Abstract:
A solid-state image pickup device comprising: a multilayer wiring board 2 having an opening portion 21; a spacer 3 covered with a conductive film 32, and fixed to the multilayer wiring board 2 in a state of making the conductive film 32 face contact with a reference potential electrode exposed into the opening portion 21 of the multilayer wiring board 2; a solid-state image pickup element 4 fixed to the spacer 3 in a state of face contact with the conductive film 32 of the spacer 3, and arranged in the opening portion 21; and an optical element 5 fixed at a position opposing the solid-state image pickup element 4 via the spacer 3, and transmitting light into the opening portion.
Abstract:
An image sensor (S1) is provided that comprises: light guides (1,2) for irradiating light onto an irradiated object; a lens (15) that focuses reflected light that was reflected by the irradiated object; a sensor (16) that receives the reflected light that was focused by the lens (15); and a housing (10). The housing (10) houses or holds the light guides (1, 2), the lens (15), and the sensor (16), and is formed by integrating a housing metal portion (110) and a housing resin portion (210).
Abstract:
A contact-type image sensor (20) comprises a case (21), a glass cover (22) provided on an upper surface of the case (21), a bottom substrate (23) mounted in a bottom surface of the case (21), light receiving elements (24) mounted on the bottom substrate, light emitting elements (25) for irradiating an object (D) on the glass cover (22) with light, and a rod lens array (27) for collecting the light reflected by the object (D) on the glass cover (22) onto the light receiving elements (24). The light emitting elements (25) are mounted on the bottom substrate (23). The contact-type image sensor further comprises a light guide (26) provided in the case (21) for efficiently directing the light from the light emitting elements (25) to a predetermined region (L) of the glass cover (22). The case (21) is formed with a holding groove (29) for receiving the rod lenses array (27) from above, and the light guide (26) has ends each formed with a tab (37) for pressing the rod lens array (26) from above.
Abstract:
A hand-held scanning device (10) is disclosed in which the scanning device housing window (152) is located such that it does not come into contact with the object being scanned (54) while a scan is being performed. This location of the window (152) eliminates window damage caused by contact with the object (54) being scanned. This location also results in the window (152) being located out of the focus area of the scanning device optical system (40). Accordingly, any defects occurring in the window (152) will be out of focus and, thus, less detrimental to acquired image quality. A light source lens (66) may be integrally formed in the same assembly (150) as the window (152) and this assembly (150) may provide support for the light source (62).
Abstract:
A hand-held scanning device (10) is disclosed in which the scanning device housing window (152) is located such that it does not come into contact with the object being scanned (54) while a scan is being performed. This location of the window (152) eliminates window damage caused by contact with the object (54) being scanned. This location also results in the window (152) being located out of the focus area of the scanning device optical system (40). Accordingly, any defects occurring in the window (152) will be out of focus and, thus, less detrimental to acquired image quality. A light source lens (66) may be integrally formed in the same assembly (150) as the window (152) and this assembly (150) may provide support for the light source (62).
Abstract:
PURPOSE: An auxiliary apparatus for controlling focus/magnification of a color scanner is provided to easily adjust a focus and a magnification of the color scanner, thereby conveniently producing the color scanner module. CONSTITUTION: An image processor(200) digitalizes electric image signal by each color obtained from a color scanner for processing signals. A digital-to-analog part(300) separates digital color data by each color, samples any one color image data in the separated image data by colors, and converts the sampled image data into an analog image signal. A display device(400) displays output wave related to the converted image data, so that a focus and a magnification of the color scanner is mechanically adjusted by using the output wave.
Abstract:
반사광용 광원(15)으로부터의 광을 반사광 출사면(16b)으로부터 지폐 S에 대하여 조사하는 반사광용 도광체(16)와, 투과광용 광원(24)으로부터의 광을 투과광 출사면(23b)으로부터 지폐 S에 대하여 조사하는 투과광용 도광체(23)와, 지폐 S로부터의 반사광 및/또는 지폐 S를 투과한 투과광을 결상하는 로드 렌즈 어레이(18)와, 로드 렌즈 어레이(18)에 의해 집광된 광을 수광하는 수광 소자(19)와, 반사광용 도광체(16)를 수용 가능한 수용부(17)를 갖는 프레임(13)을 갖는다. 수용부(17)의 일부에, 반사광용 도광체(16)의 반사광 출사면(16b)으로부터 로드 렌즈 어레이(18)의 광축 Z측으로 돌출된 차광부(25)를 가짐과 함께, 차광부(25)는 반사광용 도광체(16)에 대한 위치 결정용 기준면(26)을 갖는다. 미광의 영향을 저감시킬 수 있어, 판독 화상의 정밀도가 향상된다.
Abstract:
밀착형 이미지 센서 유닛은, 원고 조명용의 광원(10)과, 상기 광원(10)으로부터의 광을 원고로 유도하기 위한 막대 형상의 도광체(11)와, 상기 원고로부터의 반사광을 광전 변환 소자에 결상하는 결상 소자(12)와, 상기 광전 변환 소자가 실장된 센서 기판(14)과, 이들을 장착함과 함께 상기 도광체(11)를 장착하기 위한 위치 결정부(200)를 갖는 프레임(15)과, 상기 도광체(11)를 착탈 가능하게 지지하고, 또한 상기 위치 결정부(200)에 착탈 가능하게 장착되는 지지 부재(16)를 구비하고 있다. 접착재를 사용하지 않고, 도광체(11)를 프레임(15)에 장착할 수 있으므로, 도광체(11)의 변형이나 밀착형 이미지 센서 유닛의 휨 등을 방지할 수 있다.