序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 圆顶形可动触片 CN201510573711.2 2015-09-10 CN105977083A 2016-09-28 杉本邦人
发明提供一种圆顶形可动触片,其在圆顶状部分反转变形时,消除了在弯曲部分产生的具有撕开倾向的作用、防止裂纹,从而使圆顶形可动触片长寿命化。该圆顶形可动触片为下述可动触片(2),该可动触片(2)由形成为梯形的导电性弹簧板材的外周的外周立起部(3)和平坦部(4)构成,在由多个缝孔(5)之间的臂部(6)形成圆顶部(9)时,将比缝孔(5)的落部(7)更靠近中心而离开角落部(7)的位置设为弯折线(8),在这些弯折线(8)的中心侧的臂部(6)上形成圆顶部(9),将弯折线(8)作为弯曲位置,通过使圆顶部(9)反转变形,从而消除了作用在角落部(7)上的具有边扭曲边撕开倾向的力。
2 Pool water level and vacuum monitor US14861042 2015-09-22 US09846071B1 2017-12-19 Paul Hallford
The pool water level and vacuum monitor is a device that is adapted to be seated on a pool deck adjacent to a swimming pool, and which monitors water level when filling a pool liner whilst a vacuum is removing air from behind a pool liner and a concrete wall of a pool. Moreover, the pool water level and vacuum monitor includes a telescoping armature that extends aside of a housing. The telescoping armature includes a cord and a float member on a distal end of the cord. The float member is adapted to rest on a pool surface of the swimming pool, and moves to close a float switch integrated in the float member. The float switch is able to turn off all circuitry associated within the housing.
3 DOME-SHAPED MOVABLE CONTACT PIECE US14849754 2015-09-10 US20160268066A1 2016-09-15 Kunihito SUGIMOTO
In a dome-shaped movable contact piece, the durability of the dome-shaped movable contact piece is improved by removing a tearing force at a bent portion during the reverse deformation of a dome-shaped portion to prevent cracks.The movable contact piece includes an upright outer circumference portion formed in an outer circumference of a trapezoid conductive spring plate and a flat portion. When a dome portion is formed by an arm portion between slits, a position close to the center in relation to a corner portion of the slit is set as a bent line so that the dome portion is formed by the arm portion at the center in relation to the bent line. Accordingly, the dome portion is reversely deformed by using the bent line as a bent position. Thus, it is possible to prevent a tearing force from being applied to the corner portion in a twisted state.
4 Keypad illumination apparatus US12571763 2009-10-01 US08357865B2 2013-01-22 Fook Chuin Ng; Choon Guan Ko; Felix Cheang; Boon Keat Tan
A keypad illumination apparatus having a key plate member, a flexible light guide film, a reflective layer, a plurality of metal domes, a light source and a substrate. The key plate member may have a plurality of keys formed thereon. The flexible light guide film is configured to transmit light from the light source and has a plurality of plunging structures and apertures to accommodate the plurality of metal domes, which may be configured to actuate a plurality of electrical switches on the substrate.
5 KEYPAD ILLUMINATION APPARATUS US12571763 2009-10-01 US20110079497A1 2011-04-07 Fook Chuin Ng; Choon Guan Ko; Felix Cheang; Boon Keat Tan
A keypad illumination apparatus having a key plate member, a flexible light guide film, a reflective layer, a plurality of metal domes, a light source and a substrate. The key plate member may have a plurality of keys formed thereon. The flexible light guide film is configured to transmit light from the light source and has a plurality of plunging structures and apertures to accommodate the plurality of metal domes, which may be configured to actuate a plurality of electrical switches on the substrate.
6 Magnetically snap actuated contact keyboard apparatus US693638 1985-01-22 US4689608A 1987-08-25 Frank J. Bolda; John P. McKnight; Russell J. Sturm
In the preferred embodiment of the invention, the snap actuator is an angled magnetically permeable plate. One leg of the angled plate is attracted to a strip magnet placed on a circuitboard. This particular portion of the plate also has two spring fingers that make contact with spherical or domed contacts on the circuitboard or, in the alternative, have formed dome portions in the end of each finger for contacting flat contacts on the circuitboard so that a wiping action that is resistant to contamination results. The other leg of the angled plate serves as a lever arm to which key button pressure is applied. The angle between the plates or the edge of the strip magnet serves as a fulcrum for pivoting the plate under the influence of key pressure. When key pressure has built up sufficiently, the magnetic attraction is substantially broken and the angled plate is suddenly released, thereby breaking contact with the circuit contacts and allowing the circuit voltage to be sensed.
7 鞍乗型車両のレバースイッチ装置およびその設置方法 JP2014160341 2014-08-06 JP2016037104A 2016-03-22 大西 勇二
【課題】操作レバーの上面に帯状の操作スイッチを配置し、ハンドルグリップを把持した手の指で、複合的なスイッチ操作を行なうことができ、安全性が高く、利便性に優れた鞍乗型車両のレバースイッチ技術を提供する。
【解決手段】鞍乗型車両10のレバースイッチ装置11は、クラッチレバー19Lまたはブレーキレバー19Rを操作する操作レバー19を備えた鞍乗型車両10において、操作レバー19の少なくとも上面に帯状の操作スイッチ20をレバー長手方向に配置したことを特徴とするものである。
【選択図】 図1
8 ドーム型可動接片 JP2015047864 2015-03-11 JP5839431B1 2016-01-06 杉本 邦人
【課題】
ドーム型可動接片において、ドーム状部分の反転変形のときに、屈曲部分に引き裂くようなの作用を無くし、クラックを防止して、ドーム型可動接片を長寿命化する。
【解決手段】
台形の導電性ばね板材の外周に形成されている外周立ち上げ部(3)および平坦部(4)からなる可動接片(2)において、複数のスリット孔(5)間のアーム部(6)でドーム部(9)を形成するにあたり、スリット孔(5)のコーナ部(7)よりも中心寄りに離れている位置を曲げライン(8)とし、これらの曲げライン(8)よりも中心側のアーム部(6)でドーム部(9)を形成し、曲げライン(8)を屈曲位置として、ドーム部(9)を反転変形させることによって、コーナ部(7)にねじりながら引き裂くような力を作用させないようにしている。
【選択図】図1
9 Magnetically snap actuated contact keyboard apparatus EP86100557.7 1986-01-17 EP0189132A3 1989-03-22 Bolda, Frank Joseph; McKnight, John Patrick; Sturm, Russell Jackson

