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    • 71. 发明授权
    • Wireless communication system, apparatus and method thereof
    • 无线通信系统及其装置及方法
    • US08204144B2
    • 2012-06-19
    • US12483370
    • 2009-06-12
    • May TakadaSatoshi TamakiShigeyuki Ejiri
    • May TakadaSatoshi TamakiShigeyuki Ejiri
    • H04B7/02H04L1/02
    • H04B7/0413
    • Provided is a wireless communication system, comprising: a wireless communication apparatus which performs adaptive modulation for changing a modulation method and an encoding rate of a data channel, and transmits/receives a signal via MIMO multiplexing. The control information comprises first control information to be used for a MIMO stream separation process and second control information not to be used for the MIMO stream separation process. The selections in the second control information are changed corresponding to selected first control information. The wireless communication apparatus determines the first control information at an update timing of the first control information by referring to the first control information table, determine selections of the second control information based on the determined first control information, and select one of the selections of the second control information among the determined selections of the second control information at an update timing of the second control information.
    • 提供了一种无线通信系统,包括:无线通信装置,其执行用于改变数据信道的调制方式和编码率的自适应调制,并且经由MIMO复用来发送/接收信号。 控制信息包括要用于MIMO流分离处理的第一控制信息和不用于MIMO流分离处理的第二控制信息。 根据所选择的第一控制信息改变第二控制信息中的选择。 无线通信装置参照第一控制信息表,在第一控制信息的更新定时确定第一控制信息,基于确定的第一控制信息确定第二控制信息的选择,并选择 在所述第二控制信息的更新定时时,确定的所述第二控制信息的选择中的第二控制信息。
    • 72. 发明授权
    • Compound eye camera module and method of producing the same
    • 复眼机相机模组及其制作方法
    • US08194169B2
    • 2012-06-05
    • US12159288
    • 2007-01-12
    • Satoshi TamakiKatsumi ImadaTatsutoshi Suenaga
    • Satoshi TamakiKatsumi ImadaTatsutoshi Suenaga
    • G02B13/16G02B21/00H04N5/225H01L27/00
    • H04N5/2254H04N5/2257H04N5/3415
    • An optical filter array (2) having a plurality of optical filters (2a to 2d) and a light shielding block (6) having light shielding walls (61a to 61d) forming a plurality of openings (6a to 6d) independent from each other are placed between a lens module (7) integrally having a plurality of lenses (1a to 1d) arranged on a single plane and a plurality of imaging regions (4a to 4d). The light shielding block is provided with first sliding surfaces (66 to 69). The lens module is provided with second sliding surfaces (56 to 59) sliding on the first sliding surfaces so that the lens module can rotate with respect to the light shielding block with an axis normal to the plurality of imaging regions as a rotation center axis. Thus, a small, thin, and low-cost compound eye camera module can be realized.
    • 具有形成多个彼此独立的开口(6a至6d)的遮光壁(61a至61d)的具有多个滤光器(2a至2d)的光学滤光器阵列(2)和遮光块(6) 放置在整体上具有布置在单个平面上的多个透镜(1a至1d)的多个透镜模块(7)和多个成像区域(4a至4d)之间。 遮光块设置有第一滑动面(66〜69)。 透镜模块设置有在第一滑动表面上滑动的第二滑动表面(56至59),使得透镜模块可以以垂直于多个成像区域的轴线作为旋转中心轴线相对于遮光块旋转。 因此,可以实现小型,薄型和低成本的复眼机相机模块。
    • 73. 发明授权
    • Image pickup apparatus and semiconductor circuit element
    • 摄像装置和半导体电路元件
    • US08107000B2
    • 2012-01-31
    • US12300754
    • 2007-05-10
    • Tomokuni IijimaKatsumi ImadaSatoshi Tamaki
    • Tomokuni IijimaKatsumi ImadaSatoshi Tamaki
    • G03B13/36
    • G03B19/07H01L2224/45144H01L2224/48091H01L2924/16195H04N5/2254H04N5/3415H04N5/3454H04N9/045H04N9/09H01L2924/00014H01L2924/00
    • The present invention includes: a plurality of lens portions, each having at least one lens; a plurality of image pickup regions which are provided to correspond to the lens portions, respectively, and each of which has a light receiving surface substantially perpendicular to a direction of an optical axis of the corresponding lens portion; an image pickup signal input portion 133 which receives image pickup signals generated by the image pickup regions; a transfer range determining portion 144 which determines a transfer range of the image pickup signals transferred from the image pickup regions to the image pickup signal input portion 133; an image pickup region driving portion 132 which drives the image pickup regions such that the image pickup signals corresponding to the transfer range determined by the transfer range determining portion 144 are transferred to the image pickup signal input portion 133; and a parallax calculating portion 142 which calculates a parallax based on the image pickup signals transferred to the image pickup signal input portion 133, and the transfer range determining portion 144 switches between a first operating mode in which the image pickup signals generated by at least two image pickup regions of the plurality of image pickup regions are determined as the transfer range and a second operating mode in which the image pickup signals different from those of the first operating mode are determined as the transfer range.
