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    • 3. 发明申请
    • Infrared detecting device
    • 红外线检测装置
    • US20050285040A1
    • 2005-12-29
    • US10536980
    • 2004-11-11
    • Suguru FukuiTeruki HatataniYuji TakadaAtsushi Hironaka
    • Suguru FukuiTeruki HatataniYuji TakadaAtsushi Hironaka
    • G01V8/12G01J1/02G01J1/42G01J5/34G01J5/00
    • G01J5/34
    • An infrared detecting device. The device includes a drive power supply circuit which supplies a drive current to each of signal circuits comprised of an I/V conversion circuit, a voltage amplification circuit, a detection circuit and an output circuit. The drive power supply circuit is comprised of a current generating circuit and a distribution circuit. The current generating circuit includes a reference current source, a fixed current source which provides a fixed current based on reference current and a variable current source which provides a variable current stepped up or down to any of different currents based on the reference current. The distribution circuit distributes the drive current to a part of the signal circuits based on the current from the fixed current source and distributes the drive current to a remaining part of the signal circuits based on the current from the variable current source. The device reduces current consumption while keeping the performance or behavior of the circuits in stable state.
    • 一种红外线检测装置。 该装置包括驱动电源电路,其向由I / V转换电路,电压放大电路,检测电路和输出电路组成的每个信号电路提供驱动电流。 驱动电源电路由电流发生电路和分配电路构成。 电流产生电路包括参考电流源,基于参考电流提供固定电流的固定电流源和基于参考电流提供向上或向下升至任何不同电流的可变电流的可变电流源。 分配电路基于来自固定电流源的电流将驱动电流分配到信号电路的一部分,并且基于来自可变电流源的电流将驱动电流分配到信号电路的剩余部分。 该器件降低电流消耗,同时保持电路的性能或行为处于稳定状态。
    • 4. 发明授权
    • Infrared detecting device
    • 红外线检测装置
    • US07312450B2
    • 2007-12-25
    • US10536980
    • 2004-11-11
    • Suguru FukuiTeruki HatataniYuji TakadaAtsushi Hironaka
    • Suguru FukuiTeruki HatataniYuji TakadaAtsushi Hironaka
    • G01J5/00
    • G01J5/34
    • An infrared detecting device for reducing current consumption while maintaining performance is disclosed. The device includes a drive power supply circuit which comprises a current generating circuit and a distribution circuit, and which supplies a drive current to each of signal circuits comprising an I/V conversion circuit, a voltage amplification circuit, a detection circuit and an output circuit. The current generating circuit includes a reference current source, a fixed current source providing a fixed current based on the reference current and a variable current source providing a variable current stepped up or down to any different currents based on the reference current. The distribution circuit distributes the drive current to a part of the signal circuits based on the current from the fixed current source and distributes the drive current to a remaining part of the signal circuits based on the current from the variable current source.
    • 公开了一种用于在保持性能的同时降低电流消耗的红外线检测装置。 该装置包括驱动电源电路,其包括电流产生电路和分配电路,并且向包括I / V转换电路,电压放大电路,检测电路和输出电路的每个信号电路提供驱动电流 。 电流产生电路包括参考电流源,基于参考电流提供固定电流的固定电流源和基于参考电流提供向上或向下升至任何不同电流的可变电流的可变电流源。 分配电路基于来自固定电流源的电流将驱动电流分配到信号电路的一部分,并且基于来自可变电流源的电流将驱动电流分配到信号电路的剩余部分。
    • 5. 发明授权
    • Infrared-rays detector
    • 红外线探测器
    • US06313462B1
    • 2001-11-06
    • US09257509
    • 1999-02-25
    • Hiroshi MatsudaYuji TakadaTeruki Hatatani
    • Hiroshi MatsudaYuji TakadaTeruki Hatatani
    • G01J510
    • G01J5/22G01J5/14G01J5/30G01J5/34
    • In an infrared-rays detector, a pyroelectric element detects existence or movement of a human body, and the output signal of the pyroelectric element is converted to a voltage signal. Then, the voltage signal is subjected to waveform analysis. Then, a detection signal is outputted only when a waveform generated by a human body is detected by the waveform analysis. For example, the voltage signal is amplified at two different frequency ranges, and the amplified signals are used for discriminating a signal due to a human body. Then, a noise such as a popcorn noise of the pyroelectric element is prevented to be detected erroneously as generated by a human body.
