では導電体の外周に達するように構成される少なくとも1つの圧着片31a,31bを有する電気コンタクト部材に関し、腐食媒体の浸入に対して可能な限り単純且つ効果的に、長期的な安定性によってコンタクト装置の内部80を封止するために、コンタクト部材1の前部保護片11a,11bは、断面では圧着片31a,31bに横断的に延在するように整列され、圧着片31a,31bに支えられ、導電体の前部部分は、断面では前部保護片11a,11bによって被覆されるように規定される。
【選択図】図3
88 端子の製造方法及び端子 JP2013256662 2013-12-12 JP2015115204A 2015-06-22 宮川 大亮
【課題】箱部内にバネ接触部に部分メッキを施すものにあって、製造時間の短縮化、低コスト化等になる端子の製造方法、及び、これにより製造された端子を提供する。
【解決手段】導電性金属製の母材プレートをプレスして所定の形状に打ち抜く第1プレス工程と、第1プレス工程の後、所定の形状とされたプレートを折り曲げ、相手端子が挿入される端子挿入口5が前面に開口された箱部3と、箱部3の内部に配置されたバネ接触部4とを有する端子1を成形する第2プレス工程と、第2プレス工程の後に、少なくともバネ接触部4に導電性金属のメッキを施すメッキ工程とを行うことを特徴とする端子1の製造方法である。
【選択図】図2
89 Electrical connection terminal JP2013162220 2013-08-05 JP2013258154A 2013-12-26 PHILIPPE HUBLIER; FABRICE HAMON
PROBLEM TO BE SOLVED: To provide an electrical connection assembly and a tool for producing the assembly.SOLUTION: An electrical connection assembly 300 comprises: a conductive plate 102 with a drillhole 104; a first small column 320 having a hole 326 passing axially therethrough and comprising a shoulder 324 intended to come in contact with one face of the conductive plate; and a second small column 306 having a hole 316 passing axially therethrough and comprising a shoulder 312 intended to come in contact with the other face of the conductive plate. The second small column 306 also comprises: a first cylinder 308 having a radius permitting it to be inserted into the hole in the first small column, and a length permitting its free end to project beyond the conductive plate when the shoulder is in contact; and a second cylinder 310 having a radius permitting it to be inserted into the drillhole 104. The free end of the first cylinder is crimped by radial expansion and then by axial compression in the hole in the first small column.
90 Electrical connection terminal JP2010529356 2008-10-14 JP5337808B2 2013-11-06 フィリペ ユブリエール; ファブリス アモン
The disclosure concerns an electrical connection assembly comprising: a conductive plate with a drillhole, a first column with a hole passing axially through it and comprising a shoulder to abut against one of the faces of the conductive plate, and a second column with a hole passing axially through it and comprising a shoulder to abut against the other face of the conductive plate, a first cylinder with a radius sized to enable it to enter the hole in the first column and a length sized such that, when the shoulder is in abutment, the free end of the first cylinder projects beyond the conductive plate, and a second cylinder with a radius sized to enable it to enter the drillhole, wherein the free end of the first cylinder is crimped by radial expansion and then by axial compression in the hole in the first column.
91 Ground terminal JP2011175712 2011-08-11 JP2013038046A 2013-02-21 HANASAKI HISASHI
PROBLEM TO BE SOLVED: To provide a ground terminal capable of reducing a caulking force of a pair of caulking pieces applied to a shield and stabilizing conduction with the shield.SOLUTION: A ground terminal 1 which is connected to a shield 3 made of a fiber conductor and in which a grounding treatment is performed, includes: a bottom wall 5 on which the shield 3 is disposed; a pair of caulking pieces 7 provided integrally with the bottom wall 5, for caulking the shield 3; and a folded-back piece 11 provided by folding back the bottom wall 5, having at least the shield 3 disposed between the bottom wall 5 and itself, and escaping a caulking force applied to the shield 3 in the width direction of the bottom wall 5 by caulking the pair of caulking pieces 7.
92 Method for burying conductive mesh in transparent electrode JP2012146841 2012-06-29 JP2013033955A 2013-02-14 LEE TAIK-MIN; KIM IN-YOUNG; JO JEONG DAL; KIM DONG SOO
PROBLEM TO BE SOLVED: To provide a method for burying a conductive mesh in a transparent electrode, which prevents the conductive mesh from protruding from the transparent electrode by burying the conductive mesh in the transparent electrode, and therefore improves the contact performance of the transparent electrode and prevents the conductive mesh from being separated from the transparent electrode.SOLUTION: A method for burying a conductive mesh in a transparent electrode includes the steps of: attaching a conductive mesh M to a transfer unit 120 made of PDMS material; pressing and tightly adhering the transfer unit 120 to a transparent electrode E on a substrate S; and separating the transfer unit 120 from the transparent electrode E to separate the conductive mesh M from the transfer unit 120 and bury the conductive mesh M in the transparent electrode E to prevent the conductive mesh M from protruding from the transparent electrode E.
93 Terminal and manufacturing method thereof JP2011162006 2011-07-25 JP2013026129A 2013-02-04 HANASAKI HISASHI
PROBLEM TO BE SOLVED: To provide terminals having high mechanical strength of a connecting portion with an electric wire in terminals which connect with an electric wire of which a core wire is fiber conductor.SOLUTION: A terminal 10 is connected to an electric wire W of which the core wire is a fiber conductor 1, the fiber conductor 1 is inserted into a barrel part 11, and the barrel part 11 is swaged gradually toward a wire insertion direction S to be swelled gradually in a width direction D.
