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    • 1. 发明专利
    • Incense stick, manufacturing method therefor and using method therefor
    • INCONSE STICK,其制造方法及其使用方法
    • JP2005350381A
    • 2005-12-22
    • JP2004171065
    • 2004-06-09
    • Motohiro Kojima元弘 小島
    • KOJIMA MOTOHIRO
    • A61K8/00A61Q13/00A61K7/46
    • PROBLEM TO BE SOLVED: To provide an incense stick which can be placed in a stable posture to secure safety at the time of incense and produced with good efficiency at a reduced cost, a manufacturing method and a using method therefor.
      SOLUTION: A main powder comprising a cedar powder, a charcoal powder, or the like, is compounded with a perfume, water, a combustion-assisting agent, or the like, and kneaded to give a kneaded material. The kneaded material is extrusion-molded by means of an extrusion-molding machine into a stick having a triangular cross section. The stick is cut at specified intervals across the longitudinal direction to form a plurality of plate-like triangles, which are dried into the incense stick 28.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种可以以稳定的姿势放置的香棒,以确保在香料时的安全性并以较低的成本以良好的效率生产,其制造方法及其使用方法。 解决方案:将包含雪松粉末,木炭粉末等的主粉末与香料,水,助燃剂等混合,并捏合以得到捏合材料。 将捏合的材料通过挤出成型机挤出成型为具有三角形截面的棒。 棒以规定的间隔沿长度方向切割以形成多个板状三角形,其被干燥到香棒28中。(C)2006,JPO&NCIPI
    • 3. 发明授权
    • Solid-state image pickup device
    • 固态图像拾取装置
    • US5340977A
    • 1994-08-23
    • US912486
    • 1992-07-13
    • Motohiro KojimaTakuya WatanabeTohru Takamura
    • Motohiro KojimaTakuya WatanabeTohru Takamura
    • H01L27/148H04N1/028H04N9/04H04N9/07H01J40/14H01L27/14H01L29/78
    • H04N9/045H01L27/14868H04N3/1581
    • A solid-state image pickup device, and in particular, a CCD image sensor is capable of color reading, wherein n lines (n.gtoreq.2) of photo diodes disposing a plurality of photodiodes straightly are disposed parallel adjacently to each other, and adjacent n lines of CCD analog shift registers are disposed parallel to the photodiode lines at one side of the group of n lines of photodiodes, and the signal charges are transferred through a gate structure composed of MOS structure, between adjacent lines of n lines of photodiodes and n lines of CCD analog shift registers. It is therefore possible to reduce the intervals of the photodiode lines to the limit, thereby realizing a CCD color linear image sensor capable of outstandingly simplifying the signal time axis correction circuit such as semiconductor digital memory device for correcting the differences of reading positions of the photodiode lines.
    • 固态图像拾取装置,特别是CCD图像传感器能够进行彩色读取,其中直线布置多个光电二极管的n线(n> / = 2)彼此平行地布置,并且 相邻的n行CCD模拟移位寄存器与n个光电二极管组的一侧的光电二极管线平行设置,并且信号电荷通过由MOS结构构成的栅极结构在n条光电二极管的相邻线之间传输 和n行CCD模拟移位寄存器。 因此,可以将光电二极管线的间隔减小到极限,从而实现能够显着简化诸如半导体数字存储装置的信号时间轴校正电路的CCD彩色线性图像传感器,用于校正光电二极管的读取位置的差异 线条。
    • 4. 发明申请
    • SOLID-STATE IMAGING DEVICE
    • 固态成像装置
    • US20070200946A1
    • 2007-08-30
    • US11621331
    • 2007-01-09
    • Kazutoshi ONOZAWAMotohiro KOJIMA
    • Kazutoshi ONOZAWAMotohiro KOJIMA
    • H04N5/225G02B5/32H04N5/00H04N3/24
    • G02B5/32
