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    • 1. 发明申请
    • On-vehicle radio device
    • 车载无线电设备
    • US20070139157A1
    • 2007-06-21
    • US10594754
    • 2005-03-24
    • Hisashi InabaTakeshi Ito
    • Hisashi InabaTakeshi Ito
    • G05B23/00
    • G07C9/00309B60R25/00G07C2009/00793G07C2209/61G07C2209/65
    • To provide an on-vehicle radio device that acquires identification information for unlocking a lock device of a vehicle from a portable radio device having the identification information recorded therein by radio communication with the portable radio device and is configured so that the radio communication can be achieved with higher reliability. An on-vehicle radio device that acquires identification information for unlocking a lock device of a vehicle from a portable radio device having the identification information recorded therein by radio communication with the portable radio device, includes: variable frequency signal generating means P0, 21, 22; band changing means that changes a frequency band; radio transmitting means 18, 20 that transmits the signal generated by the variable frequency signal generating means to the outer space; and transmission characteristics changing means 25 that changes the transmission characteristics of the radio transmitting means to transmission characteristics adapted to the changed frequency band.
    • 提供一种车载无线电设备,其通过与便携式无线电设备的无线电通信从其中记录有识别信息的便携式无线电设备获取用于解锁车辆的锁定装置的识别信息,并且被配置为使得能够实现无线电通信 具有更高的可靠性。 一种车载无线电设备,其通过与便携式无线电设备的无线电通信从其中记录有识别信息的便携式无线电设备获取用于解锁车辆的锁定装置的识别信息,包括:可变频率信号产生装置P 0,21, 22; 频带改变装置改变频带; 无线电发送装置18,20,将由可变频率信号发生装置产生的信号发送到外部空间; 以及将无线发送装置的发送特性变更为适应变化的频带的发送特性的发送特性变更单元25。
    • 2. 发明授权
    • Antenna device and door handle device
    • 天线装置和门把手装置
    • US07679571B2
    • 2010-03-16
    • US11661595
    • 2005-09-16
    • Hisashi InabaKiyokazu IedaRikuo Hatano
    • Hisashi InabaKiyokazu IedaRikuo Hatano
    • H01Q1/32
    • H01Q1/3283B60R25/246E05B81/77E05B81/78G07C9/00309G07C2209/65H01Q1/44H01Q7/08
    • A transmission/reception antenna (21) comprises a core (31) and a coil (32) wound around the core (31). One of a plurality of core sheets (31a) constituting the core (31) is utilized as a sensor electrode (23). Conductors (33, 34) extending from the two ends of the coil (32) are connected to a transmission/reception drive circuit (22). The conductor (35) extending from a capacitance detector (24) is connected to one of the conductors (33, 34) extending between the coil (32) and the transmission/reception drive circuit (22). Consequently, the capacitance detector (24) is alternately connected to the sensor electrode (23) through a parasitic capacitance C1 generated between the coil (32) and the sensor electrode (23) (core sheet (31a)).
    • 发送/接收天线(21)包括芯(31)和缠绕在芯(31)上的线圈(32)。 构成芯(31)的多个芯片(31a)中的一个被用作传感器电极(23)。 从线圈(32)的两端延伸的导体(33,34)连接到发送/接收驱动电路(22)。 从电容检测器(24)延伸的导体(35)连接到在线圈(32)和发送/接收驱动电路(22)之间延伸的导体(33,34)之一。 因此,通过在线圈(32)和传感器电极(23)(芯片(31a))之间产生的寄生电容C1,电容检测器(24)交替地与传感器电极(23)连接。
    • 3. 发明申请
    • Capacitance change detection device
    • 电容变化检测装置
    • US20050218913A1
    • 2005-10-06
    • US11087644
    • 2005-03-24
    • Hisashi InabaKohei KurachiRikuo Hatano
    • Hisashi InabaKohei KurachiRikuo Hatano
    • E05B49/00B60R25/01B60R25/24G01D5/24G01R27/26G01V3/08H03K17/955G01R29/12
    • G01R27/2605G01D5/24H03K17/955H03K2217/94031
    • A capacitance change detection device includes a sensor electrode, and an electrode capacitance measurement device for measuring capacitance of the sensor electrode on the basis of a correlation value based on a reference capacitance at every first predetermined time. A detection signal is generated when a current measurement value of capacitance is changed by equal to or greater predetermined threshold value than a measurement value obtained a second predetermined time before the current measurement value is measured. The capacitance change detection device further includes a sensitivity compensation capacitance for generating capacitance variations equivalent to specific variations of capacitance of the sensor electrode, and being switched between a connected state and a disconnected state. The threshold value is determined as a difference between measurement values of capacitance of the sensor electrode measured at the connected state and at the disconnected state. The threshold value is renewed at every third predetermined time.
