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    • 3. 发明申请
    • IMAGING LENS
    • 成像镜头
    • US20120162769A1
    • 2012-06-28
    • US13316690
    • 2011-12-12
    • Hisanori SuzukiShingo WatanabeKenichi KamadaKazuo Matsuoka
    • Hisanori SuzukiShingo WatanabeKenichi KamadaKazuo Matsuoka
    • G02B13/18G02B27/42
    • G02B13/0045G02B27/0037
    • An imaging lens with large aperture ratio, high-performance and low-cost is provided, which is applied to an imaging element of a small-size and high resolution, in which aberration is corrected satisfactorily and sufficient diffraction resolution is achieved. An imaging lens includes a first lens, a second lens, a third lens, a fourth lens, and a fifth lens arranged in sequence from an object side, wherein both surfaces of each lens are formed from aspheric surface, a diffraction optics surface exerting chromatic dispersion function is arranged on a surface on an image side of the second lens, each lens is configured from plastic material, and an aperture ratio is equal to or smaller than F/2.4.
    • 提供了一种具有大孔径比,高性能和低成本的成像透镜,其被应用于小尺寸和高分辨率的成像元件,其中像差被令人满意地校正并且实现了足够的衍射分辨率。 成像透镜包括从物体侧依次排列的第一透镜,第二透镜,第三透镜​​,第四透镜和第五透镜,其中每个透镜的两个表面由非球面形成,衍射光学表面施加彩色 色散功能被布置在第二透镜的像侧的表面上,每个透镜由塑料材料构成,孔径比等于或小于F / 2.4。
    • 4. 发明授权
    • Imaging lens
    • 成像镜头
    • US08767298B2
    • 2014-07-01
    • US13316690
    • 2011-12-12
    • Hisanori SuzukiShingo WatanabeKenichi KamadaKazuo Matsuoka
    • Hisanori SuzukiShingo WatanabeKenichi KamadaKazuo Matsuoka
    • G02B5/18G02B27/42
    • G02B13/0045G02B27/0037
    • An imaging lens with large aperture ratio, high-performance and low-cost is provided, which is applied to an imaging element of a small-size and high resolution, in which aberration is corrected satisfactorily and sufficient diffraction resolution is achieved. An imaging lens includes a first lens, a second lens, a third lens, a fourth lens, and a fifth lens arranged in sequence from an object side, wherein both surfaces of each lens are formed from aspheric surface, a diffraction optics surface exerting chromatic dispersion function is arranged on a surface on an image side of the second lens, each lens is configured from plastic material, and an aperture ratio is equal to or smaller than F/2.4.
    • 提供了一种具有大孔径比,高性能和低成本的成像透镜,其被应用于小尺寸和高分辨率的成像元件,其中像差被令人满意地校正并且实现了足够的衍射分辨率。 成像透镜包括从物体侧依次排列的第一透镜,第二透镜,第三透镜​​,第四透镜和第五透镜,其中每个透镜的两个表面由非球面形成,衍射光学表面施加彩色 色散功能被布置在第二透镜的像侧的表面上,每个透镜由塑料材料构成,孔径比等于或小于F / 2.4。
    • 5. 发明授权
    • Imaging lens
    • 成像镜头
    • US09268115B2
    • 2016-02-23
    • US13527747
    • 2012-06-20
    • Hisanori SuzukiKazuo Matsuoka
    • Hisanori SuzukiKazuo Matsuoka
    • G02B3/02G02B9/34G02B13/00
    • G02B13/004
    • To provide a high image-quality, low cost, and small sized imaging lens suitable for an imaging lens which is compact and which has high density pixels, and with aberrations corrected satisfactorily. An imaging lens is configured from a first lens, a second lens, a third lens, and a fourth lens arranged in the named order from an object side, wherein both surfaces of each lens are formed from aspheric surface, and a diffraction optics surface exerting chromatic aberration correction function is arranged on any one surface from a surface of the first lens on an object side to a surface of the third lens on the object side, and each lens is configured from plastic material.
