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    • 1. 发明授权
    • Method of separating a semiconductor wafer with dielectrics
    • 用电介质分离半导体晶片的方法
    • US5607875A
    • 1997-03-04
    • US454918
    • 1995-05-31
    • Masato NishizawaShinichi HashimotoYoshiyuki Sugahara
    • Masato NishizawaShinichi HashimotoYoshiyuki Sugahara
    • H01L21/02H01L21/76H01L21/762H01L21/763H01L27/12
    • H01L21/763H01L21/76264H01L21/76275H01L21/76286Y10S148/05
    • A method for separating a joined substrate type wafer, which wafer is composed of a pair of semiconductor substrates joined through an insulation film, utilizes dielectrics through simple processing steps. Trenches for separating a semiconductor substrate with dielectrics are dug from the surface of the substrate and a dielectrics film is deposited on the surface of the substrate including the trenches. Then poly-crystalline silicon is grown by CVD to a thickness of about 0.5 .mu.m, which is deep enough to fill the trenches. The process time for growing poly-crystalline silicon is shortened, and the processing step for removing the poly-crystalline silicon deposited on the unwanted areas is eliminated by growing the poly-crystalline silicon in the trenches but not on the crystalline surface of semiconductor regions based on the growth rate dependence of the poly-crystalline silicon on the crystallinity of the surface on which the poly-crystalline silicon is grown.
    • 用于分离由通过绝缘膜连接的一对半导体基板构成的晶片的接合基板型晶片的方法通过简单的处理步骤来利用电介质。 用于从电介质表面分离半导体衬底的沟槽从衬底的表面被挖出,并且在包括沟槽的衬底的表面上沉积电介质膜。 然后通过CVD将多晶硅生长至约0.5μm的厚度,其足够深以填充沟槽。 缩短生长多晶硅的处理时间,并且通过在沟槽中生长多晶硅而不是在半导体区域的晶体表面上生长多晶硅以消除沉积在不想要的区域上的多晶硅的处理步骤 关于多晶硅对生长多晶硅的表面的结晶度的生长速率依赖性。
    • 4. 发明授权
    • Electro-optical device, driving method of electro-optical device, control circuit of electro-optical device, and electronic apparatus
    • 电光装置,电光装置的驱动方法,电光装置的控制电路以及电子装置
    • US08866858B2
    • 2014-10-21
    • US13077507
    • 2011-03-31
    • Kota MutoMasato Nishizawa
    • Kota MutoMasato Nishizawa
    • G09G5/10G09G3/34
    • G09G3/344G09G2300/0842G09G2300/0876G09G2310/04G09G2310/061G09G2320/103
    • An electro-optical device includes a control unit that controls a display unit having a plurality of pixels. The control unit performs a differential driving operation of performing an operation of erasing a first image component which is a part of a display image in a first display state and an operation of displaying a second image component which is a part of a display image in a second display state by selectively driving the pixels having different gray scales in the first display state and the second display state when the display unit is changed from the first display state to the second display state. The operation of erasing the first image component includes an extended erasing operation of driving a first pixel group which includes the pixels constituting the first image component and the pixels being adjacent to the first image component and surrounding the first image component.
