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    • 21. 发明授权
    • Image pickup lens, image pickup apparatus and mobile terminal
    • 摄像镜头,摄像设备和移动终端
    • US08502906B2
    • 2013-08-06
    • US13253262
    • 2011-10-05
    • Eigo SanoYuichi Ozaki
    • Eigo SanoYuichi Ozaki
    • H04N5/225G03B17/00G02B15/14G02B13/02
    • G02B13/0045G02B13/18H04N5/225
    • Provided is a small-sized five-element image pickup lens which ensures a sufficient lens speed of about F2 and exhibits various aberrations being excellently corrected. The image pickup lens is composed of, in order from the object side, a first lens with a positive refractive power, including a convex surface facing the object side; a second lens with a negative refractive power, including a concave surface facing the image side; a third lens with a positive or negative refractive power; a fourth lens with a positive refractive power, including a convex surface facing the image side; and a fifth lens with a negative refractive power, including a concave surface facing the image side. The image-side surface of the fifth lens has an aspheric shape, and includes an inflection point at a position excluding an intersection point with the optical axis.
    • 提供了一种小尺寸的五元素摄像镜头,其确保足够的镜头速度为约F2,并且显示出各种像差被良好校正。 图像拾取透镜从物体侧起依次包括具有正折射力的第一透镜,包括面向物体侧的凸面; 具有负屈光力的第二透镜,包括面向图像侧的凹面; 具有正或负屈光力的第三透镜; 具有正屈光力的第四透镜,包括面向图像侧的凸面; 以及具有负屈光力的第五透镜,包括面向图像侧的凹面。 第五透镜的图像侧表面具有非球面形状,并且在除了与光轴的交点之外的位置处包括拐点。
    • 23. 发明申请
    • Imaging Lens, Imaging Device and Portable Terminal
    • 成像镜头,成像设备和便携式终端
    • US20130176469A1
    • 2013-07-11
    • US13725320
    • 2012-12-21
    • Konica Minolta Opto, Inc.
    • Eigo SanoYuichi Ozaki
    • G02B13/00
    • G02B13/0045G02B13/18H04N5/225
    • Provided is a small-sized five-element image pickup lens which ensures a sufficient lens speed of about F2 and exhibits various aberrations being excellently corrected. The image pickup lens is composed of, in order from the object side, a first lens with a positive refractive power, including a convex surface facing the object side; a second lens with a negative refractive power, including a concave surface facing the image side; a third lens with a positive or negative refractive power; a fourth lens with a positive refractive power, including a convex surface facing the image side; and a fifth lens with a negative refractive power, including a concave surface facing the image side. The image-side surface of the fifth lens has an aspheric shape, and includes an inflection point at a position excluding an intersection point with the optical axis.
    • 提供了一种小尺寸的五元素摄像镜头,其确保足够的镜头速度为约F2,并且显示出各种像差被良好校正。 图像拾取透镜从物体侧起依次包括具有正折射力的第一透镜,包括面向物体侧的凸面; 具有负屈光力的第二透镜,包括面向图像侧的凹面; 具有正或负屈光力的第三透镜; 具有正屈光力的第四透镜,包括面向图像侧的凸面; 以及具有负屈光力的第五透镜,包括面向图像侧的凹面。 第五透镜的图像侧表面具有非球面形状,并且在除了与光轴的交点之外的位置处包括拐点。
    • 24. 发明授权
    • Image projection device having a deflection section with a deflection control section for distortion correction and speed correction
    • 图像投影装置具有偏转部分,其具有用于失真校正和速度校正的偏转控制部分
    • US08476569B2
    • 2013-07-02
    • US13059200
    • 2009-07-15
    • Kenji KonnoKenji Mizumoto
    • Kenji KonnoKenji Mizumoto
    • H01L27/00
    • H04N9/3129G02B26/0841G02B26/101G03B21/005
    • An object is to provide a image projection device which has a small size but can project an image having a high image quality. To achieve the object, in an image projection device, a reflection part which reflects a light flux from a light source is, while being rotated around a first axis by non-resonance driving, rotated by resonance driving around a second axis which is substantially perpendicular to the first axis, and thereby the light flux is deflected in a two-dimensional direction. By controlling the rotation of the reflection part, a correction for suppressing an image distortion along one scanning direction on a projection surface, and a correction for keeping substantially constant a scanning speed of the light flux along the other scanning direction on the projection surface, are performed. Here, the relationship of 10°
