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    • 53. 发明申请
    • Control Circuit for Heating Textile Articles
    • 纺织品加热控制电路
    • US20160135251A1
    • 2016-05-12
    • US14537588
    • 2014-11-10
    • Phihong USA Corporation
    • Keith HopwoodSong-Je Lin
    • H05B3/00A41D13/005
    • A41D13/0051H05B1/0272
    • An example heating control module includes a microcontroller, and a switch operatively coupled to the microcontroller. The switch is arranged to allow current to flow between a power supply and one or more heating elements during a closed state and to prevent current from flowing between the power supply and the heating elements during an open state. The microcontroller is configured to receive, from a user interface, an indication of a heating level, and transmit, in response to receiving the indication, a control signal to the switch such that a current waveform corresponding to the heating level flows between the power supply and the heating elements. The microcontroller is also configured to obtain, during the closed state of the switch, one or more measurements of the current delivered to the heating element, compare the one or more measurements to a lower threshold current, and open the switch upon determining that at least one measurement is less than the lower threshold current.
    • 示例加热控制模块包括微控制器和可操作地耦合到微控制器的开关。 开关被布置成允许电流在关闭状态期间在电源和一个或多个加热元件之间流动,并且在打开状态期间防止电流在电源和加热元件之间流动。 微控制器被配置为从用户接口接收加热电平的指示,并且响应于接收到指示而向开关发送控制信号,使得对应于加热电平的电流波形在电源 和加热元件。 微控制器还被配置为在开关的闭合状态期间获得传递到加热元件的电流的一个或多个测量值,将一个或多个测量值与较低的阈值电流进行比较,并且在确定至少 一个测量值小于较低的阈值电流。
    • 57. 发明申请
    • UNITARY GARMENT HEATING DEVICE
    • 单位加温装置
    • US20150208739A1
    • 2015-07-30
    • US14606065
    • 2015-01-27
    • INNOVATIVE SPORTS INC.
    • CHRISTOPHER COLBY TAYLORSCOTT FREEMAN
    • A41D13/005H05B3/34H05B1/02
    • A41D13/0051A41D1/002H05B1/0272H05B3/18H05B3/342H05B3/56H05B2203/003H05B2203/007H05B2203/014H05B2203/036
    • A unitary garment heating device that integrates with a garment to provide uniform heat throughout the garment. The device includes a plurality of nodes that position on various areas of the garment to distribute the heat. The nodes are fabricated from a conductive metallic yarn. A continuous conduit having no junctions carries current for generating heat, and connects the nodes to form a unitary heating device. The conduit is fabricated from the same material as the nodes, thereby forming a unitary device. The lack of junctions on the conduit helps eliminate problems such as shorts, and moisture exposure form rain or sweat. The conduit runs in a series circuitry to minimize shorts and arcing. The conduit is covered with a laminate and urethane to inhibit contact with moisture. A communication apparatus, such as a smart phone, monitors and regulates the temperature. A power supply and microprocessor are also attached.
    • 一体的服装加热装置,与服装相结合,在整个服装中提供均匀的热量。 该装置包括多个节点,其位于衣服的各个区域上以分配热量。 节点由导电金属线制成。 没有结的连续导管承载用于产生热量的电流,并且连接节点以形成整体加热装置。 导管由与节点相同的材料制成,从而形成一体的装置。 导管上缺少接头有助于消除诸如短裤和潮湿暴露在雨或汗中的问题。 导管以串联电路运行,以减少短路和电弧。 导管用层压板和聚氨酯覆盖以抑制与水分的接触。 诸如智能电话的通信装置监视和调节温度。 还附有电源和微处理器。
    • 59. 发明授权
    • Temperature control circuit for two heating devices
    • 两个加热装置的温度控制电路
    • US08927908B2
    • 2015-01-06
    • US13440486
    • 2012-04-05
    • Ching-Chuan Wang
    • Ching-Chuan Wang
    • H05B1/02
    • H05B1/0272G05D23/1906G05D23/24
    • A temperature control circuit for two heating devices respectively provided with a heater and a sensing wire. The sensing wires' ends are respectively connected to a diode. The two diodes' polarity is opposite to that of the sensing wires' connecting ends. Another ends of the sensing wires are connected to a capacitor to form a resistor-capacitor circuit. The heater wires are connected to a diode respectively and then a bi-directional thyristor. The two diodes' polarity is opposite to that of the heater wires' connecting ends. Thereby, the heater wires can be heated up respectively by the positive and negative half-periods of alternating current. When phase shifts occur because of the heater wires' temperature change, the sensing wires can control the bi-directional thyristor via a controller so that the positive or negative half-period are not triggered. Therefore, the heater wires' heating temperatures can be controlled individually.
    • 一个用于两个加热装置的温度控制电路,分别设有加热器和传感线。 感测线的端部分别连接到二极管。 两个二极管的极性与传感线连接端的极性相反。 感测线的另一端连接到电容器以形成电阻 - 电容电路。 加热器线分别连接到二极管,然后连接到双向晶闸管。 两个二极管的极性与加热器线的连接端的极性相反。 因此,可以分别通过正,负半周期的交流加热加热丝。 当由于加热线的温度变化而发生相移时,感测线可以通过控制器控制双向晶闸管,使得正或负半周期不被触发。 因此,可以单独控制加热丝的加热温度。