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    • 1. 发明授权
    • Apparatus for printing image data
    • 用于打印图像数据的装置
    • US5764266A
    • 1998-06-09
    • US644502
    • 1996-05-10
    • Takeo AzumaAtsushi MorimuraKazuhiro KayashimaKenya UomoriYasuo FukuiHiroshi OnishiKouji Ikeda
    • Takeo AzumaAtsushi MorimuraKazuhiro KayashimaKenya UomoriYasuo FukuiHiroshi OnishiKouji Ikeda
    • B41J2/32B41J2/325G03B35/00
    • B41J2/325
    • An apparatus for printing image data prints image data on a lens array having a plurality of lenses arranged along a first direction. The apparatus includes: an image data generating section for generating image data; a head having a plurality of printing elements arranged along a second direction, the head driving each of the plurality of printing elements in accordance with the image data; a conveying section for conveying the lens array relative to the head; and a first pinion and a second pinion which are arranged along the second direction. The first pinion and the second pinion each have a rotation axis parallel to the second direction. The lens array has a first rack extending along the first direction and a second rack extending along the first direction. The first pinion engaging with the first rack of the lens array and the second pinion engaging with the second rack of the lens array.
    • 用于打印图像数据的装置将图像数据打印在具有沿着第一方向布置的多个透镜的透镜阵列上。 该装置包括:图像数据产生部分,用于产生图像数据; 具有沿着第二方向布置的多个打印元件的头部,所述头部根据所述图像数据驱动所述多个打印元件中的每一个; 用于相对于头部传送透镜阵列的传送部分; 以及沿着第二方向布置的第一小齿轮和第二小齿轮。 第一小齿轮和第二小齿轮各自具有平行于第二方向的旋转轴线。 透镜阵列具有沿着第一方向延伸的第一齿条和沿第一方向延伸的第二齿条。 第一小齿轮与透镜阵列的第一齿条接合,第二小齿轮与透镜阵列的第二齿条啮合。
    • 3. 发明授权
    • Range finder device and camera
    • 测距仪和相机
    • US06734951B2
    • 2004-05-11
    • US10420686
    • 2003-04-22
    • Kenya UomoriTakeo AzumaAtsushi Morimura
    • Kenya UomoriTakeo AzumaAtsushi Morimura
    • G01C300
    • H04N5/272G01B11/25G01C3/08G01S17/46G01S17/48G02B7/32G06T7/521
    • A range finder device, for measuring, when a plurality of projected lights having radiation patterns whose light intensity differs three-dimensional space-wise are irradiated onto an object from a light source on a time-sharing basis to image-pick up reflected light of the projected light from the object with a camera, a distance using the light intensity of an image picked up, characterized in that, with respect to each of a plurality of surfaces including the center of the light source and the center of a lens, there is obtained, in advance, relation between an angle of each projected light from the light source and light intensity ratio in each surface, characterized in that, at the time of actual distance measurement, light intensity of each pixel of the camera is measured, and on the basis of the light intensity thus measured, and relation between the angle and the light intensity ratio on a predetermined surface corresponding to a coordinate position of the pixel measured, there is obtained the angle corresponding to the light intensity of the predetermined, pixel thus measured, and characterized in that, on the basis of these light intensity measured, the angles obtained and further two-dimensional coordinate position information on the predetermined pixel on the image, a distance to the object is calculated.
    • 一种测距装置,用于测量当具有光强度不同于立体空间的辐射图案的多个投影光在时间分配的基础上从光源照射到物体上,以对图像拾取反射光 使用摄像机的物体的投射光,使用拾取的图像的光强度的距离,其特征在于,对于包括光源的中心和透镜中心的多个表面中的每一个,在那里 预先获得来自光源的每个投影光的角度和各表面的光强度之间的关系,其特征在于,在实际距离测量时,测量照相机的每个像素的光强度,并且 基于如此测量的光强度,以及与测量的像素的坐标位置相对应的预定表面上的角度和光强度比之间的关系,那里 获得与所测量的预定像素的光强度相对应的角度,其特征在于,基于测量的这些光强度,获得的角度和关于图像上的预定像素的进一步的二维坐标位置信息, 计算到物体的距离。
    • 4. 发明授权
    • Range finder device and camera
    • US06704099B2
    • 2004-03-09
    • US10420256
    • 2003-04-22
    • Kenya UomoriTakeo AzumaAtsushi Morimura
    • Kenya UomoriTakeo AzumaAtsushi Morimura
    • G01C308
    • H04N5/272G01B11/25G01C3/08G01S17/46G01S17/48G02B7/32G06T7/521
    • A range finder device, for measuring, when a plurality of projected lights having radiation patterns whose light intensity differs three-dimensional space-wise are irradiated onto an object from a light source on a time-sharing basis to image-pick up reflected light of the projected light from the object with a camera, a distance using the light intensity of an image picked up, characterized in that, with respect to each of a plurality of surfaces including the center of the light source and the center of a lens, there is obtained, in advance, relation between an angle of each projected light from the light source and light intensity ratio in each surface, characterized in that, at the time of actual distance measurement, light intensity of each pixel of the camera is measured, and on the basis of the light intensity thus measured, and relation between the angle and the light intensity ratio on a predetermined surface corresponding to a coordinate position of the pixel measured, there is obtained the angle corresponding to the light intensity of the predetermined pixel thus measured, and characterized in that, on the basis of these light intensity measured, the angles obtained and further two-dimensional coordinate position information on the predetermined pixel on the image, a distance to the object is calculated.
