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    • 1. 发明申请
    • OPTO-ELECTRONIC INPUT DEVICE, METHOD OF MANUFACTURING SUCH A DEVICE AND METHOD OF MEASURING THE MOVEMENT OF AN OBJECT BY MEANS OF SUCH A DEVICE
    • 光电输入装置,制造这种装置的方法以及通过这种装置的方法测量对象的运动的方法
    • WO2004107147A3
    • 2005-03-31
    • PCT/IB2004050760
    • 2004-05-24
    • KONINKL PHILIPS ELECTRONICS NVDE SAMBER MARC AVRANKEN ROGER AWEEKAMP JOHANNUS W
    • DE SAMBER MARC AVRANKEN ROGER AWEEKAMP JOHANNUS W
    • G06F3/0354G06F3/042G06F3/00G06F3/033
    • G06F3/03547G06F3/0421
    • The invention relates to an opto-electronic input device (10), wherein the input is formed by detected movements of an object (M), which opto-electronic input device is provided with an optical module (11) comprising at least one laser (1) mounted on a carrier plate (4), which laser emits a radiation beam (S) that is guided to a plate (V) close to the object (M) and, after reflection therefrom, causes a change in the resonant cavity of the laser (1) which is representative of the movement of the object (M), and which is measured within the module (11). According to the invention, the plate (V) close to the object (M) comprises, within a projection of the object (M), a first portion (VI) through which the beam (S) can pass and which has a fixed position with respect to the carrier plate (4), and a second portion (V2) which is movable in a direction perpendicular to the carrier plate (4) and which comprises signal means which, when they are moved, provide a signal that is observable by a user of the device (10). In this way, the device (10) provides feedback to a human user through his tactile sense and preferably also through his auditory sense. The invention also comprises a method of manufacturing such a device and a method of inputting the movement of an object (M) using such a device.
    • 本发明涉及一种光电输入设备(10),其中通过物体(M)的检测到的移动来形成输入,该光电输入设备设置有包括至少一个激光器的光学模块(11) 1),其安装在载体板(4)上,该激光器发射被引导到接近物体(M)的板(V)的辐射束(S),并且在其反射之后,引起谐振腔 激光器(1),其代表物体(M)的移动,并且在模块(11)内测量。 根据本发明,靠近物体(M)的板(V)在物体(M)的突出部内包括第一部分(VI),梁(S)可以穿过该第一部分(VI)并具有固定位置 和相对于承载板(4)的第二部分(V2),以及可沿垂直于承载板(4)的方向移动的第二部分(V2),并且包括信号装置,当信号装置移动时,提供可被 设备(10)的用户。 以这种方式,设备(10)通过他的触觉来优选地通过他的听觉来向人类用户提供反馈。 本发明还包括制造这种装置的方法和使用这种装置输入物体(M)的运动的方法。
    • 2. 发明申请
    • OPTOELECTRONIC INPUT DEVICE, METHOD FOR PRODUCTION OF SUCH A DEVICE, AND METHOD FOR MEASURING THE MOVEMENT OF AN OBJECT WITH THE HELP OF SUCH A DEVICE
    • 光电输入装置,这种装置的制造方法以及用这种装置的帮助来测量物体运动的方法
    • WO2004068537A3
    • 2005-07-28
    • PCT/IB2004050045
    • 2004-01-22
    • KONINKL PHILIPS ELECTRONICS NVDE SAMBER MARC AVRANKEN ROGER AWEEKAMP JOHANNUS W
    • DE SAMBER MARC AVRANKEN ROGER AWEEKAMP JOHANNUS W
    • G01S7/481G06F3/033G06F3/042G11B7/12
    • G06F3/0421
    • The invention relates to an optoelectronic input device (10) in which the input is formed by detected movements of an object (M), the device comprising an optical module (11) comprising at least one laser (1,1') with a cavity for the generation of a measuring radiation beam (S), optical means (2) for the guidance of the radiation beam (S) to a plane (V) close to the object (M) and conversion means (C) for the conversion of measuring beam radiation reflected and modulated by the object into an electrical signal, wherein the conversion means (C) are formed by a combination of the cavity of the laser (1) and measuring means (3) for measuring a change in the cavity during operation, which radiation is caused by reflected radiation entering the cavity. The optical module (11) comprises the laser (1) mounted on a mounting board (4) with its cavity parallel thereto, and the optical means (2) comprises an optical component (2) like a mirror (2) mounted on the board (4) and aligned to the laser (1) which directs the beam (S) towards the plane (V). According to the invention the device (10) comprises a further optical component comprising a block-shaped body (5) which along side the laser (1) is directly mounted on the mounting board (4) and viewed in projection does not show overlap with the laser (1) and of which at least the upper part (5A) is optically transparent and of which the upper side forms the plane (V) close to the object (M). Such a device (10) can be relatively compact and, moreover, it can be manufactured more easily and cost-effectively. The invention also comprises a method of manufacturing such a device and a method for inputting the movement of an object (M) therewith.
