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    • 4. 发明授权
    • Intake temperature sensor
    • 进气温度传感器
    • US08813556B2
    • 2014-08-26
    • US13337398
    • 2011-12-27
    • Masahiro MatsumotoHiroshi NakanoKeiji HanzawaSatoshi Asano
    • Masahiro MatsumotoHiroshi NakanoKeiji HanzawaSatoshi Asano
    • G01F1/68
    • G01K13/02G01F1/6842G01F5/00G01F15/185G01K1/16G01K2205/02
    • An intake temperature sensor capable of precisely detecting the temperature of intake at high speed even in a low air mass flow zone is provided. In an intake temperature sensor having a temperature detecting element 6 inserted in an opening provided in an intake pipe 3 to be disposed in the intake pipe, a temperature detecting element is mechanically joined with a heat sink 4 directly exposed to the flow of the intake flowing in the intake pipe, and the temperature of the intake is output based on an output obtained from the temperature detecting element. Thus, the thermal resistance of the temperature detecting element with respect to the intake flow can be reduced; therefore, the intake temperature sensor capable of precisely detecting the temperature of the intake at high speed even in the low air mass flow zone can be provided.
    • 提供了即使在低空气质量流量区域也能够高精度地检测进气温度的进气温度传感器。 在具有插入到设置在进气管3内的进气管3中的开口中的温度检测元件6的进气温度传感器中,温度检测元件与直接暴露于进气流动的散热器4机械接合 在进气管中,并且基于从温度检测元件获得的输出来输出进气温度。 因此,可以降低温度检测元件相对于进气流的热阻; 因此,即使在低空气质量流量区域中也能够高精度地检测进气温度的进气温度传感器。
    • 6. 发明授权
    • Thermal flowmeter
    • 热流量计
    • US08069718B2
    • 2011-12-06
    • US12121520
    • 2008-05-15
    • Hiroshi NakanoMasahiro MatsumotoKeiji Hanzawa
    • Hiroshi NakanoMasahiro MatsumotoKeiji Hanzawa
    • G01F1/68
    • G01F1/6845G01F1/692G01F1/699
    • A simply configured thermal flowmeter can provide high measurement accuracy over a long period of time by suppressing the characteristics degradation due to adhering contaminants. On the surface of a diaphragm part, a heater resistor is formed. Temperature difference sensors through are disposed on the two sides of the heater resistor (upstream and downstream sides in the flow direction of an air stream). The temperature difference sensors are disposed upstream of the heater resistor while the temperature difference sensors are disposed downstream of the heater resistor. Outside the temperature difference sensors, heating temperature sensors are formed. Control is performed so that the temperature of the heating temperature sensors is set higher than the air stream temperature by a certain degree. Therefore, even if contaminants adhere to the sensor device, the temperature of the heating temperature sensors is held constant. Since the temperature difference sensors to detect the flow rate is located between the heating temperature sensors, the temperature change due to the contamination is small. This suppresses the characteristics degradation, making it possible to provide high measurement accuracy over a long period of time.
    • 简单配置的热流量计可以通过抑制由于污染物附着引起的特性劣化,从而在长时间内提供高测量精度。 在隔膜部件的表面上形成加热电阻器。 温差传感器通孔设置在加热电阻器的两侧(气流的流动方向的上游侧和下游侧)。 温度差传感器设置在加热电阻器的上游,而温差传感器设置在加热电阻器的下游。 在温差传感器之外,形成加热温度传感器。 进行控制,使得加热温度传感器的温度被设定为高于气流温度一定程度。 因此,即使污染物粘附到传感器装置上,加热温度传感器的温度也保持恒定。 由于用于检测流量的温差传感器位于加热温度传感器之间,因污染导致的温度变化小。 这抑制了特性劣化,从而可以在长时间内提供高测量精度。
    • 7. 发明授权
    • IC power protection circuit
    • IC电源保护电路
    • US07656624B2
    • 2010-02-02
    • US11656994
    • 2007-01-24
    • Masahiro MatsumotoMasamichi YamadaHiroshi NakanoKeiji HanzawaRyo Sato
    • Masahiro MatsumotoMasamichi YamadaHiroshi NakanoKeiji HanzawaRyo Sato
    • H02H7/00
    • H02H9/046H01L27/0248H02H11/002
    • An IC power protection circuit functions as a surge protection circuit and reverse connection protection circuit. The IC power protection circuit includes an error amplification circuit, positioned and integrated within an integrated circuit and a transistor positioned as a stand-alone element that is separate from the integrated circuit. The integrated circuit includes a sensor signal processing circuit that processes a signal of a sensor. A transistor protects the integrated circuit against a surge voltage from a battery terminal. A resistor is positioned between an output terminal of an error amplifier and a base terminal of the transistor to provide reverse connection protection. Another resistor is connected between a ground and a connection point between the above resistor and the output terminal to provide overvoltage protection for the integrated circuit. A starting resistor is connected between a collector and base of the transistor.
    • IC电源保护电路用作浪涌保护电路和反向连接保护电路。 IC电源保护电路包括位于并集成在集成电路内的误差放大电路和定位为与集成电路分离的独立元件的晶体管。 集成电路包括处理传感器的信号的传感器信号处理电路。 晶体管保护集成电路免受来自电池端子的浪涌电压的影响。 电阻器位于误差放大器的输出端子和晶体管的基极端子之间,以提供反向连接保护。 另一个电阻连接在上述电阻和输出端之间的接地点和连接点之间,为集成电路提供过压保护。 启动电阻连接在晶体管的集电极和基极之间。
    • 10. 发明申请
    • Serial data transferring apparatus
    • 串行数据传输设备
    • US20050091428A1
    • 2005-04-28
    • US10491285
    • 2001-10-02
    • Masahiro MatsumotoFumio MurabayashiHiromichi YamadaKeiji HanzawaHiroyasu Sukesako
    • Masahiro MatsumotoFumio MurabayashiHiromichi YamadaKeiji HanzawaHiroyasu Sukesako
    • H04L7/02H04L7/04H04L7/06H04L7/10G06F3/00
    • H04L7/10H04J3/24H04J7/00H04L7/046H04L7/06
    • A master unit sends a start signal to a slave unit. When receiving the start signal from the master unit, the slave unit sends, to the master unit, a synchronization field that is a data train (pulse signal) indicative of a transfer clock with which the slave unit is able to perform transferring and receiving operations. The master unit sends, to the slave unit, command data in accordance with the transfer clock indicated by the synchronization field sent from the slave unit. In response to the command data sent from the master unit, the slave unit sends, to the master unit, response data in accordance with the transfer clock indicated by the synchronization field. Thus, in a communication system employing a serial data transferring apparatus of the present invention, the master unit establishes the synchronization for the data transfer, while the slave unit is free from a burden of establishing the synchronization for the data transfer. A serial data transferring apparatus is realized which can simplify the structure of the slave unit, cut the total cost, and reduce noise.
    • 主单元向从单元发送启动信号。 当从主单元接收到起始信号时,从单元向主单元发送同步字段,该同步字段是指示从单元能够执行传送和接收操作的传送时钟的数据串(脉冲信号) 。 主单元根据从从单元发送的同步字段指示的传送时钟向从属单元发送命令数据。 响应于从主单元发送的命令数据,从单元根据由同步字段指示的传送时钟向主单元发送响应数据。 因此,在采用本发明的串行数据传送装置的通信系统中,主单元建立用于数据传送的同步,而从单元没有建立用于数据传送的同步的负担。 实现了串行数据传送装置,其可以简化从单元的结构,降低总成本并降低噪声。