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    • 1. 发明专利
    • Blood circulation state measuring apparatus
    • 血液循环状态测量装置
    • JP2007111244A
    • 2007-05-10
    • JP2005305754
    • 2005-10-20
    • Tsutomu KameiKoji MurataSeiko Instruments Incセイコーインスツル株式会社勉 亀井幸治 村田
    • NAKAMURA NORIHIKOKIMURA FUMIOKAMEI TSUTOMUMURATA KOJI
    • A61B5/02A61B5/0205A61B5/0285A61B8/06
    • PROBLEM TO BE SOLVED: To provide a blood circulation state measuring apparatus for measuring an index value indicating blood flowability and an index value indicating blood vessel hardness by noninvasive measurement. SOLUTION: The blood circulation state measuring apparatus performs prescribed calculation using the flow velocity of blood and a blood pressure and calculates the blood flowability and the blood vessel hardness. The continuous waves of ultrasonic waves are transmitted to a blood flow and the flow velocity of the blood is obtained from the change amount (doppler shift) of the frequency of the reflected continuous waves. In the meantime, a value measured by a general sphygmomanometer or the like is utilized for the blood pressure. The blood flowability is calculated by inputting the maximum flow velocity and the maximum blood pressure among the values acquired in the above-mentioned manner to a prescribed calculation formula, and the blood vessel hardness is obtained from a waveform which is the second-order derivative of the waveform of the blood flow velocity. The blood circulation state measuring apparatus is allowed to simultaneously obtain the two indexes of the blood flowability and the blood vessel hardness, and by obtaining a distribution by the two indexes, a health state is recognized more easily with less burdens on a patient compared to the conventional inspection method. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种血液循环状态测量装置,用于测量指示血液流动性的指标值和指示血管硬度的指标值,通过无创测量。 解决方案:血液循环状态测量装置使用血液和血压进行规定的计算,并计算血流量和血管硬度。 超声波的连续波被发送到血流,并且从反射连续波的频率的变化量(多普勒频移)获得血液的流速。 同时,通过一般血压计等测定的值用于血压。 通过将以上述方式获取的值中的最大流速和最大血压输入到规定的计算公式来计算血流量,并且从作为二次导数的波形获得血管硬度 血流速度的波形。 允许血液循环状态测量装置同时获得血液流动性和血管硬度的两个指标,并且通过获得两个指标的分布,与患者相比,能够更容易地识别健康状况,同时减轻患者的负担 常规检验方法。 版权所有(C)2007,JPO&INPIT
    • 2. 发明专利
    • Blood analyzing and measuring apparatus
    • 血液分析和测量装置
    • JP2007111246A
    • 2007-05-10
    • JP2005305756
    • 2005-10-20
    • Tsutomu KameiKoji MurataSeiko Instruments Incセイコーインスツル株式会社勉 亀井幸治 村田
    • NAKAMURA NORIHIKOKIMURA FUMIOKAMEI TSUTOMUMURATA KOJI
    • A61B5/0285A61B5/0205
    • PROBLEM TO BE SOLVED: To provide a blood analyzing and measuring apparatus for measuring thrombocyte activaty without sampling blood. SOLUTION: The blood analyzing and measuring apparatus for measuring the thrombocyte activity included in the blood of a human body comprises: a flow velocity measuring means for measuring the flow velocity value of the blood flowing through the blood vessel of the human body from the outside of the human body; a blood pressure acquiring means for acquiring the blood pressure value of the blood vessel; and a thrombocyte activation degree computing means for calculating an index value indicating the activation degree of the thrombocyte by using the acquired blood pressure value and the flow velocity value measured by the flow velocity measuring means. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供用于测量血小板激活而不对血液进行取样的血液分析和测量装置。 解决方案:用于测量包括在人体血液中的血细胞活性的血液分析和测量装置包括:流速测量装置,用于测量流经人体血管的血液的流速值, 人体外部; 用于获取血管的血压值的血压获取装置; 以及血小板激活度计算装置,用于通过使用获取的血压值和由流速测量装置测量的流速值来计算指示血小板激活程度的指标值。 版权所有(C)2007,JPO&INPIT
    • 3. 发明专利
    • Blood circulation state measuring apparatus
    • 血液循环状态测量装置
    • JP2007111245A
    • 2007-05-10
    • JP2005305755
    • 2005-10-20
    • Tsutomu KameiKoji MurataSeiko Instruments Incセイコーインスツル株式会社勉 亀井幸治 村田
    • NAKAMURA NORIHIKOKIMURA FUMIOKAMEI TSUTOMUMURATA KOJI
    • A61B5/02A61B5/0205A61B5/0285A61B8/06
    • PROBLEM TO BE SOLVED: To provide a blood circulation state measuring apparatus for measuring an index value indicating blood flowability and a blood vessel resistance coefficient value by noninvasive measurement. SOLUTION: The blood circulation state measuring apparatus performs prescribed calculation using the flow velocity of blood and a blood pressure and calculates the blood flowability and the blood vessel resistance coefficient. The continuous waves of ultrasonic waves are transmitted to a blood flow and the flow velocity of the blood is obtained from the change amount (doppler shift) of the frequency of the reflected continuous waves. In the meantime, a value measured by a general sphygmomanometer or the like is utilized for the blood pressure. The blood flowability is calculated by inputting the maximum flow velocity and the maximum blood pressure among the values acquired in the above-mentioned manner to a prescribed calculation formula, and the blood vessel resistance coefficient is obtained from the maximum flow velocity of the blood flow velocity and the blood flow velocity of end diastole. The blood circulation state measuring apparatus is allowed to simultaneously obtain the two indexes of the blood flowability and the blood vessel resistance coefficient, and by obtaining a distribution by the two indexes, a health state is recognized more easily and more accurately compared to the conventional inspection method. