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    • 71. 发明专利
    • Weighing apparatus
    • 称重装置
    • JP2013167450A
    • 2013-08-29
    • JP2012029064
    • 2012-02-14
    • A & D Co Ltd株式会社エー・アンド・デイ
    • NAGANE YOSHIKAZUSATO YOSHIKUNI
    • G01G21/30G01G21/28
    • PROBLEM TO BE SOLVED: To provide an electronic balance with a static elimination function, which is provided with a self-diagnostic function of static elimination ability and is capable of diagnosing suitable cleaning/replacement timing of a static elimination needle by itself while considering a deterioration state.SOLUTION: An electronic balance 1 including a weighing chamber 5, a load measuring mechanism 13 and static elimination means 11A to 11D each on which one or more plus static elimination needles and the same number of minus static elimination needles are arranged includes also needle deterioration evaluation means for applying/stopping voltage to the static elimination means 11A to 11D, detecting variation of measurement data in no load before and after applying the voltage by the load measuring mechanism 13 and finding out an inherent variation amount of the measurement data. Variation of the measurement data in no load following ion air caused by corona discharge from each static elimination needle is measured by the load measuring mechanism, an evaluation index for self-diagnosis of static elimination ability is acquired by the needle deterioration evaluation means, and while considering a deterioration state of the static elimination needle, needle cleaning/replacement timing is diagnosed by the electronic balance itself.
    • 要解决的问题:提供具有静电消除功能的电子天平,其具有静电消除能力的自我诊断功能,并且能够在考虑到劣化的同时自身诊断静电消除针的合适的清洁/更换定时 状态。解决方案:包括称重室5,负载测量机构13和静电消除装置11A至11D的电子天平1,其上布置有一个或多个正消除针和相同数量的减去消除针的排除装置还包括针 对静电消除装置11A至11D施加/停止电压的劣化评估装置,检测由负载测量机构13施加电压之前和之后的空载中的测量数据的变化,并且发现测量数据的固有变化量。 通过负载测量机构测量由每个静电消除针的电晕放电引起的离子空气之后的空载中的测量数据的变化,通过针劣化评估装置获得静电消除能力的自诊断的评估指标,而 考虑到静电消除针的劣化状态,针清洁/更换时刻由电子天平本身诊断。
    • 72. 发明专利
    • Device for measuring degree of arteriosclerosis
    • 用于测量椎弓根病的程度的装置
    • JP2013118902A
    • 2013-06-17
    • JP2011267236
    • 2011-12-06
    • A & D Co Ltd株式会社エー・アンド・デイ
    • ISHIZUKA SHIGEHIRO
    • A61B5/02A61B5/0205A61B5/0402
    • PROBLEM TO BE SOLVED: To provide a device for measuring the degree of arteriosclerosis capable of correctly measuring the compliance of arterial vessel of a living body.SOLUTION: A volume pulse wave calculating section 110 quantifies at least the rising section of a pulse wave generated in a pressing zone 12 into a volume pulse wave MAP1pvr showing a change in volume on a transmural pressure axis of an arterial vessel 16. A vascular compliance calculating section 112 calculates the vascular compliance waveform showing the inclination in at least the rising section of the volume pulse wave MAP1pvr showing the transmural pressure axis on the basis of a PA curve. An index value calculating section 114 calculates the index value ACI as a proportion of a predetermined compliance K40 to the maximum compliance Kmax out of the waveform, the compliance K40 corresponding to a transmural pressure value PT40 different from the transmural pressure value PT15 of a point showing the maximum compliance Kmax of the vascular compliance waveform. Then, the calculating section 114 calculates the volume distortion time constant τc of a leg of pulse wave rise reflecting the viscous elastic characteristic of the blood vessel.
