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
    • 91. 发明申请
    • OSCILLATOR
    • 振荡器
    • US20120182077A1
    • 2012-07-19
    • US13322263
    • 2011-03-03
    • Takehiko YamakawaKunihiko NakamuraKeiji Onishi
    • Takehiko YamakawaKunihiko NakamuraKeiji Onishi
    • H03L7/00
    • H03L5/00H03B19/00H03L1/026H03L1/027H03L7/18
    • A MEMS oscillator including: an oscillator unit being capable of outputting an output from an amplifier as an original oscillator signal that includes a feedback type oscillator circuit including a MEMS resonator and an amplifier, and an automatic gain controller receiving the output from the amplifier and controlling a gain of the amplifier based on a level of the output to maintain a level of the output from the amplifier constant; and a corrector unit that receives the original oscillator signal, that generates from the original oscillator signal a signal of a predetermined set frequency, and that outputs the generated signal of the predetermined set frequency as an output signal. The corrector unit receives, separately from the original oscillator signal, an information signal that includes a signal having a correspondence relationship between a gain at a resonance frequency of the MEMS resonator from the oscillator unit, corrects a frequency of the original oscillator signal based on the information signal to generate the signal of the predetermined set frequency, and outputs the generated signal of the predetermined set frequency as the output signal.
    • 一种MEMS振荡器,包括:振荡器单元,其能够输出来自放大器的输出作为原始振荡器信号,其包括包括MEMS谐振器和放大器的反馈型振荡器电路,以及接收来自放大器的输出的自动增益控制器 基于输出电平的放大器的增益来保持放大器的输出电平恒定; 以及校正单元,其接收原始振荡器信号,其从原始振荡器信号产生预定设定频率的信号,并将预定设定频率的所生成的信号作为输出信号输出。 校正单元与原始振荡器信号分离地接收包括具有来自振荡器单元的MEMS谐振器的谐振频率处的增益之间的对应关系的信号的信息信号,基于该振荡器信号校正原始振荡器信号的频率 信号信号以产生预定设定频率的信号,并输出预定设定频率的产生信号作为输出信号。
    • 93. 发明授权
    • Ink jet ink, ink jet recording method, ink cartridge, recording unit, and ink jet recording apparatus
    • 喷墨油墨,喷墨记录方法,墨盒,记录单元和喷墨记录装置
    • US07294184B2
    • 2007-11-13
    • US11321552
    • 2005-12-30
    • Kuniaki FujimotoShin-ichi SatoJun YoshizawaYoshihide AikawaKunihiko NakamuraMasanori Jinnou
    • Kuniaki FujimotoShin-ichi SatoJun YoshizawaYoshihide AikawaKunihiko NakamuraMasanori Jinnou
    • C09D11/02B41J2/01
    • C09B5/14C09D11/328
    • Provided is an ink jet ink containing a coloring material having a buffer region in an ink use range, the ink jet ink being capable of suppressing the occurrence of the deterioration (dissolution) of a heating portion surface in contact with liquid; and the disconnection of wiring for applying a voltage to a heating portion even when long term continuous printing is performed. The ink jet ink is used for an ink jet recording apparatus equipped with a recording head having a heating portion surface in contact with liquid comprising a metal and/or a metal oxide. The ink jet ink contains a coloring material in a content (mass %) of 3 mass % or more with respect to the total mass of the ink jet ink. The coloring material is a colorant having a buffer region in an ink use range, and comprises a compound represented by the following general formula (I) and/or a compound represented by the following general formula (II) H(OCH2CH2)pR5.   General formula (II)
    • 本发明提供一种喷墨油墨,其含有在油墨使用范围内具有缓冲区域的着色材料,所述喷墨油墨能够抑制与液体接触的加热部分表面的劣化(溶解)的发生; 以及即使在进行长期连续打印时也将用于施加电压的布线断开。 喷墨油墨用于配备有具有与包含金属和/或金属氧化物的液体接触的加热部分表面的记录头的喷墨记录装置。 喷墨油墨含有相对于喷墨油墨的总质量为3质量%以上的着色材料。 着色材料是具有油墨使用范围内的缓冲区域的着色剂,并且包含由以下通式(I)表示的化合物和/或由以下通式(II)表示的化合物<?在线式 description =“In-line Formulas”end =“lead”?> H(OCH 2 CH 2 CH 2)p / SUB>。 通用公式(II)<?in-line-formula description =“In-line Formulas”end =“tail”?>
    • 94. 发明申请
    • Electromechanical Filter
    • 机电过滤器
    • US20070216496A1
    • 2007-09-20
    • US11569501
    • 2005-06-02
    • Yoshito NakanishiKunihiko Nakamura
    • Yoshito NakanishiKunihiko Nakamura
    • H03H9/46
    • H03H9/2405H03H3/0072H03H9/02433H03H9/462H03H2009/02519Y10S977/724Y10S977/932
    • An object is to provide an electromechanical filter which can define a vibration mode so that a vibrator can be excited only in a desired vibration mode, that is, a filter which can suppress any vibration mode other than a desired vibration mode. The electromechanical filter includes a first member for inputting a signal, a second member disposed at a predetermined distance from the first member so as to surround the first member and to be excited due to an electrostatic force caused by the signal input from the first member, and a third member disposed at a predetermined distance from the second member so as to surround the second member and to detect vibration of the second member. The second member is designed to receive an attractive force from the first member and the third member so as to be bound and regulated as to a vibration direction.
