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    • 5. 发明授权
    • Multi-light-source illumination system for optical pointing devices
    • 用于光学指向设备的多光源照明系统
    • US07439954B2
    • 2008-10-21
    • US10826424
    • 2004-04-15
    • Olivier TheytazOlivier MathisBaptiste MerminodPascal Eichenberger
    • Olivier TheytazOlivier MathisBaptiste MerminodPascal Eichenberger
    • G06F3/033
    • G06F3/0317G06F3/03543
    • In one embodiment of an optical pointing device, an illumination system includes a plurality of light sources. Each light source is characterized by a unique set of illumination characteristics. Illumination characteristics include impinging angle, light wavelength, light homogeneity, and the like. A sensor receives electromagnetic energy originating at the light source to scan an imaged area. The sensor measures performance indexes associated with the light sources, which depend on the illumination characteristics. The sensor includes an imaging module, which may include passive filters, and control logic, which includes at least a DSP module and a light sensor selection module. Another embodiment includes additional signaling light sources that do not interfere with the illumination system and are for signaling to the user. A method to select the most adequate light source for any given surface is based on measured performance indices.
    • 在光学指向装置的一个实施例中,照明系统包括多个光源。 每个光源的特征在于一组独特的照明特性。 照明特性包括入射角,光波长,光均匀性等。 传感器接收源自光源的电磁能量以扫描成像区域。 传感器测量与光源相关的性能指标,这取决于照明特性。 该传感器包括可包括无源滤波器的成像模块和至少包括DSP模块和光传感器选择模块的控制逻辑。 另一个实施例包括不干扰照明系统并且用于向用户发信号的附加信令光源。 选择任何给定表面最合适的光源的方法是基于测量的性能指标。
    • 8. 发明申请
    • Multi-light-source illumination system for optical pointing devices
    • 用于光学指向设备的多光源照明系统
    • US20050231482A1
    • 2005-10-20
    • US10826424
    • 2004-04-15
    • Olivier TheytazOlivier MathisBaptiste MerminodPascal Eichenberger
    • Olivier TheytazOlivier MathisBaptiste MerminodPascal Eichenberger
    • G06F3/00G06F3/03G06F3/033G09G5/08
    • G06F3/0317G06F3/03543
    • In one embodiment of an optical pointing device, an illumination system includes a plurality of light sources. Each light source is characterized by a unique set of illumination characteristics. Illumination characteristics include impinging angle, light wavelength, light homogeneity, and the like. A sensor receives electromagnetic energy originating at the light source to scan an imaged area. The sensor measures performance indexes associated with the light sources, which depend on the illumination characteristics. The sensor includes an imaging module, which may include passive filters, and control logic, which includes at least a DSP module and a light sensor selection module. Another embodiment includes additional signaling light sources that do not interfere with the illumination system and are for signaling to the user. A method to select the most adequate light source for any given surface is based on measured performance indices.
    • 在光学指向装置的一个实施例中,照明系统包括多个光源。 每个光源的特征在于一组独特的照明特性。 照明特性包括入射角,光波长,光均匀性等。 传感器接收源自光源的电磁能量以扫描成像区域。 传感器测量与光源相关的性能指标,这取决于照明特性。 该传感器包括可包括无源滤波器的成像模块和至少包括DSP模块和光传感器选择模块的控制逻辑。 另一个实施例包括不干扰照明系统并且用于向用户发信号的附加信令光源。 选择任何给定表面最合适的光源的方法是基于测量的性能指标。
    • 10. 发明申请
    • MAGNETIC ROTARY SYSTEM FOR INPUT DEVICES
    • 用于输入设备的磁旋转系统
    • US20110025311A1
    • 2011-02-03
    • US12511595
    • 2009-07-29
    • Nicolas ChauvinOlivier Theytaz
    • Nicolas ChauvinOlivier Theytaz
    • G01B7/30H05K13/04
    • G01B7/30B23P19/04G01D5/145G06F1/3215G06F3/0362Y10T29/49826Y10T29/5313
    • Embodiments of the present invention include a roller for an input device, where the roller's absolute angular position is measured by a magnetic encoder. A magnet is attached to the roller, possibly inside the roller so as to make the embodiment more compact. In one embodiment, the magnetization is simple and low cost. Further, tight tolerances are not required, and such a system is easy to manufacture. In one embodiment, the sensor is covered by any non-ferromagnetic material, to protect it from foreign particles, and to reduce ESD. In one embodiment, the wheel consumes much less power than conventional wheels in input devices. In one embodiment, the tilting of the wheel is measured using the same sensor that is used for measuring the rotation of the wheel. In one embodiment, a ratcheting feel provided to the user when rotating the wheel is synchronized with the rotation signal.
    • 本发明的实施例包括用于输入装置的辊,其中辊的绝对角位置由磁编码器测量。 磁体可能连接到辊子上,可能在辊内部,以使得该实施例更紧凑。 在一个实施例中,磁化简单且成本低。 此外,不需要严格的公差,并且这种系统易于制造。 在一个实施例中,传感器被任何非铁磁材料覆盖,以保护其免受外来颗粒的影响,并降低ESD。 在一个实施例中,与输入装置中的传统轮相比,轮的功率要少得多。 在一个实施例中,使用用于测量车轮旋转的相同传感器来测量车轮的倾斜度。 在一个实施例中,当旋转车轮时提供给使用者的棘轮感觉与旋转信号同步。