    • 要解决的问题:提供一种用于测量能够正确地测量活体动脉血管顺应性的动脉硬化程度的装置。 解决方案:体积脉冲波计算部分110至少将在按压区域12中产生的脉搏波的上升部分量化为体积脉冲波MAP1pvr,其显示动脉血管16的跨壁压力轴上的体积变化。 血管顺应性计算部112基于PA曲线计算显示表现出跨壁压力轴的体积脉搏波MAP1pvr的至少上升部的倾斜的血管顺应性波形。 指标值计算部分114将指标值ACI计算为与波形中的最大顺应性Kmax相比的预定顺应性K40的比例,对应于与显示的点的透壁压力值PT15不同的透壁压力值PT40的顺应性K40 血管顺应性波形的最大顺应性Kmax。 然后,计算部114计算反映血管的粘性弹性特性的脉搏波上升的体积失真时间常数τc。 版权所有(C)2013,JPO&INPIT
    • 73. 发明专利
    • Fpc substrate for strain gauge
    • FPC基片应变计
    • JP2012225685A
    • 2012-11-15
    • JP2011091340
    • 2011-04-15
    • A & D Co Ltd株式会社エー・アンド・デイ
    • KANAZAWA KOJIOKUGUCHI MASATO
    • G01L1/22
    • PROBLEM TO BE SOLVED: To provide an FPC substrate for a strain gauge including an extendable part to be extended along the surface of an elastic body.SOLUTION: In an FPC substrate 20 for a strain gauge which is configured by laminating a wiring conductor pattern 22 on an insulating film 21 and is used for mutually connecting strain gauges 14, 14 formed on the surface of an elastic body 11 of a load cell 10, a curved/bent part 33 curved/bent in a width direction is flatly formed on a band-like connection part 32 for mutually connecting gauge connection parts 30 with gauge connection terminals 31 on the FPC substrate 20, and the curved/bent part 33 configures an extendable part to be extended following deformation of the elastic body 11 caused by load. To arrange the FPC substrate 20 on the elastic body 11, the FPC substrate 20 may be simply arranged on a predetermined position on the surface of the elastic body 11. As to the FPC substrate 20 arranged on the elastic body 11, the curved/bent part 33 is not projected to the upper part and side part of the surface of the elastic body 11, and when assembling or conveying a load cell 10, a part of the FPC substrate 20 does not interfere with other members and operation can be facilitated.
    • 要解决的问题:提供一种用于应变计的FPC基板,其包括沿着弹性体的表面延伸的可延伸部分。 解决方案:在用于应变仪的FPC基板20中,其通过将布线导体图案22层压在绝缘膜21上并且用于将形成在弹性体11的表面上的应变仪14,14相互连接而构成 称重传感器10,在宽度方向弯曲/弯曲的弯曲/弯曲部33平坦地形成在带状连接部32上,用于将FPC连接部30与FPC基板20上的规格连接端子31相互连接,并且弯曲 弯曲部33构成在由负载引起的弹性体11的变形之后延伸的延伸部。 为了将FPC基板20布置在弹性体11上,FPC基板20可以简单地布置在弹性体11的表面上的预定位置。对于布置在弹性体11上的FPC基板20,弯曲/弯曲 部件33不会弹性体11的表面的上部和侧面部分突出,并且当组装或传送称重传感器10时,FPC基板20的一部分不会干扰其它部件,并且可以促进操作。 版权所有(C)2013,JPO&INPIT
    • 74. 发明专利
    • Automatic blood pressure measuring apparatus
    • 自动血压测量仪
    • JP2012139342A
    • 2012-07-26
    • JP2010293603
    • 2010-12-28
    • A & D Co Ltd株式会社エー・アンド・デイ
    • ISHIZUKA SHIGEHIROYASUI NOBUHIKO
    • A61B5/022A61B5/0205A61B5/0245
    • PROBLEM TO BE SOLVED: To provide an easy-to-use automatic blood pressure measuring apparatus by which a state of activity of the autonomic nerve can be evaluated with comparatively high accuracy simultaneously with blood pressure measurement, and relation between the autonomic nerve activity state and blood pressure values can be acquired to enable training for controlling the autonomic nerve activity.SOLUTION: The automatic blood pressure measuring apparatus includes an output control means 60 to output: a ΔhbPWT which is a variation value of a pulse wave propagation time (pulse wave propagation velocity related value) hbPWT calculated by a pulse wave propagation velocity related value frequency analysis means 52 within a predetermined time section; and a variation value (dLF/HF)RRI of a frequency component ratio (LF/HF)RRI between a low-frequency component LF and a high-frequency component HF calculated by a heartbeat cycle related value frequency analysis means 58 within the predetermined time section. Thus, an autonomic nerve activity state can be evaluated by a small and simple apparatus when measuring the blood pressure of a person to be measured and the relation between the autonomic nerve activity state and the blood pressure value can be learned, to enable training for controlling the autonomic nerve activity.
