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    • 61. 发明申请
    • FIRE ALARM SYSTEM
    • 火警系统
    • US20100259396A1
    • 2010-10-14
    • US12682300
    • 2008-10-21
    • Yoshifumi WatabeYoshiaki HondaMasanori HayashiYuji TakadaTakayuki Nishikawa
    • Yoshifumi WatabeYoshiaki HondaMasanori HayashiYuji TakadaTakayuki Nishikawa
    • G08B17/12
    • G08B17/10G01N29/032G01N29/348G01N29/4427G01N2291/0217G01N2291/045G01N2291/048G08B13/1968G08B17/00G08B17/113G08B29/24
    • A fire alarm system, determining existence or nonexistence of a fire by using an ultrasound wave, comprises a sound wave generator and a sound wave detector to detect sound waves propagated through two propagation paths having different lengths each other. The system comprises a calculation means for calculating a pressure ratio between a first sound pressure, which is a sound pressure of a sound wave propagated through a first propagation path, and a second sound pressure, which is a sound pressure of a sound wave propagated through a second propagation path, and a smoke density estimator. The smoke density estimator calculates a change ratio between the pressure ratio calculated by the calculation means and a predetermined standard pressure ratio, and determines a smoke density from the change ratio based on a predetermined relational expression describing the relation between the change ratio and the smoke density, and determines existence of a fire when the smoke density exceeds a predetermined threshold.
    • 一种通过使用超声波确定存在或不存在火的火灾报警系统包括声波发生器和声波检测器,用于检测通过具有彼此不同长度的两个传播路径传播的声波。 该系统包括计算装置,用于计算作为通过第一传播路径传播的声波的声压的第一声压与作为通过传播的声波的声压的第二声压之间的压力比 第二传播路径和烟浓度估计器。 烟密度估计器计算由计算装置计算的压力比与预定标准压力比之间的变化比,并且基于描述变化率和烟密度之间的关系的预定关系式从变化率确定烟浓度 并且当烟浓度超过预定阈值时确定火的存在。
    • 62. 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。
    • 63. 发明授权
    • Spatial information detection system including a plurality of detection devices with nonoverlapping light projection periods
    • 空间信息检测系统,包括具有非重叠光投影周期的多个检测装置
    • US07718938B2
    • 2010-05-18
    • US11918745
    • 2006-04-17
    • Fumikazu KuriharaYuji TakadaYusuke HashimotoFumi Tsunesada
    • Fumikazu KuriharaYuji TakadaYusuke HashimotoFumi Tsunesada
    • G01B11/14
    • G01V8/20G01S7/4918G01S17/36G01S17/87G01S17/89
    • A spatial information detection system, which is capable of, even when detecting spatial information from a common target space by use of a plurality of detection devices, achieving accurate detection without causing interference between the detection devices. Each of the detection devices has a light emitting source for projecting light intensity-modulated with a modulation period into the target space, a photodetector for receiving light from the target space, and an evaluation portion for detecting the spatial information of the target space from a change between the light projected from the light emitting source and the light received by the photodetector. The system includes a timing control portion for controlling the timings of projecting the lights from the light emitting sources such that a light projection period of the light emitting source of one of the detection devices does not overlap with the light projection period of the light emitting source of another detection device.
    • 即使通过使用多个检测装置从公共目标空间检测空间信息也能够实现准确的检测而不引起检测装置之间的干扰的空间信息检测系统。 每个检测装置具有用于将调制周期强度调制的光投射到目标空间中的发光源,用于从目标空间接收光的光检测器,以及用于从目标空间中检测目标空间的空间信息的评估部 在从发光源投射的光与由光电检测器接收的光之间变化。 该系统包括定时控制部分,用于控制从发光源投射光的定时,使得一个检测装置的发光源的光投射周期与发光源的光投射周期不重叠 的另一个检测装置。
    • 64. 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。
    • 65. 发明授权
    • Spatial information detecting device using intensity-modulated light and a beat signal
    • 使用强度调制光和拍频信号的空间信息检测装置
    • US07119350B2
    • 2006-10-10
    • US10507516
    • 2003-04-07
    • Yusuke HashimotoYuji TakadaFumikazu Kurihara
    • Yusuke HashimotoYuji TakadaFumikazu Kurihara
    • G01N21/86
    • H01L31/02024G01S7/4914G01S7/493G01S17/36H01L27/14603H01L27/14812H01L31/103H03D9/00
    • A spatial information detecting device using an intensity-modulated light is provided. This device comprises a photoelectric converter for receiving a light from a space into which a light intensity-modulated at a predetermined emission frequency is being irradiated, and generating an electrical output corresponding to an intensity of received light; a local oscillator circuit for outputting a local oscillator signal having a local oscillator frequency different from the emission frequency; a sensitivity controller for mixing the local oscillator signal with the electrical output to frequency convert the electrical output into a beat signal having a lower frequency than the emission frequency; an integrator for performing integration of said beat signal at a predetermined timing; and an analyzer for detecting information concerning the space according to an output of the integrator. According to this device, it is possible to accurately detect the spatial information without using a switching element having high-speed response at the light receiving side.
