会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Imaging device
    • 成像设备
    • US08441572B2
    • 2013-05-14
    • US13054166
    • 2009-07-09
    • Akio KonishiKoichiro HirabayashiKeiji SakamotoDaisuke ItoEiji Nagasaki
    • Akio KonishiKoichiro HirabayashiKeiji SakamotoDaisuke ItoEiji Nagasaki
    • H04N5/225
    • G03B17/02H04N5/2253
    • To produce a subject's image on an imager as accurately as possible, a technique that is effectively applicable to the process of assembling an optical system is provided.An imaging device includes: an imager; a plate member, to which the imager is attached; and a holding member configured to hold the plate member. The plate member has a first portion, through which at least one fixing hole has been cut, and a second portion, to which the imager is attached and through which at least one adjusting hole has been cut. The plate member is held by the holding member using a number of fastening members to be introduced through the at least one fixing hole and the at least one adjusting hole. When the first portion is fixed on the holding member, the fastening member that is introduced through the at least one adjusting hole adjusts the relative position of the second portion to the holding member.
    • 为了尽可能准确地在成像器上产生被摄体的图像,提供了有效地适用于组装光学系统的过程的技术。 成像装置包括:成像器; 成像器附着的板构件; 以及构造成保持所述板构件的保持构件。 板构件具有第一部分,至少一个固定孔已经通过该第一部分被切割,以及第二部分,成像器附接到该第二部分,并且已经切割了至少一个调节孔。 板构件由保持构件使用多个紧固构件保持,以通过至少一个固定孔和至少一个调节孔引入。 当第一部分固定在保持构件上时,通过至少一个调节孔引入的紧固构件调节第二部分与保持构件的相对位置。
    • 2. 发明申请
    • IMAGING DEVICE
    • 成像装置
    • US20110115975A1
    • 2011-05-19
    • US13054166
    • 2009-07-09
    • Akio KonishiKoichiro HirabayashiKeiji SakamotoDaisuke ItoEiji Nagasaki
    • Akio KonishiKoichiro HirabayashiKeiji SakamotoDaisuke ItoEiji Nagasaki
    • H04N5/225
    • G03B17/02H04N5/2253
    • To produce a subject's image on an imager as accurately as possible, a technique that is effectively applicable to the process of assembling an optical system is provided.An imaging device includes: an imager; a plate member, to which the imager is attached; and a holding member configured to hold the plate member. The plate member has a first portion, through which at least one fixing hole has been cut, and a second portion, to which the imager is attached and through which at least one adjusting hole has been cut. The plate member is held by the holding member using a number of fastening members to be introduced through the at least one fixing hole and the at least one adjusting hole. When the first portion is fixed on the holding member, the fastening member that is introduced through the at least one adjusting hole adjusts the relative position of the second portion to the holding member.
    • 为了尽可能准确地在成像器上产生被摄体的图像,提供了有效地适用于组装光学系统的过程的技术。 成像装置包括:成像器; 成像器附着的板构件; 以及构造成保持所述板构件的保持构件。 板构件具有第一部分,至少一个固定孔已经通过该第一部分被切割,以及第二部分,成像器附接到该第二部分,并且已经切割了至少一个调节孔。 板构件由保持构件使用多个紧固构件保持,以通过至少一个固定孔和至少一个调节孔引入。 当第一部分固定在保持构件上时,通过至少一个调节孔引入的紧固构件调节第二部分与保持构件的相对位置。
    • 3. 发明授权
    • Magnetic recording and reproducing apparatus
    • 磁记录和再现设备
    • US06339514B1
    • 2002-01-15
    • US09423900
    • 2000-02-11
    • Keiji SakamotoAkio KonishiKoichiro HirabayashiShigeo Ueda
    • Keiji SakamotoAkio KonishiKoichiro HirabayashiShigeo Ueda
    • G11B15675
    • G11B15/08G11B15/07G11B15/67581G11B23/042G11B23/30
    • The invention presents a magnetic recording and reproducing apparatus capable of reducing the size and preventing external force from propagating directly to the internal mechanism. To achieve the object, a main arm 26 and a sub-arm 29 are constituted so as not to intersect with a photo detector 31 always during rotating operation within a plane including the photo detector 31, and the dimension can be hence reduced in the width direction of the apparatus, and moreover as the wall thickness of MIC-SW 46 is reduced, the upper end of the MIC-SW 46 is held by a back plate 48, so that the dimension of the apparatus can be reduced also in the depth direction, and further a cassette holder 13 is locked by a damper 42 to prevent effects from outside when a sub-chassis 19 moves from unloading position to loading position.