    • 要解决的问题:提供一种易于使用的自动血压测量装置,通过该自动血压测量装置可以在血压测量的同时以较高精度评价自主神经的活动状态,以及自主神经之间的关系 可以获得活动状态和血压值,以使得能够进行用于控制自主神经活动的训练。 解决方案:自动血压测量装置包括输出控制装置60,输出:作为脉搏波传播速度相关的脉搏波传播时间(脉搏波传播速度相关值)hbPWT的变化值的ΔhbPWT 值频率分析单元52; 以及在预定时间内由心跳周期相关值频率分析装置58计算的低频分量LF和高频分量HF之间的频率分量比(LF / HF)RRI的变化值(dLF / HF)RRI 部分。 因此,当测量被测量人的血压并且可以学习自主神经活动状态与血压值之间的关系时,可以通过小型简单的装置来评估自主神经活动状态,从而能够进行控制训练 自主神经活动。 版权所有(C)2012,JPO&INPIT
    • 75. 发明专利
    • Engine testing method and device
    • 发动机试验方法和装置
    • JP2012088187A
    • 2012-05-10
    • JP2010235440
    • 2010-10-20
    • A & D Co Ltd株式会社エー・アンド・デイ
    • ITO YUKIHISAOGAWA ATSUSHIEGASHIRA YUTA
    • G01M15/02
    • PROBLEM TO BE SOLVED: To provide an engine testing method and device capable of securing safety as well as easily performing preparatory work before a test.SOLUTION: An engine testing device 10 comprises: a dynamometer 14 for applying a load to an engine 12 to be tested; and a control device 20 that controls the engine 12 and the dynamometer 14. The control device 20 comprises: a controller 40 that outputs a control command value; a simulation unit 42 that has a bench model modeling an actual machine unit including the engine 12 and the dynamometer 14 and inputs the control command value to the bench model to execute a simulation; and switching means 44 that switches an output destination of the control command value from the controller 40, based on a simulation result, between the simulation unit 42 and the actual machine unit. The switching means 44 switches the output destination of the control command value from the simulation unit 42 to the actual machine unit, when the simulation result at the simulation unit 42 is within a prescribed range.
    • 要解决的问题:提供能够确保安全性以及在测试之前容易地进行准备工作的发动机测试方法和装置。 发动机试验装置10包括:测力计14,用于将负载施加到待测试的发动机12; 以及控制发动机12和测力计14的控制装置20.控制装置20包括:控制器40,其输出控制指令值; 模拟单元42具有对包括发动机12和测力计14的实际机器单元建模的台架模型,并将控制命令值输入到台架模型以执行模拟; 以及切换装置44,其基于模拟结果,在模拟单元42和实际机器单元之间切换来自控制器40的控制命令值的输出目的地。 当模拟单元42的仿真结果在规定范围内时,切换装置44将控制命令值的输出目的地从模拟单元42切换到实际机器单元。 版权所有(C)2012,JPO&INPIT
    • 76. 发明专利
    • Weighing device with measurement chamber
    • 称重装置与测量室
    • JP2012002677A
    • 2012-01-05
    • JP2010138065
    • 2010-06-17
    • A & D Co Ltd株式会社エー・アンド・デイ
    • IZUMO NAOTOODA HISANORI
    • G01G21/28G01G23/00
    • G01G21/28G01G21/286G01G23/00
    • PROBLEM TO BE SOLVED: To minimize an occurrence of convection in a measurement chamber caused by opening/closing a door of the measurement chamber, with a relatively simple configuration.SOLUTION: A weighing device is configured by partitioning a measurement space 5 into upper space and lower space with a partition plate 4 to form, in the lower space, a measurement chamber 7 whose capacity is smaller than the measurement space 5 so that, even if convection occurs in the measurement chamber, the convection stops in a short period of time. Additionally, suspending walls 9a and 9b are attached on side edges of the partition plate 4 adjacent to doors 10a and 10b along the open/close direction of the doors 10a and 10b. Even when the door 10a or 10b is opened, a warm air layer staying in an upper part of the measurement chamber 7 is limited in the amount to flow out or blocked from flowing out by the suspending walls 9a and 9b. Therefore, convection does not occur in the measurement chamber 7, or a little convection occurs and stops in a short period of time, which does not affect measurement operation. The upper space can be used for other purpose such as a neutralization chamber.
