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    • 1. 发明公开
    • Electric Power Generator Device
    • 发电机装置
    • EP2546965A3
    • 2017-06-21
    • EP12170926.5
    • 2012-06-06
    • Chang, Sheng-ChuangChang, Feng-Chen
    • CHANG, Sheng-Chuang
    • H02K53/00H02K7/116
    • H02K53/00H02K7/116
    • An electric power generator device includes: a dynamic force source device for generating a dynamic force driving a rotor of a generator to perform a rotary motion via moment transmission mechanism; the generator for generating an electric power, the generator including the rotor; the moment transmission mechanism disposed between the dynamic force source device and the rotor of the generator and adapted to lengthen a moment arm between a point of application of the dynamic force and the rotor, such that the moment arm thus lengthened allows the dynamic force transmission mechanism to impose a moment amplifying effect on the rotor, thereby driving in a labor-saving manner the rotor to perform the rotary motion.
    • 一种发电装置,包括:动力源装置,用于产生驱动发电机的转子的动力,以通过力矩传递机构进行旋转运动; 所述发电机用于产生电力,所述发电机包括所述转子; 所述力矩传递机构设置在所述动力源装置与所述发电机的转子之间,并且适于在所述动力的施加点与所述转子之间延长力矩臂,使得如此加长的力矩臂允许所述动力传递机构 对转子施加力矩放大效应,从而以省力的方式驱动转子进行旋转运动。
    • 5. 发明公开
    • THREE DIMENSIONAL IMAGING UTILIZING STACKED IMAGER DEVICES AND ASSOCIATED METHODS
    • DREIDIMENSIONALE BILDGEBUNG MIT GESTAPELTEN BILDGEBEREENMENTEN UND ASSOZIIERTE VERFAHREN
    • EP2974302A1
    • 2016-01-20
    • EP14768046.6
    • 2014-03-12
    • SiOnyx, LLCHaddad, HomayoonFeng, ChenForbes, Leonard
    • HADDAD, HomayoonFENG, ChenFORBES, Leonard
    • H04N13/02H04N13/00
    • G01B11/026G06T7/571G06T2207/10148H01L27/1464H04N13/236H04N13/271
    • Stacked imager devices that can determine distance and generate three dimensional representations of a subject and associated methods are provided. In one aspect, an imaging system can include a first imager array having a first light incident surface and a second imager array having a second light incident surface. The second imager array can be coupled to the first imager array at a surface that is opposite the first light incident surface, with the second light incident surface being oriented toward the first imager array and at least substantially uniformly spaced. The system can also include a system lens positioned to direct incident light along an optical pathway onto the first light incident surface. The first imager array is operable to detect a first portion of the light passing along the optical pathway and to pass through a second portion of the light, where the second imager array is operable to detect at least a part of the second portion of light.
    • 提供了可以确定距离并产生主体的三维表示和相关联的方法的堆叠成像器设备。 在一个方面,成像系统可以包括具有第一光入射表面的第一成像器阵列和具有第二光入射表面的第二成像器阵列。 第二成像器阵列可以在与第一光入射表面相对的表面处耦合到第一成像器阵列,其中第二光入射表面朝向第一成像器阵列定向并且至少基本均匀地间隔开。 该系统还可以包括系统透镜,其定位成将沿着光学路径的入射光引导到第一光入射表面上。 第一成像器阵列可操作以检测沿着光学路径通过的光的第一部分并且穿过光的第二部分,其中第二成像器阵列可操作以检测第二部分光的至少一部分。
    • 7. 发明公开
    • Semiconductor memory device capable of compression and decompression
    • Halbleiter-Speichervorrichtung mit Komprimierungs- undEntkomprimierungskapazität
    • EP2487686A2
    • 2012-08-15
    • EP12155091.7
    • 2012-02-13
    • Chang, Sheng-ChuangChang, Feng-ChenWu, Pao-Tse
    • Chang, Sheng-ChuangChang, Feng-ChenWu, Pao-Tse
    • G11C7/10
    • G11C7/1006
    • A semiconductor memory device capable of compression and decompression is disclosed. With the semiconductor memory device having a built-in compression function, once external digital data need to be written to the semiconductor memory device, the semiconductor memory device can compress the external digital data and write the compressed external digital data to a semiconductor memory cell array, thereby enhancing data storage capacity. Furthermore, with the semiconductor memory device having a built-in decompression function, once electronic devices need to read data of the semiconductor memory device, the semiconductor memory device can decompress the data and output the decompressed data to the electronic devices.
    • 公开了一种能够进行压缩和解压缩的半导体存储器件。 利用具有内置压缩功能的半导体存储器件,一旦外部数字数据需要写入到半导体存储器件中,半导体存储器件可以压缩外部数字数据并将压缩的外部数字数据写入到半导体存储单元阵列 ,从而提高数据存储容量。 此外,半导体存储器件具有内置的解压缩功能,一旦电子设备需要读取半导体存储器件的数据,则半导体存储器件可以解压缩数据并将解压缩的数据输出到电子器件。