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    • 11. 发明申请
    • METHOD FOR IDENTIFICATION OF A LIGHT INDUCTIVE CHARGER
    • 轻型电感充电器识别方法
    • US20110298419A1
    • 2011-12-08
    • US13116654
    • 2011-05-26
    • Ming-Chiu TSAIChi-Che CHAN
    • Ming-Chiu TSAIChi-Che CHAN
    • H02J7/00H01L31/12
    • H02J50/90H01M10/46H02J7/025H02J7/027H02J50/12H02J50/80
    • The present invention relates to a method for identification of a light inductive charger, in which a power base includes a light receiving hole to expose a light receiver, and a light emitting component is established in a light emitter of a wireless charging receiver to emit lights towards the light receiving hole. The power base transmits electromagnetic wave energy to the receiving terminal for a short period of time when finding it covered by an object, in a dark place or covered by the wireless charging receiver after having received lights from the light receiver through the light receiving hole and transmitted the signals to the microprocessor via a voltage detection circuit. The charging module of the wireless charging receiver, if not fully charged, feeds back light signals for the same time period to indicate that charging is required. Then charging energy of electromagnetic waves will be emitted to start charging.
    • 本发明涉及一种用于识别光感应充电器的方法,其中功率基座包括用于暴露光接收器的光接收孔,并且在无线充电接收器的光发射器中建立发光部件以发光 朝向光接收孔。 电源基座经过光接收孔从光接收器接收到光后,在黑暗的地方发现被物体覆盖或被无线充电接收器覆盖的短时间内将电磁波能量传输到接收终端, 通过电压检测电路将信号发送到微处理器。 无线充电接收器的充电模块(如果未完全充电)在相同时间段内反馈光信号,以指示需要充电。 然后将发出电磁波的充电能量开始充电。
    • 12. 发明申请
    • POWER TRANSMISSION METHOD OF HIGH-POWER WIRELESS INDUCTION POWER SUPPLY SYSTEM
    • 大功率无线感应电源系统的电力传输方法
    • US20110291489A1
    • 2011-12-01
    • US12898992
    • 2010-10-06
    • Ming-Chiu TSAIChi-Che CHAN
    • Ming-Chiu TSAIChi-Che CHAN
    • H02J17/00
    • H02J50/12H02J17/00H02J50/80
    • A power transmission method used in a high-power wireless induction power supply system consisting of a power-supplying module and a power-receiving module is disclosed. The power-supplying module regulates its output energy by means of frequency modulation and driving power adjustment, enabling the energy to be received by the power-receiving module and transmitted through a power-receiving coil array and a primary resonant capacitor and a secondary resonant capacitor of power-receiving resonance circuit, a synchronizing rectifier, a low-power voltage stabilizer, a high-frequency filter capacitor, a first power switch, a low-frequency filter capacitor and a second power switch of a filter circuit for output to an external apparatus.
    • 公开了一种用于由供电模块和电力接收模块组成的大功率无线感应电源系统中的电力传输方法。 供电模块通过频率调制和驱动功率调节来调节其输出能量,使得能量被受电模块接收并通过受电线圈阵列和初级谐振电容器和辅助谐振电容器 的受电谐振电路,同步整流器,低功率稳压器,高频滤波电容器,第一电源开关,低频滤波电容器和用于输出到外部的滤波器电路的第二电源开关 仪器。
    • 15. 发明申请
    • SLOT-TYPE INDUCTION CHARGER
    • SLOT型电感充电器
    • US20130093386A1
    • 2013-04-18
    • US13355922
    • 2012-01-23
    • Ming-Chiu TSAIChi-Che Chan
    • Ming-Chiu TSAIChi-Che Chan
    • H02J7/00
    • H02J7/025H02J5/005H02J7/0044H02J50/12
    • A slot-type induction charger having light, thin, short and small characteristics is disclosed to include a power base holding therein a control module and a power-supplying coil module in a base member thereof for inducing an electric current, and an induction charging receiver set in the base member for receiving the induced electric current by electromagnetic induction from the power base for charging an electromagnetic device being connected to an electrical connector thereof. The power-supplying coil module and the power-receiving coil module each includes a magnetic conductor and a series of coils being alternatively and reversely wound around the magnetic conductor.
    • 公开了一种具有轻,薄,短和小特性的槽型感应充电器,其包括:电源基座,其在其基座中容纳用于感应电流的控制模块和供电线圈模块;以及感应充电接收器 设置在基座构件中,用于通过电磁感应从用于对与其电连接器连接的电磁装置进行充电的电源接收感应电流。 供电线圈模块和受电线圈模块各自包括磁性导体和一系列绕着磁性导体交替反向卷绕的线圈。
    • 16. 发明申请
    • METHOD OF TIME-SYNCHRONIZED DATA TRANSMISSION IN INDUCTION TYPE POWER SUPPLY SYSTEM
    • 电感式电源系统中时间同步数据传输方法
    • US20120314745A1
    • 2012-12-13
    • US13488724
    • 2012-06-05
    • Ming-Chiu TSAIChi-Che CHAN
    • Ming-Chiu TSAIChi-Che CHAN
    • H04L7/00H04B17/00
    • H04B5/0031H04B5/0037H04B5/0075
    • The present invention provides a method of time-synchronized data transmission in induction type power supply system, comprising timers and programs installed in a supplying-end module and a receiving-end module to predict the time for generating the trigger signal at the receiving-end end and perform steps for detecting signals to avoid omission. Under the condition of high power transmission, power output on the supplying-end coil is pre-reduced prior to the time expected for receiving trigger data, making the main carrier wave amplitude decrease in a short time period. In every process of data transmission, timers are mutually calibrated and synchronized again to transmit power without detecting and receiving in the period when no data are expected to be transmitted, thus preventing interference of power load noise and enabling the induction type power supply system to transmit data code stably.
