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
    • Method of manufacturing oscillator device, and optical deflector and optical instrument with oscillator device
    • 制造振荡器装置的方法以及具有振荡器装置的光偏转器和光学仪器
    • US08472096B2
    • 2013-06-25
    • US12674325
    • 2008-11-13
    • Kazunari FujiiTakahisa KatoYoshio HottaSuguru MiyagawaTakahiro Akiyama
    • Kazunari FujiiTakahisa KatoYoshio HottaSuguru MiyagawaTakahiro Akiyama
    • G02B26/08
    • G02B26/0833Y10T29/49826
    • A method of manufacturing an oscillator device having first and second oscillators being driven at first and second driving resonance frequencies gf1 and gf2, the method including a first step for processing the two oscillators, wherein, when the two oscillators are going to be processed as oscillators having first and second resonance frequencies different from the two driving resonance frequencies with a certain dispersion range, the two oscillators are so processed that the first and second resonance frequencies different from the two driving resonance frequencies become equal to first and second resonance frequencies f1 and f2, respectively, which are included in adjustable resonance frequency ranges, respectively, and a second step for adjusting the first and second resonance frequencies f1 and f2 so that they become equal to the first and second driving resonance frequencies gf1 and gf2, respectively.
    • 一种制造具有第一和第二驱动谐振频率gf1和gf2的第一和第二振荡器的振荡器装置的方法,该方法包括用于处理两个振荡器的第一步骤,其中当两个振荡器将被作为振荡器处理时 具有与具有一定色散范围的两个驱动谐振频率不同的第一和第二谐振频率,两个振荡器被如此处理,使得与两个驱动谐振频率不同的第一和第二谐振频率变得等于第一和第二谐振频率f1和f2 分别包括在可调节的共振频率范围内,第二步骤用于分别调整第一和第二共振频率f1和f2使得它们分别等于第一和第二驱动谐振频率gf1和gf2。
    • 5. 发明申请
    • METHOD OF MANUFACTURING OSCILLATOR DEVICE, AND OPTICAL DEFLECTOR AND OPTICAL INSTRUMENT WITH OSCILLATOR DEVICE BASED ON IT
    • 振荡器器件的制造方法以及基于IT的振荡器器件的光学偏置器和光学仪器
    • US20110019256A1
    • 2011-01-27
    • US12673694
    • 2008-10-28
    • Suguru MiyagawaTakahiro AkiyamaKazutoshi TorashimaTakahisa KatoKazunari Fujii
    • Suguru MiyagawaTakahiro AkiyamaKazutoshi TorashimaTakahisa KatoKazunari Fujii
    • G02B26/08B23Q17/00
    • G02B26/105G02B26/085H04N1/1135Y10T29/49774
    • A method of manufacturing an oscillator device having an oscillator supported relative to a fixed member by a torsion spring for oscillation around a torsion axis and arranged to be driven at a resonance frequency, which method includes a first step for determining an assumed value of an inertia moment weight of the oscillator, a second step for measuring the resonance frequency, a third step for calculating a spring constant of the torsion spring, from the assumed value of the inertia moment weight and the measured resonance frequency obtained at said first and second steps, a fourth step for calculating an adjustment amount for the inertia moment of the oscillator or for the spring constant of the torsion spring, based on the spring constant calculated at said third step and a target resonance frequency determined with respect to the resonance frequency of the oscillator, so as to adjust the resonance frequency to the target resonance frequency, and a fifth step for adjusting the resonance frequency of the oscillator to the target resonance frequency based on the calculated adjustment amount.