    • 本发明包括:多个透镜部分,每个透镜部分具有至少一个透镜; 多个图像拾取区域分别设置成对应于透镜部分,并且每个具有基本上垂直于相应透镜部分的光轴方向的光接收表面; 摄像信号输入部133,其接收由摄像区域生成的摄像信号; 确定从摄像区域传送到摄像信号输入部分133的摄像信号的传送范围的传送范围确定部分144; 驱动摄像区域的图像拾取区域驱动部分132,使得与由传送范围确定部分144确定的传送范围相对应的摄像信号被传送到摄像信号输入部分133; 以及基于传送到摄像信号输入部133的摄像信号来计算视差的视差计算部142,并且传送范围确定部144在第一操作模式之间切换,其中由至少两个 确定多个图像拾取区域的图像拾取区域作为传送范围,并且确定与第一操作模式不同的图像拾取信号的第二操作模式作为传送范围。
    • 77. 发明申请
    • COMPOUND EYE CAMERA MODULE AND METHOD OF PRODUCING THE SAME
    • 化合物眼睛相机模块及其制造方法
    • US20100225755A1
    • 2010-09-09
    • US12159288
    • 2007-01-12
    • Satoshi TamakiKatsumi ImadaTatsutoshi Suenaga
    • Satoshi TamakiKatsumi ImadaTatsutoshi Suenaga
    • H04N5/225
    • H04N5/2254H04N5/2257H04N5/3415
    • An optical filter array (2) having a plurality of optical filters (2a to 2d) and a light shielding block (6) having light shielding walls (61a to 61d) forming a plurality of openings (6a to 6d) independent from each other are placed between a lens module (7) integrally having a plurality of lenses (1a to 1d) arranged on a single plane and a plurality of imaging regions (4a to 4d). The light shielding block is provided with first sliding surfaces (66 to 69). The lens module is provided with second sliding surfaces (56 to 59) sliding on the first sliding surfaces so that the lens module can rotate with respect to the light shielding block with an axis normal to the plurality of imaging regions as a rotation center axis. Thus, a small, thin, and low-cost compound eye camera module can be realized.
    • 具有形成多个彼此独立的开口(6a至6d)的遮光壁(61a至61d)的具有多个滤光器(2a至2d)的光学滤光器阵列(2)和遮光块(6) 放置在整体上具有布置在单个平面上的多个透镜(1a至1d)的多个透镜模块(7)和多个成像区域(4a至4d)之间。 遮光块设置有第一滑动面(66〜69)。 透镜模块设置有在第一滑动表面上滑动的第二滑动表面(56至59),使得透镜模块可以以垂直于多个成像区域的轴线作为旋转中心轴线相对于遮光块旋转。 因此,可以实现小型,薄型和低成本的复眼机相机模块。
    • 79. 发明申请
    • Camera module
    • 相机模块
    • US20070110424A1
    • 2007-05-17
    • US10580926
    • 2005-04-13
    • Tomokuni IijimaSatoshi TamakiTakashi HaruguchiMasaki Tagome
    • Tomokuni IijimaSatoshi TamakiTakashi HaruguchiMasaki Tagome
    • G03B3/10
    • H04N5/2257G02B7/026G02B7/04G02B7/08
    • The present invention provides a camera module including: a lens portion (10) including at least one lens (11); an imaging element (4) having a light-receiving surface that is substantially perpendicular to an optical axis direction of the lens (11); a fixed portion (30) provided on an outer peripheral side of the lens portion (10); a first elastic body (41a) that is provided on a side opposite to the imaging element (4) side with respect to the lens (11) and couples the lens portion (10) and the fixed portion (30); and a second elastic body (41b) that is provided on the imaging element (4) side with respect to the lens (11) and couples the lens portion (10) and the fixed portion (30). The first elastic body (41a) and the second elastic body (41b) have the same shape. The first elastic body (41a) and the second elastic body (41b) are arranged so as to oppose each other while sharing a common central axis. The second elastic body (41b) is arranged so that so that the shape of the second elastic body (41b) is different from a shape of the first elastic body (41a) projected in the optical axis direction of the lens (11).