    • 提供了使用强度调制光的空间信息检测装置。 该装置包括光电转换器,用于接收来自照射预定发射频率的光强调制的空间的光,并产生对应于接收光强度的电输出; 用于输出具有与发射频率不同的本地振荡器频率的本地振荡器信号的本地振荡器电路; 用于将本机振荡器信号与电输出混合的灵敏度控制器,以将电输出频率转换成具有比发射频率低的频率的差拍信号; 用于在预定定时执行所述拍频信号的集成的积分器; 以及分析器,用于根据积分器的输出来检测与空间有关的信息。 根据该装置,能够在光接收侧不使用具有高速响应的开关元件来精确地检测空间信息。
    • 66. 发明授权
    • Facilitator having a distributed configuration, a dual cell apparatus used for the same, and an integrated cell apparatus used for the same
    • 具有分布式配置的协调器,用于其的双电池装置以及用于其的集成电池装置
    • US06925491B2
    • 2005-08-02
    • US09785994
    • 2001-02-16
    • Takao MohriYuji TakadaToshihiro Ide
    • Takao MohriYuji TakadaToshihiro Ide
    • G06F15/16G06F13/00H04L29/06H04L29/08G06F15/173
    • H04L63/0281H04L29/06H04L67/1002H04L67/2814H04L2029/06054
    • There is provided a facilitator having a flexible distributed configuration using cells with enhanced security.The facilitator includes a query cell 20 for receiving a query from a user 60, a transfer cell 30 for transferring data to a predetermined cell, an answer cell 40 for organizing answers to the query from the user 60, and a dual cell 10 having two functions (function of the query cell and the function of the answer cell), wherein respective kinds of cells are organized based on a group 70, and the dual cell 10 is disposed on the border between the groups 70. All the data communicated between the groups 70 passes through the dual cell 10. The user 60 can see the answer cell portion of the dual cell 10, and the server 50 can see the query cell portion of the dual cell 10. Respective elements belonging to different groups are concealed from each other. The arrangement of each cell can be altered only by changing the setting of the dual cell 10.
    • 提供了使用具有增强的安全性的单元的灵活的分布式配置的促进者。 协调者包括用于从用户60接收查询的查询单元20,用于将数据传送到预定单元的传送单元30,用于组织来自用户60的查询的答案的答复单元40以及具有两个 功能(查询单元的功能和应答单元的功能),其中基于组70组织各种单元格,并且双单元10设置在组70之间的边界上。 组70之间通信的所有数据通过双电池10。 用户60可以看到双小区10的应答小区部分,并且服务器50可以看到双小区10的查询小区部分。 属于不同群体的各个元素彼此隐藏。 每个单元的布置可以仅通过改变双单元10的设置来改变。
    • 67. 发明授权
    • Capacitance type moisture sensor and method of producing the same
    • 电容式水分传感器及其制造方法
    • US06756793B2
    • 2004-06-29
    • US09897077
    • 2001-07-03
    • Atsuyuki HironoHideo MoriYuji TakadaKeisuke Yoshikawa
    • Atsuyuki HironoHideo MoriYuji TakadaKeisuke Yoshikawa
    • G01R2726
    • G01R27/2605
    • A capacitance type moisture sensor having the capability of accurately detecting amounts of water is provided. This sensor has a sensor housing having an electrically-insulating wall, a pair of electrodes disposed on the sensor housing, and a circuit unit. An outer surface of the electrically-insulating wall faces a space where the amounts of water should be detected. On an inner surface of the electrically-insulating wall, at least one of the electrodes is formed. An electric field developed between the electrodes is defined as a moisture detecting region. The circuit unit includes a capacitance detecting circuit for detecting a capacitance value between the electrodes, which changes in response to the amounts of water in the moisture detecting region, and an output circuit for providing an electrical signal corresponding toe the amounts of water according the capacitance value detected by the capacitance detecting circuit.
    • 提供具有准确检测水量的电容型水分传感器。 该传感器具有传感器外壳,其具有电绝缘壁,设置在传感器外壳上的一对电极和电路单元。 电绝缘壁的外表面面对应检测水量的空间。 在电绝缘壁的内表面上形成至少一个电极。 在电极之间产生的电场被定义为水分检测区域。 电路单元包括电容检测电路,用于检测响应于水分检测区域中的水量而改变的电极之间的电容值,以及用于提供与根据电容量的水量相对应的电信号的输出电路 值由电容检测电路检测。