    • 在红外线检测器中,热电元件检测人体的存在或移动,并且将热电元件的输出信号转换为电压信号。 然后,对电压信号进行波形分析。 然后,仅当通过波形分析检测到由人体产生的波形时才输出检测信号。 例如,电压信号在两个不同的频率范围被放大,并且放大的信号用于鉴别由于人体引起的信号。 然后,由人体产生的错误地检测出热电元件的爆米花噪声等噪音的错误检测。
    • 6. 发明授权
    • Wireless sensor device
    • 无线传感器设备
    • US07792553B2
    • 2010-09-07
    • US10586357
    • 2005-11-18
    • Suguru FukuiTeruki HatataniYuji Takada
    • Suguru FukuiTeruki HatataniYuji Takada
    • H04B1/38
    • H04Q9/00H04Q2209/40H04Q2209/823H04Q2209/883H04Q2209/886H05B37/0227
    • A wireless sensor device including a sensor configured to sense a target object and provide a sensor signal of varying levels indicative of condition of the target object, a signal processing circuit configured to amplify the sensor signal and provide an amplified electric analog signal, and a detection circuit configured to receive the amplified analog signal and provide a detection output when the electric analog signal goes beyond a predetermined detection threshold. A radio transmitter transmits a radio detection signal in response to the detection output. A power supply is configured to provide an electric power to the signal processing circuit and the radio transmitter and includes a power generating element which converts an external energy into the electric power to be accumulated in the power supply. A controller activates the radio transmitter only in response to the detection output, permitting the radio transmitter to generate the radio detection signal.
    • 一种无线传感器装置,包括:传感器,被配置为感测目标对象,并提供指示目标对象的状态的变化等级的传感器信号;信号处理电路,被配置为放大所述传感器信号并提供放大的电模拟信号;以及检测 电路,被配置为当电模拟信号超过预定检测阈值时接收放大的模拟信号并提供检测输出。 无线电发射机响应于检测输出发送无线电检测信号。 电源被配置为向信号处理电路和无线电发射机提供电力,并且包括将外部能量转换成要积聚在电源中的电力的发电元件。 控制器仅响应于检测输出激活无线电发射机,允许无线电发射机产生无线电检测信号。
    • 7. 发明申请
    • Wireless sensor device
    • 无线传感器设备
    • US20070159235A1
    • 2007-07-12
    • US10586357
    • 2005-11-18
    • Suguru FukuiTeruki HatataniYuji Takada
    • Suguru FukuiTeruki HatataniYuji Takada
    • G05F1/10
    • H04Q9/00H04Q2209/40H04Q2209/823H04Q2209/883H04Q2209/886H05B37/0227
    • A wireless sensor device of low energy consumption operates over a prolonged period of time for providing a reliable sensor result. The wireless sensor device includes a sensor configured to sense a target object and provide a sensor signal of varying levels indicative of condition of the target object, a signal processing circuit configured to amplify the sensor signal and give an amplified electric analog signal, and a detection circuit configured to receive the amplified analog signal and provide a detection output when the electric analog signal goes beyond a predetermined detection threshold. Also included in the device is a radio transmitter which transmits a radio detection signal in response to the detection output. Further, the device includes a power supply configured to provide an electric power to the signal processing circuit and the radio transmitter; and a power generating element which converts an external energy into the electric power to be accumulated in the power supply. The controller is included to activate the radio transmitter only in response to the detection output, permitting the radio transmitter to generate the radio detection signal. Thus, the radio transmitter can be kept inactivated until receiving the detection output, thereby saving energy to prolong the operating life of the device.
    • 低能耗的无线传感器设备在长时间内运行,以提供可靠的传感器结果。 所述无线传感器装置包括传感器,所述传感器被配置为感测目标对象并提供指示所述目标对象的状态的变化等级的传感器信号;信号处理电路,被配置为放大所述传感器信号并给出放大的电模拟信号;以及检测 电路,被配置为当电模拟信号超过预定检测阈值时接收放大的模拟信号并提供检测输出。 设备中还包括响应于检测输出发送无线电检测信号的无线电发射机。 此外,该装置包括被配置为向信号处理电路和无线电发射机提供电力的电源; 以及将外部能量转换成要积聚在电源中的电力的发电元件。 仅仅响应于检测输出而包括控制器以激活无线电发射机,允许无线电发射机产生无线电检测信号。 因此,无线电发射机可以保持失活直到接收到检测输出,从而节省能量以延长设备的使用寿命。
    • 8. 发明授权
    • Infrared detecting circuit and an infrared detector
    • 红外检测电路和红外检测器
    • US07129487B2
    • 2006-10-31
    • US10486836
    • 2002-11-27
    • Teruki HatataniSuguru FukuiYuji Takada
    • Teruki HatataniSuguru FukuiYuji Takada
    • G01J5/00
    • G01J5/10G01J5/34
    • An infrared detecting circuit is provided with a current-to-voltage converting circuit including a capacitor connected with an inverting input terminal and an output terminal of an operational amplifier and a resistance circuit element connected in parallel with the capacitor, an inverting amplifying circuit connected with an output side of the current-to-voltage converting circuit, a band-pass filter circuit connected with an output side of the voltage amplifying circuit, and an output circuit connected with an output side of the band-pass filter circuit. The infrared detecting circuit and an infrared detector including this circuit can be miniaturized.
