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    • 17. 发明申请
    • Airconditioning Equipment, Signal Transmission Method, and Signal Transmission Method for Air Conditioning Equipment
    • 空调设备的空调设备,信号传输方法和信号传输方法
    • US20080032621A1
    • 2008-02-07
    • US10592137
    • 2005-02-23
    • Toshiyasu HigumaNoriyuki KushiroYoshiaki Koizumi
    • Toshiyasu HigumaNoriyuki KushiroYoshiaki Koizumi
    • F24F7/007
    • F24F1/26F24F1/0003F24F1/32F24F11/30F24F11/54
    • When a prior-art transmission scheme is to be applied to an airconditioning equipment already installed in a building or a house, refrigerant pipes serving as communication media and an in-room unit as well as an out-room unit need to be insulated, so that steel pipes near both the ends of each refrigerant pipe have been inevitably replaced with electrical insulation devices.(Means for Resolution)An airconditioning equipment having an in-room unit 2 connected to one end of refrigerant pipes 3, 4, and an out-room unit 1 connected to the other end of the refrigerant pipes 3, 4, is characterized by comprising signal coupling portions 7 which are respectively disposed at both the end parts of the refrigerant pipes 3, 4, each of which couples an AC control signal to the refrigerant pipes 3, 4, and each of which exhibits a predetermined impedance with respect to an AC electric signal.Owing to such a configuration, the present invention brings forth the advantages that the electrical insulation devices as in the prior art are dispensed with, and that the signal transmissions between the in-room unit 2 and the out-room unit 1 can be performed by the simple apparatus configuration.
    • 当将现有技术的传输方案应用于已经安装在建筑物或房屋中的空调设备时,用作通信介质和室内单元的制冷剂管道以及室外单元需要绝缘,因此 每个制冷剂管两端的钢管不可避免地被电绝缘装置所取代。 (解决方法)具有连接到制冷剂管3,4的一端的室内单元2和与制冷剂管3,4的另一端连接的室外单元1的空调设备的特征在于包括 信号耦合部分7分别设置在制冷剂管3,4的两端部处,每个制冷剂管道3,4将AC控制信号耦合到制冷剂管3,4,并且它们各自相对于AC呈现预定的阻抗 电信号。 由于这样的结构,本发明提出了如现有技术中省去的电气绝缘装置的优点,并且室内单元2和室外单元1之间的信号传输可以由 简单的设备配置。
    • 18. 发明申请
    • AIR CONDITIONING APPARATUS AND AIR CONDITIONING SYSTEM
    • 空调设备和空调系统
    • US20130325191A1
    • 2013-12-05
    • US13985302
    • 2011-02-21
    • Takuya MukaiYoshiaki KoizumiToshiyasu HigumaSatoshi Endo
    • Takuya MukaiYoshiaki KoizumiToshiyasu HigumaSatoshi Endo
    • G05B13/02
    • G05B13/02F24F11/30F24F11/54F24F11/62F24F11/89H04B3/54
    • A modulator modulates a voltage signal corresponding to inputted transmission data, and outputs the signal as a voltage signal between a communication wire and a shared wire. A demodulator demodulates a voltage signal based on the potential difference between the communication wire and the shared wire, and outputs the signal as a demodulated signal. A connector connects the communication wire and the shared wire to the modulator and the demodulator by means of a high voltage capacitor that withstands voltages up to a predetermined level. A controller receives, as incoming data, serial data corresponding to a voltage signal demodulated in demodulator if the serial data includes an address of its own apparatus, monitors a demodulated signal outputted from the demodulator, and outputs transmission data that includes a destination address to the modulator if the controller determines that no signal is being transmitted in the communication wire.
    • 调制器对与输入的传输数据相对应的电压信号进行调制,并将该信号作为通信线和共享线之间的电压信号输出。 解调器基于通信线和共享线之间的电位差来解调电压信号,并将该信号作为解调信号输出。 连接器通过高压电容器将通信线和共享线连接到调制器和解调器,耐压高达预定电平。 如果串行数据包括其自身设备的地址,则控制器作为输入数据接收对应于在解调器中解调的电压信号的串行数据,监视从解调器输出的解调信号,并将包含目的地地址的发送数据输出到 调制器,如果控制器确定在通信线中没有发送信号。
    • 20. 发明申请
    • COMMUNICATION INTERFACE DEVICE
    • 通信接口设备
    • US20130287075A1
    • 2013-10-31
    • US13977164
    • 2011-01-27
    • Satoshi EndoYoshiaki KoizumiToshiyasu HigumaTakuya Mukai
    • Satoshi EndoYoshiaki KoizumiToshiyasu HigumaTakuya Mukai
    • H04L25/02
    • H04L25/0262H04L12/6418H04L25/05H04L25/491
    • A sampler samples a receive signal received via a dedicated communication line. A data transfer rate adjuster measures a data transfer rate based on a number of start bit samples contained in the receive signal. A bit determiner makes a bit determination regarding the receive signal at the data transfer rate measured by the data transfer rate adjuster, to thereby acquire serial data contained in the receive signal. A transmitter sends, via the dedicated communication line, a transmit signal containing serial data sent by an MPU. An MPU communicator outputs to the transmitter the serial data sent by the MPU, and outputs to the MPU the serial data acquired by the bit determiner. The data transfer rate adjuster adjusts, when the transmitter sends the transmit signal multiple times at different data transfer rates, the data transfer rate based on the receive status of respective response signals thereto.
    • 采样器对通过专用通信线路接收到的接收信号进行采样。 数据传送速率调整器基于包含在接收信号中的起始比特数目的数量来测量数据传送速率。 位确定器对由数据传输速率调整器测量的数据传输速率的接收信号进行位确定,从而获取包含在接收信号中的串行数据。 发送器通过专用通信线路发送包含由MPU发送的串行数据的发送信号。 MPU通信器向MPU发送由MPU发送的串行数据,并向MPU输出由位确定器获取的串行数据。 当发送器以不同的数据传输速率多次发送发送信号时,数据传输速率调整器根据各个响应信号的接收状态来调整数据传输速率。