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    • 3. 发明申请
    • AUTOMATIC ANALYZER
    • 自动分析仪
    • US20140037503A1
    • 2014-02-06
    • US13982745
    • 2012-01-26
    • Yukinori SakashitaKatsuaki TakahashiTomoyuki Nemoto
    • Yukinori SakashitaKatsuaki TakahashiTomoyuki Nemoto
    • G01N35/10
    • G01N35/1004
    • The present invention performs cleaning on the inner and outer surfaces of a dispensing nozzle without reducing the processing speed of a device. To achieve the object, a feature of the invention is that a dispensing nozzle rinse tank includes a rinse liquid supply port. More specifically, by suctioning rinse liquid from the rinse liquid supply port provided on the dispensing nozzle rinse tank and discharging the rinse liquid into the rinse tank, the inner and outer surfaces of the dispensing nozzle can be rinsed in a short amount of time. According to the invention, it is only required that a rinse liquid supply port be provided on the dispensing nozzle rinse tank, the structure is simple. Moreover, because the inner and outer surfaces of the dispensing nozzle can be rinsed in a short amount of time by shortening the movement distance of the dispensing nozzle, analyses can be performed without reducing the processing speed of the device.
    • 本发明在分配喷嘴的内表面和外表面上进行清洁,而不会降低装置的处理速度。 为了实现该目的,本发明的特征在于,分配喷嘴冲洗槽包括冲洗液供给口。 更具体地,通过从设置在分配喷嘴冲洗槽上的冲洗液供给口抽吸冲洗液并将冲洗液排出到冲洗槽中,可以在短时间内清洗分配喷嘴的内表面和外表面。 根据本发明,仅需要在分配喷嘴冲洗槽上设置冲洗液供给口,结构简单。 此外,由于通过缩短分配喷嘴的移动距离能够在短时间内清洗分注喷嘴的内表面和外表面,因此可以在不降低装置的处理速度的情况下进行分析。
    • 4. 发明申请
    • GAIN CONTROL CIRCUIT, COMMUNICATION DEVICE, ELECTRONIC APPLIANCE, AND GAIN CONTROL METHOD
    • 增益控制电路,通信设备,电子设备和增益控制方法
    • US20130335146A1
    • 2013-12-19
    • US14002907
    • 2012-03-07
    • Katsuaki TakahashiNaoto Yoshikawa
    • Katsuaki TakahashiNaoto Yoshikawa
    • H03G3/30
    • H03G3/3042H03G3/3052H03G3/3068
    • The present technology relates to a gain control circuit, a communication device, an electronic appliance, and a gain control method which aim to provide a technology capable of suppressing intermodulation distortion. The gain control circuit includes a first amplifier for amplifying an input signal, and a signal determination unit for determining an input signal to be input to the first amplifier, and controlling an amplification factor of the first amplifier based on the determination result. The communication device includes a first amplifier for amplifying a received signal, a receiving unit for performing a receiving process based on a signal output from the first amplifier, and a signal determination unit for determining a received signal to be input to the first amplifier, and controlling the amplification factor of the first amplifier based on the determination result. In the gain control method, an input signal to be input to a first amplifier for amplifying an input signal is determined, and the amplification factor of the first amplifier is controlled by a feed forward system based on the determination result.
    • 本技术涉及旨在提供能够抑制互调失真的技术的增益控制电路,通信装置,电子设备和增益控制方法。 增益控制电路包括用于放大输入信号的第一放大器和用于确定要输入到第一放大器的输入信号的信号确定单元,以及基于确定结果来控制第一放大器的放大系数。 通信装置包括用于放大接收信号的第一放大器,用于基于从第一放大器输出的信号执行接收处理的接收单元,以及用于确定要输入到第一放大器的接收信号的信号确定单元,以及 基于确定结果控制第一放大器的放大系数。 在增益控制方法中,确定要输入到放大输入信号的第一放大器的输入信号,并且基于确定结果由前馈系统控制第一放大器的放大系数。
    • 9. 发明申请
    • Abnormality detecting device for hydraulic system
    • 液压系统异常检测装置
    • US20100147256A1
    • 2010-06-17
    • US12591828
    • 2009-12-02
    • Katsuaki Takahashi
    • Katsuaki Takahashi
    • F01M11/10G06F19/00
    • F01M1/20F04B49/08F04B2205/06Y10T137/86002
    • An abnormality detecting device for a hydraulic system is disclosed. The hydraulic system has a pressure level switching mechanism that adjusts oil pressure in accordance with the operating state of an internal combustion engine. The device includes an oil pressure sensor and a ECU. The oil pressure sensor detects an oil pressure that is adjusted by the pressure level switching mechanism. When the pressure level switching mechanism changes the oil pressure from a first oil pressure level to a second oil pressure level, which is higher than the first oil pressure level, the ECU compares the oil pressure detected by the oil pressure sensor with a determination oil pressure level, which is lower than and close to the second oil pressure level. The ECU determines that there is an abnormality in the hydraulic system if the oil pressure detected by the oil pressure sensor does not change to pass the determination oil pressure level.
    • 公开了一种用于液压系统的异常检测装置。 液压系统具有根据内燃机的运行状态来调节油压的压力水平切换机构。 该装置包括油压传感器和ECU。 油压传感器检测由压力水平切换机构调节的油压。 当压力水平切换机构将油压从第一油压水平改变到高于第一油压水平的第二油压水平时,ECU将由油压传感器检测到的油压与确定油压进行比较 水平低于和接近第二油压水平。 如果由油压传感器检测到的油压不改变以通过确定油压水平,则ECU确定液压系统中存在异常。