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    • 1. 发明授权
    • Universal utility usage data gathering system
    • 通用实用程序使用数据采集系统
    • US06181257B2
    • 2001-01-30
    • US09143713
    • 1998-08-31
    • Jean L. MeekJ. Travis Sparks
    • Jean L. MeekJ. Travis Sparks
    • G08C1916
    • G08C17/04G01D4/002G01D4/006G01F15/063Y02B90/241Y02B90/243Y04S20/32Y04S20/325
    • A universal utility usage data gathering system that is capable of operating with any other read pad data gathering system, regardless of protocol. The universal system comprises of two components. One—a transponder which is the actual device that accumulates utility usage and will transfer accumulated usage to a reader/interrogator system. Two—the universal reader/interrogator, which will universally read any transponder for which the reader is programmed to accept from the transponder read pad. The universal reader/interrogator is based on standard micro-electronic chips and utilizes a multi-tapped antenna making the device capable of communicating with any transponder. The universal reader/interrogator will determine what protocol from any transponder.
    • 一种通用的公用事业使用数据采集系统,能够与任何其他读取数据采集系统一起操作,无论协议如何。 通用系统由两部分组成。 一个应答器,它是实际的设备,累积实用程序使用量,并将累积的使用量传送到读写器系统。 两个通用阅读器/询问器,它将普遍读取读取器被编程为从应答器读取板接收的任何应答器。 通用阅读器/询问器基于标准的微电子芯片,并且利用多抽头天线,使该设备能够与任何应答器进行通信。 通用阅读器/询问器将确定任何应答器的协议。
    • 2. 发明授权
    • Wireless telematic thermometer
    • 无线远程信息温度计
    • US06646567B1
    • 2003-11-11
    • US09693728
    • 2000-10-20
    • Benjamin Martinez Olivas
    • Benjamin Martinez Olivas
    • G08C1916
    • G01K1/024Y10S128/903
    • A wireless telematic thermometer for remote measurement of a human or animal body on the basis of information transmitted by a transmitting module and received by a receiving module, in which the temperature evaluation is carried out in the receiving module, the transmitting module having a probe that is permanently in contact with the body, for obtaining digital sequences which are periodically sent to the receiver, with the cooperation of a transistor controlled by a microprocessor. The receiver has receiving means associated with a microprocessor, which controls movement recorders for displaying the information on a viewing screen; it also has acoustic and luminous warning means.
    • 一种用于远程测量人体或动物身体的无线远程信息温度计,其基于由发送模块发送并由接收模块接收的信息,其中在所述接收模块中执行所述温度评估,所述发送模块具有探测器,所述探测器 与身体永久接触,用于通过由微处理器控制的晶体管的协作来获得周期性地发送到接收器的数字序列。 接收机具有与微处理器相关联的接收装置,其控制用于在观看屏幕上显示信息的移动记录器; 它还具有声光和发光警告手段。
    • 3. 发明授权
    • Toy car camera system and rear vision mirrors
    • 玩具车相机系统和后视镜
    • US06497608B2
    • 2002-12-24
    • US09803894
    • 2001-03-13
    • Heng-Chun HoShu-Ming Liu
    • Heng-Chun HoShu-Ming Liu
    • G08C1916
    • A63H30/04A63H17/00A63H17/32
    • A remote control toy car set comprising a toy car with a housing having a driving device, a camera system, and a first radio module. The camera system is fixed on the housing for taking images of the toy car in motion and generating corresponding image signals, and the first radio module is fixed on the housing and electrically connects with both the driving device and the camera system. The first radio module transfers the image signals from the camera system and receives radio control signals in order to control the operations of the driving device. The remote control toy car set also includes a remote control device for controlling the toy car. The remote control device includes a display for displaying images, a remote control interface for generating control signals, and a second radio module for transferring both the image signals from the toy car to the display and the control signals from the remote control interface to the toy car.