    • 本发明提出一种能够减小尺寸并防止外力直接传播到内部机构的磁记录和重放装置。 为了实现该目的,主臂26和副臂29构成为在包括光电检测器31的平面内的旋转操作期间始终不与光电检测器31相交,因此尺寸可以减小宽度 此外,当MIC-SW 46的壁厚减小时,MIC-SW 46的上端由背板48保持,使得装置的尺寸也可以在深度上减小 另外,当副底盘19从卸载位置移动到装载位置时,盒保持件13被阻尼器42锁定,以防止来自外部的影响。
    • 4. 发明授权
    • Imaging device and camera
    • 成像设备和相机
    • US07787193B2
    • 2010-08-31
    • US12092505
    • 2006-11-02
    • Keiji SakamotoTakayuki HayashiEiichi NagaokaKenichi HayashiDaisuke ItoAkio KonishiKeishi Iwasaki
    • Keiji SakamotoTakayuki HayashiEiichi NagaokaKenichi HayashiDaisuke ItoAkio KonishiKeishi Iwasaki
    • G02B15/14G03B15/00
    • G03B17/17G02B7/102G03B17/04G03B19/02G03B2217/002G03B2219/02H04N5/2254
    • The present invention aims to provide an imaging device and a camera realizing simultaneously a high magnification zoom lens system and the miniaturization of the device. The imaging device (2) includes a first lens group (G1), a second group frame unit (42), a first group frame unit (41), a motor unit (32), a third lens group (G3), and a CCD unit (33). The first lens group (G1) takes in a light flux incident along a first optical axis (A1). The second group frame unit (42) bends the light flux incident along the first optical axis (A1) to a direction along a second optical axis (A2). The first group frame unit (41) retains the first lens group (G1), and moves the first lens group (G1) in the direction along the first optical axis (A1). The motor unit (32) drives the first group frame unit (41). The first group frame unit (41) includes a driving frame (51) movable in the direction along the first optical axis (A1), and a first group frame retaining the first lens group (G1) and able to move in the direction along the first optical axis (A1) with respect to the driving frame (51).
    • 本发明的目的在于提供一种同时实现高倍率变焦透镜系统的摄像装置和照相机以及装置的小型化。 成像装置(2)包括第一透镜组(G1),第二组框单元(42),第一组框单元(41),电机单元(32),第三透镜​​组(G3) CCD单元(33)。 第一透镜组(G1)沿着第一光轴(A1)入射光束。 第二组框单元(42)使沿着第一光轴(A1)入射的光束沿着第二光轴(A2)的方向弯曲。 第一组框单元(41)保持第一透镜组(G1),并使第一透镜组(G1)沿着第一光轴(A1)的方向移动。 马达单元(32)驱动第一组框单元(41)。 第一组框架单元(41)包括沿着第一光轴(A1)的方向可移动的驱动框架(51)和保持第一透镜组(G1)的第一组框架,并且能够沿着沿着第一光轴 第一光轴(A1)相对于驱动框架(51)。
    • 5. 发明申请
    • IMAGING DEVICE AND CAMERA
    • 成像设备和摄像机
    • US20090122421A1
    • 2009-05-14
    • US12092505
    • 2006-11-02
    • Keiji SakamotoTakayuki HayashiEiichi NagaokaKenichi HayashiDaisuke ItoAkio KonishiKeishi Iwasaki
    • Keiji SakamotoTakayuki HayashiEiichi NagaokaKenichi HayashiDaisuke ItoAkio KonishiKeishi Iwasaki
    • G02B7/04G02B11/02G02B11/06
    • G03B17/17G02B7/102G03B17/04G03B19/02G03B2217/002G03B2219/02H04N5/2254
    • The present invention aims to provide an imaging device and a camera realizing simultaneously a high magnification zoom lens system and the miniaturization of the device. The imaging device (2) includes a first lens group (G1), a second group frame unit (42), a first group frame unit (41), a motor unit (32), a third lens group (G3), and a CCD unit (33). The first lens group (G1) takes in a light flux incident along a first optical axis (A1). The second group frame unit (42) bends the light flux incident along the first optical axis (A1) to a direction along a second optical axis (A2). The first group frame unit (41) retains the first lens group (G1), and moves the first lens group (G1) in the direction along the first optical axis (A1). The motor unit (32) drives the first group frame unit (41). The first group frame unit (41) includes a driving frame (51) movable in the direction along the first optical axis (A1), and a first group frame retaining the first lens group (G1) and able to move in the direction along the first optical axis (A1) with respect to the driving frame (51).
    • 本发明的目的在于提供一种同时实现高倍率变焦透镜系统的摄像装置和照相机以及装置的小型化。 成像装置(2)包括第一透镜组(G1),第二组框单元(42),第一组框单元(41),电机单元(32),第三透镜​​组(G3) CCD单元(33)。 第一透镜组(G1)沿着第一光轴(A1)入射光束。 第二组框单元(42)使沿着第一光轴(A1)入射的光束沿着第二光轴(A2)的方向弯曲。 第一组框单元(41)保持第一透镜组(G1),并使第一透镜组(G1)沿着第一光轴(A1)的方向移动。 马达单元(32)驱动第一组框单元(41)。 第一组框架单元(41)包括沿着第一光轴(A1)的方向可移动的驱动框架(51)和保持第一透镜组(G1)的第一组框架,并且能够沿着沿着第一光轴 第一光轴(A1)相对于驱动框架(51)。
    • 6. 发明申请
    • LENS BARREL
    • 镜筒
    • US20130016434A1
    • 2013-01-17
    • US13637662
    • 2011-08-10
    • Shinichi IwasakiKeiji SakamotoEiji NagasakiKenji SasakiFumio Shinano
    • Shinichi IwasakiKeiji SakamotoEiji NagasakiKenji SasakiFumio Shinano
    • G02B7/04
    • G02B7/08
    • A lens barrel (3) comprises a drive frame (30) and a first lens frame (50). The first lens frame (50) has first to third cam followers (54a to 54c) that are respectively inserted into first to third outer cam grooves (34a to 34c), and first and second auxiliary pins (55a and 55b) disposed so as to be able to come into contact with first and second auxiliary grooves (35a and 35b). When viewed in the Y axis direction, the first and second auxiliary pins (55a and 55b) are disposed between the first to third cam followers (54a to 54c) in the peripheral direction. The positions of the first and second auxiliary pins (55a and 55b) are offset from the positions of the first to third cam followers (54a to 54c) in the Y axis direction.
