首页 / 国际专利分类库 / 电学 / 基本电气元件 / 电开关;继电器;选择器;紧急保护装置 / 翻转或摇杆开关,即开关的操纵以用操作按钮的形式来拨动操作部件为特征的
序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
21 揺動スイッチ装置 JP2017020398 2017-02-07 JP6359698B1 2018-07-18 石原 彰人
【課題】操作ノブの外れを抑制可能な揺動スイッチ装置を提供する。
【解決手段】揺動スイッチ装置1は、有底筒状に形成され、操作を受ける操作ノブ3と、操作ノブ3によって導通遮断される接点を有したボデーであって、操作ノブの筒内へと突出され、かつ操作ノブ3を揺動可能に支持する支持部2aを有したボデーと、ボデーの支持部2aにおいて操作ノブ3と対向する面の一部分または操作ノブ3においてボデーと対向する面の一部分から、他方の部材に向けて突出する突部20とを備える。
【選択図】図2
22 操作装置 JP2016195504 2016-10-03 JP2018060262A 2018-04-12 中野 良子
【課題】操作性を良くすることができる操作装置を提供する。
【解決手段】操作装置としての空調操作装置1は、つまみになされた第1の操作方向、及び第2の操作方向の操作によって設定対象の設定値の増減を指示するトグルスイッチと、つまみの第1の面、及び第1の面の反対の第2の面に接触する操作指を検出してつまみの操作の仕方を検出するタッチ検出部18と、つまみになされた操作方向、及び検出された操作の仕方の組み合わせに基づいて設定値の設定量を変更するように制御する制御部20と、を備えて概略構成されている。
【選択図】図4
23 ロック可能なロッカースイッチ、そのようなロック可能なロッカースイッチを含む電気回路、及びそのようなロック可能なロッカースイッチをアンロックしかつロックする方法 JP2016535009 2013-11-29 JP2016538701A 2016-12-08 ネグリ,オリヴィエ; バレロン,レミ
本発明のロック可能なロッカースイッチ(1)は、固定部分(2);第1の回動位置と第2の回動位置との間で回動する回動部分(6);前記回動部分(6)の回動を防止する少なくとも一つのロック位置と前記回動部分(6)が回動できるようにする一つの解放位置との間で回動できる磁気的に作動可能なロック要素(8);を含む。前記ロック可能名ロッカースイッチ(1)はさらに、前記ロック要素(8)を前記解放位置に付勢する磁気作用を発生させる制御位置と前記磁気作用の発生を停止させる休止位置との間で前記回動部分上で可動な制御要素(10)を含んでいる。【選択図】図1
24 Multidirectional switch device, and switch modules JP2003539069 2002-10-15 JP3975199B2 2007-09-12 メンヒェ・エトガル
25 Switch and image forming device JP2002138352 2002-05-14 JP2003331674A 2003-11-21 SUGANO MASASHI; MATSUDAIRA SUNAO; TAKAHASHI KATSUNORI; KOYAMA HIROSHI; WATANABE MASAYUKI
<P>PROBLEM TO BE SOLVED: To provide a switch of which the on-off operation can be controlled from an total controlling unit even though its on-off state is seeable, and also provide an image forming device therewith. <P>SOLUTION: In a switch 11 which includes contact points making on-off operation for an electric circuit and an electromagnet 13 in a case 12, and also includes a handle 14 disposed in the case 12 switching the on-off of the contact points by operation from an external position; permanent magnets 15 are fixed in the handle 14 so that the same pole of the permanent magnets 15 faces the electromagnet 13, thereby the on-off operation of the contact points are made by attracting or repulsing of the permanent magnets by switching the direction of a current passing through the electromagnet 13. <P>COPYRIGHT: (C)2004,JPO
26 Switching equipment JP1735993 1993-04-07 JPH0677135U 1994-10-28 専治 堀澤
(57)【要約】 【目的】 装置の高さ寸法が大きくなっても、操作フィーリングの良い理想的な操作度でスイッチ本体からの出信号の切換えを行う。 【構成】 ボデイ11には、アーム15を有する操作子13,左右方向へスライド可能な運動変換部材19が設けられており、操作子13が軸14を中心に回動すると、まず、アーム15が一体的に回動し、その回動運動が運動変換部材19のピン19aに伝達される。 すると、運動変換部材19が左右方向へスライドし、運動変換部材19の係合溝部19bに係合されたスイッチ本体12のピン12aがスライドし、スイッチ本体12からの出力信号が切換えられる。
27 JPH0326591Y2 - JP6603884 1984-05-08 JPH0326591Y2 1991-06-10
A switch to be used for a power window of an automobile or the like is disclosed. It has a switch body. A knob is rotatably axially supported by the switch body. The knob has an accommodating chamber in its inside. A presser is accommodated within the chamber and biased downward by a spring. A pair of contact blades are positioned under the presser. Each of the contact blades is formed at its central portion with a V-shaped portion and inclined surfaces extending toward the right and left directions. The inclined surfaces are further extended to form contact portions. There is formed with a step between the inclined surfaces and the contact portions, so that a first step of operation and a second step of operation of the knob can be made without mistake. Stationary contacts are positioned corresponding to the contact portions. It also has a pair of contact holders. Each of the holders has a supporting piece folded upward from its one side. The supporting pieces contact the under surfaces of the inclined surfaces. A two way solenoid is connected to the knob to attract it in the both directions.
