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    • 1. 发明专利
    • Two terminal line voltage thermostat
    • 两端终端电压恒温器
    • JP2005340181A
    • 2005-12-08
    • JP2005123316
    • 2005-04-21
    • Honeywell Incハネウエル.インコーポレーテッド
    • STALSBERG KEVIN JINGALLS JIM EHOGLUND STEVE R
    • H05B3/00G05D23/20G05D23/24
    • G05D23/24G05D23/1902Y10T307/625
    • PROBLEM TO BE SOLVED: To obtain an improved two terminal line voltage thermostat. SOLUTION: The two terminal line voltage thermostat includes a switch (22) for connecting effectively the line voltage to a heater load. The whole process is controlled by an integrated circuit microcontroller (10). The integrated circuit microcontroller is connected to a primary coil and powered by a rectified voltage from a secondary coil of a transformer connected in series to the heater load. When the whole power is lost, power of a back-up battery (11) is supplied, and maintains the limited function of the microcontroller. The microcontroller is programmed so as to comply with temperature detection (18) demand and control demand which are specific to a two terminal line electric base board heating device. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:获得改进的两个终端线路电压恒温器。

      解决方案:两个端子线电压恒温器包括用于有效地将线路电压连接到加热器负载的开关(22)。 整个过程由集成电路微控制器(10)控制。 集成电路微控制器连接到初级线圈,并由来自与加热器负载串联连接的变压器的次级线圈的整流电压供电。 当整个电源丢失时,提供备用电池(11)的电源,并保持微控制器的有限功能。 微控制器被编程为符合特定于两个终端电路基板加热装置的温度检测(18)需求和控制需求。 版权所有(C)2006,JPO&NCIPI

    • 3. 发明专利
    • JP2847433B2
    • 1999-01-20
    • JP51523995
    • 1994-11-23
    • HONEYWELL INC
    • BUREIKU JEIMUZU ENUSANDAASU GUREN EISUTORANJOODO RII KEI
    • G01C19/72
    • A noise reducer for reducing the results in the system output signal of optical noise introduced into an optical subsystem therein, having a phase modulator, by a source through obtaining a noise representation signal used to offset the noise components in the signal obtained from the output of the optical subsystem. This noise representation signal is not delayed in the obtaining thereof by any more than half the delays of the waves emitted from the source in reaching the optical subsystem output. The noise reducer may incorporate a device for adjusting the amplitude of the noise representation signal. It may also include another device for adjusting the phase of the noise representation signal, which may be used to affect the amplitude of the noise representation signal. These adjustments can result in an optimization of the noise representation signal so as to better effectively cancel the optical noise signal at the output of the fiber optic gyro having the noise reducer. The phase adjustment may be accomplished by affecting the phase of the bias modulation signal that goes to demodulate the fiber optic gyroscope system output signal or to demodulate both the fiber optic gyroscope system output signal and the noise representation signal, before the two latter signals are combined. A generator may be used for constructing a periodic signal, such as a triangular wave, having an appropriate amplitude and phase, to be a noise representation signal that is used to offset or cancel the noise components in the output signal from the fiber optic gyroscope system.
    • 9. 发明专利
    • OPTICAL WAVEGUIDE SWITCH
    • JPH06237222A
    • 1994-08-23
    • JP16333393
    • 1993-06-08
    • HONEYWELL INC
    • JIYURIAN PII JII BURISUTOUAROOKU GUA
    • G02F1/313H04B10/02H04Q3/52H04Q11/00
    • PURPOSE: To widen the band width of communication by making timing internals different from the timing intervals of the data parts of signals. CONSTITUTION: Input signals advance from an upper input port 16a to an upper output port 17a and from a lower input port 16b to a lower output port 17b in a default mode. When switching becomes necessary, a crossing is generated. At crossing, the input signals from the port 16a advance to the port 17b and those from the port 16b advance to the port 17a. As the two kinds of input signals separately enter the ports 17a and 17b, waveguide detectors 15a and 15b incorporated in a switch are used for fetching the small parts of the input signals. The detector of a waveguide 15 converts the signals into electricity from light, so that a local electronic controller 12 processes the signal and decides the set state of the switch, based on the information contained in the header part of the signals. This discriminated signal or control is returned to the switch through an electronic line 13. Thus cross bars are used for eliminating the need of a controller required for overall communication, and the band of information communication is widened by processing the cross bars in parallel.