    • 电容变化检测装置包括传感器电极和用于基于每第一预定时间的参考电容的相关值来测量传感器电极的电容的电极电容测量装置。 当电流的电流测量值相对于在测量当前测量值之前的第二预定时间获得的测量值改变等于或大于预定阈值时,产生检测信号。 电容变化检测装置还包括用于产生与传感器电极的电容的特定变化相当的电容变化并且在连接状态和断开状态之间切换的灵敏度补偿电容。 阈值被确定为在连接状态和断开状态下测量的传感器电极的电容的测量值之间的差。 在每三个预定时间更新阈值。
    • 4. 发明授权
    • Unlock operation system of a vehicle door
    • 车门解锁操作系统
    • US06812823B2
    • 2004-11-02
    • US09924611
    • 2001-08-09
    • Hisashi InabaYuichi MurakamiKiyokazu IedaEiji Mushiake
    • Hisashi InabaYuichi MurakamiKiyokazu IedaEiji Mushiake
    • G05B1900
    • E05B81/78B60R25/00G07C9/00309G07C2009/00373G07C2009/00793G07C2209/64
    • A vehicle door lock system has a lock mechanism for locking or unlocking the vehicle door. A control mechanism for controlling an operation of the lock mechanism includes first and second resonators. The first resonator resonates at a predetermined first value Q for transmitting a first signal to the outside of the vehicle. The second resonator is connected in series with the first resonator and resonates at a second value Q which is greater than the first value Q, and changing a resonant condition in accordance with a change of a capacitance. A single actuator is provided for actuating the first and second resonators. A switching mechanism is provided which utilizes the actuator for alternatively switching actuation between the first and the second resonators. The control mechanism controls the switching operation of the switching mechanism and the operation of the door lock mechanism in accordance with the resonant condition of the second resonator.
    • 车门锁系统具有用于锁定或解锁车门的锁定机构。 用于控制锁定机构的操作的控制机构包括第一和第二谐振器。 第一谐振器以预定的第一值Q谐振,以将第一信号发送到车辆的外部。 第二谐振器与第一谐振器串联连接,并以大于第一值Q的第二值Q谐振,并根据电容的变化改变谐振条件。 提供单个致动器用于致动第一和第二谐振器。 提供了一种切换机构,其利用致动器在第一和第二谐振器之间交替切换致动。 控制机构根据第二谐振器的谐振条件来控制切换机构的切换动作和门锁机构的动作。
    • 7. 发明授权
    • Capacitance detection apparatus
    • 电容检测装置
    • US07015705B2
    • 2006-03-21
    • US10951883
    • 2004-09-29
    • Hisashi InabaKohei KurachiRikuo Hatano
    • Hisashi InabaKohei KurachiRikuo Hatano
    • G01R27/26
    • H03K17/955G01R27/2605H03K2217/960715
    • A capacitance detection apparatus includes a first open/close switch provided between both ends of a standard capacitor, one end of the standard capacitor being connected to a first voltage source, a second open/close switch provided between one end of a first capacitor to be measured and the other end of the standard capacitor, the other end of the first capacitor to be measured being connected to a second voltage source or free space, a third open/close switch provided between both ends of the first capacitor to be measured, a voltage measurement means for measuring voltage of the other end of the standard capacitor, a switch control means for performing a first switching control performing a first switching operation to open the first open/close switch after closing thereof, performing a second switching operation to open the second open/close switch after closing thereof, and a third switching operation to close the third open/close switch after closing thereof, wherein the second and third switching operations are repeatedly performed after the first switching operation, a counting means for counting the number of repetition of the second switching operation, and a judging means for judging a change of the capacitance of the first capacitor to be measured according to the number of repetition of the second switching operation, which is the number counted by the counting means during the voltage of the other end of the standard capacitor measured by the voltage measurement means being changed from an initial voltage after the first switching operation by a predetermined magnitude.
    • 电容检测装置包括设置在标准电容器的两端之间的第一开/关开关,标准电容器的一端连接到第一电压源,第二开/闭开关设置在第一电容器的一端之间, 测量的标准电容器的另一端,待测量的第一电容器的另一端连接到第二电压源或自由空间,设置在待测量的第一电容器的两端之间的第三开/闭开关, 电压测量装置,用于测量标准电容器的另一端的电压;开关控制装置,用于执行第一开关控制,执行第一开关操作以在其闭合之后打开第一开/关开关,执行第二开关操作以打开 关闭之后的第二开/闭开关,以及在关闭之后关闭第三开/关开关的第三切换操作,其中第二切换操作 并且在第一切换操作之后重复执行第三切换操作,用于对第二切换操作的重复次数进行计数的计数装置,以及用于根据数量来判断待测量的第一电容器的电容变化的判断装置 在由电压测量装置测量的标准电容器的另一端的电压在第一次开关操作之后的初始电压改变预定量值时,由计数装置计数的次数的重复第二开关操作。
    • 8. 发明授权
    • Human body detector
    • 人体检测仪
    • US06774789B2
    • 2004-08-10
    • US09925308
    • 2001-08-10
    • Hisashi InabaYuichi MurakamiKiyokazu IedaEiji MushiakeHiroki Okada
    • Hisashi InabaYuichi MurakamiKiyokazu IedaEiji MushiakeHiroki Okada
    • G08B1300
    • B60R25/246G07C2209/64
    • In a human body detector, a wave-detection circuit for detecting waves of a resonance voltage is connected to a sensor resonance circuit that varies a constant frequency voltage in accordance with a change in the capacitance of a sensor electrode. The wave-detection circuit is connected to a differentiator that acquires a changing rate by differentiating the wave-detection voltage with respect to time, and allows a voltage to pass if the changing rate of the voltage is greater than or equal to a predetermined value. The differentiator is connected to a high-pass filter that allows passage of a voltage whose changing rate is greater than or equal to a second predetermined value. The high-pass filter is connected to a comparator whose non-inversion input terminal is connected to a power source that applies thereto a reference voltage.
    • 在人体检测器中,用于检测谐振电压波的波检测电路被连接到根据传感器电极的电容变化而改变恒定频率电压的传感器谐振电路。 波检测电路通过将波检测电压相对于时间进行微分而获得变化率的微分器连接,如果电压的变化率大于或等于预定值,则允许电压通过。 微分器连接到允许通过变化率大于或等于第二预定值的电压的高通滤波器。 高通滤波器连接到比较器,其非反相输入端连接到施加到基准电压的电源。