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
    • Pulse-wave measuring apparatus
    • 脉波测量仪
    • US5766131A
    • 1998-06-16
    • US692897
    • 1996-07-30
    • Yutaka KondoKatsuyuki HondaHiroshi OdagiriTakeshi Ono
    • Yutaka KondoKatsuyuki HondaHiroshi OdagiriTakeshi Ono
    • A61B5/024A61B5/02
    • A61B5/681A61B5/02416A61B5/02438A61B5/6826A61B5/6838
    • To achieve a pulse wave measuring apparatus whereby the sensor unit can be easily and consistently worn against the skin surface, a wristwatch type pulse wave measuring apparatus is comprised as follows. Specifically, light transmittance plate 34 is disposed on the outside surface side of LED 31 and phototransistor 32 in sensor unit 30. Outside surface 341 of light transmittance plate 34, which is pressed against the finger, projects above the reference surface, which is outside surface 361 of sensor frame 36 surrounding light transmittance plate 34. Two body ground terminals 38 contacting the finger surface when light transmittance plate 34 is pressed tight to the finger are disposed around light transmittance plate 34; the body ground terminals 38 also project above the reference surface. However, the position of outside surfaces 381 of body ground terminals 38 is lower than the outside surface 341 of light transmittance plate 34. A supporter-like sensor unit holding band is used to hold sensor unit 30 on the finger. A thick material such as that used in diving wet suits is used for the sensor unit holding band, and comprises a middle layer of foam rubber.
    • 为了实现脉搏测量装置,传感器单元可以容易且一致地佩戴在皮肤表面上,手表型脉波测量装置包括如下。 具体地,透光板34设置在LED31的外表面侧和传感器单元30中的光电晶体管32中。被压靠在手指上的透光板34的外表面341突出在外表面 围绕透光板34的传感器框架36,36设置在透光板34周围,当透光板34被紧压到手指时,与手指表面接触的两个主体接地端子38; 主体接地端子38也突出在参考表面上方。 然而,体接地端子38的外表面381的位置比透光板34的外表面341低。支撑体传感器单元保持带用于将传感器单元30保持在手指上。 用于潜水湿衣服的厚材料用于传感器单元保持带,并且包括泡沫橡胶的中间层。
    • 2. 发明申请
    • Printing Control System
    • 印刷控制系统
    • US20100141994A1
    • 2010-06-10
    • US12703357
    • 2010-02-10
    • Hiroshi Odagiri
    • Hiroshi Odagiri
    • G06F15/00G03G15/00
    • G06K15/00G06K15/005
    • A print system in which a printer and a client personal computer are connected to a network. The printer may include a storage unit configured to store a residual quantity information of sheets of paper in a paper feed cassette, a communication unit configured to transmit said residual quantity information to said client personal computer, and a printing unit. The client personal computer may include a generation unit configured to generating print data corresponding to a print job, and a control unit configured to acquire said residual quantity information and a number of sheets of paper necessary for said print job and compare said residual quantity information and said number of sheets of paper necessary, and when judging an occurrence of exhaustion of sheets of paper according to a comparison results, notifying a user before starting printing in the printer.
    • 打印机和客户端个人计算机连接到网络的打印系统。 打印机可以包括存储单元,其被配置为将纸张的剩余量信息存储在供纸盒中,通信单元,被配置为将所述剩余量信息发送到所述客户个人计算机,以及打印单元。 客户端个人计算机可以包括:生成单元,被配置为生成与打印作业相对应的打印数据;以及控制单元,被配置为获取所述打印作业所需的所述剩余量信息和一张纸张,并将所述剩余量信息和 所述纸张张数是必要的,并且当根据比较结果判断出纸张的发生时,在打印机中开始打印之前通知用户。
    • 4. 发明授权
    • Portable GPS receiver
    • 便携式GPS接收机
    • US6009375A
    • 1999-12-28
    • US948758
    • 1997-10-10
    • Kazumi SakumotoHiroshi OdagiriChiaki NakamuraKeisuke Tsubata
    • Kazumi SakumotoHiroshi OdagiriChiaki NakamuraKeisuke Tsubata
    • G01C22/00G01S5/14G01S11/02G01S11/10G01S19/19G01C21/00
    • G01S19/39G01C22/006G01S19/18G01S19/49G01S19/52
    • There is disclosed a portable GPS (Global Positioning System) receiver carried by a user. The receiver measures the distance traveled by the user and the speed. In the prior art technique, if satellites cannot be captured, no measurements are made. To find the distance and speed accurately, the measurements have to be performed continuously, thus increasing the electric power consumed by the receiver. The inventive receiver once finds the speed from the Doppler frequencies of the carrier waves. Then, a first distance-calculating means finds the distance from the speed. A walk-detecting means detects walking. A step number-calculating means accumulates the number of steps taken in steps. A stride-calculating means finds the stride from the accumulated step number and from the found distance. Then, a second distance-calculating means finds the distance from the stride and from the accumulated number of steps. A speed-calculating means finds the speed. The GPS receiver receives at regular intervals and updates the stride.
