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    • 2. 发明申请
    • PROTECTING JACKET FOR ELECTRONIC PRODUCT
    • 保护电子产品夹克
    • US20130148296A1
    • 2013-06-13
    • US13324995
    • 2011-12-13
    • CHI-HAN HUANGChi-yuan LeeHung-wei Yu
    • CHI-HAN HUANGChi-yuan LeeHung-wei Yu
    • H05K7/20
    • G06F1/203G06F1/206Y02D10/16
    • The present invention discloses a protecting jacket, which includes a protecting jacket body and a semiconductor cooler. The semiconductor cooler is disposed on an inner surface of the protecting jacket body. The semiconductor cooler includes a Peltier element, a thermistor sensor, a PWM controller, and a switching element. The PWM controller is respectively coupled to the thermistor sensor and the switching element, and the switching element is coupled to the Peltier element. A circuit is connected by the switching element for making the semiconductor cooler work when a temperature of an electronic product is higher than a constant value. In distinct contrast, the circuit is disconnected by the switching element for stopping the semiconductor cooler working when the temperature of the electronic product is lower than the constant value. Therefore, the electronic product can maintain a longer working time, and conserving energy is achieved.
    • 本发明公开了一种保护套,其包括保护套主体和半导体冷却器。 半导体冷却器设置在保护套主体的内表面上。 半导体冷却器包括珀耳帖元件,热敏电阻传感器,PWM控制器和开关元件。 PWM控制器分别耦合到热敏电阻传感器和开关元件,开关元件耦合到珀耳帖元件。 当电子产品的温度高于恒定值时,电路通过开关元件连接,以使半导体冷却器工作。 与此形成对比的是,当电子产品的温度低于恒定值时,电路由开关元件断开,用于停止半导体冷却器的工作。 因此,电子产品可以保持更长的工作时间,节约能源。
    • 9. 发明申请
    • DEBUGGING SYSTEM USING OPTICAL TRANSMISSION
    • 使用光传输的调试系​​统
    • US20130283098A1
    • 2013-10-24
    • US13530811
    • 2012-06-22
    • PAI-HSIANG CHOUAN-PING WANGSHIN-YI CHANGCHENG-DAO LEECHI-YUAN LEE
    • PAI-HSIANG CHOUAN-PING WANGSHIN-YI CHANGCHENG-DAO LEECHI-YUAN LEE
    • G06F11/28
    • G01R31/31705G01R31/31835G02B6/43G06F11/3656G06F11/3664H04B10/801
    • A debugging system using optical transmission comprises a sending side and a receiving side. The sending side comprises a debugging-data-generation unit, a modulation unit, and an optical-transmission apparatus. The debugging-data-generation unit generates debugging data according to an operation of the sending side. The modulation unit modulates the debugging data to generate a modulation signal. The optical-transmission apparatus coupled to the modulation unit converts the modulation signal into a first light and transmits the first light. The receiving side comprises an optical-receiving apparatus, a demodulation unit and a data storage device. The optical-receiving apparatus receives the first light and converts the first light into the modulation signal. The demodulation unit is coupled to the optical-receiving apparatus and demodulates the modulation signal into the debugging data. The data storage device receives and saves the debugging data.
    • 使用光传输的调试系​​统包括发送侧和接收侧。 发送侧包括调试数据生成单元,调制单元和光传输设备。 调试数据生成单元根据发送侧的动作生成调试数据。 调制单元调制调试数据以产生调制信号。 耦合到调制单元的光传输设备将调制信号转换为第一光并透射第一光。 接收侧包括光接收装置,解调单元和数据存储装置。 光接收装置接收第一光并将第一光转换成调制信号。 解调单元耦合到光接收装置,并将调制信号解调成调试数据。 数据存储设备接收并保存调试数据。
    • 10. 发明申请
    • DIAGNOSTIC SYSTEM FOR THE INTERNAL STATUS OF A LITHIUM BATTERY
    • 用于锂电池内部状态的诊断系统
    • US20120009448A1
    • 2012-01-12
    • US12831534
    • 2010-07-07
    • CHI-YUAN LEESHUO-JEN LEE
    • CHI-YUAN LEESHUO-JEN LEE
    • H01M10/48
    • H01M10/052H01M10/48
    • This invention relates to a diagnostic system for the internal status of a lithium battery. It includes a lithium battery unit, a plurality of sensor units and a control system. The lithium battery unit has a battery shell body and a lithium battery. The lithium battery is installed at the battery shell body. Each sensor unit comprises an electrically conductive wire and a sensor part. The internal part is disposed between the internal surface of the battery shell body and the lithium battery. The electrically conductive wire is connected respectively the sensor part and the control system so it can receive the data measured by the sensor part. The user can know the change inside the lithium battery. Therefore, it has the advantages and functions of real time monitoring, the enhancement of utilization safety, and the extension of product life.
    • 本发明涉及一种用于锂电池内部状态的诊断系统。 它包括锂电池单元,多个传感器单元和控制系统。 锂电池单元具有电池壳体和锂电池。 锂电池安装在电池壳体上。 每个传感器单元包括导电线和传感器部分。 内部部件设置在电池壳体的内表面和锂电池之间。 导电线分别连接传感器部分和控制系统,以便它可以接收由传感器部分测量的数据。 用户可以了解锂电池内的变化。 因此具有实时监控,提高使用安全性和延长产品寿命的优点和功能。