    • 要解决的问题:以相对简单的结构,最小化由测量室的门打开或关闭引起的测量室中的对流的发生。 解决方案:称重装置通过用隔板4将测量空间5分隔成上部空间和下部空间来构造,以在下部空间中形成容量小于测量空间5的测量室7,使得 即使在测量室中发生对流,对流也会在短时间内停止。 此外,悬挂壁9a和9b沿着门10a和10b的打开/关闭方向附接在隔板4的邻近门10a和10b的侧边缘上。 即使打开门10a或10b,保持在测量室7的上部的暖空气层被限制流出或阻止由悬挂壁9a和9b流出的量。 因此,在测量室7中不会发生对流,或者在短时间内发生少量对流而停止,这不影响测量操作。 上部空间可用于其他目的,如中和室。 版权所有(C)2012,JPO&INPIT
    • 77. 发明专利
    • Blood pressure measuring apparatus having rack
    • 血压测量装置
    • JP2011255009A
    • 2011-12-22
    • JP2010132480
    • 2010-06-09
    • A & D Co Ltd株式会社エー・アンド・デイ
    • MIDORIKAWA TAKAYUKIKANO KOJISHIRAI TSUTOMU
    • A61B5/022
    • PROBLEM TO BE SOLVED: To provide a blood pressure measuring apparatus having a rack by which a subject can perform a blood pressure measurement of a high accuracy under a natural posture.SOLUTION: The rack 14 includes a turning supporting apparatus 40 which is installed in a space between a base 36 and a blood pressure measuring instrument 12, and supports the blood pressure measuring instrument 12 in a manner to be included within the turning range A of the gravity center W, and at the same time, to be turnable around the horizontal axial center C1 which perpendicularly intersects with the vertical line C0 passing through the gravity center W of the blood pressure measuring instrument 12 under a horizontal state. Also, the turning supporting apparatus 40 allows the turning in the vertical direction of a cylindrical arm band protective case section 22. Therefore, the local application of the load of the blood pressure measuring instrument 12 to an arm band 20 for blood pressure measurement is suppressed while the arm band protective case section 22 is made to turn in the vertical direction in such a manner that the longitudinal direction of the upper end section and the axial direction of the arm band protective case section 22 may become approximately in parallel depending on the tilting state of the upper arm section of the subject under the natural posture, and the blood vessel of the upper arm section is uniformly pressed in the longitudinal direction by the arm band 20 for blood pressure measurement.
    • 要解决的问题:提供一种具有架子的血压测量装置,通过该支架,受试者可以在自然姿势下进行高精度的血压测量。 解决方案:机架14包括安装在基座36和血压测量仪器12之间的空间中的转动支撑装置40,并且以包括在转动范围内的方式支撑血压测量仪器12 A,并且同时可绕水平轴向中心C1旋转,水平轴心C1与水平状态下的血压测量仪器12的重心W垂直相交。 此外,转动支撑装置40允许在圆柱形臂带保护壳部分22的竖直方向上的转动。因此,血压测量仪器12的负载对血压测量的臂带20的局部施加被抑制 同时使臂带保护壳体部分22沿垂直方向转动,使得臂带保护壳部分22的上端部分的纵向方向和轴向方向可根据倾斜度变得大致平行 处于自然姿态的被检者的上臂部的状态,并且通过用于血压测量的臂带20将长臂部的血管沿长度方向均匀地挤压。 版权所有(C)2012,JPO&INPIT
    • 78. 发明专利
    • Model creation method and system
    • 建模方法与系统
    • JP2011242259A
    • 2011-12-01
    • JP2010114715
    • 2010-05-18
    • A & D Co Ltd株式会社エー・アンド・デイ
    • ITO YUKIHISAOWADA KENTAROFURUKAWA AKIRA
    • G01M17/007G06F17/50
    • PROBLEM TO BE SOLVED: To provide a model creation method and a system capable of creating a vehicle model having high reliability.SOLUTION: While an actual vehicle equipped with measuring instruments at dividing points for measuring (1 to 4) is actually driven, data is obtained at the dividing points for measuring. Next, a measuring partial model is created based on the resulting data. The measuring partial model is a model that is divided at the dividing points for measuring (1 to 4) and uses the data on these points as input and output values. A vehicle model is created by creating this measuring partial model.