    • 本发明提供一种感应型电源系统中的时间同步数据传输方法,包括安装在供电端模块和接收端模块中的定时器和程序,用于预测在接收端产生触发信号的时间 结束并执行检测信号以避免遗漏的步骤。 在高功率传输的条件下,供电端线圈的功率输出在接收到触发数据的时间之前被预先减少,使主载波幅度在短时间内下降。 在每个数据传输过程中,定时器在没有预期传输数据的时间段内相互校准和重新同步发送功率,无需检测和接收,从而防止电力负载噪声的干扰,使感应式电源系统能够传输 数据代码稳定。
    • 18. 发明申请
    • WIRELESS CHARGING COIL STRUCTURE IN ELECTRONIC DEVICES
    • 电子设备无线充电线圈结构
    • US20120074899A1
    • 2012-03-29
    • US13276014
    • 2011-10-18
    • Ming-Chiu TSAIChi-Che Chan
    • Ming-Chiu TSAIChi-Che Chan
    • H02J7/00
    • H02J50/12H02J5/005H02J7/025H02J50/40H02J50/90
    • The present inventions relates a wireless charging coil structure in electronic devices, comprising a PS coil module capable of emitting electromagnetic wave energy and a PR coil module capable of receiving power energy by electromagnetic induction. Each of the PS and PR coil modules includes a bar-shaped magnetic conductor, on which an insulated wire is wound into a first coil that is extended along the magnetic conductor to a given length and wound reversely into a second coil, thus producing an induction coil comprising at least the first and second coils. The induction range with given space formed between the first and second coils is used for electromagnetic induction to transmit signals and power energy. Such structure can be applied not only in planar handheld electronic devices, but also in other wireless power transmission systems that require narrow induction surface for power transmission.
    • 本发明涉及一种电子设备中的无线充电线圈结构,包括能够发射电磁波能量的PS线圈模块和能够通过电磁感应接收功率能量的PR线圈模块。 PS和PR线圈模块中的每一个包括棒状磁性导体,绝缘线缠绕在该第一线圈上,该第一线圈沿着磁性导体延伸到给定长度并且相反地卷绕到第二线圈中,从而产生感应 线圈至少包括第一和第二线圈。 在第一和第二线圈之间形成的给定空间的感应范围用于电磁感应传输信号和功率能量。 这种结构不仅可以应用在平面手持电子设备中,而且可以应用于需要用于功率传输的窄感应表面的其它无线电力传输系统中。
    • 19. 发明申请
    • METHOD FOR POWER SELF-REGULATION IN A HIGH-POWER INDUCTION TYPE POWER SOURCE
    • 高功率感应式电源中的自动调节方法
    • US20120007443A1
    • 2012-01-12
    • US13237668
    • 2011-09-20
    • Ming-Chiu TsaiChi-Che Chan
    • Ming-Chiu TsaiChi-Che Chan
    • H02J17/00
    • H02J50/12H02J5/005H02J50/80
    • The present inventions relates to a method for power self-regulation in a high-power induction type power source, wherein the PS module includes a PS microprocessor that is electrically connected to a PS driving unit, signal analysis circuit, coil voltage detection circuit, display unit, PS unit and earthing terminal respectively, and further connected with a resonance circuit and PS coil electrically through the PS driving unit, while the PR module contains a PR microprocessor electrically connected with a voltage detection circuit, breaker protection circuit, voltage stabilizing circuit, AM carrier modulation circuit, DC step-down transformer, rectifying filter circuit and resonance circuit respectively. While transmitting electric power, the PS module receives and analyzes data signals and then regulates the transmitted power through self-regulation programs in the microprocessor, thus achieving the purpose of power self-regulation for the PR module.
    • 本发明涉及一种高功率感应型电源中的电力自调节方法,其中PS模块包括电连接到PS驱动单元的PS微处理器,信号分析电路,线圈电压检测电路,显示器 单元,PS单元和接地端子,并通过PS驱动单元进一步与谐振电路和PS线圈电连接,而PR模块包含与微处理器电气连接的PR微处理器,断路器保护电路,稳压电路, AM载波调制电路,直流降压变压器,整流滤波电路和谐振电路。 在传输电力的同时,PS模块接收并分析数据信号,然后通过微处理器中的自调节程序来调节发射功率,从而达到PR模块电源自调节的目的。