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    • 2. 发明专利
    • Micro-relay
    • 微型继电器
    • JP2007180047A
    • 2007-07-12
    • JP2007050098
    • 2007-02-28
    • Matsushita Electric Works Ltd松下電工株式会社
    • KISHIMOTO SHINICHIHASHIMOTO TAKESHISHIMOMURA TSUTOMUENOMOTO HIDEKI
    • H01H51/12
    • H01H51/2281
    • PROBLEM TO BE SOLVED: To provide a micro-relay in which a one-side contact of a contact point can be prevented. SOLUTION: Two movable contact points 39 which can be attached to or detached from each of a pair of fixed contact points are arranged on a movable contact point base part 34, respectively. The movable contact point base part 34, of which both ends in a shorter length direction of an armature 30 is connected with a contact pressure spring part 35, is supported by the armature 30 with the contact pressure spring part 35. The pair of the fixed contact points 14 are arranged in parallel with a longitudinal direction of the armature 30. Since the movable contact point base part 34 can be rotatable in a plane face in a direction parallel with the fixed contact points 14, a partial contact of the movable contact point 39 with only one out of the pair of the fixed contact points 14, 14 can be prevented and a contact reliability can be improved. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供可以防止接触点的单侧接触的微型继电器。 解决方案:可以分别连接到一对固定接触点中的每一个上的两个可移动接触点39分别设置在可动接点基部34上。 衔铁30的较短长度方向的两端与接触压力弹簧部35连接的可动接触点基部34由接触压力弹簧部35由电枢30支撑。一对固定 接触点14与电枢30的长度方向平行地配置。由于可动触点基部34能够在与固定触点14平行的方向的平面内旋转,所以可动触点 可以防止一对固定接触点14,14中的一个,并且可以提高接触可靠性。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Micro relay
    • 微型继电器
    • JP2006210081A
    • 2006-08-10
    • JP2005018982
    • 2005-01-26
    • Matsushita Electric Works Ltd松下電工株式会社
    • KISHIMOTO SHINICHISHIMOMURA TSUTOMUYAMAMOTO RITSUENOMOTO HIDEKI
    • H01H50/56
    • H01H51/2281
    • PROBLEM TO BE SOLVED: To provide a micro relay in which even if the difference of thickness dimension of a pair of fixed contacts is comparatively large, a movable contact can be contacted to both fixed contacts, and the movable contact hardly comes off from both fixed contacts.
      SOLUTION: The armature 30 is housed in a case A capable of seesaw action with the intermediate part in a longitudinal direction as a fulcrum. A contact base board 34 having a movable contact provided in a longitudinal direction of the armature 30 is provided in parallel at the armature 30, and the armature 30 and the contact base board 34 are connected through a contact pressure spring 35 having elasticity in thickness direction of the armature 30. A pair of fixed contacts 14 are provided at a portion where the movable contact contacts and is separated at the inner periphery face of the case A, and the movable contact short-circuits between both fixed contacts in a form straddling both fixed contacts. The contact pressure spring 35 is connected to the armature 30 at a position separated from the fulcrum of seesaw action of the armature 30 farther than the contact base board 34 in the longitudinal direction of the armature 30.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种微型继电器,其中即使一对固定触点的厚度尺寸的差异较大,也可以使两个固定触点接触可动触点,并且可动触点几乎不脱离 从两个固定的联系人。 解决方案:电枢30容纳在能够以中间部分沿纵向作为支点跷跷板的壳体A中。 具有沿电枢30的长度方向设置的可动接点的接触基板34在电枢30处并列设置,衔铁30和接触基板34通过具有厚度方向弹性的接触压力弹簧35连接 一对固定触头14设置在可动触点接触的部分处,并且在壳体A的内周面处分离,并且两个固定触头之间的可动触头以跨越两者的形式短路 固定联系人 接触压力弹簧35在衔铁30的纵向方向上与电枢30的跷跷板支点的支点远离接触基板34连接到衔铁30上。(C)2006 ,JPO&NCIPI
    • 5. 发明专利
    • Micro relay
    • 微型继电器
    • JP2005216552A
    • 2005-08-11
    • JP2004018970
    • 2004-01-27
    • Matsushita Electric Works Ltd松下電工株式会社
    • SHIMOMURA TSUTOMUHASHIMOTO TAKESHIENOMOTO HIDEKIKISHIMOTO SHINICHI
    • H01H50/04H01H50/10H01H51/24
    • H01H51/2281
    • PROBLEM TO BE SOLVED: To provide a micro relay in which commonality of mechanism parts are realized in a plurality of kinds of relays of different contact constitutions.
