Integrated optical transceiver
    12.
    发明申请
    Integrated optical transceiver 审中-公开
    集成光收发器

    公开(公告)号:US20100272390A1

    公开(公告)日:2010-10-28

    申请号:US12801941

    申请日:2010-07-02

    Abstract: An optical transceiver includes at least one light source and at least one detector mounted on the same surface of the same substrate. The detector is to receive light from other than a light source on the surface. At least one of the light source and the detector is mounted on the surface. An optics block having optical elements for each light source and detectors is attached via a vertical spacer to the substrate. Electrical interconnections for the light source and the detector are accessible from the same surface of the substrate with the optics block attached thereto. One of the light source and the detector may be monolithically integrated into the substrate.

    Abstract translation: 光收发器包括至少一个光源和安装在同一衬底的相同表面上的至少一个检测器。 检测器是从表面上的光源以外的光线接收光。 光源和检测器中的至少一个安装在表面上。 具有用于每个光源和检测器的光学元件的光学块通过垂直间隔件连接到基板。 用于光源和检测器的电互连可从衬底的相同表面接近,光学块连接到其上。 光源和检测器中的一个可以单片地集成到衬底中。

    Reduced loss high efficiency diffractive and associated methods
    13.
    发明授权
    Reduced loss high efficiency diffractive and associated methods 有权
    减少损耗高效衍射和相关方法

    公开(公告)号:US07787183B2

    公开(公告)日:2010-08-31

    申请号:US12230920

    申请日:2008-09-08

    CPC classification number: G02B1/118 G02B5/1809

    Abstract: A sub-wavelength anti-reflective diffractive structure is incorporated with a base diffractive structure having a small period to form a high efficiency diffractive structure. In the high efficiency diffractive structure, the anti-reflective structure and/or the base diffractive structure are altered from their ideal solo structure to provide both the desired performance and minimize reflections.

    Abstract translation: 亚波长抗反射衍射结构与具有小周期的基底衍射结构结合以形成高效衍射结构。 在高效率衍射结构中,抗反射结构和/或基底衍射结构从其理想的独特结构改变以提供期望的性能并使反射最小化。

    Thin color camera having sub-pixel resolution
    14.
    发明授权
    Thin color camera having sub-pixel resolution 有权
    具有子像素分辨率的薄型相机

    公开(公告)号:US07773143B2

    公开(公告)日:2010-08-10

    申请号:US10949807

    申请日:2004-09-27

    CPC classification number: H04N9/045 G02F2201/52 H04N5/3415 H04N5/349

    Abstract: A color camera includes at least three sub-cameras, each sub-camera having an imaging lens, a color filter, and an array of detectors, The color camera combines images from the three sub-cameras to form a composite multi-color image, wherein the three sub-cameras include a total number of detectors N and a total number of different color sets X, wherein a first number of signals of a first color set is less than N/X and a second number of signals of a second color set is greater than N/X, signals of the second color set being output from at least two of the three sub-cameras, wherein resolution of a composite image of the second color set is greater than resolution of an individual sub-camera and a resolution of the composite image. Corresponding images of the same color set may be shifted, either sequentially or simultaneously, relative to one another.

    Abstract translation: 彩色照相机包括至少三个子摄像机,每个子摄像机具有成像透镜,滤色器和检测器阵列。彩色照相机组合来自三个子摄像机的图像以形成复合多色图像, 其中所述三个子摄像机包括总数量的检测器N和不同颜色组X的总数,其中第一颜色组的第一数量的信号小于N / X,第二数量的第二颜色的信号 所述第二颜色组的信号大于N / X,所述第二颜色集合的信号从所述三个子摄像机中的至少两个输出,其中所述第二颜色集合的合成图像的分辨率大于单个子摄像机的分辨率,并且 复合图像的分辨率。 相同颜色集合的相应图像可以相对于彼此顺序地或同时地移动。

    Method of making an optical system
    16.
    发明申请
    Method of making an optical system 有权
    制造光学系统的方法

    公开(公告)号:US20080310023A1

    公开(公告)日:2008-12-18

    申请号:US12222154

    申请日:2008-08-04

    Abstract: A diffractive optical element (DOE) corrector for use with three different wavelengths includes a first diffractive element on a first surface of a first material, the first diffractive element diffracting a first wavelength of the three wavelengths, while directing a majority of light of second and third wavelengths of the three wavelengths into a zero-th order, and a second diffractive element on a second surface of a second material, the second material being different from the first material, the second surface being different from and in an optical path of the first surface, the second diffractive element diffracting the second wavelength, while directing a majority of light of the first and third wavelengths into a zero-th order.

