会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Distance measuring apparatus, distance measuring method, and program
    • 距离测量装置,距离测量方法和程序
    • US08768010B2
    • 2014-07-01
    • US13496137
    • 2010-09-08
    • Keisuke KorekadoTomoyuki Kamiyama
    • Keisuke KorekadoTomoyuki Kamiyama
    • G06K9/00
    • G01S17/89G01S7/4915G02B7/32H04N5/2256
    • Disclosed are a distance measuring apparatus which can measure the distance to an object with high accuracy, a distance measuring method, and a program. The distance measuring apparatus is provided with: a light source which emits light; an image pickup unit, which picks up an image of light which has been emitted from the light source and reflected by means of the object; an image distance data converting unit, which converts image data obtained by the image pickup performed by the image pickup unit into image distance data which indicates the distance to the object; an image pickup condition setting unit, which sets first image pickup conditions on the basis of the image distance data; and an image pickup control unit, which controls the light source and the image pickup unit and have an image of the object picked up under the first image pickup conditions.
    • 公开了一种可以高精度地测量与物体的距离,距离测量方法和程序的距离测量装置。 距离测量装置设置有:发光的光源; 拾取单元,其拾取已经从光源发射并通过对象反射的光的图像; 图像距离数据转换单元,其将由图像拾取单元执行的图像拾取获得的图像数据转换为指示到对象的距离的图像距离数据; 图像拾取条件设置单元,其基于图像距离数据设置第一图像拾取条件; 以及图像拾取控制单元,其控制光源和图像拾取单元,并且具有在第一图像拾取条件下拾取的对象的图像。
    • 3. 发明申请
    • DISTANCE MEASURING APPARATUS, DISTANCE MEASURING METHOD, AND PROGRAM
    • 距离测量装置,距离测量方法和程序
    • US20120177252A1
    • 2012-07-12
    • US13496137
    • 2010-09-08
    • Keisuke KorekadoTomoyuki Kamiyama
    • Keisuke KorekadoTomoyuki Kamiyama
    • H04N7/18
    • G01S17/89G01S7/4915G02B7/32H04N5/2256
    • Disclosed are a distance measuring apparatus which can measure the distance to an object with high accuracy, a distance measuring method, and a program. The distance measuring apparatus is provided with: a light source which emits light; an image pickup unit, which picks up an image of light which has been emitted from the light source and reflected by means of the object; an image distance data converting unit, which converts image data obtained by the image pickup performed by the image pickup unit into image distance data which indicates the distance to the object; an image pickup condition setting unit, which sets first image pickup conditions on the basis of the image distance data; and an image pickup control unit, which controls the light source and the image pickup unit and have an image of the object picked up under the first image pickup conditions.
    • 公开了一种可以高精度地测量与物体的距离,距离测量方法和程序的距离测量装置。 距离测量装置设置有:发光的光源; 拾取单元,其拾取已经从光源发射并通过对象反射的光的图像; 图像距离数据转换单元,其将由图像拾取单元执行的图像拾取获得的图像数据转换为指示到对象的距离的图像距离数据; 图像拾取条件设置单元,其基于图像距离数据设置第一图像拾取条件; 以及图像拾取控制单元,其控制光源和图像拾取单元,并且具有在第一图像拾取条件下拾取的对象的图像。
    • 4. 发明授权
    • Unit pixel for accurately removing reset noise, solid-state image sensing device, and method for summing unit pixel signals
    • 用于精确去除复位噪声的单位像素,固态图像感测装置以及用于求和单位像素信号的方法
    • US09054014B2
    • 2015-06-09
    • US13435472
    • 2012-03-30
    • Tomoyuki KamiyamaKeisuke Korekado
    • Tomoyuki KamiyamaKeisuke Korekado
    • H01L27/00G01J1/44H01L27/148H04N5/357H04N5/361H04N5/3745
    • H01L27/14812H01L27/14831H04N5/357H04N5/361H04N5/37452
    • A unit pixel has a light receiving device containing a photoelectric conversion element for detecting a light to generate photoelectrons. The light receiving device contains a plurality of photoelectron distributors, which each have a first transfer unit for transferring the photoelectrons generated in the photoelectric conversion element, a photoelectron hold unit for temporarily holding the photoelectrons generated in the photoelectric conversion element, a second transfer unit for transferring the photoelectrons held in the photoelectron hold unit, and a floating diffusion layer for storing the transferred photoelectrons and converting the photoelectrons to a voltage. The unit pixel contains a reset transistor for resetting the potential of the floating diffusion layer to a reference potential and a photoelectron discharger for discharging the photoelectrons generated in the photoelectric conversion element.
