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    • 4. 发明公开
    • INTEGRATED CIRCUIT AND MEDICAL DEVICE USING THE SAME
    • INTEGRIERTER SCHALTKREIS UND MEDISINISCHE VORRICHTUNG DAMIT
    • EP2554194A1
    • 2013-02-06
    • EP11762581.4
    • 2011-03-16
    • Terumo Kabushiki Kaisha
    • MORITA, TakashiSUGAWARA, YoshihisaIWATA, Takeharu
    • A61M5/142A61B5/022A61B5/1455A61M5/00
    • A61M5/16831A61B5/022A61B5/14532A61B5/1455A61M5/142A61M5/172
    • To provide an integrated circuit which can be utilized as a common integrated circuit for a plurality types of medical devices including a sphygmomanometer, a blood glucose meter, a syringe pump and an infusion pump. It includes an amplification unit 20 which inputs a signal from an external sensor connected to outside of an integrated circuit 1 and an arithmetic control unit 31 which receives the signal processed by the amplification unit 10, and performs an arithmetic process for a control of devices or a calculation of a detection result according to an internal program. The external sensor connected to outside of the integrated circuit 1 and the internal program corresponding to the external sensor are changed, whereby the integrated circuit can be utilized as a common integrated circuit for the plurality types of different medical devices including the sphygmomanometer, the blood glucose meter, the syringe pump, and the infusion pump, according to a difference of external sensors.
    • 提供一种集成电路,其可以用作多种类型的医疗装置的公共集成电路,包括血压计,血糖仪,注射器泵和输液泵。 它包括一个放大单元20,其输入来自连接到集成电路1外部的外部传感器的信号;以及运算控制单元31,其接收由放大单元10处理的信号,并执行用于控制设备的运算处理 根据内部程序计算检测结果。 连接到集成电路1的外部的外部传感器和对应于外部传感器的内部程序发生变化,由此集成电路可以用作多种类型的不同医疗设备的公共集成电路,包括血压计,血糖 根据外部传感器的不同,仪表,注射器泵和输液泵。
    • 6. 发明公开
    • EXTRACORPOREAL CIRCULATION DEVICE AND CONTROL METHOD THEREFOR
    • EXTRAKORPORALE ZIRKULATIONSVORRICHTUNG
    • EP2893944A1
    • 2015-07-15
    • EP12884094.9
    • 2012-09-05
    • Terumo Kabushiki Kaisha
    • IWATA, Takeharu
    • A61M1/14A61M1/10
    • A61M1/3621A61M1/1006A61M1/101A61M1/1086A61M1/3643A61M1/3644A61M1/3666A61M1/3667A61M2205/17A61M2205/3334
    • An extracorporeal circulation device of the present invention implements extracorporeal circulation having high safety while suppressing increases in both the circuit scale and the power consumption. For this purpose, in the extracorporeal circulation device, a main control unit that is responsible for control of the whole device controls a motor drive circuit so as to yield a blood flow rate per unit time set by a user. The motor drive circuit applies a drive signal corresponding to the set blood flow rate to a motor. At this time, a sub-control unit configured by an FPGA detects the drive signal applied to the motor and keeps on monitoring whether or not the drive signal falls within an allowable range corresponding to the set blood flow rate. Furthermore, if the drive signal outside the allowable range is applied, the main control unit is deemed to be in an abnormal state and the main control unit is completely stopped. Then, the sub-control unit takes over the subsequent processing.
    • 本发明的体外循环装置在抑制电路规模和功耗的增加的同时实施高安全性的体外循环。 为此,在体外循环装置中,负责整个装置的控制的主控制单元控制电动机驱动电路,以产生由用户设定的每单位时间的血液流量。 电动机驱动电路将与设定的血液流量对应的驱动信号应用于电动机。 此时,由FPGA构成的子控制单元检测施加到电动机的驱动信号,并继续监视驱动信号是否落在与设定的血液流量对应的容许范围内。 此外,如果驱动信号被施加在允许范围之外,则主控制单元被认为处于异常状态,并且主控制单元完全停止。 然后,子控制单元接管后续处理。