    • 一种制造振荡器装置的方法,该振荡器装置具有通过用于围绕扭转轴线摆动并被以共振频率驱动的扭转弹簧相对于固定构件支撑的振荡器的方法,该方法包括用于确定惯性的假定值的第一步骤 振荡器的力矩,用于测量共振频率的第二步骤,用于计算扭簧的弹簧常数的第三步骤,根据在所述第一和第二步骤获得的惯性力矩的假定值和测得的共振频率, 基于在所述第三步骤计算的弹簧常数和相对于振荡器的共振频率确定的目标共振频率,计算用于振荡器的惯性矩或扭簧的弹簧常数的调节量的第四步骤 ,以便将谐振频率调节到目标谐振频率,以及用于调整res的第五步骤 基于计算出的调整量,振荡器的频率与目标谐振频率成正比。
    • 7. 发明授权
    • Method of manufacturing oscillator device, and optical deflector and optical instrument with oscillator device based on it
    • 制造振荡器装置的方法,以及基于此的振荡器装置的光偏转器和光学仪器
    • US08305674B2
    • 2012-11-06
    • US12673694
    • 2008-10-28
    • Suguru MiyagawaTakahiro AkiyamaKazutoshi TorashimaTakahisa KatoKazunari Fujii
    • Suguru MiyagawaTakahiro AkiyamaKazutoshi TorashimaTakahisa KatoKazunari Fujii
    • G02B26/10
    • G02B26/105G02B26/085H04N1/1135Y10T29/49774
    • A method of manufacturing an oscillator device having an oscillator supported relative to a fixed member by a torsion spring for oscillation around a torsion axis and arranged to be driven at a resonance frequency, which method includes a first step for determining an assumed value of an inertia moment weight of the oscillator, a second step for measuring the resonance frequency, a third step for calculating a spring constant of the torsion spring, from the assumed value of the inertia moment weight and the measured resonance frequency obtained at said first and second steps, a fourth step for calculating an adjustment amount for the inertia moment of the oscillator or for the spring constant of the torsion spring, based on the spring constant calculated at said third step and a target resonance frequency determined with respect to the resonance frequency of the oscillator, so as to adjust the resonance frequency to the target resonance frequency, and a fifth step for adjusting the resonance frequency of the oscillator to the target resonance frequency based on the calculated adjustment amount.
    • 一种制造振荡器装置的方法,该振荡器装置具有通过用于围绕扭转轴线摆动并被以共振频率驱动的扭转弹簧相对于固定构件支撑的振荡器的方法,该方法包括用于确定惯性的假定值的第一步骤 振荡器的力矩,用于测量共振频率的第二步骤,用于计算扭簧的弹簧常数的第三步骤,根据在所述第一和第二步骤获得的惯性力矩的假定值和测得的共振频率, 基于在所述第三步骤计算的弹簧常数和相对于振荡器的共振频率确定的目标共振频率,计算用于振荡器的惯性矩或扭簧的弹簧常数的调节量的第四步骤 ,以便将谐振频率调节到目标谐振频率,以及用于调整res的第五步骤 基于计算出的调整量,振荡器的频率与目标谐振频率成正比。
    • 10. 发明申请
    • ULTRASONIC DETECTION DEVICE AND ULTRASONIC DIAGNOSTIC DEVICE
    • 超声检测装置和超声诊断装置
    • US20120163124A1
    • 2012-06-28
    • US13393918
    • 2010-10-28
    • Takahiro AkiyamaMakoto TakagiKazunari FujiiHidemasa Mizutani
    • Takahiro AkiyamaMakoto TakagiKazunari FujiiHidemasa Mizutani
    • G01N29/24B06B1/02
    • G01N29/2418B06B1/0292G01N29/2406G01N2291/101
    • Provided is an ultrasonic detection device including: a capacitive electromechanical transducer including a cell that includes a first electrode and a second electrode disposed so as to oppose with a space; a voltage source for developing a potential difference between the first electrode and the second electrode; and an electric circuit for converting a current, which is caused by a change in electrostatic capacitance between the first electrode and the second electrode due to vibration of the second electrode, into a voltage, in which the capacitive electromechanical transducer provides an output current with a high-pass characteristic having a first cutoff frequency with respect to a frequency, the electric circuit provides an output with a low-pass characteristic having a second cutoff frequency with respect to the frequency, and the second cutoff frequency is smaller than the first cutoff frequency.
    • 本发明提供一种超声波检测装置,其特征在于,包括:电容式机电换能器,其包括具有与空间对置配置的第一电极和第二电极的电池单元; 用于在第一电极和第二电极之间形成电位差的电压源; 以及用于将由于第二电极的振动而由第一电极和第二电极之间的静电电容的变化引起的电流转换成电压的电路,其中电容式机电换能器提供输出电流 具有相对于频率具有第一截止频率的高通特性,所述电路提供具有相对于所述频率具有第二截止频率的低通特性的输出,并且所述第二截止频率小于所述第一截止频率 。