    • 目的在于提供一种具有小尺寸但可投影具有高图像质量的图像的图像投影装置。 为了实现该目的,在图像投影装置中,反射来自光源的光束的反射部分通过非谐振驱动绕第一轴线旋转,通过围绕基本垂直的第二轴线的共振驱动而旋转 到第一轴线,从而光束在二维方向上偏转。 通过控制反射部的旋转,可以进行用于抑制投影面上沿着一个扫描方向的图像失真的校正,以及沿着投影面上沿着另一扫描方向的光束的扫描速度保持大致恒定的校正。 执行。 这里,满足10°<70°的关系,其中θ表示相对于投影表面的法线而朝向另一扫描方向投射到投影表面的光束的倾斜角, 在反射部处于围绕第一轴和第二轴的转动的中心位置的情况下。
    • 26. 发明授权
    • Imaging lens, imaging device, and mobile terminal
    • 成像镜头,成像设备和移动终端
    • US08456564B2
    • 2013-06-04
    • US12667252
    • 2008-06-25
    • Yusuke HiraoKeiji MatsusakaYasunari Fukuta
    • Yusuke HiraoKeiji MatsusakaYasunari Fukuta
    • H04N5/225G02B9/00G02B13/18G02B9/12
    • G02B13/006G02B13/0035G02B13/004G02B13/0085
    • Provided are a wafer scale lens, which is so short in an optical total length with respect to an image height that it can correct an aberration satisfactory, and an optical system including the wafer scale lens and having a thin lens element on the side closest to the image. The optical system includes a first lens having a positive refractive power relative to an object, and a second lens arranged on the side of the image of the first lens and having a recessed shape on the side of the object. At least one lens is arranged on the side of the second lens. When that one of the lenses arranged on the side of the image of the second lens, which is arranged on the side closest to the image, is an i-th lens (i>3), this i-th lens includes an i-th lens flat plate and is formed on the object side of the i-th lens flat plate but has a refractive index different from that of the i-th lens flat plate, and a lens element having a convex shape on the object side where the main light ray of the maximum image height passes. Moreover, the ratio between the optical axial distance (or the lens distance) between a (i−1)-th lens and the i-th lens and the optical axis distance (or the optical total length) from the object side face of the first lens to the image face is 0.01 to 0.15.
    • 本发明提供一种晶片级透镜,其相对于能够校正像差的图像高度的光学全长相当短,以及包括晶片标尺透镜的光学系统,并且在最靠近 图片。 光学系统包括相对于物体具有正折射力的第一透镜和布置在第一透镜的图像侧并且在物体侧具有凹陷形状的第二透镜。 至少一个透镜布置在第二透镜的侧面上。 当布置在布置在最靠近图像的一侧的第二透镜的图像侧的那一个透镜是第i个透镜(i> 3)时,该第i个透镜包括i- 并且形成在第i个透镜平板的物体侧上,但是具有与第i个透镜平板的折射率不同的折射率,以及在物体侧具有凸形的透镜元件, 最大图像高度的主光线通过。 此外,第(i-1)个透镜和第i个透镜之间的光学轴向距离(或透镜距离)与距离物体侧面的光轴距离(或光学总长度)之间的比率 第一个镜头到图像面是0.01到0.15。
    • 28. 发明授权
    • Hollow reflecting optical element and scanning optical device
    • 中空反射光学元件和扫描光学器件
    • US08427726B2
    • 2013-04-23
    • US13257546
    • 2010-02-04
    • Shinichiro HaraNaoki KanekoHiroshi Takagi
    • Shinichiro HaraNaoki KanekoHiroshi Takagi
    • G02B26/08
    • G02B26/126B29C45/1704B29C45/7613B29C45/762B29C2945/76167B29C2945/76257B29C2945/76381B29C2945/76411B29C2945/76454B29C2945/76474B29C2945/76488B29C2945/76585B29C2945/76943B29D11/00596B29L2011/0058B41J2/471G02B27/0031
    • Provided are a resinous reflecting optical element that achieves high mirror surface precision by mitigating the warping effects associated with contraction during resin hardening and suppressing the distortion of a mirror surface that results from resistance to mold release, and a scanning optical device that uses said reflecting optical element. The reflecting optical element is characterized by having a long, tabular substrate (3), a mirror surface section (2) positioned on one surface of the substrate (3), and a hollow portion (4) positioned within the interior of the substrate (3), and is also characterized in that, as a result of configuring so that the hollow portion (4) is longer than the mirror surface section (2), warping and sink marks which form due to contraction during resin hardening are mitigated across the entire mirror surface section (2), and in that the entire mirror surface section (2) protrudes above the surface of the substrate (3), thereby suppressing the increase in resistance to mold release that occurs when a metallic mold is gripped by the molding during resin contraction, and preventing distortion of the mirror surface section (2) that is caused by resistance to mold release.