    • 本发明提供了一种相机模块,包括:透镜部分(10),包括至少一个透镜(11); 具有基本上垂直于所述透镜(11)的光轴方向的光接收表面的成像元件(4); 设置在所述透镜部(10)的外周侧的固定部(30) 第一弹性体(41a),其相对于所述透镜(11)设置在与所述摄像元件(4)侧相反的一侧,并且联接所述透镜部分(10)和所述固定部分(30); 以及相对于所述透镜(11)设置在所述摄像元件(4)侧并耦合所述透镜部(10)和所述固定部(30)的第二弹性体(41a)。 第一弹性体(41a)和第二弹性体(41a)具有相同的形状。 第一弹性体(41a)和第二弹性体(41a)布置成在共享共同的中心轴线的同时彼此相对。 第二弹性体(41a)被布置成使得第二弹性体(41b)的形状与在透镜(11)的光轴方向上突出的第一弹性体(41a)的形状不同 )。
    • 80. 发明授权
    • Motor generator
    • 电机发电机
    • US06909216B2
    • 2005-06-21
    • US10487943
    • 2003-05-26
    • Naoyuki KadoyaYasuhiro KondoSatoshi Tamaki
    • Naoyuki KadoyaYasuhiro KondoSatoshi Tamaki
    • B60K6/26B60K6/48H02K21/16H02K21/48H02K1/00
    • B60K6/26B60K6/48B60L11/12B60L11/1868B60L2220/54H02K21/16H02K21/48Y02T10/6221Y02T10/641Y02T10/7005Y02T10/7066Y02T10/7077
    • A permanent magnet embedded type concentrated winding motor generator, wherein of the mechanically and electrically independent first and second winding groups (4, 5), the plurality of first teeth (2) wound with the first winding groups (4) are divided into three groups (I, II, III) for example, and the winding directions of the windings of adjacent first teeth (2) within the same group (I, II, III) are opposite. Furthermore, one second tooth (3) wound with a second winding group (5) with a different winding specification from the first winding groups (4) is provided between each of the groups (I, II, III). Accordingly, the relative sizes of the generated voltages in the first winding groups (4) and the second winding groups (5) differ each other, allowing the realization of a compact and low cost construction capable of charging two different electric potentials from a single unit, which also enables a reduction in distortion of the waveform of the counter electromotive force, a reduction in iron loss, and an improvement in the efficiency of the motor, and enables the efficient charging of power sources with two different electric potentials.
    • 一种永磁体嵌入式集中绕组电动发电机,其中,在机械和电气独立的第一和第二绕组组(4,5)中,缠绕有第一绕组组(4)的多个第一齿(2)被分成三组 (I,II,III),并且相同组(I,II,III)中的相邻第一齿(2)的绕组的绕组方向相反。 此外,在每个组(I,II,III)之间设置有与第一绕组组(4)不同绕组规格的第二绕组组(5)缠绕的一个第二齿(3)。 因此,第一绕组组(4)和第二绕组组(5)中产生的电压的相对尺寸彼此不同,允许实现能够从单个单元充电两个不同电位的紧凑且低成本的结构 ,这使得能够减少反电动势的波形的失真,铁损的降低和电动机的效率的提高,并且能够对具有两个不同电位的电源进行高效充电。