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决问题:提供一种血液循环状态测量装置,用于通过无创测量来测量表示血流量的指标值和血管阻力系数值。 解决方案:血液循环状态测量装置使用血液的流速和血压进行规定的计算,并计算血流量和血管阻力系数。 超声波的连续波被发送到血流,并且从反射连续波的频率的变化量(多普勒频移)获得血液的流速。 同时,通过一般血压计等测定的值用于血压。 通过将以上述方式获取的值中的最大流速和最大血压输入到规定的计算公式来计算血流量,并且从血流速度的最大流速获得血管阻力系数 和舒张末期的血流速度。 允许血液循环状态测量装置同时获得血液流动性和血管阻力系数的两个指标,并且通过获得两个指标的分布,与常规检查相比更容易且更准确地识别健康状态 方法。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Thermal power generation portable device and power generation control method of thermal power generation portable device
    • 热发电便携式设备的热发电控制方法及发电便携式设备的发电控制方法
    • JP2013062299A
    • 2013-04-04
    • JP2011198304
    • 2011-09-12
    • Seiko Instruments Incセイコーインスツル株式会社
    • UCHIYAMA TAKESHIOMI MANABUSHINOHARA YOKOKIMURA FUMIO
    • H01L35/30G04C10/00G04G19/00
    • H01L35/02G04C10/00G04G19/00H01L35/30
    • PROBLEM TO BE SOLVED: To assure a wanted power generation amount by suppressing degradation in power generation efficiency when attached to a living body.SOLUTION: A thermal power generation portable device 10 is attached to a living body and capable of generating power by the heat of the living body, and includes: a thermal power generation member 20 which generates power based on temperature difference between a temperature at a heat source side position and a temperature at a heat radiation destination side position, between the living body which is a heat source and the heat radiation destination of the heat radiated from the thermal power generation portable device 10; and a movable member 22 which is capable of varying thermal resistance of at least a part of a heat transfer path between the living body and the heat radiation destination. The movable member 22 is rotatable around a rotational axis 22a or slidable in a predetermined direction, and capable of varying thermal resistance of at least a part of the heat transfer path by occurrence of interference with the heat transfer path or change in position of interference with the heat transfer path in accordance with rotation or sliding.
    • 要解决的问题:通过在附着于生物体时抑制发电效率的劣化来确保所需发电量。 解决方案:火力发电便携式装置10安装在生物体上并且能够通过生物体的热量产生电力,并且包括:热发电部件20,其根据温度 在作为热源的生物体与从热发电便携装置10照射的热量的散热目的地之间的热源侧位置和放热目的地侧位置的温度; 以及能够改变活体和散热目的地之间的传热路径的至少一部分的热阻的可动构件22。 可移动构件22可以围绕旋转轴线22a旋转或者可沿预定方向滑动,并且能够通过发生与传热路径的干涉或与干扰的位置的变化而改变传热路径的至少一部分的热阻 传热路径根据旋转或滑动。 版权所有(C)2013,JPO&INPIT
    • 6. 发明专利
    • Sensor
    • 传感器
    • JP2012189335A
    • 2012-10-04
    • JP2011050676
    • 2011-03-08
    • Seiko Instruments Incセイコーインスツル株式会社
    • KIMURA FUMIOARAOGI MASATAKA
    • G01L9/00G01L1/00G01L17/00H03H9/25
    • PROBLEM TO BE SOLVED: To provide a sensor that is capable of improving signal strength and detection sensitivity of SAW (Surface Acoustic Waves) and ensuring high operation reliability over a long period of time, and in which manufacturing facilitation and cost reduction are easily achieved with a simple structure.SOLUTION: A sensor 10 is provided that comprises: a package 13 including a piezoelectric substrate 11 and a sealing substrate 12 that is jointed to one surface of the piezoelectric substrate 11 and defines a cavity hermetically sealed between the piezoelectric substrate 11 and the sealing substrate; an IDT (Inter Digital Transducer) 16 that is formed on one surface of the piezoelectric substrate 11 and is arranged inside the cavity; and external connection electrodes 18 that are formed on a surface opposite to a surface, of the sealing substrate 12, jointed to piezoelectric substrate 11, exposed to an outside of the package 13, and conducted to the IDT 16 through extraction electrodes. The piezoelectric substrate 11 has a displacement part that is displaced according to a dynamic quantity affected from the outside of the package 13, and is provided with an opening part E that allows the displacement part 21 to be exposed to the other surface side of the piezoelectric substrate 11. In the package 13, a surface formed with external connection electrodes 18 of the sealing substrate 12 is surface-mounted on a circuit substrate.