    Abstract translation: 用于三种不同波长的衍射光学元件(DOE)校正器包括在第一材料的第一表面上的第一衍射元件,第一衍射元件衍射三个波长的第一波长,同时引导大部分第二和第二波长的光 三个波长的第三波长成零级,以及在第二材料的第二表面上的第二衍射元件,第二材料与第一材料不同,第二表面不同于第二材料的光路 第一表面,第二衍射元件衍射第二波长,同时将第一和第三波长的大部分光引导为零级。

    Reduced loss high efficiency diffractive and associated methods
    18.
    发明授权
    Reduced loss high efficiency diffractive and associated methods 有权
    减少损耗高效衍射和相关方法

    公开(公告)号:US07422842B2

    公开(公告)日:2008-09-09

    申请号:US11391486

    申请日:2006-03-29

    CPC classification number: G02B1/118 G02B5/1809

    Abstract: A sub-wavelength anti-reflective diffractive structure is incorporated with a base diffractive structure having a small period to form a high efficiency diffractive structure. In the high efficiency diffractive structure, the anti-reflective structure and/or the base diffractive structure are altered from their ideal solo structure to provide both the desired performance and minimize reflections.

    Abstract translation: 亚波长抗反射衍射结构与具有小周期的基底衍射结构结合以形成高效衍射结构。 在高效率衍射结构中,抗反射结构和/或基底衍射结构从其理想的独特结构改变以提供期望的性能并使反射最小化。

    Optical systems including a chromatic diffractive optical element corrector and associated methods
    19.
    发明授权
    Optical systems including a chromatic diffractive optical element corrector and associated methods 有权
    光学系统包括色差光学元件校正器和相关方法

    公开(公告)号:US07408724B2

    公开(公告)日:2008-08-05

    申请号:US11647399

    申请日:2006-12-29

    Abstract: A diffractive optical element (DOE) corrector for use with three different wavelengths includes a first diffractive element on a first surface of a first material, the first diffractive element diffracting a first wavelength of the three wavelengths, while directing a majority of light of second and third wavelengths of the three wavelengths into a zero-th order, and a second diffractive element on a second surface of a second material, the second material being different from the first material, the second surface being different from and in an optical path of the first surface, the second diffractive element diffracting the second wavelength, while directing a majority of light of the first and third wavelengths into a zero-th order.

    Abstract translation: 用于三种不同波长的衍射光学元件(DOE)校正器包括在第一材料的第一表面上的第一衍射元件,第一衍射元件衍射三个波长的第一波长,同时引导大部分第二和第二波长的光 三个波长的第三波长成零级,以及在第二材料的第二表面上的第二衍射元件,第二材料与第一材料不同,第二表面不同于第二材料的光路 第一表面,第二衍射元件衍射第二波长,同时将第一和第三波长的大部分光引导为零级。

    BSI IMAGE SENSOR PACKAGE WITH VARIABLE-HEIGHT SILICON FOR EVEN RECEPTION OF DIFFERENT WAVELENGTHS
    20.
    发明申请
    BSI IMAGE SENSOR PACKAGE WITH VARIABLE-HEIGHT SILICON FOR EVEN RECEPTION OF DIFFERENT WAVELENGTHS 有权
    BSI图像传感器包含可变高度硅,以便接收不同波长

    公开(公告)号:US20120199926A1

    公开(公告)日:2012-08-09

    申请号:US13114243

    申请日:2011-05-24

    Abstract: A microelectronic image sensor assembly for backside illumination and method of making same are provided. The assembly includes a microelectronic element having contacts exposed at a front face and light sensing elements arranged to receive light of different wavelengths through a rear face. A semiconductor region has a first thickness between the first light sensing element and the rear face and a second thickness between the second light sensing element and the rear face such that the first and second light sensing elements receive light of substantially the same intensity. A dielectric region is provided at least substantially filling a space of the semiconductor region adjacent at least one of the light sensing elements. The dielectric region may include at least one light guide.

    Abstract translation: 提供了一种用于背面照明的微电子图像传感器组件及其制造方法。 该组件包括具有在正面暴露的触点的微电子元件和被布置成通过后表面接收不同波长的光的光感测元件。 半导体区域在第一光感测元件和后表面之间具有第一厚度,并且在第二光感测元件和后表面之间具有第二厚度,使得第一和第二光感测元件接收基本上相同强度的光。 提供至少基本上填充与至少一个光感测元件相邻的半导体区域的空间的电介质区域。 电介质区域可以包括至少一个光导。

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