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 按键结构 CN201110101472.2 2011-04-22 CN102737884B 2015-05-13 梁振仪; 庄政祥; 陈俊健; 白顺德; 高山宝
发明公开一种按键结构,其包含底板、设置于底板的电路板、弹性件、按键帽及两支撑件。底板包括两相互间隔的第一凹孔;弹性件设置于电路板且位于两第一凹孔之间;按键帽位于底板上方,且包括两间隔设于按键帽靠近于底板的一侧面的枢接部;两支撑件的一端分别对应枢接按键帽的枢接部,另一端固定于底板,该多个支撑件的位置分别对应于该多个第一凹孔。当按键帽受按压而往靠近底板的方向移动并触压弹性件时,各个支撑件至少部分位于其对应的第一凹孔中,使按键帽可更靠近于底板,更加降低按键结构的高度,且弹性件会触发电路板产生对应信号
2 按键开关装置 CN02105886.5 2002-04-12 CN1380667A 2002-11-20 鸣泽强; 横山和弘; 伊藤隆幸; 柳沼贞幸
提供一种按键开关装置,具有:在里面11d上形成连接固定部11f、11g的按键顶部11;设置在按键顶部11的下方,分别具有基端部24a、25a和从该基端部24a、25a的两端延伸设置的相互对置的一对腕部24b、25b,并且以一对腕部24b、25b的大致中央部分作为交叉部位可自由回转地连接的第1杆24和第2杆25;可连接支承着第1、第2杆24、25的各下端部的杆安装板15;和跨接在第1、第2杆24、25的各基端部24a、25a间进行安装的驱动部件26;在驱动部件26上形成上方开放的凹状滑动连接支承接受部26c,将第2杆25的基端部25a可滑动地连接支承于滑动连接支承接受部26c上。
3 按键结构 CN201110101472.2 2011-04-22 CN102737884A 2012-10-17 梁振仪; 庄政祥; 陈俊健; 白顺德; 高山宝
发明公开一种按键结构,其包含底板、设置于底板的电路板、弹性件、按键帽及两支撑件。底板包括两相互间隔的第一凹孔;弹性件设置于电路板且位于两第一凹孔之间;按键帽位于底板上方,且包括两间隔设于按键帽靠近于底板的一侧面的枢接部;两支撑件的一端分别对应枢接按键帽的枢接部,另一端固定于底板,该多个支撑件的位置分别对应于该多个第一凹孔。当按键帽受按压而往靠近底板的方向移动并触压弹性件时,各个支撑件至少部分位于其对应的第一凹孔中,使按键帽可更靠近于底板,更加降低按键结构的高度,且弹性件会触发电路板产生对应信号
4 按键开关装置 CN02105886.5 2002-04-12 CN1182555C 2004-12-29 鸣泽强; 横山和弘; 伊藤隆幸; 柳沼贞幸
提供一种按键开关装置,具有:在里面11d上形成连接固定部11f、11g的按键顶部11;设置在按键顶部11的下方,分别具有基端部24a、25a和从该基端部24a、25a的两端延伸设置的相互对置的一对腕部24b、25b,并且以一对腕部24b、25b的大致中央部分作为交叉部位可自由回转地连接的第1杆24和第2杆25;可连接支承着第1、第2杆24、25的各下端部的杆安装板15;和跨接在第1、第2杆24、25的各基端部24a、25a间进行安装的驱动部件26;在驱动部件26上形成上方开放的凹状滑动连接支承接受部26c,将第2杆25的基端部25a可滑动地连接支承于滑动连接支承接受部26c上。
5 输入装置和电子设备 CN201510437823.5 2015-07-23 CN105304380B 2017-08-15 阿部隆; 石川雅纪; 饭岛崇
输入装置和电子设备。一种输入装置,该输入装置包括:壳体,所述壳体具有开口;按钮部,所述按钮部从开口露出并且沿第一方向被按下;支撑组件,所述支撑组件具有支撑按钮部的支撑部、面向壳体的第一表面、与第一表面相反设置的第二表面、以及被设置为与支撑部相隔第一距离并且在第一表面侧固定至壳体的多个固定部;基板,所述基板被设置为面向支撑组件的第二表面;以及组件,所述组件沿第一方向插入基板并且沿与第一方向相反的方向朝向壳体按压第二表面的特定区域,所述第二表面的特定区域位于与支撑部相隔比第一距离短的第二距离处。
6 输入装置和电子设备 CN201510437823.5 2015-07-23 CN105304380A 2016-02-03 阿部隆; 石川雅纪; 饭岛崇
输入装置和电子设备。一种输入装置,该输入装置包括:壳体,所述壳体具有开口;按钮部,所述按钮部从开口露出并且沿第一方向被按下;支撑组件,所述支撑组件具有支撑按钮部的支撑部、面向壳体的第一表面、与第一表面相反设置的第二表面、以及被设置为与支撑部相隔第一距离并且在第一表面侧固定至壳体的多个固定部;基板,所述基板被设置为面向支撑组件的第二表面;以及组件,所述组件沿第一方向插入基板并且沿与第一方向相反的方向朝向壳体按压第二表面的特定区域,所述第二表面的特定区域位于与支撑部相隔比第一距离短的第二距离处。
7 电子设备 CN200710138647.0 2007-07-20 CN101109978A 2008-01-23 中岛雄二
根据一个实施例电子设备配备有壳体(6)、键盘(17)和键盘放置部(14),壳体(6)具有顶壁(7)和从顶壁(7)的边缘延伸出来的壁部侧部(8b,8c),在键盘放置部(14)上放置键盘(17),该键盘放置部(14)具有设置在顶壁(7)中的底面(25)。至少一部底面(25)延伸至壳体(6)的壁部侧部(8b,8c)。
8 琴键开关装置 CN00129663.9 2000-09-30 CN1200440C 2005-05-04 佐佐木文利
发明的琴键开关装置。是在基板上借助橡胶弹簧自由升降地装着键头,通过压下键头进行操作。在基板和键头之间设有相互不接触地交叉、并转动的大、小联杆构件,小联杆构件的下端部能自由滑动地设在基板上所设置的滑动导引件上,上端部支承在键头下端部上所设置的带槽轴承部上,大联杆构件的下端部和上端部分别支承在基板和键头下端部所设置的带槽轴承部上,键头由橡胶弹簧、大小联杆构件能自由升降地支承。
9 琴键开关装置 CN00129663.9 2000-09-30 CN1315738A 2001-10-03 佐佐木文利
发明的琴键开关装置。是在基板上借助橡胶弹簧自由升降地装着键头,通过压下键头进行操作。在基板和键头之间设有相互不接触地交叉、并转动的大、小联杆构件,小联杆构件的下端部能自由滑动地设在基板上所设置的滑动导引件上,上端部支承在键头下端部上所设置的带槽轴承部上,大联杆构件的下端部和上端部分别支承在基板和键头下端部所设置的带槽轴承部上,键头由橡胶弹簧、大小联杆构件能自由升降地支承。
10 Mobile electronic device keypad EP04254239.9 2004-07-15 EP1498805A2 2005-01-19 Fyke, Steven H.; Ladouceur, Norman M.