    • 6. 发明授权
    • Ranger finder device and camera
    • 游侠取景器和相机
    • US06897946B2
    • 2005-05-24
    • US10420650
    • 2003-04-22
    • Kenya UomoriTakeo AzumaAtsushi Morimura
    • Kenya UomoriTakeo AzumaAtsushi Morimura
    • G01B11/25G01C3/08G01S17/46G02B7/32H04N5/272G01C3/00G01B11/24G01C3/24
    • H04N5/272G01B11/25G01C3/08G01S17/46G01S17/48G02B7/32G06T7/521
    • A range finder device, for measuring, when a plurality of projected lights having radiation patterns whose light intensity differs three-dimensional space-wise are irradiated onto an object from a light source on a time-sharing basis to image-pick up reflected light of the projected light from the object with a camera, a distance using the light intensity of an image picked up, characterized in that, with respect to each of a plurality of surfaces including the center of the light source and the center of a lens, there is obtained, in advance, relation between an angle of each projected light from the light source and light intensity ratio in each surface, characterized in that, at the time of actual distance measurement, light intensity of each pixel of the camera is measured, and on the basis of the light intensity thus measured, and relation between the angle and the light intensity ratio on a predetermined surface corresponding to a coordinate position of the pixel measured, there is obtained the angle corresponding to the light intensity of the predetermined pixel thus measured, and characterized in that, on the basis of these light intensity measured, the angles obtained and further two-dimensional coordinate position information on the predetermined pixel on the image, a distance to the object is calculated.
    • 一种测距装置,用于测量当具有光强度不同于立体空间的辐射图案的多个投影光在时间分配的基础上从光源照射到物体上,以对图像拾取反射光 使用摄像机的物体的投射光,使用拾取的图像的光强度的距离,其特征在于,对于包括光源的中心和透镜中心的多个表面中的每一个,在那里 预先获得来自光源的每个投影光的角度和各表面的光强度之间的关系,其特征在于,在实际距离测量时,测量照相机的每个像素的光强度,并且 基于如此测量的光强度,以及与测量的像素的坐标位置相对应的预定表面上的角度和光强度比之间的关系,那里 获得与所测量的预定像素的光强度相对应的角度,其特征在于,基于测量的这些光强度,获得的角度和关于图像上的预定像素的另外的二维坐标位置信息, 计算到物体的距离。
    • 7. 发明授权
    • Range finder and camera
    • 测距仪和相机
    • US06587183B1
    • 2003-07-01
    • US09463530
    • 2000-03-30
    • Kenya UomoriTakeo AzumaAtsushi Morimura
    • Kenya UomoriTakeo AzumaAtsushi Morimura
    • G01C300
    • H04N5/272G01B11/25G01C3/08G01S17/46G01S17/48G02B7/32G06T7/521
    • A range finder device, for measuring, when a plurality of projected lights having radiation patterns whose light intensity differs three-dimensional space-wise are irradiated onto an object from a light source on a time-sharing basis to image-pick up reflected light of the projected light from the object with a camera, a distance using the light intensity of an image picked up, characterized in that, with respect to each of a plurality of surfaces including the center of the light source and the center of a lens, there is obtained, in advance, relation between an angle of each projected light from the light source and light intensity ratio in each surface, characterized in that, at the time of actual distance measurement, light intensity of each pixel of the camera is measured, and on the basis of the light intensity thus measured, and relation between the angle and the light intensity ratio on a predetermined surface corresponding to a coordinate position of the pixel measured, there is obtained the angle corresponding to the light intensity of the predetermined pixel thus measured, and characterized in that, on the basis of these light intensity measured, the angles obtained and further two-dimensional coordinate position information on the predetermined pixel on the image, a distance to the object is calculated.
    • 一种测距装置,用于测量当具有光强度不同于立体空间的辐射图案的多个投影光在时间分配的基础上从光源照射到物体上,以对图像拾取反射光 使用摄像机的物体的投射光,使用拾取的图像的光强度的距离,其特征在于,对于包括光源的中心和透镜中心的多个表面中的每一个,在那里 预先获得来自光源的每个投影光的角度和各表面的光强度之间的关系,其特征在于,在实际距离测量时,测量照相机的每个像素的光强度,并且 基于如此测量的光强度,以及与测量的像素的坐标位置相对应的预定表面上的角度和光强度比之间的关系,那里 获得与所测量的预定像素的光强度相对应的角度,其特征在于,基于测量的这些光强度,获得的角度和关于图像上的预定像素的另外的二维坐标位置信息, 计算到物体的距离。