    • 一种遥控玩具车组,包括具有驾驶装置的壳体的玩具车,照相机系统和第一无线电模块。 相机系统固定在壳体上,用于拍摄玩具车的图像并产生相应的图像信号,并且第一无线电模块固定在壳体上并与驱动装置和相机系统电连接。 第一无线电模块从相机系统传送图像信号并且接收无线电控制信号,以便控制驱动装置的操作。 遥控玩具车组还包括用于控制玩具车的遥控装置。 遥控装置包括用于显示图像的显示器,用于产生控制信号的遥控接口和用于将来自玩具车的图像信号两者传送到显示器的第二无线电模块以及从远程控制接口到玩具的控制信号 汽车。
    • 4. 发明授权
    • Multi-speed capacitive displacement encoder
    • 多速电容位移编码器
    • US06788220B2
    • 2004-09-07
    • US10282890
    • 2002-10-29
    • Yishay Netzer
    • Yishay Netzer
    • G08C1916
    • G01D5/2415G01D11/245
    • A capacitive motion encoder, for sensing the position of a moving object relative to a stationary object, includes at least one stationary element, coupled to the stationary object and a moving element, coupled to the moving object and in proximity to the stationary element. A field transmitter generates an electrostatic field, which is modulated by a change in capacitance between the stationary and moving elements responsive to relative motion of the elements. A conductive shield, is electrically decoupled from both the moving and the stationary objects, and encloses the moving and stationary elements so as to shield the elements from external electrical interference. Processing circuitry is coupled to sense the modulated electrostatic field and to determine responsive thereto a measure of the position of the moving object.
    • 用于感测运动物体相对于静止物体的位置的电容运动编码器包括耦合到静止物体的至少一个固定元件和耦合到移动物体并且靠近固定元件的移动元件。 场发射器产生静电场,其由响应于元件的相对运动的固定和移动元件之间的电容变化而调制。 导电屏蔽件与移动和静止物体都电耦合,并且包围移动和固定元件,以便屏蔽元件免受外部电气干扰。 耦合处理电路以感测调制的静电场并且确定响应于该移动物体的位置的度量。
    • 6. 发明授权
    • Device for detecting internal pressure of air-filled gunwale protector
    • 用于检测充气枪支保护器内部压力的装置
    • US06448903B1
    • 2002-09-10
    • US09341115
    • 1999-08-23
    • Yutaka Hattori
    • Yutaka Hattori
    • G08C1916
    • E02B3/26B63B59/02B63B2059/025G01L19/086G01S13/74G08C19/12Y02A30/36
    • The present invention relates to an internal-pressure detection apparatus for a pneumatic fender that can reduce the labor of maintenance. The internal-pressure detection apparatus is configured of an internal-pressure detection unit 10 provided in a pneumatic fender that is fixed to an underwater structure such as a quay 2 and bridge pier 3 or floated and is used as cushioning material for a ship or the like, and a monitor unit 20 provided in an internal-pressure monitoring station 4 on land. The internal-pressure detection unit 10 is driven by the energy of an electromagnetic wave having a first frequency, and detects internal air pressure of the pneumatic fender 1; transmits this air pressure information by an electromagnetic wave having a second frequency. The monitor unit 20 not only transmits the electromagnetic wave, having the first frequency, at the time of internal air pressure detection, but also receives the electromagnetic wave having the second frequency, and obtains the air pressure information transmitted from the internal-pressure detection unit 10; informs a monitoring person of this air pressure information with displaying the air pressure information on a display unit or the like. Thereby, it is possible to easily install the internal-pressure detection apparatus and to reduce the labor of maintenance for battery change or the like.
    • 本发明涉及一种能够降低维护劳动的气动挡泥板的内压检测装置。 内压检测装置由内压检测单元10构成,该内压检测单元10设置在气动挡泥板中,该气压挡泥板固定在诸如码头2和桥墩3的水下结构上,或者浮起并用作船舶的缓冲材料 以及设置在陆上的内压监视站4中的监视器单元20。 内压检测单元10由具有第一频率的电磁波的能量驱动,并且检测气动挡泥板1的内部空气压力; 通过具有第二频率的电磁波来传送该空气压力信息。 监视器单元20不仅在内部空气压力检测时发送具有第一频率的电磁波,而且还接收具有第二频率的电磁波,并且获得从内部压力检测单元发送的空气压力信息 10; 通过在显示单元等上显示气压信息来通知监视人员该气压信息。 由此,能够容易地安装内压检测装置,并且能够减少对电池更换等的维护的劳动。
    • 7. 发明授权
    • Advanced thermal container
    • 先进的热容器
    • US06771183B2
    • 2004-08-03
    • US09898967
    • 2001-07-03
    • Rick C. Hunter
    • Rick C. Hunter
    • G08C1916
    • G01D9/005B65D81/3823Y10T428/231
    • An advanced thermal container has a thermally insulated open receptacle, a thermally insulated closure member, a data monitoring system incorporated into the container that can send and receive information via wireless communication, and a sealing system to minimize heat transfer and air exchange between the interior and exterior of the container. Hard plastic casing enclosing foam-encased vacuum insulation panels is used to construct the insulated receptacle and closure member. The closure member and receptacle each have an elongated portion with shoulders above and below the elongated portion. When the container is closed, a lower seal and an upper seal are compressed between the mating lower and upper shoulders, respectively. The onboard data monitoring system records important parameters concerning the internal and external environments of the container, particularly temperature information, as well as other significant events such as the number of times the container was opened during transit.
