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    • 1. 发明申请
    • OBJECT INFORMATION ACQUIRING APPARATUS AND CONTROL METHOD OF OBJECT INFORMATION ACQUIRING APPARATUS
    • 获取装置的对象信息和获取装置的对象信息的控制方法
    • WO2014136410A3
    • 2014-11-20
    • PCT/JP2014001078
    • 2014-02-27
    • CANON KK
    • YAMAMOTO HIROSHIFURUKAWA YUKIO
    • A61B5/00
    • A61B5/0095A61B5/0091A61B5/4312A61B5/708A61B2576/00
    • An object information acquiring apparatus, comprises a light irradiation unit (105) that irradiates light onto an object and can change an emission direction of the light; a scanning mechanism (107) that moves the light irradiation unit along a first axis; a probe (113) that receives an acoustic wave generated by light irradiated onto the object; a processing unit (115) that generates characteristic information inside the object based on the acoustic wave received by the probe; and a control unit (109) that controls a position of the light irradiation unit on the first axis, and the emission direction of the light emitted from the light irradiation unit, wherein the control unit determines the emission direction of the light emitted from the light irradiation unit based on the position of the light irradiation unit on the first axis.
    • 一种物体信息获取装置,包括将光照射到物体上并能够改变光的发射方向的光照射单元(105) 沿着第一轴移动光照射单元的扫描机构(107); 探测器(113),其接收由照射到所述物体上的光产生的声波; 处理单元(115),其基于由所述探针接收的声波来生成所述对象内的特征信息; 以及控制单元(109),其控制第一轴上的光照射单元的位置和从光照射单元发射的光的发射方向,其中控制单元确定从光发射的光的发射方向 照射单元,其基于第一轴上的光照射单元的位置。
    • 4. 发明专利
    • DE69827902D1
    • 2005-01-05
    • DE69827902
    • 1998-09-28
    • CANON KK
    • FURUKAWA YUKIOOUCHI TOSHIHIKO
    • H01S5/00H01L27/15H01S5/02H01S5/183H01S5/42G02B6/42
    • An optical device structure includes a first substrate structure and a second substrate structure. The first substrate structure includes a first substrate (11, 411), at least an active region (17, 217, 415) formed on the first substrate (11, 411), and at least a first electric connector portion (27, 31, 101, 105, 223, 305, 423, 425, 427) provided corresponding to the active region (17, 217, 415) for injecting a current into or applying a voltage to the active region (17, 217, 415). The second substrate structure includes a second substrate (51, 351), and at least a second electric connector portion (55, 355, 453, 455, 457) formed on the second substrate (51, 351) corresponding to the first electric connector portion (27, 31, 101, 105, 223, 305, 423, 425, 427). The first and second substrates (11, 51, 351, 411) are bonded to each other using an anisotropic electrically-conductive adhesive (57, 59) containing electrically-conductive particles (59) and having an elctrically-conductive characteristic only in a direction perpendicular to the first and second substrates, such that the corresponding first and second electric connector portions on the first and second substrates are electrically connected to each other.
    • 5. 发明专利
    • DE69609547D1
    • 2000-09-07
    • DE69609547
    • 1996-03-29
    • CANON KK
    • MIZUTANI NATSUHIKOSAKATA HAJIMEFURUKAWA YUKIO
    • H01S5/062H01S5/0625H01S5/10H01S5/12H01S5/20H01S5/227H01S5/32H01S5/34H01S5/343H01S5/50H01S5/06H04B10/14
    • An optical semiconductor apparatus includes at least two semiconductor laser portions (11, 12; 21, 22; 31, 32; 41, 42; 51, 52; 61, 62; 71, 72; 81, 82; 2011, 2013) each having a light waveguide with an active layer (35, 45, 105, 503, 513, 605, 703, 714, 803, 1015, 1215, 2105, 2303, 2703, 2714, 2724) and a distributed reflector (33, 43, 102, 505, 515, 603, 705, 716, 806, 1039, 1139, 2102, 2305, 2705), and a stimulating unit (113, 114, 115; 1035, 1037; 2109, 2110; 2308, 2309; 2708, 2709) for independently stimulating the active layers of the light waveguides. The semiconductor laser portions are serially arranged in a light propagation direction. The light waveguides are constructed such that a difference between propagation constants for two different polarization modes in one of the waveguides is different from a difference between propagation constants for the two different polarization modes in the other of the waveguides. When one of injection of a modulation current signal into or application of a mudulation voltage to the optical semiconductor apparatus, an oscillation state can be switched between a state in which Bragg wavelengths for one of the two different polarization modes coincide with each other between the light waveguides and a state in which Bragg wavelengths for the other of the two different polarization modes coincide with each other between the light waveguides.
    • 7. 发明专利
    • AT442605T
    • 2009-09-15
    • AT08151979
    • 2007-06-05
    • CANON KK
    • KATO TAKAHISAFURUKAWA YUKIOAKIYAMA TAKAHIRO
    • G02B26/08B81B3/00
    • The invention relates to a method of producing an oscillator device having an oscillating member. This method comprises a step of forming the oscillating member with a movable element having a plurality of protrusions for adjusting a mass of the oscillating member, the protrusions extending from the movable element in a direction parallel to the oscillation axis and being formed in pairs, each pair being disposed at positions symmetrical with respect to the oscillation axis, wherein a sectional area of each protrusion along a plane perpendicular to the oscillation axis is constant in the oscillation axis direction, and a step of projecting a laser beam to a cutting position of each of protrusions to be cut, so as to partly remove the movable element, including a portion of the protrusion ranging from the cutting position to a tip end of the protrusion which portion is not irradiated by the laser beam. The protrusions are so cut that the sum of the lengths removed from the protrusions by the cutting becomes equal to a predetermined length to thereby adjust an inertia moment of the oscillating member.