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    • 1. 发明授权
    • 다방향 입력장치
    • 多方向输入设备
    • KR101149805B1
    • 2012-06-08
    • KR1020090037665
    • 2009-04-29
    • 알프스 덴키 가부시키가이샤가부시키가이샤 덴소
    • 이시카와신지구츠나구니하루야마자키야스히코
    • G05G9/047G06F3/0338H01C10/14A63F13/24
    • G05G25/02G05G9/047G05G2009/04714
    • 이를위하여본 발명에서는바깥쪽으로연장되는축부(21)를가지는조작부재(2)와, 축부(21)가삽입되는개구(11)를가지고조작부재(2)를틸팅가능하게지지하는박스체(1)와, 축부(21)의틸팅시에조작부재(2)에연동하여위치를변화시키는연동부재(5, 6)와, 연동부재(5, 6)의위치변화를검출하는검출수단(7, 8)을구비한다방향입력장치로서, 축부(21)에축선방향으로이동가능하게슬라이딩접촉부재(4)를외장하고, 축부(21)의플랜지부(22)와슬라이딩접촉부재(4)와의사이에코일스프링(3)을설치함으로써, 슬라이딩접촉부재(4)의슬라이딩접촉면(42)을개구(11)의둘레가장자리부의내벽에설치한받이면(12)에탄성접촉시켰다. 이들슬라이딩접촉면(42)과받이면(12)은축부(21)의틸팅중심(20)을구심으로하는구면형상으로형성되어있다.
    • 根据本发明为此到,操作构件(2),其具有延伸到外部的轴部21,轴21是一个盒体,其倾斜是可能的,以支持操作构件(2)具有将被插入的开口部(11)(1 )和检测装置(7检测连杆部件(位置变化5,6),和一连接件(5,6),用于在所述轴21的倾斜的时间与操作部件(2)改变相关联的位置, 滑动接触构件4安装在轴部21上以能够沿轴向移动,并且滑动接触构件4插入在轴部21的凸缘部22和滑动接触构件4之间 滑动接触部件4的滑动接触面42与设置在开口11的周边部分的内壁上的接收面12形成静电接触, 滑动接触面42和背面12形成为以轴部21的倾斜中心20为中心的球形。
    • 3. 发明公开
    • 포인팅 디바이스
    • 紧凑型指示装置
    • KR1020060117954A
    • 2006-11-17
    • KR1020067010025
    • 2004-11-10
    • 아바고 테크놀로지스 이씨비유 아이피 (싱가포르) 피티이 리미티드
    • 하레이조나흐마타페리드호엔스토르어스티
    • G06F3/0354
    • G06F3/03548G05G2009/04714
    • The pointing device[ 10] has a moveable puck[11] that moves over a surface in a puck field of motion[19]. A position detector[51-55, 59] measures the puck position in the puck field of motion[19]. In one embodiment, the puck[11] includes a user sensor[23, 24] that detects an interaction between a user and the puck[11]. A controller causes a cursor to move on a display in response to the puck[11] moving in the puck field of motion[ 19] when the user sensor[23, 24] senses the interaction between the user and the puck[ 11]. The magnitude and direction of motion of the cursor is determined by the magnitude and direction of motion of the puck[11] in the puck field of motion[ 19]. In another embodiment, a restoring mechanism is provided that returns the puck[11] to a predetermined area in the puck field of motion[ 19] when the user releases the puck[ 11].