A keypad for a mobile electronic device is provided. A frame includes ridges defining a set of locations for housing actuators. A set of actuators is supported on the frame at the set of locations. In operation, the ridges assist to guide the user's fingers or thumbs to one of the actuators while the user is typing on the keypad.

11 ELECTROLUMINESCENT DISPLAY APPARATUS EP97934259 1997-07-23 EP0912972A4 2003-01-15 JOHNSON WILLIAM ROBIN; HEROPOULOS GEORGE W; TORMA TAMAS L
A panel, page or substrate (112) is provided having a tier of electroluminescent (EL) material which forms a pattern corresponding to a series of images (130a-d). When illuminated in accord with a predetermined sequence, the series of images provide an illusion of movement. A sound generator (134) is provided to produce a predetermined audible response associated with the predetermined sequence. One or more flexible membrane switches (164) are coupled to simultaneously activate both the EL material and the sound generator when depressed. The panel may be embodied as a flexible web that is adapted to roll up over a spring loaded shaft.
12 Apparatus with torsionly stressed conductors routed through a hollow articulated hinge EP87104087.9 1987-03-20 EP0248156B1 1993-01-13 Kinser, Ralph W.; Layman, Judith A.; Shriver, David L.
13 ELECTROLUMINESCENT DISPLAY APPARATUS EP97934259.9 1997-07-23 EP0912972B1 2009-04-01 JOHNSON, William, Robin; HEROPOULOS, George, W.; TORMA, Tamas, L.
A panel, page or substrate (112) is provided having a tier of electroluminescent (EL) material which forms a pattern corresponding to a series of images (130a-d). When illuminated in accord with a predetermined sequence, the series of images provide an illusion of movement. A sound generator (134) is provided to produce a predetermined audible response associated with the predetermined sequence. One or more flexible membrane switches (164) are coupled to simultaneously activate both the EL material and the sound generator when depressed. The panel may be embodied as a flexible web that is adapted to roll up over a spring loaded shaft.
14 Key switch device EP01300668.9 2001-01-25 EP1139360B1 2006-03-22 Sasaki, Fimitoshi, c/o Mitsumi Electric Co., Ltd.
15 ELECTROLUMINESCENT DISPLAY APPARATUS EP97934259.0 1997-07-23 EP0912972A1 1999-05-06 JOHNSON, William, Robin; HEROPOULOS, George, W.; TORMA, Tamas, L.
A panel, page or substrate (112) is provided having a tier of electroluminescent (EL) material which forms a pattern corresponding to a series of images (130a-d). When illuminated in accord with a predetermined sequence, the series of images provide an illusion of movement. A sound generator (134) is provided to produce a predetermined audible response associated with the predetermined sequence. One or more flexible membrane switches (164) are coupled to simultaneously activate both the EL material and the sound generator when depressed. The panel may be embodied as a flexible web that is adapted to roll up over a spring loaded shaft.
16 Apparatus with torsionly stressed conductors routed through a hollow articulated hinge EP87104087.9 1987-03-20 EP0248156A3 1989-10-11 Kinser, Ralph W.; Layman, Judith A.; Shriver, David L.