      SOLUTION: The micro relay is provided with: a base substrate 1 housing an electromagnetic device 2; a frame-state frame part 31 adhered to a surface of the base substrate 1; an armature 30 rockably supported by the frame part 31 via a support spring part 32 and driven by the electromagnetic device 2; an armature block 3 having a pair of movable contacts adhered to the opposing site against the base substrate 1 of both end parts of the rocking direction of the armature 30, respective pair of fixed contacts 14 adhered to the surface of the base substrate 1 facing against each movable contact; and a cover 4 of which the peripheral part is adhered to the frame part 31 on the opposite side to the base substrate 1 of the armature block 3, while either pair of the fixed contacts 14 are electrically connected to a grounding pattern 18c.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种在不同接触构造的多种继电器中实现机构部件的共同性的微型继电器。 解决方案:微型继电器设置有:容纳电磁装置2的基底基板1; 附着在基底基板1的表面上的框状框架部31; 电枢30经由支撑弹簧部32被框架部31支撑并由电磁装置2驱动; 衔铁块3,其具有一对可动触头,抵靠在衔铁30的摇摆方向的两个端部的基底基板1上,相对的一对固定触头14粘附到基底基板1的面对着 每个活动触点; 并且其中周边部分与电枢块3的基底基板1的相对侧的框架部分31粘合的盖4,而一对固定触点14电连接到接地图案18c。 版权所有(C)2005,JPO&NCIPI
    • 6. 发明专利
    • Micro relay
    • 微型继电器
    • JP2005216551A
    • 2005-08-11
    • JP2004018969
    • 2004-01-27
    • Matsushita Electric Works Ltd松下電工株式会社
    • ENOMOTO HIDEKIHASHIMOTO TAKESHISHIMOMURA TSUTOMUKISHIMOTO SHINICHI
    • B81B3/00B81B5/00H01H50/18H01H50/56
    • H01H51/2281
    • PROBLEM TO BE SOLVED: To provide a durable micro relay without causing concentration of stress even it is made compact and to realize desired contact pressure by improving degree of freedom of designing condition of a pressure spring.