    • 镜筒(3)包括驱动框架(30)和第一透镜框架(50)。 第一透镜框架(50)具有分别插入第一至第三外凸轮槽(34a至34c)中的第一至第三凸轮从动件(54a至54c),以及第一和第二辅助销(55a和55b) 能够与第一和第二辅助槽(35a和35b)接触。 当沿Y轴方向观察时,第一和第二辅助销(55a和55b)沿圆周方向设置在第一至第三凸轮从动件(54a至54c)之间。 第一和第二辅助销(55a和55b)的位置在第一至第三凸轮从动件(54a至54c)的位置沿Y轴方向偏移。
    • 7. 发明授权
    • Lens barrel
    • 镜筒
    • US08810920B2
    • 2014-08-19
    • US13637662
    • 2011-08-10
    • Shinichi IwasakiKeiji SakamotoEiji NagasakiKenji SasakiFumio Shinano
    • Shinichi IwasakiKeiji SakamotoEiji NagasakiKenji SasakiFumio Shinano
    • G02B15/14G02B7/02G02B17/00
    • G02B7/08
    • A lens barrel (3) comprises a drive frame (30) and a first lens frame (50). The first lens frame (50) has first to third cam followers (54a to 54c) that are respectively inserted into first to third outer cam grooves (34a to 34c), and first and second auxiliary pins (55a and 55b) disposed so as to be able to come into contact with first and second auxiliary grooves (35a and 35b). When viewed in the Y axis direction, the first and second auxiliary pins (55a and 55b) are disposed between the first to third cam followers (54a to 54c) in the peripheral direction. The positions of the first and second auxiliary pins (55a and 55b) are offset from the positions of the first to third cam followers (54a to 54c) in the Y axis direction.
    • 镜筒(3)包括驱动框架(30)和第一透镜框架(50)。 第一透镜框架(50)具有分别插入第一至第三外凸轮槽(34a至34c)中的第一至第三凸轮从动件(54a至54c),以及第一和第二辅助销(55a和55b) 能够与第一和第二辅助槽(35a和35b)接触。 当沿Y轴方向观察时,第一和第二辅助销(55a和55b)沿圆周方向设置在第一至第三凸轮从动件(54a至54c)之间。 第一和第二辅助销(55a和55b)的位置在第一至第三凸轮从动件(54a至54c)的位置沿Y轴方向偏移。
    • 10. 发明授权
    • Imaging apparatus and driving method of its imaging optical system
    • 其成像光学系统的成像设备及其驱动方法
    • US07483219B2
    • 2009-01-27
    • US11407709
    • 2006-04-20
    • Kenichi HayashiTakayuki HayashiEiichi NagaokaKeiji SakamotoNaoto YumikiDaisuke Ito
    • Kenichi HayashiTakayuki HayashiEiichi NagaokaKeiji SakamotoNaoto YumikiDaisuke Ito
    • G02B15/14G02B7/02
    • G02B15/173G02B7/102
    • An imaging optical system is configured with a first lens group disposed on a first optical axis and capturing a luminous flux from a subject along the first optical axis, a prism that folds the luminous flux passed through the first lens group toward a direction along a second optical axis that is substantially perpendicular to the first optical axis and second to fifth lens groups disposed on the second optical axis. At the end of the operation, while the first lens group is driven in a direction of the prism along the first optical axis, the second to the fourth lens groups are driven to an initial angle of view position where these lens groups are to be present at the start of the operation. Thereby, an imaging apparatus whose chassis is very thin and that can realize a high pixel counter and a large magnification, while enabling the speeding-up of the starting operation and the ending operation, can be provided.
    • 成像光学系统被配置为具有设置在第一光轴上的第一透镜组并且沿着第一光轴捕获来自被摄体的光束;棱镜,其将穿过第一透镜组的光束朝向第二光轴的方向 光轴基本上垂直于设置在第二光轴上的第一光轴和第二至第五透镜组。 在操作结束时,当第一透镜组沿着第一光轴沿棱镜的方向被驱动时,第二至第四透镜组被驱动到要存在这些透镜组的初始视角位置 在操作开始时。 由此,能够提供其底盘非常薄并能够实现高像素计数器和大放大率的成像装置,同时能够实现启动操作和结束操作的加速。