    • 指点装置[10]具有可移动的圆盘[11],其移动在圆球运动区域的表面上[19]。 位置检测器[51-55,59]测量圆球运动场中的球位置[19]。 在一个实施例中,冰球[11]包括检测用户和冰球之间的相互作用的用户传感器[23,24]。 当用户传感器[23,24]感测到用户和冰球[11]之间的相互作用时,控制器使得光标在显示器上移动以响应于在运动球[19]中移动的圆盘[11]。 光标的大小和运动方向由圆盘[11]在圆球运动中的运动的大小和方向决定[19]。 在另一个实施例中,提供了一种恢复机构,当使用者释放冰球[11]时,恢复机构将冰球[11]返回到运动球[19]中的预定区域。
    • 6. 发明公开
    • 다방향 입력장치
    • 多方向输入装置
    • KR1020090115672A
    • 2009-11-05
    • KR1020090037665
    • 2009-04-29
    • 알프스 덴키 가부시키가이샤가부시키가이샤 덴소
    • 이시카와신지구츠나구니하루야마자키야스히코
    • G05G9/047G06F3/0338H01C10/14A63F13/24
    • G05G25/02G05G9/047G05G2009/04714
    • PURPOSE: A multi-directional input device is provided to prevent the sliding resistance from being irregular by a tilting direction of an axis. CONSTITUTION: A multi-directional input device comprises an operation member(2), a casing(1), engagement members(5,6), a detection member(7), a sliding contact assistant(4) and a coil spring(3). The operation member has a shaft unit(21) extended to an outside. The casing has an opening(11) in which the body is inserted. The engagement member changes a location. The detection member detects the location change of the engagement member. The sliding contact assistant is exteriorly installed at the outer side of an axis and is moved in the axial direction. The coil spring is installed between a flange unit(22) and the sliding contact assistant of the body.
    • 目的:提供多方向输入装置,以防止滑动阻力由轴的倾斜方向不规则。 构成:多方向输入装置包括操作构件(2),壳体(1),接合构件(5,6),检测构件(7),滑动接触辅助件(4)和螺旋弹簧(3) )。 操作构件具有延伸到外部的轴单元(21)。 壳体具有其中插入主体的开口(11)。 参与会员改变位置。 检测构件检测接合构件的位置变化。 滑动接触辅助件外部安装在轴的外侧并沿轴向移动。 螺旋弹簧安装在法兰单元(22)和主体的滑动接触辅助件之间。
    • 8. 发明公开
    • 이동가능한 물체를 다시 중심설정하기 위한 스프링 시스템
    • 用于重新移动移动物体的弹簧系统
    • KR1020060117956A
    • 2006-11-17
    • KR1020067010040
    • 2004-11-10
    • 아바고 테크놀로지스 이씨비유 아이피 (싱가포르) 피티이 리미티드
    • 하레이조나흐호엔스토르어스티
    • G06F3/0354
    • G06F3/03548G05G2009/04714G06F3/0338
    • A puck [75] is movable within a puck field of motion defined by a boundary [78]. Arcuate springs [71-74] connect the puck [75] to the boundary [78]. Each arcuate spring [71-74] has a first end connected to the puck [75] and a second end connected to the boundary [78], and applies a force to the puck [75] that maintains the puck [75] in a predetermined region of the puck field of motion when no external force is applied to the puck [75]. In an embodiment, each arcuate spring [71-74] includes a planar spiral member. The arcuate springs [71-74] can also apply a force that dampens any oscillations in the puck position when the puck [75] returns to the predetermined region in the puck field of motion. The puck [75] can also include an electrode [91, 92] that is electrically connected to a point outside the puck field of motion by one of the arcuate springs [94, 96].
    • 冰球[75]可以在由边界定义的圆球运动范围内移动[78]。 拱形弹簧[71-74]将冰球[75]连接到边界[78]。 每个弧形弹簧[71-74]具有连接到圆盘[75]的第一端和连接到边界[78]的第二端,并且将保持冰球[75]的球[75]施加在一个 当没有外力施加到圆盘[75]时,圆球运动区域的预定区域。 在一个实施例中,每个弧形弹簧[71-74]包括平面螺旋构件。 拱形弹簧[71-74]也可以施加一个力,当压盖[75]返回到运动球的预定区域时,该力可以抑制球位置中的任何振荡。 圆盘[75]还可以包括通过其中一个弓形弹簧[94,96]电连接到圆盘运动场外的点的电极[91,92]。