Integrated module having multiple light emitters or sensors for televisions and other appliances
    31.
    发明授权
    Integrated module having multiple light emitters or sensors for televisions and other appliances 有权
    集成模块具有多个用于电视机和其他设备的发光器或传感器

    公开(公告)号:US09285265B2

    公开(公告)日:2016-03-15

    申请号:US14200568

    申请日:2014-03-07

    CPC classification number: G01J1/0204 G01J1/0271 G01J1/0411 G01J1/4204

    Abstract: Compact optoelectronic modules are described and can be used in various electronic or other appliances, such as television units. For example, a light emitting device, a first sensor or sensor module such as an infra-red sensor or an infra-red receiver module, and a second sensor or sensor module such as an ambient light sensor or ambient light sensor module, can be integrated into a single compact optoelectronic module. Multiple such optoelectronic modules can be fabricated in a wafer-level process.

    Abstract translation: 紧凑型光电模块被描述并且可以用于各种电子设备或其他设备,例如电视机。 例如,发光装置,第一传感器或诸如红外传感器或红外接收器模块的传感器模块以及诸如环境光传感器或环境光传感器模块的第二传感器或传感器模块可以是 集成到单个紧凑型光电模块中。 可以在晶片级工艺中制造多个这样的光电模块。

    OPTICAL ENCODER SYSTEM INCLUDING A STRUCTURED CODE WHEEL
    32.
    发明申请
    OPTICAL ENCODER SYSTEM INCLUDING A STRUCTURED CODE WHEEL 有权
    光学编码器系统,包括结构化代码轮

    公开(公告)号:US20150108353A1

    公开(公告)日:2015-04-23

    申请号:US14518197

    申请日:2014-10-20

    CPC classification number: G01D5/34707 G01D5/34715 G01D5/3473

    Abstract: An optical encoder system includes a module that has a light emitting element and a light detecting element, wherein the light detecting element is operable to detect light at a wavelength emitted by the light emitting element. The optical encoder system also includes a code wheel that has facets on its surface. Each facet has a surface that provides diffuse reflectance, with adjacent facets being inclined by different amounts. The code wheel can be disposed with respect to the module so that at least some light emitted by the light emitting element is reflected by the facets back toward the module, wherein an amount of reflected light detected by the light detecting element in the module depends at least in part on the rotational position of the code wheel.

    Abstract translation: 光学编码器系统包括具有发光元件和光检测元件的模块,其中光检测元件可操作以检测由发光元件发射的波长的光。 光学编码器系统还包括在其表面上具有刻面的编码轮。 每个小面具有提供漫反射率的表面,其中相邻小面倾斜不同的量。 代码轮可以相对于模块设置,使得由发光元件发射的至少一些光被小面反射回模块,其中由模块中的光检测元件检测到的反射光的量取决于 至少部分地在码轮的旋转位置。

    INTEGRATED MODULE HAVING MULTIPLE LIGHT EMITTERS OR SENSORS FOR TELEVISIONS AND OTHER APPLIANCES
    33.
    发明申请
    INTEGRATED MODULE HAVING MULTIPLE LIGHT EMITTERS OR SENSORS FOR TELEVISIONS AND OTHER APPLIANCES 有权
    具有多个发光元件或电视和其他器具的传感器的集成模块

    公开(公告)号:US20140263973A1

    公开(公告)日:2014-09-18

    申请号:US14200568

    申请日:2014-03-07

    CPC classification number: G01J1/0204 G01J1/0271 G01J1/0411 G01J1/4204

    Abstract: Compact optoelectronic modules are described and can be used in various electronic or other appliances, such as television units. For example, a light emitting device, a first sensor or sensor module such as an infra-red sensor or an infra-red receiver module, and a second sensor or sensor module such as an ambient light sensor or ambient light sensor module, can be integrated into a single compact optoelectronic module. Multiple such optoelectronic modules can be fabricated in a wafer-level process.

    Abstract translation: 紧凑型光电模块被描述并且可以用于各种电子设备或其他设备,例如电视机。 例如,发光装置,第一传感器或诸如红外传感器或红外接收器模块的传感器模块以及诸如环境光传感器或环境光传感器模块的第二传感器或传感器模块可以是 集成到单个紧凑型光电模块中。 可以在晶片级工艺中制造多个这样的光电模块。

    Method for manufacturing waveguide structures on wafer-level and corresponding waveguide structures

    公开(公告)号:US10215909B2

    公开(公告)日:2019-02-26

    申请号:US15992273

    申请日:2018-05-30

    Abstract: The waveguide structure can be manufactured on wafer-scale and comprises a holding structure and a first and a second waveguides each having a core and two end faces. The holding structure comprises a separation structure being arranged between the first and the second waveguide and provides an optical separation between the first and the second waveguide in a region between the end faces of the first and second waveguides. A method for manufacturing such a waveguide structure with at least one waveguide comprises shaping replication material by means of tool structures to obtain the end faces, hardening the replication material and removing the tool structures from a waveguide structures wafer comprising a plurality of so-obtained waveguides.

    Method for manufacturing waveguide structures on wafer-level and corresponding waveguide structures

    公开(公告)号:US10007052B2

    公开(公告)日:2018-06-26

    申请号:US15014244

    申请日:2016-02-03

    CPC classification number: G02B6/0065 B29D11/00663

    Abstract: The waveguide structure can be manufactured on wafer-scale and comprises a holding structure and a first and a second waveguides each having a core and two end faces. The holding structure comprises a separation structure being arranged between the first and the second waveguide and provides an optical separation between the first and the second waveguide in a region between the end faces of the first and second waveguides. A method for manufacturing such a waveguide structure with at least one waveguide comprises shaping replication material by means of tool structures to obtain the end faces, hardening the replication material and removing the tool structures from a waveguide structures wafer comprising a plurality of so-obtained waveguides.

    COMPACT OPTOELECTRONIC MODULES
    40.
    发明申请

    公开(公告)号:US20180026020A1

    公开(公告)日:2018-01-25

    申请号:US15713946

    申请日:2017-09-25

    Inventor: Jens Geiger

    Abstract: Compact optoelectronic modules are described that, in some implementations, can have reduced heights, while at the same time having very little optical crosstalk or detection of stray light. An optoelectronic module having optical channel can include a support on which is mounted an optoelectronic device arranged to emit or detect light at a particular one or more wavelengths. The module has a cover including an optically transmissive portion over the optoelectronic device. The optically transmissive portion is surrounded laterally by sections of the cover that are substantially non-transparent to the one or more wavelengths. A passive optical element is present on a surface of the optically transmissive portion. A spacer separates the support from the cover. The cover can be relatively thin so that the overall height of the module is relatively small.

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