    • 要解决的问题:提供一种能够创建具有高可靠性的车辆模型的模型创建方法和系统。

      解决方案:实际驱动在测量(1〜4)分割点配备测量仪器的实际车辆,在分割点获取数据进行测量。 接下来,基于所得到的数据创建测量部分模型。 测量部分模型是在分割点(1到4)上划分的模型,并将这些点上的数据用作输入和输出值。 通过创建该测量部分模型来创建车辆模型。 版权所有(C)2012,JPO&INPIT

    • 79. 发明专利
    • Control device of fastening force of hydraulic torque wrench
    • 液压扭矩扳手紧固件控制装置
    • JP2011230224A
    • 2011-11-17
    • JP2010102382
    • 2010-04-27
    • A & D Co LtdHino Motors LtdMeidoh Co LtdUryu Seisaku Ltd日野自動車株式会社株式会社エー・アンド・デイ株式会社メイドー瓜生製作株式会社
    • NEGISHI HIDEOTATSUNO KOJIHAGIWARA TADASHIHASEGAWA HIROTAKAHASEGAWA SABUROMAKINO KOJI
    • B25B23/14B25B23/145
    • PROBLEM TO BE SOLVED: To provide a control device of fastening force of a hydraulic torque wrench capable of eliminating erroneous installation of a fastening member such as a bolt, by performing an investigation of a secular change and a tracking investigation of the fastening force of the fastening member of performing fastening, by measuring the fastening force of the fastening member by using an ultrasonic probe.SOLUTION: This control device includes: a length measuring means of the fastening member for measuring the length of the fastening member by measuring a propagation time of an echo from a tip surface of the fastening member by propagating an ultrasonic wave to the fastening member from an ultrasonic probe Se1 arranged in a tip part of a main shaft S; a fastening force measuring means for measuring the fastening force of the fastening member in fastening work from the length of the fastening member measured by the length measuring means of the fastening member and the initial length of the fastening member measured before fastening; a motor control means for finishing the fastening work by stopping a motor R when the fastening force of the fastening member measured by the fastening force measuring means reaches a predetermined value, and a storage means for storing the length of the fastening member when finishing the fastening work.
    • 要解决的问题:提供一种能够消除诸如螺栓的紧固构件的错误安装的液压扭矩扳手的紧固力的控制装置,通过进行长期变化的调查和紧固的跟踪研究 通过使用超声波探头测量紧固构件的紧固力来进行紧固的紧固构件的力。 解决方案:该控制装置包括:紧固部件的长度测量装置,用于通过将超声波传播到紧固件上来测量来自紧固部件的尖端表面的回波的传播时间来测量紧固部件的长度 来自设置在主轴S的前端部的超声波探头Se1的构件; 紧固力测量装置,用于测量紧固构件的紧固力从紧固构件的长度测量装置测量的紧固构件的长度以及在紧固之前测量的紧固构件的初始长度; 电动机控制装置,用于当由紧固力测量装置测量的紧固件的紧固力达到预定值时通过停止电动机R来完成紧固工作;以及存储装置,用于在紧固时固定紧固件的长度 工作。 版权所有(C)2012,JPO&INPIT
    • 80. 发明专利
    • Method for adjusting resistance value of strain gauge, strain gauge, and pressure sensor
    • 调节应变计,应变计和压力传感器电阻值的方法
    • JP2011196957A
    • 2011-10-06
    • JP2010067115
    • 2010-03-24
    • A & D Co Ltd株式会社エー・アンド・デイ
    • HONDA TSUKASA
    • G01L9/04
    • PROBLEM TO BE SOLVED: To provide a method for adjusting resistance value of a strain gauge in which area of its strain sensing part can be minimized and resistance values can be adjusted without variation in detection sensitivity or resistance characteristic to strain, a strain gauge which adjusted resistance values in the resistance value adjusting method, and a diaphragm type pressure sensor using this strain gauge.SOLUTION: In the strain gauge 20, strain sensing parts 20B, 20D are arranged on a central part 14X of a diaphragm 14, while remaining strain sensing parts 20A, 20C are arranged on a peripheral part 14Y of the diaphragm 14. Resistance values of these strain sensing parts 20A-20D are adjusted by arranging a conductive gel 22 so as to cover the whole surface of those strain sensing parts 20A-20D, after that, by impressing voltage with the strain sensing parts 20A-20D as anode to form anodic oxide film over the entire surface of the strain gauge 20, then adjusting thickness of the anodic oxide film.
    • 要解决的问题:提供一种用于调节应变片的电阻值的方法,其中应变传感部分的面积可以被最小化,并且可以在没有检测灵敏度或应变电阻特性的变化的情况下调节电阻值,调整的应变计 电阻值调节方法中的电阻值和使用该应变片的隔膜式压力传感器。解决方案:在应变仪20中,应变感测部件20B,20D布置在隔膜14的中心部分14X上,同时保持应变感测 部件20A,20C布置在隔膜14的周边部分14Y上。通过布置导电凝胶22以覆盖这些应变传感部件20A-20D的整个表面来调节这些应变传感部件20A-20D的电阻值, 之后,通过应变传感部件20A-20D作为阳极施加电压,在应变片20的整个表面上形成阳极氧化膜,然后调整厚度 阳极氧化膜。