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    • 1. 发明申请
    • CAM FRAME STRUCTURE, LENS BARREL STRUCTURE, SHAKE COMPENSATION DEVICE AND IMAGING ELEMENT UNIT
    • 凸轮框架结构,镜头杆结构,SHAKE补偿装置和成像元件单元
    • US20110001872A1
    • 2011-01-06
    • US12829401
    • 2010-07-02
    • Hironori HONSHOMasanori Yoshikawa
    • Hironori HONSHOMasanori Yoshikawa
    • H04N5/235G02B15/14G02B27/64
    • G02B3/00G02B7/102G02B27/646H04N5/2253H04N5/2254
    • The lens barrel includes a lens frame and a cam frame. The lens frame has a body supporting a lens element in the optical system, at least three through-holes formed in the lens frame body, at least three cam members arranged on the lens frame body and at least one protruding member that protrude from the lens frame body. The cam frame has a body, at least three projection members extending from the cam frame body and inserted through the through-holes, at least three cam grooves formed in the cam frame body and the projection members to guide the cam members and to movably support the lens frame with respect to the cam frame body. The cam frame also has at least one auxiliary groove to guide the protruding member. One end of the auxiliary groove is disposed in the circumferential direction between two adjacent projection members.
    • 透镜镜筒包括透镜框架和凸轮框架。 透镜框架具有支撑光学系统中的透镜元件的主体,形成在透镜框体中的至少三个通孔,布置在透镜框体上的至少三个凸轮构件和从透镜突出的至少一个突出构件 框架体。 凸轮框架具有主体,至少三个突出构件,其从凸轮框架体延伸并插入穿过通孔,形成在凸轮框体中的至少三个凸轮槽和凸出构件以引导凸轮构件并且可移动地支撑 透镜框架相对于凸轮框架体。 凸轮框架还具有至少一个辅助槽以引导突出构件。 辅助槽的一端沿周向设置在两个相邻的突出部件之间。
    • 2. 发明申请
    • ULTRASONIC ACTUATOR
    • 超声波执行器
    • US20110254407A1
    • 2011-10-20
    • US13152642
    • 2011-06-03
    • Yusuke ADACHIHironori HONSHO
    • Yusuke ADACHIHironori HONSHO
    • H02N2/04
    • H01L41/0471H01L41/0475H01L41/0913H02N2/004H02N2/026H02N2/103
    • An ultrasonic actuator may be provided in which generation of a stress is prevented in the connection face of the piezoelectric element between the electrodes and the conductive members. The ultrasonic actuator includes a piezoelectric element (P1) and flexible cables (F1). The piezoelectric element (P1) includes: a piezoelectric layer (1); a power supply electrode (2) provided on a principal surface of the piezoelectric layer (1); a counter electrode (3) provided to face the power supply electrode (2) with the piezoelectric layer (1) interposed therebetween; a power supply external electrode (4) which is provided on a short-side surface of the piezoelectric element (P1), and is electrically coupled to the power supply electrode (2); and a counter external electrode (5) which is provided on a short-side surface of the piezoelectric element (P1), and is electrically coupled to the counter electrode (3). The flexible cables (F1) include a first flexible cable (F11) connected to the power supply external electrode (4), and a second flexible cable (F12) connected to the counter external electrode (5).
