摘要:
A camera lens unit includes a first lens including a first lens section having a first optical axis along which light runs, and a second lens. The second lens includes a second lens section having a second optical axis along which the light runs, a flange provided on an outer circumference of the second lens and having a surface facing the first lens, and a cylindrical section having an inner circumference extending from the flange along the second optical axis. The inner circumference of the cylindrical section faces the second lens section. The first lens contacts the inner circumference of the cylindrical section of the second lens and is engaged into the cylindrical section. The cylindrical section of the second lens includes plural protrusions protruding along the second optical axis, such that plural crenels are provided between the protrusions and have heights along the second optical axis lower than the protrusions. The camera lens unit prevents diffuse reflection caused by unnecessary incident light.
摘要:
A lens unit including a first lens including a first lens section having a first optical axis along which light passes, and a second lens. The second lens includes a second lens section having a second optical axis along which light passes, and a flange provided at the outer circumferential part of the second lens section and having a surface opposed to the first lens, and a tubular section extending from the flange in the direction of the second optical axis and having an inner side face opposed to the second lens section. The first lens is fitted in the tubular section and in contact with the inner side face of the tubular section of the second lens. The tubular section of the second lens has a plurality of protrusions protruding in the direction of the second optical axis and a plurality of valleys provided between the protrusions.
摘要:
An image pickup lens capable of providing an angle of view of up to 70° or higher is provided. The image pickup lens can also be reduced in size and various aberrations associated with the lens can be corrected favorably, so that the image pickup lens is compatible with a high-pixel image pickup element. The image pickup lens 7 includes, in order from an object side to an image surface side: a first lens 1 that is a biconvex lens having positive power; a second lens 2 that has negative power and whose lens surface facing the image surface side is concave; a third lens 3 that is a meniscus lens having positive power and whose lens surface facing the image surface side is convex; and a fourth lens 4 that has negative power, whose lens surfaces are both aspherical and whose lens surface facing the image surface side is concave near an optical axis. The image pickup lens 7 satisfies the following conditional expressions (1) and (2), where f is the focal length of the overall optical system, Y′ is the maximum image height, and TL is the overall length of the optical system: 1.20
摘要:
The present invention provides an imaging lens composed of four lenses that can be made compact (downsized, thinned), allows a reduction in cost and is compatible with a high pixel imaging element having a megapixel or more incorporated in a small mobile product such as a mobile phone. The imaging lens 7 includes, in order from the object side to the image surface side: an aperture stop 5; a first lens 1 having positive power; a second lens 2 composed of a meniscus lens having negative power whose lens surface facing the image surface side is concave; a third lens 3 composed of a meniscus lens having positive power whose lens surface facing the image surface side is convex, and a fourth lens 4 having negative power whose lens surfaces are both aspheric and lens surface facing the image surface side is concave in the vicinity of the optical axis. A diffractive optical element is formed on one of the lens surfaces of the first lens 1 or one of the lens surfaces of the second lens 2.
摘要:
An image pickup lens capable of providing an angle of view of up to 70° or higher is provided. The image pickup lens can also be reduced in size and various aberrations associated with the lens can be corrected favorably, so that the image pickup lens is compatible with a high-pixel image pickup element. The image pickup lens 7 includes, in order from an object side to an image surface side: a first lens 1 that is a biconvex lens having positive power; a second lens 2 that has negative power and whose lens surface facing the image surface side is concave; a third lens 3 that is a meniscus lens having positive power and whose lens surface facing the image surface side is convex; and a fourth lens 4 that has negative power, whose lens surfaces are both aspherical and whose lens surface facing the image surface side is concave near an optical axis. The image pickup lens 7 satisfies the following conditional expressions (1) and (2), where f is the focal length of the overall optical system, Y′ is the maximum image height, and TL is the overall length of the optical system: 1.20
摘要:
The present invention provides an imaging lens composed of four lenses that can be made compact (downsized, thinned), allows a reduction in cost and is compatible with a high pixel imaging element having a megapixel or more incorporated in a small mobile product such as a mobile phone. The imaging lens 7 includes, in order from the object side to the image surface side: an aperture stop 5; a first lens 1 having positive power; a second lens 2 composed of a meniscus lens having negative power whose lens surface facing the image surface side is concave; a third lens 3 composed of a meniscus lens having positive power whose lens surface facing the image surface side is convex, and a fourth lens 4 having negative power whose lens surfaces are both aspheric and lens surface facing the image surface side is concave in the vicinity of the optical axis. A diffractive optical element is formed on one of the lens surfaces of the first lens 1 or one of the lens surfaces of the second lens 2.