    • 为了提供适合于紧凑且具有高密度像素并具有令人满意地校正的像差的成像透镜的高图像质量,低成本和小尺寸成像透镜。 成像透镜由从物体侧按顺序排列的第一透镜,第二透镜,第三透镜​​和第四透镜构成,其中每个透镜的两个表面由非球面形成,衍射光学表面施加 色差校正功能被布置在从物体侧的第一透镜的表面到物体侧的第三透镜的表面的任何一个表面上,并且每个透镜由塑料材料构成。
    • 6. 发明申请
    • IMAGING LENS
    • 成像镜头
    • US20130003194A1
    • 2013-01-03
    • US13527747
    • 2012-06-20
    • Hisanori SuzukiKazuo Matsuoka
    • Hisanori SuzukiKazuo Matsuoka
    • G02B13/18
    • G02B13/004
    • To provide a high image-quality, low cost, and small sized imaging lens suitable for an imaging lens which is compact and which has high density pixels, and with aberrations corrected satisfactorily. An imaging lens is configured from a first lens, a second lens, a third lens, and a fourth lens arranged in the named order from an object side, wherein both surfaces of each lens are formed from aspheric surface, and a diffraction optics surface exerting chromatic aberration correction function is arranged on any one surface from a surface of the first lens on an object side to a surface of the third lens on the object side, and each lens is configured from plastic material.
    • 为了提供适合于紧凑且具有高密度像素并具有令人满意地校正的像差的成像透镜的高图像质量,低成本和小尺寸成像透镜。 成像透镜由从物体侧按顺序排列的第一透镜,第二透镜,第三透镜​​和第四透镜构成,其中每个透镜的两个表面由非球面形成,衍射光学表面施加 色差校正功能被布置在从物体侧的第一透镜的表面到物体侧的第三透镜的表面的任何一个表面上,并且每个透镜由塑料材料构成。
    • 10. 发明申请
    • SOLID-STATE IMAGING DEVICE
    • 固态成像装置
    • US20110031377A1
    • 2011-02-10
    • US12920142
    • 2010-01-22
    • Hisanori SuzukiYasuhito YonetaShin-ichiro TakagiKentaro MaetaMasaharu Muramatsu
    • Hisanori SuzukiYasuhito YonetaShin-ichiro TakagiKentaro MaetaMasaharu Muramatsu
    • H01L27/146
    • H01L29/76816H01L27/14806H04N5/3653H04N5/37213H04N5/378
    • A multi-port solid-state imaging device of one embodiment includes an imaging region and a plurality of units. The imaging region contains a plurality of pixel columns. The units are arrayed in a direction in which the pixel columns are arrayed, and generate signals based on charges from the imaging region. Each unit has an output register, a multiplication register, and an amplifier. The output register transfers a charge from one or more corresponding pixel columns. The multiplication register receives the charge from the output register to generate a multiplied charge. The amplifier generates a signal based on the multiplied charge from the multiplication register. The solid-state imaging device contains a region where the units are provided, and a first dummy region and a second dummy region located on both sides in the above-mentioned direction of the region. In each of the first dummy region and the second dummy region, a multiplication register and an amplifier are provided.
    • 一个实施例的多端口固态成像装置包括成像区域和多个单元。 成像区域包含多个像素列。 这些单元沿像素列排列的方向排列,并且基于来自成像区域的电荷产生信号。 每个单元都有一个输出寄存器,一个乘法寄存器和一个放大器。 输出寄存器从一个或多个相应的像素列传输电荷。 乘法寄存器从输出寄存器接收电荷以产生乘法电荷。 放大器根据倍增寄存器的相乘电荷产生信号。 固态成像装置包括设置单元的区域,以及位于上述方向的两侧的第一虚拟区域和第二虚拟区域。 在第一虚拟区域和第二虚拟区域中的每一个中,设置有倍增寄存器和放大器。