    • 红外线检测电路具备电流 - 电压转换电路,该电流 - 电压转换电路包括与反相输入端子连接的电容器和与电容器并联连接的运算放大器和电阻电路元件的输出端子,反相放大电路与 电压 - 电压转换电路的输出侧,与电压放大电路的输出侧连接的带通滤波器电路,以及与带通滤波器电路的输出侧连接的输出电路。 可以使红外线检测电路和包含该电路的红外线检测器小型化。
    • 9. 发明申请
    • SPATIAL INFORMATION DETECTING APPARATUS
    • 空间信息检测装置
    • US20090045359A1
    • 2009-02-19
    • US12096019
    • 2007-10-10
    • Minoru KumaharaYusuke HashimotoShinji SakamotoYuji Takada
    • Minoru KumaharaYusuke HashimotoShinji SakamotoYuji Takada
    • G01N21/84
    • G01S17/36G01S7/4913G01S7/4915G01S7/493G01S7/497G01S17/89
    • In an apparatus using an intensity-modulated light for detection of spatial information based upon light intensity of light reflected from a target space, a timing synchronization circuit is provided to synchronize a phase of the intensity-modulated light from a light-emitting element with a timing of operating a light-receiving element receiving the intensity-modulated light. The light-receiving element is caused to operate for enabling the detection of intensity of the received light for each of a plurality of phase regions within one cycle of the intensity-modulated light. The timing synchronization circuit functions to compare a cyclic variation determining the operation of the light-receiving element with a cyclic variation associated with an output from a light-emitting element driving circuit in order to keep a constant phase difference between these two cyclic variations.
    • 在使用强度调制光用于基于从目标空间反射的光的光强度来检测空间信息的装置中,提供定时同步电路以使来自发光元件的强度调制光的相位与 操作接收强度调制光的光接收元件的定时。 导致光接收元件操作,以便能够在强度调制光的一个周期内检测多个相位区域中的每一个的接收光的强度。 定时同步电路用于将确定光接收元件的操作的循环变化与与发光元件驱动电路的输出相关联的循环变化进行比较,以便在这两个循环变化之间保持恒定的相位差。
    • 10. 发明授权
    • Spatial information detecting apparatus
    • 空间信息检测装置
    • US07755743B2
    • 2010-07-13
    • US12096019
    • 2007-10-10
    • Minoru KumaharaYusuke HashimotoShinji SakamotoYuji Takada
    • Minoru KumaharaYusuke HashimotoShinji SakamotoYuji Takada
    • G01C3/08
    • G01S17/36G01S7/4913G01S7/4915G01S7/493G01S7/497G01S17/89
    • In an apparatus using an intensity-modulated light for detection of spatial information based upon light intensity of light reflected from a target space, a timing synchronization circuit is provided to synchronize a phase of the intensity-modulated light from a light-emitting element with a timing of operating a light-receiving element receiving the intensity-modulated light. The light-receiving element is caused to operate for enabling the detection of intensity of the received light for each of a plurality of phase regions within one cycle of the intensity-modulated light. The timing synchronization circuit functions to compare a cyclic variation determining the operation of the light-receiving element with a cyclic variation associated with an output from a light-emitting element driving circuit in order to keep a constant phase difference between these two cyclic variations.
    • 在使用强度调制光用于基于从目标空间反射的光的光强度来检测空间信息的装置中,提供定时同步电路以使来自发光元件的强度调制光的相位与 操作接收强度调制光的光接收元件的定时。 导致光接收元件操作,以便能够在强度调制光的一个周期内检测多个相位区域中的每一个的接收光的强度。 定时同步电路用于将确定光接收元件的操作的循环变化与与发光元件驱动电路的输出相关联的循环变化进行比较,以便在这两个循环变化之间保持恒定的相位差。