94 Pre-assembly method of the plug connector and the plug connector JP2007512102 2005-05-12 JP4864882B2 2012-02-01 ミハエル・グンレベン
95 Earth plates and jig for attaching the coaxial line in this JP2005048228 2005-02-24 JP4235185B2 2009-03-11 雅則 大沼
96 Electrode caulking device JP2006147369 2006-05-26 JP2007173201A 2007-07-05 SAITO AKIHIKO; DOUNO SHIGERU; YAMAMOTO KEN
<P>PROBLEM TO BE SOLVED: To provide an electrode caulking device capable of stably controlling stress in heating by attaching an electrode in a dimension at a temperature at which a shape-memory alloy wire is deformed. <P>SOLUTION: This electrode caulking device capable of caulking and fixing a pair of electrodes 2 to a shape-memory alloy wire 1 is characterized by including: a load means 20 for applying tension to the shape-memory alloy wire 1; a pair of support parts 4 for supporting the shape-memory alloy wire 1 at two positions arranged apart from each other at a predetermined distance L in its axial direction and holding the electrodes 2 having a caulking portion; a pair of electric connection contact parts 5 which are in contact with the shape-memory alloy wire 1 at two positions putting the pair of support parts 4 therebetween and apply electricity between the two positions; and a pair of pressing parts 6 for plastically deforming the caulking portion of the electrodes 2 held by the respective support parts 4 so as to caulk and fix the electrodes 2 to the shape-memory alloy wire 1. <P>COPYRIGHT: (C)2007,JPO&INPIT
97 Wire cutting portion of the electrical junction box structure and method wire cutting JP2000337566 2000-11-06 JP3901446B2 2007-04-04 孝芳 箕浦
98 Flat circuit body with terminal fitting, manufacturing method therefor, manufacturing mold therefor, and manufacturing device therefor JP2005110581 2005-04-07 JP2006294321A 2006-10-26 KUMAKURA HIDETO
<P>PROBLEM TO BE SOLVED: To provide a method for manufacturing a flat circuit body with terminal fittings through a small number of work steps. <P>SOLUTION: A terminal crimping device 4 comprises a pair of molds 45a, 45b each having a recess 51 to allow entry of a pawl portion 24 of a piercing terminal 2 piercing through a conductor portion 31 of the flat circuit body 3. The molds 45a, 45b are allowed to slide in a direction intersecting the piercing direction of the pawl portion 24 by cylinders 60, 60 as sliding means. The pawl portion 24 held in the recess 51 is thereby gradually brought into contact with a second curved surface 53 and a first curved surface 52 formed in the recess 51, so that the pawl portion 24 is gently bent to be crimped. <P>COPYRIGHT: (C)2007,JPO&INPIT
99 Structure of electric wire cutting part for electric junction box, and method of cutting electric wire therefor JP2000337566 2000-11-06 JP2002142329A 2002-05-17 MINOURA TAKAYOSHI
PROBLEM TO BE SOLVED: To provide a structure of an electric wire cutting part for an electrical junction and a method of cutting an electric wire therefor, that enables shorting of the protruding part of a cut electric wire, by narrowing the surroundings of an electric wire punching hole to an extent that a punch can pass, an by cutting the electric wire at a position corresponding to the inside circumferential part so narrowed. SOLUTION: On an electric wire cutting portion of a wiring sheet 22, on which an electric wire 26 is wired, the electric wire punching hole 11 is formed into which a punch 30 that cuts the wire 26 and a stripper 31 that is fitted to the outside circumference of the punch 30 are inserted from one side. In a state with the wire 26 extending over to the other side is gripper and fixed by the stripper 31 and a die 32, that is arranged on the opposite side of the wire 26 facing the stripper 31, the punch 30 is driven in to cut the wire 26. On the side where the wire 26 is arranged of the punching hole 11, an electric wire holding part 13 is provided that is made to interpose between the wire 26 and the stripper 31 by extending the surroundings of the punching hole, and that is formed into a minimum size required just to pass the punch 30 through the width of the inside opening 13a extended.
100 Shielded terminal JP32968598 1998-11-19 JP2000156265A 2000-06-06 AOYAMA MASAHIKO; SAITO MASAJI; KOIDE TAKASHI
PROBLEM TO BE SOLVED: To provide a shielded terminal capable of improving the shielding characteristic. SOLUTION: An internal terminal 11 is accommodated in a housing part 20 of an external terminal 12 through a dielectric 13. A core wire 2 of a shielded wire 1 is crimped to an internal crimping part 18 of the internal terminal at the outside of the external terminal 12, and then the internal terminal 11 is inserted into the dielectric 13. A braided with 4 is folded back on a terminal of a sheath 5, and an external crimped part 22 of the external terminal 12 is crimped to the folded back part 4A. A cover wall 21 opened at only its upper surface is mounted between the housing part 20 of the external terminal 12 and the external crimped part 22, and the neighborhood of the internal crimped part 18 is accommodated in the cover wall part 21. After completion of crimping, a shilding plate 14 is inserted into an opening 21A of the cover wall part 21, and is fixed by elastically holding the external crimped part 22 from the left and right sides with both holding pieces 39 of a clip part 37. The surrounding vicinity of a crimped part of the core wire 2 is covered with a conductive material from every direction. COPYRIGHT: (C)2000,JPO
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