28 JPH02138827U - JP4924189 1989-04-26 JPH02138827U 1990-11-20
29 JPS618522Y2 - JP7484879 1979-06-01 JPS618522Y2 1986-03-17
30 JPS55173817U - JP7484879 1979-06-01 JPS55173817U 1980-12-13
31 이동확장 가능한 트랙 모듈 어셈블리 KR1020160047396 2016-04-19 KR101807646B1 2017-12-11 고광빈
본발명은이동확장가능한트랙모듈어셈블리에관한것으로서, 상면이개방되고하면이밀폐된트랙몸체(110)와상기트랙몸체(110)의개방된상면에양측테두리를따라내측으로절곡되어걸림턱을형성하는트랙날개(120)로구성된트랙부(100); 상기트랙날개(120)와탄성에의해결착되며, 전선고정클립(260)이구비된트랙덮개(200); 상기트랙부(100)의트랙몸체(110)에좌우이동이가능하도록설치되는소켓하부몸체(310)와, 상기소켓하부몸체(310)에착탈가능하게체결되는소켓상부몸체(320)로구성되는콘센트부(300); 상기트랙몸체(110)에결합되어좌우이동이가능한스위치하부몸체(410)와, 상기스위치하부몸체(410)에결합하되전면에스위치버튼(422)을구비한스위치상부몸체(420), 및보조덮개(430)로구성되는스위치부(400); 및상기트랙몸체(110)에결합되어좌우이동이가능한입출복스하부몸체(510)와, 상기입출복스하부몸체(510)에결합하는입출복스상부몸체(520)로구성되는전선입출복스(500);를포함하여구성된것을특징으로한다.
32 이동확장 가능한 트랙 모듈 어셈블리 KR1020160047396 2016-04-19 KR1020170119420A 2017-10-27 고광빈
본발명은이동확장가능한트랙모듈어셈블리에관한것으로서, 상면이개방되고하면이밀폐된트랙몸체(110)와상기트랙몸체(110)의개방된상면에양측테두리를따라내측으로절곡되어걸림턱을형성하는트랙날개(120)로구성된트랙부(100); 상기트랙날개(120)와탄성에의해결착되며, 전선고정클립(260)이구비된트랙덮개(200); 상기트랙부(100)의트랙몸체(110)에좌우이동이가능하도록설치되는소켓하부몸체(310)와, 상기소켓하부몸체(310)에착탈가능하게체결되는소켓상부몸체(320)로구성되는콘센트부(300); 상기트랙몸체(110)에결합되어좌우이동이가능한스위치하부몸체(410)와, 상기스위치하부몸체(410)에결합하되전면에스위치버튼(422)을구비한스위치상부몸체(420), 및보조덮개(430)로구성되는스위치부(400); 및상기트랙몸체(110)에결합되어좌우이동이가능한입출복스하부몸체(510)와, 상기입출복스하부몸체(510)에결합하는입출복스상부몸체(520)로구성되는전선입출복스(500);를포함하여구성된것을특징으로한다.
33 자동차용 파워 윈도우의 모듈 스위치구조 KR1020060064337 2006-07-10 KR100764969B1 2007-10-08 정용수
A structure of a module switch for a power window of a vehicle is provided to install a push type knob on a hinge flap having a pair of protrusions where plural contact points are disposed, and leaf springs inserted on two inner surfaces of the knob to allow the knob to be pulled up or pushed down to selectively contact the contact points for simplifying the contact point patterns as well as prevent contraction of the contact points in an extremely cold regions, thereby preventing generation of rattling noise and malfunctioning of the power window. In a structure of a module switch for a power window of a vehicle, a knob(17) is coupled to a hinge flap(11) having a pair of protrusions(13,14) by a shaft(12) to be pulled up or pushed down with respect to the shaft. Conductors are fixed on two inner surfaces of the knob to let the knob be disposed on the center of vertical axis in the horizontal state. A plurality of contact points(15a,15b,15c,16a,16b,16c) having different lengths are installed on each of the protrusions. The conductors selectively contact the contact points respectively when the knob is pulled up or pushed down. The conductors installed on two inner surfaces of the knob are leaf springs.
34 FULL SIZE ROCKER HOUSING WITH PIEZO BUZZER US16158503 2018-10-12 US20190214204A1 2019-07-11 Michael Howard IRVING
A rocker switch assembly features a rocker switching mechanism and a rocker base housing. The rocker switching mechanism has a switch cover and rocker configured to rock between rocking positions in response to rocking switch forces applied thereon, and provide a rocking switch actuator force. The rocker base housing has a piezo buzzer and rocker switch circuitry, e.g., including contacts/terminals. The piezo buzzer is configured to respond to the rocking switch actuator force, and provide signaling from the piezo buzzer to rocker switch circuitry, based upon the rocking switch actuator force applied.