      SOLUTION: The armature 30 contacts and separates a movable contact to/from a stationary contact 14 by doing seesaw action by magnetic force working between the armature 30 and the electromagnetic device 2. The armature 30 is equipped with a moving board 30a consisting of semiconductor material continuously and integrally formed with a frame 31 which is fixed to a case A and an armature plate 30b, consisting of magnetic material for making magnetic force work in between the electromagnetic device 2 and it. In the moving board 30a, a moving contact table 34 with the movable contact is continuously and integrally connected via a pressure spring 35. In a middle part of the pressure spring 35, a meandering part 35a for extending the pressure spring 35 is formed.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供耐用的微型继电器,而不会引起应力集中,甚至通过提高压力弹簧的设计条件的自由度而使其紧凑并实现期望的接触压力。 解决方案:电枢30通过在衔铁30和电磁装置2之间工作的磁力进行跷跷板动作而将活动触点与固定触点14接触和分离。衔铁30装备有移动板30a, 半导体材料与固定到壳体A上的框架31和由电磁装置2之间的磁力作用的磁性材料构成的电枢板30b连续地整体形成。 在移动板30a中,具有可动触点的移动接触台34通过压力弹簧35连续地和一体地连接。在压力弹簧35的中间部分形成有用于延伸压力弹簧35的蜿蜒部分35a。 版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Microrelay
    • 微型继电器
    • JP2005216546A
    • 2005-08-11
    • JP2004018962
    • 2004-01-27
    • Matsushita Electric Works Ltd松下電工株式会社
    • KISHIMOTO SHINICHIHASHIMOTO TAKESHISHIMOMURA TSUTOMUENOMOTO HIDEKI
    • H01H50/56H01H1/06H01H51/24
    • H01H51/2281
    • PROBLEM TO BE SOLVED: To provide a microrelay by which reliability of contact between a traveling contact and a fixed contact is improved. SOLUTION: The microrelay includes a base board 1 wherein a holder to hold an electromagnetic device 2 is formed and the fixed contact 14 is provided at one surface side of a thickness direction, an armature block 3 having a frame 31 fastened to one surface side of the base board 1, an armature 30 which is arranged inside the frame 31 supported by the frame 31 in a rocking manner through a support spring 32, and is driven by the electromagnetic device 2, and a base 34 for the traveling contact which is supported by the armature 30 through a contact pressure spring 35, and a cover 4 of which periphery is fastened to the frame 31 at an opposite side to the base board 1 in the armature block 3. The traveling contact 39 which comes into contact with and moves away from a pair of the fixed contacts 14 is provided at the base 34 for the traveling contact. An opposite face to the fixed contact 14 in the traveling contact 39 is formed on a convex curved surface projected to a side of the fixed contact 14. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种微型继电器,通过该微型继电器可以改善行进触点和固定触点之间的接触可靠性。 解决方案:微型继电器包括基板1,其中形成有用于保持电磁装置2的保持器,并且固定触点14设置在厚度方向的一个表面侧,电枢块3具有紧固到一个的框架31 基座板1的表面侧,配置在框架31的内部的电枢30,该框架31通过支撑弹簧32以摆动的方式被框架31支撑,并由电磁装置2驱动,并且用于行驶触点的基座34 其通过接触压力弹簧35由电枢30支撑,并且在电枢块3的与基板1相反的一侧将外周固定到框架31的盖4。接触的行进触点39 远离一对固定触点14设置在用于行进触点的基部34处。 行进触点39上的固定触点14的相对面形成在突出于固定触点14一侧的凸曲面上。(C)2005,JPO&NCIPI
    • 10. 发明专利
    • 電磁継電器
    • 电磁继电器
    • JP5773006B1
    • 2015-09-02
    • JP2014032940
    • 2014-02-24
    • オムロン株式会社
    • 近藤 純久早田 和也高橋 慶新海 香織田中 弘泰小材 裕二
    • H01H50/56
    • H01H50/56H01H1/26H01H51/2281
    • 【課題】接点の開閉動作に伴って生じた消耗粉を原因とする発熱を防止できる電磁継電器を提供する。 【解決手段】電磁石ユニットの通電に伴って往復移動する操作板を介し、並設した複数の可動接点を、それぞれに対向する並設した複数の固定接点に接離する電磁継電器である。特に、接離可能に対向する一方の前記可動接点57および前記固定接点31と、接離可能に対向する他方の前記可動接点58および前記固定接点32との間に、遮蔽板85を配置した。 【選択図】図6
    • 提供致按照开口产生,并且可以防止所述接触的闭合操作用尽粉末的电磁继电器发热。 通过操作板往复运动相关联地与A电磁铁单元的励磁,多个可动触点的并排布置,电磁继电器接近以及从所述多个中的每个面向并排布置固定触点移开。 特别地,一个可动触点57和可分离的固定接点31由其相对之间,另一个可动触点58和固定触点32的为可分离从其面置于屏蔽板85上。 点域6