    • 先进的热容器具有绝热的开口容器,隔热封闭构件,并入容器中的可通过无线通信发送和接收信息的数据监视系统,以及封闭系统,以最小化内部和 容器的外部。 硬塑料套管封闭泡沫包装真空绝热板用于构造绝缘插座和封闭构件。 封闭构件和插座各自具有细长部分,在细长部分的上方和下方具有肩部。 当容器关闭时,下密封件和上密封件分别在配合的下肩和上肩之间被压缩。 车载数据监控系统记录了有关容器内部和外部环境的重要参数,特别是温度信息,以及其他重要事件,例如集装箱在运输过程中打开的次数。
    • 9. 发明授权
    • Telemetry system with phase-locking noise suppressing receiver
    • 具有锁相噪声抑制接收机的遥测系统
    • US06329929B1
    • 2001-12-11
    • US09217127
    • 1998-12-21
    • Koen J. WeijandRichard Houben
    • Koen J. WeijandRichard Houben
    • G08C1916
    • H04L25/062A61N1/08H04L27/10Y10S128/903
    • There is provided a telemetry system with a receiver which enables detection of pulsed high frequency data (hf) signals in a manner which suppresses noise which may be present within the high frequency bandwidth. The transmitter carrier, which may be subject to some instability, is encoded at a symbol rate which is generated at a lower frequency than the hf, but which is reliably stable. The receiver detects the phase of each received hf pulse, and generates a phase-locked signal which is synchronized to the transmitter symbol signal. The phase-locked signal in turn is used to demodulate the received pulsed signals. In a specific DSP embodiment, the phase-lock loop has a numerically controlled oscillator which has a center frequency which corresponds to the aliased phase difference between the hf carrier phase and the phase of each pulse, thereby obtaining a signal which carries information as to the exact symbol rate. This information is used either to calculate the timing of a narrow window which gates a pulse detector coincident with each next expected symbol time, or to trigger generation of a replica signal which is used in the detect circuit, thereby providing high resolution detection of the pulses and good noise rejection.
    • 提供了一种具有接收器的遥测系统,其能够以抑制可能存在于高频带宽内的噪声的方式检测脉冲高频数据(hf)信号。 可能受到一些不稳定性的发射机载波以以比hf低的频率产生的符号速率被编码,但是其可靠地稳定。 接收机检测每个接收到的hf脉冲的相位,并产生与发射机符号信号同步的锁相信号。 锁相信号依次用于解调所接收的脉冲信号。 在特定DSP实施例中,锁相环具有数控振荡器,其具有对应于hf载波相位和每个脉冲的相位之间的混叠相位差的中心频率,从而获得载有关于 精确符号率。 该信息用于计算与每个下一个预期符号时间一致的脉冲检测器的窄窗口的定时,或者触发在检测电路中使用的复制信号的产生,从而提供脉冲的高分辨率检测 和良好的噪音抑制。
    • 10. 发明授权
    • Fast technique for converting temperature readings into values expressed in an engineering unit format
    • 将温度读数转换成以工程单位格式表示的值的快速技术
    • US06188971B1
    • 2001-02-13
    • US09322474
    • 1999-05-28
    • Christopher P. J. Kelly
    • Christopher P. J. Kelly
    • G08C1916
    • G01K1/028G01D3/022G01D3/0365G01K2219/00
    • An engineering unit converter system for converting an analog measurement into an engineering value. An analog measurement of a physical quantity is transformed into a digital value. The digital value is then split into a high order digit and a lower order digit. The high order digit is used as an address to a memory device for fetching a line segment coefficient and a line segment offset coefficient. The lower order digit is multiplied with the line segment coefficient in a multiplier resulting in a product. The product is added to the line segment coefficient offset resulting in a sum whose value is an engineering unit. One embodiment is directed to converting temperature measurements into engineering units via thermocouples. This embodiment includes: thermocouple devices, resistance thermal devices or positive temperature coefficient thermistors, adders, multipliers, and memory devices (readable and writable memory devices).
    • 一种用于将模拟测量转换为工程值的工程单位转换器系统。 物理量的模拟测量被转换为数字值。 然后将数字值分割为高位数字和低位数字。 高位数字用作存储器件的地址,用于获取线段系数和线段偏移系数。 低乘数与乘法器中的线段系数相乘,产生乘积。 产品被添加到线段系数偏移,导致其值为工程单位的和。 一个实施例涉及通过热电偶将温度测量值转换为工程单位。 该实施例包括:热电偶装置,电阻热装置或正温度系数热敏电阻,加法器,乘法器和存储器件(可读和可写存储器件)。