35 Energy diverting light socket plug US14060866 2013-10-23 US09163816B2 2015-10-20 Robert Baschnagel
The present invention relates to an apparatus that has the specific features of attaching to a light bulb base and creating a light bulb with the additional feature of being able to be dimmed and flexed for directional lighting at the socket of the light bulb itself. An additional feature of this attachment is to allow for the light bulb to be turned off or on at the point of where the light bulb is attached to its socket from which electricity is drawn. A third feature of said device is to have the addition of a USB port also on the socket dimming device as a way to draw energy from the light bulb socket for the additional feature of using a USB port with some type of electronic device that can be charged at the base of the light socket itself.
36 Night light US13836780 2013-03-15 US09091403B2 2015-07-28 Lorenzo Trolese; Richard M Rohmer; Lam Chung Fai; Leung Kwok Chung; Joshua Haines
The present invention is directed to an electrical device that includes a control circuit having a processing circuit, an electronic switch, light emitting elements and an ambient light sensor disposed on a substrate. The processing circuit provides an electronic barrier between the light emitting elements and the ambient light sensor such that the operation of the ambient light sensor is not contaminated by light emitted by the plurality of light emitting elements. A cover assembly includes a lens element and a switch actuator comprised of a diffusing material. The lens element and the switch actuator are disposed over the light emitting elements such that the light emitted by the light emitting elements is diffused by the lens element and the switch actuator to emit a substantially uniform illumination without any shadow or hot spot artifacts being visible on either the lens element or the switch actuator.
37 LOW ENERGY ENVIRONMENTAL SENSOR THAT RECEIVES INPUTS VIA MOVEMENT THEREOF, AND A METHOD OF OPERATING A ROCKING ENVIRONMENTAL SENSOR US13931175 2013-06-28 US20140207258A1 2014-07-24 Robert Anthony DiFulgentiz, III; Larry S. Bias; Thomas Gerard Pavlak; Kyle Golden; Takeshi Sakai; Daniel Castillo
A low energy environmental sensor is provided herein that is configured to receive user inputs from movement of the sensor itself. A method of operating a rocking environmental sensor is also provided. In one embodiment, the rocking environmental sensor includes: (1) a base having a fulcrum point and (2) a face including a first movement initiator area and a second movement initiator area configured to cause the face to toggle with respect to the fulcrum point and complete a signaling path indicating a user input.
38 Night Light US13836780 2013-03-15 US20140140064A1 2014-05-22 Lorenzo Trolese; Richard M. Rohmer; Lam Chung Fai; Leung Kwok Chung; Joshua Haines
The present invention is directed to an electrical device that includes a control circuit having a processing circuit, an electronic switch, light emitting elements and an ambient light sensor disposed on a substrate. The processing circuit provides an electronic barrier between the light emitting elements and the ambient light sensor such that the operation of the ambient light sensor is not contaminated by light emitted by the plurality of light emitting elements. A cover assembly includes a lens element and a switch actuator comprised of a diffusing material. The lens element and the switch actuator are disposed over the light emitting elements such that the light emitted by the light emitting elements is diffused by the lens element and the switch actuator to emit a substantially uniform illumination without any shadow or hot spot artifacts being visible on either the lens element or the switch actuator.
39 Method and Apparatus for Activating a Toggle Power Switch Located on a Wall or Other Structure US11752223 2007-05-22 US20080289939A1 2008-11-27 James W. Davidson, JR.
An actuator mechanism for activating a power switch fixedly attached to a wall is provided. The actuator mechanism includes a remote power switch that is portably locatable on the wall separate from the power switch that is fixedly attached to the wall. The remote power switch is operable to be toggled to a first power state and a second power state. The actuator mechanism further includes an extension arm that extends from the power switch in a substantially horizontal direction. Responsive to a user toggling the remote power switch from the first power state to the second power state, the extension arm rotates to activate or deactivate the power switch fixedly attached to the wall.
40 Switch with a thermoprotection US10716706 2003-11-20 US20050067270A1 2005-03-31 Antonio Coppola
A safety switch, in particular for thermal protection of an electrical apparatus, comprises a container inside which means for activation of said switch is housed, said means comprising a command key and a pair of contact carriers, that are movable and fixed respectively, and a thermoprotector device responsive to temperature variations in the environment to be controlled and adapted to act on the electric supply circuit of said apparatus depending on the perceived heat level. Said movable contact carrier oscillates between two positions, an open position at which said contact carriers are separated from each other and respectively a closed position, at which said contact carriers are in mutual contact, each of said positions being imposed by a corresponding position of said command key. The thermoprotector device acts in case of need on the electric supply circuit and separates the contact carriers from each other by forcing the command key to the open position. This action deactivates the thermoprotector device and the switch therewith, and a new activation of the latter can only take place by exerting a pressure on the command key capable of bringing the key again to the closed position and set the thermoprotector again ready for operation.
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