    • 本发明的目的是提供一种能够限定振动模式的机电滤波器,使得振动器仅能够以期望的振动模式被激励,即,可以抑制除期望振动模式之外的任何振动模式的滤波器。 机电滤波器包括用于输入信号的第一部件,设置在距第一部件预定距离处的第二部件,以便围绕第一部件并由于由第一部件输入的信号引起的静电力而被激励, 以及第三构件,其以与第二构件相隔预定距离的方式设置,以围绕第二构件并且检测第二构件的振动。 第二构件被设计成从第一构件和第三构件接收吸引力,以便结合和调节振动方向。
    • 96. 发明申请
    • Mechanical resonator
    • 机械谐振器
    • US20060214746A1
    • 2006-09-28
    • US10538319
    • 2004-03-24
    • Kunihiko Nakamura
    • Kunihiko Nakamura
    • H03H9/00
    • H03H9/2405H03H9/2457H03H2009/02496H03H2009/02511
    • A mechanical resonator is constructed such that it has a vibration body that performs a mechanical resonant vibration and also has an electrode located in the vicinity of the vibration body and such that it is shaped into the surface shape of the electrode when deformed during a resonance mode of the vibration body, whereby the electrostatic capacitance change per unit vibration displacement amount can be enlarged. In this way, a mechanical resonator can be realized which performs an effective electricity-to-machine or machine-to-electricity conversion. Moreover, this mechanical resonator can be used to realize a small-sized, high-performance filter circuit or switch circuit in a high-density integrated electrical circuit.
    • 机械共振器被构造成使得其具有执行机械共振振动的振动体,并且还具有位于振动体附近的电极,并且使得其在共振模式期间变形时被成形为电极的表面形状 的振动体,从而可以扩大每单位振动位移量的静电电容变化。 以这种方式,可以实现机械谐振器,其执行有效的电对机或机对电转换。 此外,该机械谐振器可用于在高密度集成电路中实现小尺寸,高性能的滤波器电路或开关电路。
    • 99. 发明申请
    • Switch
    • 开关
    • US20050270128A1
    • 2005-12-08
    • US11201541
    • 2005-08-11
    • Yoshito NakanishiNorisato ShimizuKunihiko NakamuraYasuyuki Naito
    • Yoshito NakanishiNorisato ShimizuKunihiko NakamuraYasuyuki Naito
    • B81B3/00H01H49/00H01H59/00H01H51/22
    • H01H59/0009H01G5/40H01H2001/0078H01H2059/0027
    • A switch comprises voltage applying means for providing direct current potentials to first to third beams arranged with a spacing slightly distant one from another, and electrodes for inputting/outputting signals to/from the beams. By controlling the direct current potential provided to the beam, an electrostatic force is caused to thereby change the beam positions and change a capacitance between the beams. By causing an electrostatic force between the first and second beams and moving the both beams, the first and second beams can be electrically coupled together at high speed. Also, an electrostatic force is caused on the third beam arranged facing to the first and second beams, to previously place it close to the first and second beams. When the electrostatic force is released from between the first and second beams, the second beam moves toward the third beam thereby releasing the first and second beams of an electric coupling.
    • 开关包括电压施加装置,用于向彼此稍微间隔的间隔布置的第一至第三波束提供直流电势,以及用于向/从波束输入/输出信号的电极。 通过控制提供给光束的直流电势,引起静电力从而改变光束位置并改变光束之间的电容。 通过在第一和第二光束之间引起静电力并移动两个光束,第一和第二光束可以高速电耦合在一起。 此外,在面向第一和第二光束的第三光束上产生静电力,以预先将其靠近第一和第二光束。 当静电力从第一和第二光束之间释放时,第二光束向第三光束移动,从而释放电耦合的第一和第二光束。
    • 100. 发明授权
    • Filter using micro-mechanical resonator
    • 使用微机械谐振器进行滤波
    • US06828877B2
    • 2004-12-07
    • US10355434
    • 2003-01-31
    • Yoshito NakanishiKunihiko Nakamura
    • Yoshito NakanishiKunihiko Nakamura
    • H03H946
    • H03H9/462H03H9/2405H03H2009/02496H03H2009/02511
    • An electric signal fed into a line generates electric field in response to its frequency, and a resonator placed closely to the line and in a substantially vacuum condition not higher than 100 pascal is excited by electrostatic force of the electric field and vibrates. Detecting means converts mechanical vibrations of the resonator into a signal in another form than the electric signal, then it detects the vibrations. The foregoing structure allows the resonator to be a micro-body and to process properly a high-frequency input signal of MHz or GHz band. A tight space between an input side and an output side does not permit an electric signal fed into the line to couple directly to the output side, and the resonator downsized to a micro-body is not subject to viscosity of air.
    • 馈入线路的电信号响应于其频率产生电场,并且靠近线路并且在不高于100帕斯卡的基本真空条件下放置的谐振器被电场的静电力激发并振动。 检测装置将谐振器的机械振动转换为比电信号另外形式的信号,然后检测振动。 上述结构允许谐振器是微体并且适当地处理MHz或GHz频带的高频输入信号。 输入侧和输出侧之间的紧密空间不允许馈送到线路中的电信号直接耦合到输出侧,并且小型化到微型体的谐振器不受空气粘度的影响。