    • 提供一种树脂反射光学元件,其通过减轻与树脂硬化期间的收缩相关的翘曲效应并抑制由于抵抗脱模导致的反射镜表面的变形而实现高镜面精度;以及扫描光学装置,其使用所述反射光学 元件。 反射光学元件的特征在于具有长的平板状基板(3),位于基板(3)的一个表面上的镜面部分(2)和位于基板内部的中空部分(4) 3),其特征还在于,通过构造使得中空部分(4)比镜面部分(2)长,由于在树脂硬化期间由于收缩而形成的翘曲和凹痕被缓和 整个镜面部分(2),并且整个镜面部分(2)突出在基底(3)的表面上方,从而抑制当通过模制夹持金属模具时发生的抗脱模性的增加 在树脂收缩期间,并且防止由于抵抗脱模而引起的镜面部分(2)的变形。
    • 29. 发明授权
    • Actuator, drive device, and imaging device
    • 执行器,驱动装置和成像装置
    • US08421908B2
    • 2013-04-16
    • US13260557
    • 2010-03-16
    • Akira KosakaYasutaka TanimuraTakashi MatsuoNatsuki Yamamoto
    • Akira KosakaYasutaka TanimuraTakashi MatsuoNatsuki Yamamoto
    • H04N5/232H04N5/228G03B15/00G03B17/00H01L21/00
    • F03G7/065
    • An object of the present invention is to provide an actuator allowing a control of displacement and configured to offer a high degree of freedom in designing, and a drive device and an imaging device including the actuator. To achieve the object, an actuator is adopted including a movable part deformable in accordance with heat generation and a control section controlling the amount of deformation of the movable part. In the actuator, the movable part is structured with a plurality of portions including a base portion, a force generating portion, and a heat generating portion being stacked, the force generating portion generating force in accordance with heating, the heat generating portion generating heat in accordance with a current supply. The control section controls the amount of deformation of the movable part by controlling the current supply to the heat generating portion based on an electrical resistance in the heat generating portion.
    • 本发明的目的是提供一种执行器,其允许控制位移并且被配置为在设计中提供高自由度,以及驱动装置和包括致动器的成像装置。 为了实现该目的,采用了一种致动器,包括可根据发热变形的可移动部件和控制可移动部件的变形量的控制部件。 在致动器中,可移动部分由多个部分构成,该多个部分包括基部,力产生部分和发热部分,所述力产生部分根据加热产生力,所述发热部分产生热量 按照目前的供应。 控制部通过基于发热部的电阻控制向发热部的供给来控制可动部的变形量。
    • 30. 发明授权
    • Method for designing imaging lens, and imaging lens
    • 成像透镜设计方法及成像透镜
    • US08379314B2
    • 2013-02-19
    • US12919437
    • 2009-02-04
    • Yuichi Ozaki
    • Yuichi Ozaki
    • G02B3/00
    • G02B9/02B29D11/00009B29D11/00951G02B9/10G02B13/001G02B27/0012
    • Provided is a method for designing an image pickup lens which is low cost and applicable to reflow process. The method includes a step of designing the image pickup lens including a lens formed of energy curable resin, on the assumption that the energy curable resin is homogeneous; a step of obtaining an image pickup lens by manufacturing each lens forming the image pickup lens, based on the design; a step of evaluating lens performance of the obtained image pickup lens; a step of designing the image pickup lens again by changing surface shape of at least one surface and/or lens-surface distance in at least one place in the image pickup lens, based on the lens performance obtained by an simulation in the designing step and the lens performance of the image pickup lens obtained in the evaluating step.
    • 提供一种低成本且可应用于回流处理的图像拾取透镜的设计方法。 该方法包括设计包括由能量固化树脂形成的透镜的图像拾取透镜的步骤,假定能量可固化树脂是均匀的; 基于该设计,通过制造形成图像拾取透镜的每个透镜来获得图像拾取透镜的步骤; 评估所获得的图像拾取透镜的透镜性能的步骤; 基于通过在设计步骤中的模拟获得的透镜性能,通过在图像拾取透镜中的至少一个位置改变至少一个表面和/或透镜表面距离的表面形状和/或透镜表面距离来再次设计图像拾取透镜的步骤,以及 在评估步骤中获得的图像拾取透镜的透镜性能。