    • The present invention provides a solid-state imaging device which compensates a field curvature which occurs due to an aberration of the optical imaging system and surely receive light incident with a wide angle.Each pixel (pixel size of 2.2 μm square) in a solid-state imaging device includes a light-transmitting film with the first effective refractive index distribution and a light-transmitting film with the second effective refractive index distribution, a light-receiving element, a wiring, a wavelength selection filter, and a Si substrate. A pixel (1) is a pixel placed an approximate center of the solid-state imaging device. A pixel (n) is a pixel placed in the periphery of the solid-state imaging device, and a pixel (n-x) is a pixel that are placed between the pixel (1) and the pixel (n). The light-transmitting film of each pixel has approximately same effective refractive index distribution. Θ0, which is a main light angle on the light-receiving element side, is approximately same. A main light angle in the optical imaging system is represented as Θ1, Θn-x, and Θn. The light-transmitting film varies for each pixel so that a condition Θ0/Θ1>Θ0/Θn-x
    • 本发明提供一种固态成像装置,其补偿由于光学成像系统的像差而发生的场曲率,并且可靠地接收以广角入射的光。 固态成像装置中的每个像素(像素尺寸为2.2mum的正方形)包括具有第一有效折射率分布的透光膜和具有第二有效折射率分布的透光膜,光接收元件, 布线,波长选择滤波器和Si衬底。 像素(1)是固体摄像装置的近似中心的像素。 像素(n)是位于固态成像装置的周围的像素,像素(n-x)是位于像素(1)和像素(n)之间的像素。 每个像素的透光膜具有大致相同的有效折射率分布。 作为光接收元件侧的主光角的θta大致相同。 光学成像系统中的主要光角度被表示为Theta,Thetañ-x SUB和ThetañN。 透光膜对于每个像素而变化,使得条件为θθθθθθθθθθ/ SUB> / Theta
    • 7. 发明授权
    • Solid-state imaging device using light-transmitting film as a micro lens
    • 使用透光膜作为微透镜的固态成像装置
    • US07728901B2
    • 2010-06-01
    • US11621331
    • 2007-01-09
    • Kazutoshi OnozawaMotohiro Kojima
    • Kazutoshi OnozawaMotohiro Kojima
    • H04N5/225H04N5/232
    • G02B5/32
    • The present invention provides a solid-state imaging device which compensates a field curvature which occurs due to an aberration of the optical imaging system and surely receive light incident with a wide angle. Each pixel (pixel size of 2.2 μm square) in a solid-state imaging device includes a light-transmitting film with the first effective refractive index distribution and a light-transmitting film with the second effective refractive index distribution, a light-receiving element, a wiring, a wavelength selection filter, and a Si substrate. A pixel (1) is a pixel placed an approximate center of the solid-state imaging device. A pixel (n) is a pixel placed in the periphery of the solid-state imaging device, and a pixel (n-x) is a pixel that are placed between the pixel (1) and the pixel (n). The light-transmitting film of each pixel has approximately same effective refractive index distribution. Θ0 which is a main light angle on the light-receiving element side, is approximately same. A main light angle in the optical imaging system is represented as Θ1, Θn-x, and Θn. The light-transmitting film varies for each pixel so that a condition Θ0/Θ1>Θ0/Θn-x
    • 本发明提供一种固态成像装置,其补偿由于光学成像系统的像差而发生的场曲率,并且可靠地接收以广角入射的光。 固态成像装置中的每个像素(像素尺寸为2.2μm正方形)包括具有第一有效折射率分布的透光膜和具有第二有效折射率分布的透光膜,受光元件, 布线,波长选择滤波器和Si衬底。 像素(1)是固体摄像装置的近似中心的像素。 像素(n)是位于固态成像装置的周围的像素,像素(n-x)是位于像素(1)和像素(n)之间的像素。 每个像素的透光膜具有大致相同的有效折射率分布。 作为光接收元件侧的主光角的θ0大致相同。 光学成像系统中的主光角度表示为Θ1,Θn-x和Θn。 透光膜对于每个像素而变化,使得条件Θ0/Θ1>Θ0/Θn-x <Θ0/Θn。