摘要:
An article recognition apparatus includes a marker having four or more unit pattern marks which are provided at a predetermined positional relationship on an article to be recognized and which are formed in such a way that a density pattern sequentially changes from a center position to a periphery of the pattern marker. The article recognition apparatus also includes an imaging tool that is disposed opposite the article to be recognized and that captures an image of the marker; a supporting mechanism that supports the imaging tool so as to enable setting of the imaging tool at least at a non-face-up measurement position; and a layout information recognition block that recognizes layout information about a position and an attitude of the article to be recognized.
摘要:
An article recognition apparatus includes a marker having four or more unit pattern marks which are provided at a predetermined positional relationship on an article to be recognized and which are formed in such a way that a density pattern sequentially changes from a center position to a periphery of the pattern marker. The article recognition apparatus also includes an imaging tool that is disposed opposite the article to be recognized and that captures an image of the marker; a supporting mechanism that supports the imaging tool so as to enable setting of the imaging tool at least at a non-face-up measurement position; and a layout information recognition block that recognizes layout information about a position and an attitude of the article to be recognized.
摘要:
A group of light spots dispersed and disposed three-dimensionally to be disposed not in one plane on an object-to-be-measured are shot by a camera. A position and an attitude of the object-to-be-measured are recognized based on an optical image representing each of the light spots included on a shot image by the camera.
摘要:
A group of light spots dispersed and disposed three-dimensionally to be disposed not in one plane on an object-to-be-measured are shot by a camera. A position and an attitude of the object-to-be-measured are recognized based on an optical image representing each of the light spots included on a shot image by the camera.
摘要:
A component assembly inspection method includes taking an image of a first light spot group possessed by a first component with a camera after the first component is assembled in a second component, the first light spot group including plural light spots. The method further includes recognizing a position and an attitude of the first component based on a light image that is on the image taken with the camera and represents each of the light spots of the first light spot group; and determining quality of an assembly state of the first component in the second component based on the position and attitude of the first component.
摘要:
An assembly inspection apparatus includes a marker having four or more unit pattern marks which are provided, at a predetermined positional relationship, in a portion of an assembly component to be put into a receiving assembly component and which are formed in such a way that a density pattern sequentially changes from a center position to a periphery of the pattern mark; an imaging tool that is disposed opposite the assembly component put into the receiving assembly component and that captures an image of the marker; a layout information recognition block that recognizes layout information about a position and an attitude of the assembly component put into the receiving assembly component by use of at least imaging information about the marker whose image has been captured by the imaging tool; and an assembly inspection block that inspects whether or not a superior assembly state is achieved.
摘要:
A component assembly inspection method includes taking an image of a first light spot group possessed by a first component with a camera after the first component is assembled in a second component, the first light spot group including plural light spots. The method further includes recognizing a position and an attitude of the first component based on a light image that is on the image taken with the camera and represents each of the light spots of the first light spot group; and determining quality of an assembly state of the first component in the second component based on the position and attitude of the first component.
摘要:
A medicine feeding apparatus includes a cylindrical body 8, a first rotating body 9, and a second rotating body 10. The first rotating body 9 is disposed on the inner side of the cylindrical body 8, and together with the cylindrical body 8, constitutes a medicine storage section 42 capable of storing medicine. The first rotating body 9 can reciprocate in the axial direction of the cylindrical body 8, and can rotate about a first rotary axis. The second rotating body 10 is disposed on the outer circumference of an opening of the cylindrical body 8, and can rotate about a second rotary axis. This configuration has a function of smoothly performing automatic dispensing depending on the remaining amount of stored medicine while storing a large amount of medicine.
摘要:
An ink jet recording method includes preparing a bright image and improving the lightness, or the L* value, of the bright base image. More specifically, a bright image is formed using a bright pigment, and then an ink jet process is performed to discharge a white ink composition containing a white pigment onto the bright image with a weight per unit area (g/cm2) in a range of 0.01 to 0.5, inclusive.
摘要翻译:一种喷墨记录方法,包括制备亮色图像并提高亮基图像的亮度或L *值。 更具体地,使用光亮颜料形成明亮的图像,然后进行喷墨处理以将含有白色颜料的白色油墨组合物以每单位面积重量(g / cm 2)排出到亮度图像上,范围为 0.01〜0.5(含)。
摘要:
There is provided an improved vial lid fastening device capable of reliably completing lid fastening in a short time. The vial lid fastening device 30 has a lid rotating device 51, a lid placing member 52, 53, a transporting device 55, 56, a first lid body reservoir 115, 116, a vial lid holding and supplying device 57, and a vial discharging device 58. A lid body 3 slides on an inclined flat surface 102 to reach a terminal mechanism part 101, and a stepped section 31 of the lid body 3 engages a stepped section holder 105. The lid body 3 is grasped by chuck claws 35 and is rotated as engaged to the terminal mechanism part 101 of the stepped section holder 105. Then, one of rotation regulating protrusions 28a, 28b of the lid body 3 is allowed to collide with a rotation preventing member 107 of the lid placing member 52. Thus, position determination in a rotation direction is performed with reference to the rotation regulating projections 28a, 28b and such position is maintained fixedly. Thereafter, the lid body 3 is mated with the vial body 2 and then rotated by a chuck.