    • 单位像素具有包含用于检测光以产生光电子的光电转换元件的光接收装置。 光接收装置包括多个光电子分配器,每个光电子分配器具有用于转移在光电转换元件中产生的光电子的第一转移单元,用于临时保持在光电转换元件中产生的光电子的光电子保持单元,用于 转移保持在光电子保持单元中的光电子,以及用于存储转移的光电子并将光电子转换成电压的浮动扩散层。 单位像素包含用于将浮动扩散层的电位复位为参考电位的复位晶体管和用于放电在光电转换元件中产生的光电子的光电子放电器。
    • 5. 发明申请
    • SOLID-STATE IMAGING DEVICE
    • 固态成像装置
    • US20130020471A1
    • 2013-01-24
    • US13638258
    • 2011-03-29
    • Keisuke KorekadoTomoyuki KamiyamaYoichi Nishimura
    • Keisuke KorekadoTomoyuki KamiyamaYoichi Nishimura
    • H01L27/146
    • H04N5/378H03M1/123H03M1/56H04N5/335H04N5/361
    • Disclosed is a solid-state imaging device capable of calculating the difference in charge obtained by photoelectric conversion, and capable of a high level of integration. A solid-state imaging device is provided with an AD converter which is provided with: a first comparator which outputs a signal corresponding to a first analogue signal of a first pixel by comparing said first analogue signal with a reference voltage supplied from the reference voltage generation unit which generates a reference voltage which gradually changes; a second comparator which outputs a signal corresponding to a second analogue signal of a second pixel by comparing said second analogue signal with the reference voltage supplied by the reference voltage generation unit; a difference circuit which finds the difference between the signal corresponding to said first analogue signal and the signal corresponding to said second analogue signal and outputs a difference signal; and a counter circuit which counts the number of pulses in a pulse sequence corresponding to the aforementioned difference signal and converts said difference signal into a digital signal.
    • 公开了能够计算通过光电转换获得的电荷差异并且能够高集成度的固态成像装置。 固态成像装置设置有AD转换器,其具有:第一比较器,其通过将所述第一模拟信号与从参考电压产生提供的参考电压进行比较来输出与第一像素的第一模拟信号相对应的信号 产生逐渐变化的参考电压的单元; 第二比较器,通过将所述第二模拟信号与由参考电压产生单元提供的参考电压进行比较来输出与第二像素的第二模拟信号相对应的信号; 差分电路,其找到与所述第一模拟信号相对应的信号与对应于所述第二模拟信号的信号之间的差异,并输出差分信号; 以及计数器电路,对与上述差分信号相对应的脉冲序列中的脉冲数进行计数,并将所述差分信号转换为数字信号。
    • 6. 发明授权
    • Signal processing method and solid-state image sensing device
    • 信号处理方法和固态摄像装置
    • US08330834B2
    • 2012-12-11
    • US13073519
    • 2011-03-28
    • Keisuke KorekadoTomoyuki KamiyamaToru Takenaka
    • Keisuke KorekadoTomoyuki KamiyamaToru Takenaka
    • H04N5/217H04N3/14H03M1/00
    • H04N5/361H04N5/23245H04N5/378
    • A solid-state image sensing device reads repeatedly M times an analog signal having a black level, during a first A/D conversion period. A frequency divider frequency-divides by M a pulse train depending on the analog signal having a black level that is read repeatedly M times, and a counter circuit counts the pulses of the pulse train, which is frequency-divided by M. Thereafter, the solid-state image sensing device reads repeatedly N times an analog signal having a signal level, during a second A/D conversion period. The frequency divider frequency-divides by N a pulse train depending on the analog signal having a signal level that is read repeatedly N times, and the counter circuit counts the pulses of the pulse train, which is frequency-divided by N. M and N satisfy the relationship N≦M.
    • 在第一A / D转换周期期间,固态图像感测装置重复M次读取具有黑电平的模拟信号。 分频器频率根据M反复M次读取的黑电平的模拟信号被M分频,并且计数电路对脉冲序列的脉冲进行计数,频率除以M.然后, 在第二A / D转换周期期间,固态图像感测装置重复读取具有信号电平的模拟信号的N倍。 分频器根据具有重复读取的信号电平的模拟信号N次分频脉冲序列N次,并且计数器电路对脉冲序列的脉冲进行计数,该脉冲串被分频为N.M和N 满足关系N≦̸ M。
    • 8. 发明授权
    • Solid-state image sensing device with a change-over switch
    • 具有切换开关的固态图像感测装置
    • US09018573B2
    • 2015-04-28
    • US13435406
    • 2012-03-30
    • Tomoyuki KamiyamaKeisuke Korekado
    • Tomoyuki KamiyamaKeisuke Korekado
    • H03K17/78H01L27/00H01L27/148H04N5/353H04N5/3745
    • H01L27/14812H01L27/14831H04N5/353H04N5/37452
    • A solid-state image sensing device comprises a unit pixel containing a photoelectric conversion element for detecting a light to generate photoelectrons and at least one electrode for forming an MOS diode structure, a first contact point connected to a first voltage supply for supplying a first voltage to the electrode, a second contact point connected to a second voltage supply for supplying a second voltage higher than the first voltage to the electrode, a first capacitor disposed between the first and second contact points, a change-over switch connected to one of the first and second contact points to selectively switch a voltage applied to the electrode to the first voltage or the second voltage, and pixel drive circuits for driving the change-over switch, thereby alternately applying the first voltage and the second voltage to the electrode to generate, hold, transfer, reset, or discharge the photoelectrons.
    • 固体摄像装置包括:单位像素,其包含用于检测产生光电子的光的光电转换元件和至少一个用于形成MOS二极管结构的电极;连接到第一电压源的第一接触点,用于提供第一电压 连接到第二电压源的第二接触点,用于向电极提供高于第一电压的第二电压;布置在第一和第二接触点之间的第一电容器,连接到电极 第一和第二接触点以选择性地将施加到电极的电压切换到第一电压或第二电压,以及用于驱动转换开关的像素驱动电路,由此交替地将第一电压和第二电压施加到电极以产生 ,保持,传输,重置或放电光电子。