    • 要解决的问题:提供能够提高SAW(表面声波)的信号强度和检测灵敏度并且长时间保证高操作可靠性的传感器,并且其中制造促进和降低成本是 轻松实现,结构简单。 解决方案:提供一种传感器10,其包括:包括压电基板11和密封基板12的封装13,密封基板12连接到压电基板11的一个表面,并限定气密密封在压电基板11和 密封基板; IDT(Inter数字式传感器)16,其形成在压电基板11的一个表面上并配置在空腔内; 以及外部连接电极18,其形成在密封基板12的与表面相反的表面上,与压电基板11接合,暴露于封装13的外部,并通过引出电极传导到IDT 16。 压电基板11具有根据从封装13的外部影响的动态量而位移的位移部,并且设置有允许位移部21暴露于压电体的另一个表面侧的开口部E 衬底11.在封装13中,形成有密封衬底12的外部连接电极18的表面被表面安装在电路衬底上。 版权所有(C)2013,JPO&INPIT
    • 7. 发明专利
    • Sensor
    • 传感器
    • JP2012189332A
    • 2012-10-04
    • JP2011050673
    • 2011-03-08
    • Seiko Instruments Incセイコーインスツル株式会社
    • KIMURA FUMIOARAOGI MASATAKA
    • G01L9/08B60C23/04G01L1/00G01L17/00
    • PROBLEM TO BE SOLVED: To provide a sensor that is capable of improving signal strength and detection sensitivity of SAW (Surface Acoustic Waves) and ensuring high operation reliability over a long period of time, and that has a simple structure.SOLUTION: A sensor comprises: a package 13 including a piezoelectric substrate 11 that is formed in the shape of a flat plate and a sealing substrate 12 that is jointed to one surface of the piezoelectric substrate and defines a cavity hermetically sealed between the piezoelectric substrate and the sealing substrate; an IDT (Inter Digital Transducer) 16 that is formed on one surface of the piezoelectric substrate and is arranged inside the cavity; external connection electrodes that are formed on at least one of the piezoelectric substrate and the sealing substrate and are conducted to the IDT through extraction electrodes; and a plate substrate 61 that is jointed to the other surface of the piezoelectric substrate. The piezoelectric substrate has a displacement part that is displaced according to a dynamic quantity affected from the outside of the package 13, and the plate substrate is formed with an opening part E that exposes the displacement part.