    • 公开了一种由用户承载的便携式GPS(全球定位系统)接收机。 接收器测量用户行进的距离和速度。 在现有技术中,如果无法捕获卫星,则不进行测量。 为了准确地找到距离和速度,必须连续执行测量,从而增加接收机消耗的电力。 本发明的接收机一旦从载波的多普勒频率中找到速度。 然后,第一距离计算装置找到与速度的距离。 步行检测装置检测步行。 步数计算装置累积步骤数。 步幅计算装置从累积的步数和从找到的距离中发现步幅。 然后,第二距离计算装置找到从步幅的距离和累积的步数。 速度计算装置找到速度。 GPS接收机定期接收并更新步长。
    • 5. 发明授权
    • Analog electronic timepiece with charging function
    • 具有充电功能的模拟电子表
    • US4760564A
    • 1988-07-26
    • US35088
    • 1987-04-06
    • Hiroshi Odagiri
    • Hiroshi Odagiri
    • G04C10/00G04C3/14G04C10/02H02J1/00H02J7/35G04B9/00G04B1/00
    • G04C1/067G04C10/02
    • A timepiece has a stepping motor for intermittently rotating hands to indicate the time, a solar cell for temporarily generating electric charge and capacitors for storing the generated electric charge to supply an operating voltage. A drive circuit repeatedly applies a combination of first and second consecutive driving pulses having electric powers proportional to the operating voltage to the stepping motor, while a detector detects the operating voltage. A control circuit is connected between the drive circuit and the detector for controlling the detector to effect the operating voltage detection after the application of the first driving pulse and before the application of the following second driving pulse. When decrease of the operating voltage is detected after the application of the first driving pulse, the operating voltage is increased before the application of the following second driving pulse so as to ensure the rotation of the hands.
    • 钟表具有用于间歇地旋转手指示时间的步进电机,用于暂时产生电荷的太阳能电池和用于存储产生的电荷以提供工作电压的电容器。 当检测器检测到工作电压时,驱动电路重复地将具有与工作电压成比例的电功率的第一和第二连续驱动脉冲的组合施加到步进电机。 控制电路连接在驱动电路和检测器之间,用于控制检测器在施加第一驱动脉冲之后并在施加随后的第二驱动脉冲之前进行工作电压检测。 当在施加第一驱动脉冲之后检测到工作电压的降低时,在施加随后的第二驱动脉冲之前增加工作电压,以确保手的旋转。
    • 6. 发明授权
    • Pulse detecting device and ultrasound diagnostic apparatus
    • 脉冲检测装置及超声波诊断装置
    • US07686765B2
    • 2010-03-30
    • US11096876
    • 2005-04-01
    • Takahiko NakamuraMasataka ShinogiHiroyuki MuramatsuHiroshi Odagiri
    • Takahiko NakamuraMasataka ShinogiHiroyuki MuramatsuHiroshi Odagiri
    • A61B8/00
    • A61B5/02438A61B5/02444A61B8/4218A61B8/4483
    • There is provided a pulse detecting device which resists fluctuations in the quality by locating an ultrasound transmitting piezoelectric element and an ultrasound receiving piezoelectric element with high precision. In the pulse detecting device, a detection sensitivity of the pulse is improved. A transmitting piezoelectric element and a receiving piezoelectric element are fixed onto a substrate by electrodes. The transmitting piezoelectric element is excited in response to an inputted drive voltage signal to generate an ultrasound and transmits the generated ultrasound to a living body. The receiving piezoelectric element receives an echo produced by reflecting the ultrasound transmitted into the living body by a blood flow of the living body and converts it into a voltage signal. A processing arithmetic unit compares the frequency of the ultrasound generated by the transmitting piezoelectric element with that of the echo received in the receiving piezoelectric element to thereby detect a pulse.
    • 提供一种脉冲检测装置,其通过以高精度定位超声波发射压电元件和超声波接收压电元件来抵抗质量波动。 在脉冲检测装置中,提高了脉冲的检测灵敏度。 传输压电元件和接收压电元件通过电极固定在基板上。 发射压电元件响应于输入的驱动电压信号被激励以产生超声波,并将生成的超声波传送到生物体。 接收压电元件接收通过反射通过生物体的血流而传播到生物体中的超声波而产生的回波,并将其转换成电压信号。 处理运算单元将由发送压电元件产生的超声波的频率与在接收压电元件中接收到的回波的频率进行比较,从而检测脉冲。
    • 9. 发明授权
    • Portable GPS velosity/distance meter
    • 便携式GPS速度/距离计
    • US06532432B1
    • 2003-03-11
    • US09421594
    • 1999-10-20
    • Hideaki NagatsumaKazumi SakumotoHiroshi Odagiri
    • Hideaki NagatsumaKazumi SakumotoHiroshi Odagiri
    • G01S502
    • G01S19/52G01C22/02G01P3/50G01S19/19G01S19/34
    • To provide a portable GPS velocity/distance meter which may seek a suitable movement velocity by removing an affect of arm swing, save power consumption of a device, and to grip a movement condition of a carrier at a remote position, it is composed of a GPS signal receiving portion for measuring the movement velocity from a Doppler frequency, a microcomputer, an input section for setting a control condition or the like and calculation of various data including positional interval data of the GPS signal receiving section, a display section for displaying the movement velocity or the like and a transmit-receive section. Then, the microcomputer is provided with a control unit for controlling the GPS signal receiving section to intermittently perform the positional operation on the basis of the positional measurement interval and a velocity averaging unit for averaging the movement velocity.
    • 为了提供便携式GPS速度/距离计,其可以通过消除臂摆动的影响来寻求适当的移动速度,节省设备的功耗,并且抓住在远程位置的载体的运动状态,其由 用于测量来自多普勒频率的移动速度的GPS信号接收部分,微型计算机,用于设置控制条件等的输入部分和包括GPS信号接收部分的位置间隔数据的各种数据的计算,显示部分 移动速度等,以及发送接收部。 然后,微型计算机设置有用于控制GPS信号接收部分的控制单元,用于基于位置测量间隔间歇地执行位置操作,以及用于对运动速度进行平均的速度平均单元。