摘要:
The present invention provides an image pickup lens with a large focal depth from the center to the outer part of an image plane formed on an image sensor and capable of maintaining its focal depth within a practical range and thus suppressing a decline in the resolution. An image pickup lens 7 includes, in order from the object side to the image plane side, an aperture stop 5, a first lens 1 that is a biconvex lens having positive power, a second lens 2 that is a meniscus lens having negative power and whose lens surface facing the object side is convex, a third lens 3 that is a meniscus lens having positive power and whose lens surface facing the object side is concave, and a fourth lens 4 that is a biconcave lens having negative power. The image pickup lens 7 includes a multifocal lens on the lens surface of the first lens 1 facing the object side. D and Ymax satisfy the following conditional expression (1): 0≦D/Ymax≦0.1 (1) where D is an absolute value of the distance between the multifocal lens surface and a surface of the aperture stop on the optical axis, and Ymax is the absolute value of the maximum image height on an image plane formed on the image sensor.
摘要翻译:本发明提供了一种从图像传感器上形成的图像平面的中心到外部具有较大焦距的摄像透镜,能够将其焦点深度保持在实际范围内,从而抑制分辨率下降。 图像拾取透镜7从物体侧到像面侧依次包括孔径光阑5,作为具有正光焦度的双凸透镜的第一透镜1,具有负光焦度的弯月形透镜的第二透镜2和 其面向物体侧的透镜表面是凸形的,作为具有正光焦度并且其透镜表面面向物体侧的凹凸透镜的第三透镜3是凹形的,以及具有负光焦度的双凹透镜的第四透镜4。 图像拾取透镜7在第一透镜1的面向物体侧的透镜表面上包括多焦点透镜。 D和Ymax满足以下条件表达式(1):0≦̸ D / Ymax≦̸ 0.1(1)其中D是多焦点透镜表面与光轴上孔径光阑的表面之间的距离的绝对值,Ymax 是形成在图像传感器上的图像平面上的最大图像高度的绝对值。
摘要:
The present invention provides an image pickup lens with a large focal depth from the center to the outer part of an image plane formed on an image sensor and capable of maintaining its focal depth within a practical range and thus suppressing a decline in the resolution. An image pickup lens 7 includes, in order from the object side to the image plane side, an aperture stop 5, a first lens 1 that is a biconvex lens having positive power, a second lens 2 that is a meniscus lens having negative power and whose lens surface facing the object side is convex, a third lens 3 that is a meniscus lens having positive power and whose lens surface facing the object side is concave, and a fourth lens 4 that is a biconcave lens having negative power. The image pickup lens 7 includes a multifocal lens on the lens surface of the first lens 1 facing the object side. D and Ymax satisfy the following conditional expression (1): 0≦D/Ymax≦0.1 (1) where D is an absolute value of the distance between the multifocal lens surface and a surface of the aperture stop on the optical axis, and Ymax is the absolute value of the maximum image height on an image plane formed on the image sensor.
摘要翻译:本发明提供了一种从图像传感器上形成的图像平面的中心到外部具有较大焦距的摄像透镜,能够将其焦点深度保持在实际范围内,从而抑制分辨率下降。 图像拾取透镜7从物体侧到像面侧依次包括孔径光阑5,作为具有正光焦度的双凸透镜的第一透镜1,具有负光焦度的弯月形透镜的第二透镜2和 其面向物体侧的透镜表面是凸形的,作为具有正光焦度并且其透镜表面面向物体侧的凹凸透镜的第三透镜3是凹形的,以及具有负光焦度的双凹透镜的第四透镜4。 图像拾取透镜7在第一透镜1的面向物体侧的透镜表面上包括多焦点透镜。 D和Ymax满足以下条件表达式(1):0≦̸ D / Ymax≦̸ 0.1(1)其中D是多焦点透镜表面与光轴上孔径光阑的表面之间的距离的绝对值,Ymax 是形成在图像传感器上的图像平面上的最大图像高度的绝对值。
摘要:
A color electrophotographic image forming apparatus includes a plurality of electrophotographic photosensitive drums configured to develop images, an intermediary transfer member onto which developed images are transferred, and an image forming unit having a plurality of cartridge mounting portions for demountably mounting cartridges. The image forming unit is movable between a transfer position for transferring, onto the recording material, the developed images transferred onto the intermediary transfer member, and a mounting and demounting position for mounting and demounting the cartridges relative to the cartridge mounting portions. An opening permits mounting and demounting of the cartridges relative to the cartridge mounting portions of the image forming unit placed in the mounting and demounting position, and a locking member releasably locks the image forming unit which is moved to the mounting and demounting position.
摘要:
A magnetic resonance imaging apparatus includes a bed, a static field magnet, a gradient coil, a liner and a heat transfer material. The bed includes a table-top capable of placing thereon an object. The static field magnet generates a static magnetic field. The gradient coil, formed inside the static field magnet, generates gradient magnetic fields. The liner, provided inside the gradient coil, forms a bore in which the table-top is advanced or retreated. Further, the heat transfer material is attached to the liner.