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    • 97. 发明申请
    • HEATING ASSEMBLIES FOR E-CIGARETTE VAPORIZERS
    • 电子烟气加热装置
    • US20160106153A1
    • 2016-04-21
    • US14573925
    • 2014-12-17
    • Xiaochun Zhu
    • Xiaochun Zhu
    • A24F47/00H05B1/02H05B3/44F22B1/28
    • A24F47/008F22B1/284H05B1/0297H05B3/44
    • The present invention relates to vaporizer heating assemblies for electronic cigarettes. In certain embodiments, vaporizer heating assemblies include: heating assembly and electric conductor assembly. Heating assembly includes: heating assembly covers, round heating element mounting base, heating elements, and e-liquid media. Heating elements have heating wires formed in a large surface to ensure sufficient vaporization of e-liquid. Heating assembly covers define certain e-liquid conduit openings to allow the e-liquid to flow from outside of the heating assembly covers into the e-liquid media. The heating elements are in direct contact with the e-liquid media to generate large amount of vapor for its user. Electric conductor assembly includes: an electric connector base for a first terminal of heating elements, an electrode for a second terminal of heating elements, and an insulation cover to insulate the electric connector base and the electrode. Electric conductor assembly is positioned in a lower portion of heating assembly.
    • 本发明涉及电子香烟的蒸发器加热组件。 在某些实施例中,蒸发器加热组件包括:加热组件和电导体组件。 加热组件包括:加热组件盖,圆形加热元件安装座,加热元件和电子液体介质。 加热元件具有形成在大表面上的加热丝,以确保电子液体的充分蒸发。 加热组件盖限定某些电液导管开口,以允许e液体从加热组件盖的外部流入电液体介质。 加热元件与e液体介质直接接触,为使用者产生大量的蒸气。 电导体组件包括:用于加热元件的第一端子的电连接器基座,用于加热元件的第二端子的电极,以及绝缘盖,用于绝缘电连接器基座和电极。 电导体组件位于加热组件的下部。
    • 100. 发明申请
    • Perpendicular spin-torque-driven magnetic oscillator
    • 垂直自旋转矩驱动磁振荡器
    • US20080019040A1
    • 2008-01-24
    • US11490882
    • 2006-07-21
    • Xiaochun ZhuJian-Gang Zhu
    • Xiaochun ZhuJian-Gang Zhu
    • G11B5/127
    • G11B5/1278B82Y10/00B82Y25/00G11B5/3909
    • A perpendicular spin-torque-driven magnetic oscillator is disclosed. According to various embodiments, the magnetic oscillator comprises a magnetic reference stack, a magnetic oscillating stack, and an interlayer between the reference stack and the oscillating stack such that the reference stack and the oscillating stack are exchange coupled. The reference stack may have sufficient perpendicular anisotropy such that it causes, via the spin momentum transfer effect, the spin polarization of the conducting electrons in the oscillating stack to produce a spin torque on the local magnetization of the oscillating layer. As such, the oscillating stack may produce a sustained gyromagnetic oscillation around the perpendicular axis of the oscillating stack when (i) the oscillating stack and the reference stack have opposite magnetizations and (ii) there is a direct current flowing in the magnetic oscillator from the oscillating stack to the reference stack. Also, the oscillating stack may produce a sustained gyromagnetic oscillation when (i) the oscillating stack and the reference stack are magnetized in the same direction and (ii) there is a direct current flowing in the magnetic oscillator from the reference stack to the oscillating stack.
    • 公开了一种垂直自旋转矩驱动磁振荡器。 根据各种实施例,磁性振荡器包括磁性参考堆叠,磁性振荡堆叠以及参考堆叠和振荡堆叠之间的中间层,使得参考堆叠和振荡堆叠被交换耦合。 参考叠层可具有足够的垂直各向异性,使得其通过自旋动量传递效应引起振荡堆叠中的导电电子的自旋极化,以产生振荡层的局部磁化上的自旋转矩。 因此,当(i)振荡堆叠和参考堆叠具有相反的磁化时,振荡堆叠可以在振荡堆叠的垂直轴周围产生持续的回旋磁振荡,并且(ii)存在从磁振荡器中流过的直流电流 振荡堆栈到参考堆栈。 此外,当(i)振荡堆叠和参考堆叠以相同的方向被磁化时,振荡堆叠可产生持续的回旋磁振荡,并且(ii)存在从磁参考堆栈流到振荡堆叠的直流电磁场 。