    • 电光装置包括控制具有多个像素的显示单元的控制单元。 控制单元执行差分驱动操作,其执行擦除作为第一显示状态的显示图像的一部分的第一图像分量的操作和将作为显示图像的一部分的第二图像分量显示在 第二显示状态,当显示单元从第一显示状态改变到第二显示状态时,通过选择性地驱动具有第一显示状态和第二显示状态的不同灰度级的像素。 擦除第一图像分量的操作包括驱动包括构成第一图像分量的像素和与第一图像分量相邻并围绕第一图像分量的像素的第一像素组的扩展擦除操作。
    • 5. 发明授权
    • Method of driving electro-optical device, electro-optical device, and controller
    • 电光装置,电光装置和控制器的驱动方法
    • US08421745B2
    • 2013-04-16
    • US13026353
    • 2011-02-14
    • Masato Nishizawa
    • Masato Nishizawa
    • G09G3/34
    • G09G3/3651G06F3/03545G06F3/0488G09G3/344G09G3/3655G09G2310/04G09G2320/0252G09G2380/02
    • A method of driving an electro-optical device including a plurality of pixels, one of which having a first electrode, a second electrode, and an electro-optical material layer, includes: when an image is rewritten, selecting a first display state of the one pixel by applying a first voltage to the first electrode and applying a second voltage to the second electrode, or selecting a second display state of the one pixel by applying a third voltage to the second electrode; and when a part of the image is rewritten, selecting any of the first display state and the second display state of the one pixel by applying a fourth voltage which is different from the first voltage to the first electrode and applying a fifth voltage which has a different polarity from that of the fourth voltage with respect to the first voltage to the second electrode.
    • 一种驱动包括多个像素的电光装置的方法,其中一个具有第一电极,第二电极和电光材料层,包括:当图像被重写时,选择第一显示状态 通过向第一电极施加第一电压并向第二电极施加第二电压,或者通过向第二电极施加第三电压来选择一个像素的第二显示状态; 并且当图像的一部分被重写时,通过向第一电极施加不同于第一电压的第四电压来选择该像素的第一显示状态和第二显示状态中的任何一个,并施加第五电压,该第五电压具有 与第四电压相对于第一电压的极性与第二电极的极性不同。
    • 7. 发明申请
    • IMAGE PICKUP DEVICE
    • 图像拾取器件
    • US20090115860A1
    • 2009-05-07
    • US12091363
    • 2007-04-05
    • Toshiyuki NakashimaMasato NishizawaKazunaga Miyake
    • Toshiyuki NakashimaMasato NishizawaKazunaga Miyake
    • H04N5/225
    • H04N5/23248H04N5/23254H04N5/23267H04N5/23277H04N5/2353H04N5/2356H04N2101/00
    • The present invention provides an image pickup device which is lower in production cost and smaller in size than the conventional image pickup device.The image pickup device 1 comprises an image sensor 12 having an acceptance surface to pick up an image focused on the acceptance surface via a lens 11, an image stabilization section 13 for stabilizing the image by compensating a blur occurring in the image on the basis of at least two different images picked up by the image sensor 12 exposed for respective different exposure times, and an output section 14 for outputting the stabilized image. The image stabilization section 13 includes an appropriate exposure image obtaining section 21 for obtaining an appropriate exposure image ia picked up by the image sensor 12 exposed for an appropriate exposure time, a short-time exposure image obtaining section 22 for obtaining an short-time exposure image is picked up by the image sensor 12 exposed for a short exposure time shorter than the appropriate exposure time, an image stabilization trajectory calculating section 23 for calculating an image stabilization trajectory of the appropriate exposure image, and a stabilized image producing section 24 for producing the stabilized image ic on the basis of the appropriate exposure image ia and the image stabilization trajectory.
    • 本发明提供一种图像拾取装置,其生产成本较低且尺寸小于常规图像拾取装置。 图像拾取装置1包括具有接收表面的图像传感器12,该接收表面经由透镜11拾取聚焦在接受表面上的图像,图像稳定部13,用于通过基于图像补偿来补偿图像中发生的模糊来稳定图像 由图像传感器12拾取的至少两个不同的图像被曝光用于各自不同的曝光时间,以及输出部分14,用于输出稳定的图像。 图像稳定部分13包括适当的曝光图像获得部分21,用于获得由合适的曝光时间暴露的图像传感器12拾取的适当的曝光图像;短时间曝光图像获得部分22,用于获得短时间曝光 图像由曝光时间短于适当的曝光时间的图像传感器12拾取,用于计算适当曝光图像的图像稳定轨迹的图像稳定轨迹计算部23,以及用于产生 基于适当的曝光图像ia和图像稳定轨迹的稳定图像ic。