A magnetically detented keyboard structure includes a baseplate (1) which may be formed of plastics material or steel, or other material as desired. Steel offers the advantage of electromagnetic radiation shielding, electrical grounding pos- sibilities and high structural integrity, but moulded and/or plated plastics material can offer much the same, with the exception of the same high physical strength. A number of individual locator posts (2) (of which only one appears in the figure) are formed integrally with the baseplate (1) by slitting and stamping in the case of a steel or metallic plate, or by moulding in the case of plastic. The posts (2) are spaced at regular intervals correlated with the desired keybutton spacings and positions in the assembled keyboard.

A circuitboard (3) of insulating material such as an epoxy laminate, sheet polyamide or the like, has apertures (4), preferably die cut therein to facilitate registering the circuit card (3) precisely over the locator posts (2) on the baseplate (1). Circuitry (12) in the desired artwork pattern is formed using well known techniques on the surface of the circuitboard (3). A contact (11) which may be spherical as shown, or hemispherical or any other generally convex domed shape, is attached to the circuitry (12) as a contact. Two of these contacts (11) are used for each key actuator position, but only one is shown in the figure, the other lying directly behind it.

10 ドーム型可動接片 JP2015047864 2015-03-11 JP2016170862A 2016-09-23 杉本 邦人
【課題】
ドーム型可動接片において、ドーム状部分の反転変形のときに、屈曲部分に引き裂くようなの作用を無くし、クラックを防止して、ドーム型可動接片を長寿命化する。
【解決手段】
台形の導電性ばね板材の外周に形成されている外周立ち上げ部(3)および平坦部(4)からなる可動接片(2)において、複数のスリット孔(5)間のアーム部(6)でドーム部(9)を形成するにあたり、スリット孔(5)のコーナ部(7)よりも中心寄りに離れている位置を曲げライン(8)とし、これらの曲げライン(8)よりも中心側のアーム部(6)でドーム部(9)を形成し、曲げライン(8)を屈曲位置として、ドーム部(9)を反転変形させることによって、コーナ部(7)にねじりながら引き裂くような力を作用させないようにしている。
【選択図】図1
11 Key actuator JP22794185 1985-10-15 JPS61171014A 1986-08-01 FURANKU JIYOSEFU BORUDA; JIYON PATORITSUKU MATSUKUNAITO; RATSUSERU JIYAKUSON SUTAAMU
12 Magnetically snap actuated contact keyboard apparatus EP86100557.7 1986-01-17 EP0189132B1 1992-05-20 Bolda, Frank Joseph; McKnight, John Patrick; Sturm, Russell Jackson
13 Magnetically snap actuated contact keyboard apparatus EP86100557.7 1986-01-17 EP0189132A2 1986-07-30 Bolda, Frank Joseph; McKnight, John Patrick; Sturm, Russell Jackson

A magnetically detented keyboard structure includes a baseplate (1) which may be formed of plastics material or steel, or other material as desired. Steel offers the advantage of electromagnetic radiation shielding, electrical grounding pos- sibilities and high structural integrity, but moulded and/or plated plastics material can offer much the same, with the exception of the same high physical strength. A number of individual locator posts (2) (of which only one appears in the figure) are formed integrally with the baseplate (1) by slitting and stamping in the case of a steel or metallic plate, or by moulding in the case of plastic. The posts (2) are spaced at regular intervals correlated with the desired keybutton spacings and positions in the assembled keyboard.

A circuitboard (3) of insulating material such as an epoxy laminate, sheet polyamide or the like, has apertures (4), preferably die cut therein to facilitate registering the circuit card (3) precisely over the locator posts (2) on the baseplate (1). Circuitry (12) in the desired artwork pattern is formed using well known techniques on the surface of the circuitboard (3). A contact (11) which may be spherical as shown, or hemispherical or any other generally convex domed shape, is attached to the circuitry (12) as a contact. Two of these contacts (11) are used for each key actuator position, but only one is shown in the figure, the other lying directly behind it.

14 ELASTOMERIC MEMBRANE SWITCH PCT/US2006027539 2006-07-18 WO2007011807A3 2009-04-23 DARBUT ALEXANDER L; ODEGARD THOMAS BRUCE
An elastomeric membrane switch having an elastomeric connector comprising a plurality of alternating vertically disposed conductive layers and non-conductive layers extending between upper and lower contact surfaces. The lower surface of the elastomeric connector is disposed over a substrate having electrically isolated, first and second contact pads of an electrical switch circuit. Each of the first and second contact pads is in electrical contact with different ones of the exposed ends of conductive layers of the lower contact surface. A resilient membrane having an electrically conductive interior surface is spaced a distance above the upper contact surface, whereby upon applying a downward force to the resilient member, the otherwise electrically isolated contact pads are electrically connected through the electrically conductive layers of the elastomeric connector and the electrically conductive interior surface of the resilient member.
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