    • 可以提供一种超声波致动器,其中在电极和导电构件之间的压电元件的连接面中防止产生应力。 超声波致动器包括压电元件(P1)和柔性电缆(F1)。 压电元件(P1)包括:压电层(1); 设置在压电层(1)的主表面上的电源电极(2); 设置成与压电层(1)相对置的与电源电极(2)相对的对置电极(3) 电源外部电极(4),其设置在所述压电元件(P1)的短边面上,并且电耦合到所述电源电极(2); 以及设置在所述压电元件(P1)的短边面上并与电极(3)电连接的对置外部电极(5)。 柔性电缆(F1)包括连接到电源外部电极(4)的第一柔性电缆(F11)和连接到对外部电极(5)的第二柔性电缆(F12)。
    • 3. 发明申请
    • ULTRASONIC ACTUATOR
    • 超声波执行器
    • US20100237743A1
    • 2010-09-23
    • US12794076
    • 2010-06-04
    • Yusuke ADACHIHironori HONSHO
    • Yusuke ADACHIHironori HONSHO
    • H02N2/02H01L41/047
    • H01L41/0471H01L41/0475H01L41/0913H02N2/004H02N2/026H02N2/103
    • An ultrasonic actuator may be provided in which generation of a stress is prevented in the connection face of the piezoelectric element between the electrodes and the conductive members. The ultrasonic actuator includes a piezoelectric element (P1) and flexible cables (F1). The piezoelectric element (P1) includes: a piezoelectric layer (1); a power supply electrode (2) provided on a principal surface of the piezoelectric layer (1); a counter electrode (3) provided to face the power supply electrode (2) with the piezoelectric layer (1) interposed therebetween; a power supply external electrode (4) which is provided on a short-side surface of the piezoelectric element (P1), and is electrically coupled to the power supply electrode (2); and a counter external electrode (5) which is provided on a short-side surface of the piezoelectric element (P1), and is electrically coupled to the counter electrode (3). The flexible cables (F1) include a first flexible cable (F11) connected to the power supply external electrode (4), and a second flexible cable (F12) connected to the counter external electrode (5).
    • 可以提供一种超声波致动器,其中在电极和导电构件之间的压电元件的连接面中防止产生应力。 超声波致动器包括压电元件(P1)和柔性电缆(F1)。 压电元件(P1)包括:压电层(1); 设置在压电层(1)的主表面上的电源电极(2); 设置成与压电层(1)相对置的与电源电极(2)相对的对置电极(3) 电源外部电极(4),其设置在所述压电元件(P1)的短边面上,并且电耦合到所述电源电极(2); 以及设置在所述压电元件(P1)的短边面上并与电极(3)电连接的对置外部电极(5)。 柔性电缆(F1)包括连接到电源外部电极(4)的第一柔性电缆(F11)和连接到对外部电极(5)的第二柔性电缆(F12)。
    • 4. 发明申请
    • LENS BARREL
    • 镜筒
    • US20120063015A1
    • 2012-03-15
    • US13225484
    • 2011-09-05
    • Hironori HONSHOHideyuki HashiDaisuke Ito
    • Hironori HONSHOHideyuki HashiDaisuke Ito
    • G02B7/02
    • G03B17/14G02B7/08G03B17/04
    • A lens barrel includes a lens frame, a guide shaft, a lead screw, a nut, and a biasing spring. The guide shaft is inserted into the lens frame. The nut is threaded onto the lead screw. The biasing member biases the lens frame toward the nut. The lens frame includes a first bearing component having a first insertion hole and a second bearing component having a second insertion hole. The guide shaft hits an inner peripheral face of the first insertion hole at a first and second contact point, and hits an inner peripheral face of the second insertion hole at a third and fourth contact point. The first and second contact points are disposed on opposing side of the third and fourth contact points using as a reference a parallel plane which extends along the direction of an optical axis and passes through a guide axis.
    • 透镜镜筒包括透镜框架,导向轴,导螺杆,螺母和偏置弹簧。 引导轴插入到镜架中。 螺母拧到导螺杆上。 偏置构件将透镜框朝向螺母偏压。 透镜框架包括具有第一插入孔的第一轴承部件和具有第二插入孔的第二轴承部件。 引导轴在第一和第二接触点处碰到第一插入孔的内周面,并且在第三和第四接触点处撞击第二插入孔的内周面。 第一和第二接触点以第三和第四接触点的相对侧为基准,沿着光轴方向延伸并穿过引导轴线的平行平面。