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    • 4. 发明授权
    • Coreless printed-circuit-board (PCB) transformers and operating techniques therefor
    • 无芯印刷电路板(PCB)变压器及其操作技术
    • US08102235B2
    • 2012-01-24
    • US12847638
    • 2010-07-30
    • Shu Yuen Ron HuiSai Chun Tang
    • Shu Yuen Ron HuiSai Chun Tang
    • H01F5/00
    • H01F19/04H01F17/0006H05K1/165H05K2201/10166
    • Optimal operating techniques are disclosed for using coreless printed-circuit-board (PCB) transformers under (1) minimum input power conditions and (2) maximum energy efficiency conditions. The coreless PCB transformers should be operated at or near the ‘maximum impedance frequency’ (MIF) in order to reduce input power requirement. For maximum energy efficiency, the transformers should be at or near the “maximum efficiency frequency” (MEF) which is below the MIF. The operating principle has been confirmed by measurement and simulation. The proposed operating techniques can be applied to coreless PCB transformers in many circuits that have to meet stringent height requirements, for example to isolate the gates of power MOSFET and IGBT devices from the input power supply.
    • 公开了在(1)最小输入功率条件下和(2)最大能量条件下使用无芯无线印刷电路板(PCB)变压器的最佳操作技术。 无芯PCB变压器应运行在或接近“最大阻抗频率”(MIF),以减少输入功率需求。 为了最大的能量效率,变压器应处于或接近低于MIF的“最大效率频率”(MEF)。 工作原理已通过测量和模拟证实。 所提出的操作技术可以应用于许多电路中的无芯PCB变压器,这些电路必须满足严格的高度要求,例如将功率MOSFET和IGBT器件的栅极与输入电源隔离开来。
    • 5. 发明授权
    • Coreless printed-circuit-board (PCB) transformers and operating techniques therefor
    • 无芯印刷电路板(PCB)变压器及其操作技术
    • US07768371B2
    • 2010-08-03
    • US11067103
    • 2005-02-25
    • Shu Yuen Ron HuiSai Chun Tang
    • Shu Yuen Ron HuiSai Chun Tang
    • H01F5/00
    • H01F19/04H01F17/0006H05K1/165H05K2201/10166
    • Optimal operating techniques are disclosed for using coreless printed-circuit-board (PCB) transformers under (1) minimum input power conditions and (2) maximum energy efficiency conditions. The coreless PCB transformers should be operated at or near the ‘maximum impedance frequency’ (MIF) in order to reduce input power requirement. For maximum energy efficiency, the transformers should be at or near the “maximum efficiency frequency” (MEF) which is below the MIF. The operating principle has been confirmed by measurement and simulation. The proposed operating techniques can be applied to coreless PCB transformers in many circuits that have to meet stringent height requirements, for example to isolate the gates of power MOSFET and IGBT devices from the input power supply.
    • 公开了在(1)最小输入功率条件下和(2)最大能量条件下使用无芯无线印刷电路板(PCB)变压器的最佳操作技术。 无芯PCB变压器应运行在或接近“最大阻抗频率”(MIF),以减少输入功率需求。 为了最大的能量效率,变压器应处于或接近低于MIF的“最大效率频率”(MEF)。 工作原理已通过测量和模拟证实。 所提出的操作技术可以应用于许多电路中的无芯PCB变压器,这些电路必须满足严格的高度要求,例如将功率MOSFET和IGBT器件的栅极与输入电源隔离开来。