    • 本发明涉及一种光电子输入装置(10),其中通过物体(M)的检测到的移动形成输入,该装置包括光学模块(11),该光学模块包括至少一个激光器(1,1'),其具有空腔 为了产生测量辐射束(S),用于将辐射束(S)引导到靠近物体(M)的平面(V)的光学装置(2)和用于转换 将由物体反射和调制的光束辐射测量成电信号,其中转换装置(C)由激光器(1)的腔和测量装置(3)的组合形成,用于在操作期间测量空腔的变化 ,这种辐射是由反射辐射进入腔体引起的。 光学模块(11)包括安装在其空腔平行于其上的安装板(4)上的激光器(1),并且光学装置(2)包括像安装在板上的反射镜(2)的光学部件(2) (4)并与激光器(1)对准,该激光器将光束(S)引向平面(V)。 根据本发明,装置(10)包括另外的光学部件,其包括块形主体(5),激光器(1)沿着激光(1)直接安装在安装板(4)上并且以投影方式观察不与 激光器(1),并且其至少上部(5A)是光学透明的,并且其上侧形成靠近物体(M)的平面(V)。 这样的装置(10)可以相对紧凑,并且还可以更容易且成本有效地制造。 本发明还包括制造这种装置的方法和用于输入物体(M)的移动的方法。
    • 3. 发明专利
    • ROTATING TRANSFORMER
    • CA1295702C
    • 1992-02-11
    • CA580706
    • 1988-10-20
    • VRANKEN ROGER A
    • VRANKEN ROGER A
    • G11B5/02G11B5/53G11B33/12H01F38/14H01F38/18H05K1/16H05K1/18H01F31/00
    • PHN 12.302 25.08.1988 " Rotating transformer." The transformer comprises a rotor core (1) in the form of a circular ferromagnetic disc which is rotatable about its axis (5), and a stator core (3) in the form of a circular, stationary ferromagnetic disc which is coaxial with the rotor core. The facing main surfaces of these discs are provided with grooves (11, 13) and ridges (15, 17) which are concentric with respect to the axis (5). In the grooves (11, 13) there are provided rotor windings (19) and stator windings (21), respectively. The stator windings (21) consist of conductor tracks on at least one main surface of a circular first portion (25) of a flexible, electrically insulating foil which is connected, via a strip-shaped intermediate portion (27) with connection conductor tracks (41), to a second circular foil portion (29) which supports further conductor tracks (37) and components (39) of an electronic circuit. The first foil portion (25) is secured on the main surface of the stator core (3) provided with grooves (13) and ridges (17) so that the ridges project through segment-shaped cut-outs (33) in the foil. The second foil portion (29) is secured on the other main surface of the stator core (3). Fig. 1.
    • 4. 发明专利
    • DE602004020055D1
    • 2009-04-30
    • DE602004020055
    • 2004-01-22
    • KONINKL PHILIPS ELECTRONICS NV
    • DE SAMBER MARC AVRANKEN ROGER AWEEKAMP JOHANNUS W
    • G06F3/033G01S7/481G06F3/042G11B7/12
    • The invention relates to an optoelectronic input device ( 10 ) in which the input is formed by detected movements of an object (M), the device comprising an optical module ( 11 ) comprising at least one laser ( 1,1 ') with a cavity for the generation of a measuring radiation beam (S), optical means ( 2 ) for the guidance of the radiation beam (S) to a plane (V) close to the object (M) and conversion means (C) for the conversion of measuring beam radiation reflected and modulated by the object into an electrical signal, wherein the conversion means (C) are formed by a combination of the cavity of the laser ( 1 ) and measuring means ( 3 ) for measuring a change in the cavity during operation, which radiation is caused by reflected radiation entering the cavity. The optical module ( 11 ) comprises the laser ( 1 ) mounted on a mounting board ( 4 ) with its cavity parallel thereto, and the optical means ( 2 ) comprises an optical component ( 2 ) like a mirror ( 2 ) mounted on the board ( 4 ) and aligned to the laser ( 1 ) which directs the beam (S) towards the plane (V). According to the invention the device ( 10 ) comprises a further optical component comprising a block-shaped body ( 5 ) which along side the laser ( 1 ) is directly mounted on the mounting board ( 4 ) and viewed in projection does not show overlap with the laser ( 1 ) and of which at least the upper part ( 5 A) is optically transparent and of which the upper side forms the plane (V) close to the object (M). Such a device ( 10 ) can be relatively compact and, moreover, it can be manufactured more easily and cost-effectively. The invention also comprises a method of manufacturing such a device and a method for inputting the movement of an object (M) therewith.