Abstract:
A cable splice for overhead power transmission lines includes a flexible housing. A first casing is positioned in the flexible housing. The first casing is configured to receive and retain a first conductor. A second casing is positioned in the flexible housing. The second casing is configured to receive and retain a second conductor. A connecting member is connected to the first casing and the second casing. The first casing is moveable relative to the second casing.
Abstract:
An electrode belt connector (101) is provided for electrically connecting a conductor (109) of an electrode belt (2) to a first snap portion (151) of a snap connector electrode configured to be connected to a biometric device (150). The electrode belt connector (101) includes a frame (103) and an electrically conductive portion (109). The frame (103) defines a corresponding second snap portion (108, 106, 113) configured to mate with the first snap portion (151) of the snap connector electrode. The electrode belt connector (101) further includes a connecting portion (119) configured to electrically connect the conductor (109) of the electrode belt to the first snap portion of the snap connector electrode.
Abstract:
The present invention relates to a system for the application of plaster on a surface. Such system comprises at least one group (1, 1') comprising: support means (2, 14') fixable to said surface; a plurality of screws (4, 4') which can be screwed into said support means (2, 14'), each screw of said plurality of screws (4, 4') being provided with a head (5) wherein a seat is formed (6); a plurality of alignment members (7, 7'), wherein each alignment member of said plurality of alignment members (7, 7') is provided with an engagement portion (9) configured to engage rotatably in said seat; (6); in each alignment member of said plurality of alignment members (7, 7') there being formed a groove (10). The aforementioned group (1, Γ) further comprises a level bar (11, 11') configured in such a way as to be able to be coupled with said groove (10), so that when said plurality of screws (4, 4') is screwed into said support means (2, 14') fixed, in use, to said surface and said plurality of screws (4, 4'), said plurality of alignment members (7, 7') and said level bar (11, 11') are mutually coupled by inserting said engagement portion (9) in said seat (6) and said level bar (11, 11') in said groove (10), said level bar (11, 11') is vertically positionable, i.e. plumb, by adjusting the screwing of said plurality of screws (4, 4'), so as to provide a rest for levelling, in use, a determined quantity of material for plaster arranged on said surface. The present invention further concerns a method for the application of plaster on a surface through a system of the type described above.
Abstract:
본 발명은 다수의 서브모듈이 직렬연결된 컨버터의 접지를 용이하게 하기 위한 단락장치에 관한 것이다. 본 발명은 다수개의 서브모듈(S)이 설치된 메인프레임(10)에 설치되고 상기 다수개의 서브모듈(S)을 가로지르는 방향으로 이동되는 무빙로드(40)와, 상기 무빙로드(40)에 길이방향을 따라 다수개가 구비되어 상기 무빙로드(40)의 이동에 따라 각 서브모듈 외함(1)과 전기적 연결되는 컨택터(50)를 포함한다. 그리고, 연결수단(C)이 상기 컨택터(50) 및 상기 컨택터(50)가 전기적으로 연결된 서브모듈 외함(1)과 인접한 다른 서브모듈 외함(1) 사이를 전기적으로 연결시켜 동시에 접지를 가능하게 한다. 이와 같은 본 발명에서는 단락장치의 조작을 통해 컨버터를 구성하는 각각의 서브모듈 외함(1) 사이를 동시에 연결함으로써 다수의 서브모듈(S)을 동시에 간단하게 접지시킬 수 있고, 따라서 작업장의 안정성이 향상되며, 서브모듈(S)의 전위를 낮추는데 소요되는 시간이 줄어들어 작업속도 역시 빨라질 수 있다.
Abstract:
Ein Leiteranschlusskontakt (1 ) mit einer Lötanschlussfläche (13a, 13b) zur Anbindung an eine Leiterplatte (17a, 17b, 17c, 17d, 17e), und einem Steckkontaktanschluss (8) mit mindestens einem Federklemmelement wird beschrieben. Der Steckkontaktanschluss (8) ist an einer Anschlussebene (9) des Leiteranschlusskontaktes (1 ) gebildet, die von der Ebene der Lötanschlussflächen (13a, 13b) beabstandet ist und eine Stecköffnung (10) und mindestens eine federelastische Klemmzunge (1 1 ) zur Bildung des Federklemmelementes hat. Die Anschlussfläche (9) geht in Fußabschnitte (14) über, die jeweils mit einer Lötanschlussfläche (13a, 13b) verbunden sind oder eine Lötanschlussfläche (13a, 13b) an ihrer, der Anschlussfläche (9) abgewandten Seite haben.
Abstract:
A spring biased contact pin assembly (110) includes a barrel member (132) having a barrel wall (134) defining an elongate internal cavity (133) with a lower end (136) and an upper end (140). The assembly also includes a lower plunger member (150) reciprocally mounted in the internal cavity (133) proximate the lower end of (136) of the internal cavity. A spring member (120) is positioned in the internal cavity (133) between the lower plunger member (150) and the upper end (140) of the internal cavity (133). A high electrical resistance spacer member (180) is positioned in the internal cavity (133) in contact with the lower plunger member (150) and the spring member (120). Spring force exerted through the spacer member (180) urges the lower plunger member (150) into electrical contact with the barrel wall (134).
Abstract:
Eine Leiteranschlussklemme (1) zum Anklemmen eines elektrischen Leiters (2, 2a) mit einem Isolierstoffgehäuse (11), einem Kraftelement (5) und einer Stromschienenanordnung (3) wird beschrieben. Das Kraftelement (5) ist mit der Stromschienenanordnung (3) zur Ausübung einer Klemmkraft auf den an die Stromschienenanordnung (3) angeklemmten elektrischen Leiter (2, 2a) zusammenwirkend ausgebildet. Die Stromschienenanordnung (3) hat zwei einander gegenüberliegende und relativ zueinander beweglich gelagerte Stromschienenteile (4a, 4b) zum Anklemmen des elektrischen Leiters (2, 2a) zwischen den beiden Stromschienenteilen (4a, 4b). Die beiden Stromschienenteile (4a, 4b) sind ausgebildet, um im angeklemmten Zustand jeweils in einem unmittelbaren elektrisch leitenden Kontakt mit dem Ableiter (2b, 16) zu stehen und eine direkte, elektrisch parallele Verbindung zwischen dem angeklemmten elektrischen Leiter (2, 2a) und dem Ableiter (2b, 16) bereitzustellen.
Abstract:
A radiator includes an aperture plate defining multiple slots in first and second transverse directions, spring probes disposed within each of the multiple slots, printed circuit boards (PCBs) each having major and minor surfaces and being recessed on either side of multiple portions of one of the minor surfaces to define multiple pads plated with conductive pad material electrically interconnected with a PCB circuit and a grounding element. Each of the PCBs is disposed with the corresponding one of the minor surfaces inserted into a slot such that the PCBs form a crisscrossing pattern and the pads form horizontal blind-mate contacts with the spring probes that are in-plane with corresponding PCB planes. The grounding element is interposed between crisscrossing PCB pairs at complementary notches thereof.