    • 要解决的问题:提供能够提高SAW(表面声波)的信号强度和检测灵敏度并且确保长时间的高操作可靠性的传感器,并且具有简单的结构。 解决方案:传感器包括:包括形成为平板形状的压电基板11和密封基板12的封装13,密封基板12连接到压电基板的一个表面,并且限定气密地密封在压电基板11之间的空腔 压电基板和密封基板; 形成在压电基板的一个表面上且布置在空腔内的IDT(Inter数字式传感器)16; 外部连接电极,其形成在压电基板和密封基板中的至少一个上,并通过引出电极传导到IDT; 以及连接到压电基板的另一个表面的板基板61。 压电基板具有根据从封装13的外部影响的动态量而位移的位移部,并且板基板形成有露出位移部的开口部E. 版权所有(C)2013,JPO&INPIT
    • 8. 发明专利
    • Resonance frequency variable mems vibrator
    • 谐振频率可变MEMS振动器
    • JP2010011134A
    • 2010-01-14
    • JP2008168651
    • 2008-06-27
    • Seiko Instruments Incセイコーインスツル株式会社
    • KAMIYA RYOHEIKIMURA FUMIOUCHIYAMA TAKESHIOMI MANABUTAKASU HIROAKI
    • H03H9/24B81B3/00H03H3/007
    • PROBLEM TO BE SOLVED: To provide a MEMS (Micro Electric Mechanical System) vibrator which can easily be processed, can reduce power consumption and can more easily adjust its resonance frequency than heretofore. SOLUTION: The MEMS vibrator includes: a vibrator 121 which is fixed on a substrate 111 at one or more points and with which one or more comb-like projection groups are formed on its surface; one or more electrostatic electrodes 161, 162, 163, 164, with which comb-like projection groups are formed on their surfaces, constituting a comb-like capacitor with the comb-like projection groups of the vibrator 121; a driving electrode 141; and a detection electrode 151. In the MEMS vibrator, a DC voltage is applied to the comb-like capacitor, thereby changing the frequency of vibration of the vibrator 121. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供可以容易地加工的MEMS(微机电系统)振动器,可以降低功耗并且可以比以前更容易地调节其谐振频率。 解决方案:MEMS振动器包括:振动器121,其在一个或多个点处固定在基板111上,并且在其表面上形成有一个或多个梳状突起组; 一个或多个静电电极161,162,163,164,在其表面上形成梳状突起组,构成具有振动器121的梳状突起组的梳状电容器; 驱动电极141; 和检测电极151.在MEMS振子中,对梳状电容器施加直流电压,从而改变振动器121的振动频率。(C)2010,JPO&INPIT
    • 9. 发明专利
    • Electrostatic vibrator and oscillator
    • 静电振动器和振荡器
    • JP2009171483A
    • 2009-07-30
    • JP2008010007
    • 2008-01-21
    • Seiko Instruments Incセイコーインスツル株式会社
    • KAMIYA RYOHEIOMI MANABUKIMURA FUMIO
    • H03H9/24
    • PROBLEM TO BE SOLVED: To provide an electrostatic vibrator capable of keeping a resonant frequency constant over a wider temperature range than a conventional electrostatic vibrator that compensates a resonant frequency change caused by a temperature change passively to the temperature change. SOLUTION: The electrostatic vibrator includes: a vibrating body 1 fixed to a substrate 8; an electrode 2 disposed while being spaced apart from the vibrating body; and restricting bodies 3, 6 and 4, 5 in press-contact with the vibrating body, and the vibrating body is vibrated by an AC voltage from the electrode. The vibrating body and the restricting bodies are expanded or shrunk by a temperature change, a vibrating body press-contact portion, where the vibrating body comes into press-contact with the restricting bodies, is changed by the expansion or shrinkage, and a length of a vibrating range of the vibrating body is changed by the change of the vibrating body press-contact portion. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种静电振动器,其能够在比传统的静电振动器更宽的温度范围内保持谐振频率恒定,所述静电振动器补偿​​由温度变化引起的温度变化引起的谐振频率变化。 解决方案:静电振动器包括:固定到基板8的振动体1; 设置在与振动体隔开的电极2上; 以及与振动体压接的限制体3,6和4,5,并且振动体通过来自电极的AC电压而振动。 振动体和限制体通过温度变化而膨胀或收缩,振动体与限制体压接的振动体压接部由于膨胀或收缩而变化, 振动体的振动范围由于振动体压接部的变化而变化。 版权所有(C)2009,JPO&INPIT
    • 10. 发明专利
    • Electrostatic vibrator and oscillator
    • 静电振动器和振荡器
    • JP2009111810A
    • 2009-05-21
    • JP2007282842
    • 2007-10-31
    • Seiko Instruments Incセイコーインスツル株式会社
    • KAMIYA RYOHEIOMI MANABUKIMURA FUMIO
    • H03H9/24H03B5/30
    • PROBLEM TO BE SOLVED: To provide an electrostatic vibrator capable of further improving precision in compensation of a resonant frequency.
      SOLUTION: The electrostatic vibrator including a vibrating body 10, an electrode 2 disposed while being spaced apart from the vibrating body 10 by a gap (d), and a deformation control body 9 formed from a different material of which a thermal expansion coefficient is different from that of the vibrating body 10, wherein the electrode 2 and the deformation control body 9 are fixed on a substrate. A shape of the vibrating body 10 is bent at least partially and the vibrating body 10 is connected to the deformation control body 9 at least at one point, and the electrostatic vibrator is configured so that the vibrating body 10 is deformed by stress 14, 15 that is generated at the connection point due to a temperature change.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供能够进一步提高谐振频率补偿精度的静电振动器。 解决方案:包括振动体10的静电振动器,通过间隙(d)与振动体10隔开设置的电极2和由不同材料形成的变形控制体9, 系数与振动体10的系数不同,其中电极2和变形控制体9固定在基板上。 振动体10的形状至少部分弯曲,振动体10至少在一点与变形控制体9连接,静电振动体构成为使振动体10因应力14,15变形 这是由于温度变化在连接点产生的。 版权所有(C)2009,JPO&INPIT