Conductors (19) of a flexible printed circuit (16,18) routed through a hollow two axis articulated hinge (7) allow a calculator (1) with rotating case halves (2,3) to possess a keyboard portion (4,5) in each half of the case. The conductors (19) routed through the hollow articulated hinge (7) are generally centered about one axis of hinge rotation for approximately half the length of the axis, whereupon they transition by either a U-turn or a jog to continue as centered about the other axis of hinge rotation. The conductors (19) may be an integral part of a flexible membrane keyboard assembly having portions located in both halves of the calculator's case. Strain reliefs at the locations (28-31) where the conductors traverse the case halves, and two in the hinge, at about the center thereof, limit and apportion the torsional flexing experienced by the conductors. The torsional flexing experienced by the flexible conductors increases the number of cycles of rotation they can undergo without breaking, as compared to conventional bending. The hollow articulated hinge (7) allows one case half (2) to rotate one full revolution about the other (3), so that the calculator (1) can be opened and held in one hand. By being within the hollow hinge the conductors (19) are protected from injury.

17 Mobile electronic device keypad EP04254239.9 2004-07-15 EP1498805A3 2006-02-01 Fyke, Steven H.; Ladouceur, Norman M.

A keypad for a mobile electronic device is provided. A frame includes ridges defining a set of locations for housing actuators. A set of actuators is supported on the frame at the set of locations. In operation, the ridges assist to guide the user's fingers or thumbs to one of the actuators while the user is typing on the keypad.

18 Key switch device EP01300668.9 2001-01-25 EP1139360A3 2003-05-14 Sasaki, Fimitoshi, c/o Mitsumi Electric Co., Ltd.

A key switch device 11 having an increased strength and a decreased thickness, and produced at a decreased cost yet offering good operation feeling, comprises a key top 13 mounted on a base plate 12 via resilient means 16. The switching operation is effected upon depressing the key top 13. A small link member 14 and a large link member 13 are provided between the base plate 12 and the key top 13 so as to turn at right angles without contacting each other, with the lower ends of the small link member 14 slidably fitted into slide guides 12a and 12b formed in the base plate 12. The upper ends thereof, and the lower and the upper ends of the large link member 15 are rotatably supported by bearing portions.

19 Key switch device EP01300668.9 2001-01-25 EP1139360A2 2001-10-04 Sasaki, Fimitoshi, c/o Mitsumi Electric Co., Ltd.

A key switch device 11 having an increased strength and a decreased thickness, and produced at a decreased cost yet offering good operation feeling, comprises a key top 13 mounted on a base plate 12 via resilient means 16. The switching operation is effected upon depressing the key top 13. A small link member 14 and a large link member 13 are provided between the base plate 12 and the key top 13 so as to turn at right angles without contacting each other, with the lower ends of the small link member 14 slidably fitted into slide guides 12a and 12b formed in the base plate 12. The upper ends thereof, and the lower and the upper ends of the large link member 15 are rotatably supported by bearing portions.

20 Apparatus with torsionly stressed conductors routed through a hollow articulated hinge EP87104087.9 1987-03-20 EP0248156A2 1987-12-09 Kinser, Ralph W.; Layman, Judith A.; Shriver, David L.

Conductors (19) of a flexible printed circuit (16,18) routed through a hollow two axis articulated hinge (7) allow a calculator (1) with rotating case halves (2,3) to possess a keyboard portion (4,5) in each half of the case. The conductors (19) routed through the hollow articulated hinge (7) are generally centered about one axis of hinge rotation for approximately half the length of the axis, whereupon they transition by either a U-turn or a jog to continue as centered about the other axis of hinge rotation. The conductors (19) may be an integral part of a flexible membrane keyboard assembly having portions located in both halves of the calculator's case. Strain reliefs at the locations (28-31) where the conductors traverse the case halves, and two in the hinge, at about the center thereof, limit and apportion the torsional flexing experienced by the conductors. The torsional flexing experienced by the flexible conductors increases the number of cycles of rotation they can undergo without breaking, as compared to conventional bending. The hollow articulated hinge (7) allows one case half (2) to rotate one full revolution about the other (3), so that the calculator (1) can be opened and held in one hand. By being within the hollow hinge the conductors (19) are protected from injury.

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