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    • 34. 发明授权
    • Solid-state image pickup device, image pickup apparatus, and driving method
    • 固态图像拾取装置,图像拾取装置和驱动方法
    • US09024242B2
    • 2015-05-05
    • US13697785
    • 2011-04-15
    • Satoshi Masuda
    • Satoshi Masuda
    • H01L27/00H04N5/372H04N5/374H04N5/3745H04N5/378
    • H04N5/37206H04N5/3743H04N5/37457H04N5/378
    • A solid-state image pickup device which is configured not to require transfer of signal charges between pixels performs TDI. An output control section 5 sequentially assigns a pixel signal output processing period to each pixel array group 10 in the order of the vertical direction at an interval of one horizontal processing period H obtained by dividing one frame period T into three. The one frame period T is a period when each pixel array 100 is moved in the vertical direction. An adder 50 sums up a pixel signal held in a signal holding portion 41_X, and a pixel signals held in a signal holding portion 41_R, 41_G, 41_B corresponding to the pixel signal under the control of the output control section 5, and outputs the summation result to an A/D converter 60.
    • 被配置为不需要在像素之间传送信号电荷的固态图像拾取装置执行TDI。 输出控制部5以通过将一个帧周期T除以三个而获得的一个水平处理周期H的间隔,以垂直方向的顺序,顺序地向像素阵列组10分配像素信号输出处理周期。 一帧周期T是每个像素阵列100沿垂直方向移动的周期。 加法器50将保持在信号保持部分41_X中的像素信号和保持在与输出控制部分5的控制下的像素信号相对应的信号保持部分41_R,41_G,41_B中的像素信号相加,并输出求和 导致A / D转换器60。
    • 36. 发明申请
    • SOLID-STATE IMAGE PICKUP DEVICE, IMAGE PICKUP APPARATUS, AND DRIVING METHOD
    • 固态图像拾取装置,图像拾取装置和驱动方法
    • US20130062505A1
    • 2013-03-14
    • US13697785
    • 2011-04-15
    • Satoshi Masuda
    • Satoshi Masuda
    • H01L27/146
    • H04N5/37206H04N5/3743H04N5/37457H04N5/378
    • A solid-state image pickup device which is configured not to require transfer of signal charges between pixels performs TDI. An output control section 5 sequentially assigns a pixel signal output processing period to each pixel array group 10 in the order of the vertical direction at an interval of one horizontal processing period H obtained by dividing one frame period T into three. The one frame period T is a period when each pixel array 100 is moved in the vertical direction. An adder 50 sums up a pixel signal held in a signal holding portion 41_X, and a pixel signals held in a signal holding portion 41_R, 41_G, 41_B corresponding to the pixel signal under the control of the output control section 5, and outputs the summation result to an A/D converter 60.
    • 被配置为不需要在像素之间传送信号电荷的固态图像拾取装置执行TDI。 输出控制部5以通过将一个帧周期T除以三个而获得的一个水平处理周期H的间隔,以垂直方向的顺序,顺序地向像素阵列组10分配像素信号输出处理周期。 一帧周期T是每个像素阵列100沿垂直方向移动的周期。 加法器50将保持在信号保持部分41_X中的像素信号和保持在与输出控制部分5的控制下的像素信号相对应的信号保持部分41_R,41_G,41_B中的像素信号相加,并输出求和 导致A / D转换器60。
    • 38. 发明授权
    • Fuel injection amount control apparatus of internal combustion engine
    • 内燃机燃油喷射量控制装置
    • US07885755B2
    • 2011-02-08
    • US12438007
    • 2007-08-28
    • Daisuke KobayashiSatoshi Masuda
    • Daisuke KobayashiSatoshi Masuda
    • B60T7/12G05D1/00G06F7/00G06F17/00
    • F02D41/065F02D41/40F02D2200/0414F02D2400/08Y02T10/44
    • A fuel injection amount control apparatus controlling an amount of fuel supplied to an internal combustion engine is disclosed. An intake passage extends from the engine, and the intake passage is branched into a plurality of branch passages in an upstream section. The apparatus includes a plurality of intake air temperature sensors and an ECU. Each of the intake air temperature sensors is provided in one of the intake passages and detects an intake air temperature in the corresponding intake passage. The ECU selects an intake air temperature that most directly expresses the engine state or the environment from the intake air temperatures detected by the intake air temperature sensors. The ECU controls the amount of the fuel supplied to the engine by using the selected intake air temperature.
    • 公开了一种控制供给内燃机的燃料量的燃料喷射量控制装置。 进气通道从发动机延伸,并且进气通道在上游段分支成多个分支通道。 该装置包括多个进气温度传感器和ECU。 每个进气温度传感器设置在一个进气通道中,并检测相应的进气通道中的进气温度。 ECU根据由进气温度传感器检测到的进气温度来选择最直接表示发动机状态或环​​境的进气温度。 ECU通过使用所选择的进气温度来控制供应给发动机的燃料量。
    • 40. 发明申请
    • THRUST ROLLER BEARING
    • 推力滚子轴承
    • US20090123105A1
    • 2009-05-14
    • US11993900
    • 2006-06-22
    • Satoshi MasudaHiromichi Takemura
    • Satoshi MasudaHiromichi Takemura
    • F16C19/30
    • F16C33/64F16C19/30F16C33/543F16C33/547
    • A thrust roller bearing 10 is provided in which one half of total gap which results from adding up an outer diameter side in-bearing gap 22 and an inner diameter side in-bearing gap 23 in diametrical direction is made larger than the amount of eccentricity between a member 51 which supports an outer ring 11 and a member 53 which supports an inner ring 14. When inside diameter at distal end of an outer locking portion 19 along a distal edge portion of an outer flange 13 is φD1, outside diameter of a cage 18 is φD2, outside diameter at a distal end of an inner locking portion 20 along a distal edge portion of an inner flange 16 is φD3, inside diameter of the cage 18 is φD4 and thickness of the cage 18 is t, A, B are defined as A=(D2−D1)/t and B=(D3−D4)/t, 0.1≦A, B≦5 is satisfied.
    • 提供了一种推力滚子轴承10,其中通过将外径侧承载间隙22和内径侧承载间隙23沿直径方向相加而产生的总间隙的一半被制成大于在径向方向上的偏心量 支撑外圈11的构件51和支撑内环14的构件53.当沿着外凸缘13的远端边缘部分的外锁定部分19的远端的内径为phiD1时,保持架的外径 18是phiD2,沿着内凸缘16的前端部的内锁定部20的前端的外径为phiD3,保持器18的内径为phiD4,保持架18的厚度为t,A,B为 定义为A =(D2-D1)/ t和B =(D3-D4)/ t,0.1 <= A,B <= 5。