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    • 4. 发明授权
    • Through-the-earth (TTE) communication systems and methods
    • 通信(TTE)通信系统和方法
    • US08886117B1
    • 2014-11-11
    • US13043249
    • 2011-03-08
    • Yang-Ki HongSeok Bae
    • Yang-Ki HongSeok Bae
    • H04B13/02
    • H04B13/02
    • A through-the-earth (TTE) communication system has a transmitter that uses an electromagnetic antenna to propagate a magnetic communication signal through the earth. The antenna comprises a coil that is wrapped a core of magnetic material. The transmitter converts voice into a pulsed direct current (DC) signal that is applied to the coil of the antenna. The antenna transforms the pulsed DC signal into a pulsed DC magnetic field that propagates through the earth, and the DC magnetic field may pass through soil, water, or other substances within the earth. A receiver at the earth's surface or other location senses the pulsed magnetic field and converts the sensed magnetic energy into a voice signal.
    • 通过地球(TTE)通信系统具有使用电磁天线通过地球传播磁通信信号的发射机。 天线包括缠绕磁性材料芯的线圈。 发射器将语音转换成施加到天线线圈的脉冲直流(DC)信号。 天线将脉冲直流信号转换成通过地球传播的脉冲直流磁场,直流磁场可能通过土壤,水或其他物质在地球内。 地球表面或其他位置处的接收器感测脉冲磁场,并将感测到的磁能转换成声音信号。
    • 6. 发明申请
    • MAGNETIC EXCHANGE COUPLED CORE-SHELL NANOMAGNETS
    • 磁性交换耦合核心纳米级网络
    • US20150287506A1
    • 2015-10-08
    • US14741217
    • 2015-06-16
    • Yang-Ki HongSeok Bae
    • Yang-Ki HongSeok Bae
    • H01F1/03
    • H01F1/0302G11B5/706H01F1/0054H01F1/061H01F3/00
    • A permanent magnet is fabricated such that it has a magnetically hard core surrounded by a thin magnetically soft shell. The magnetically hard core provides a relatively high intrinsic coercivity (Hci), and the magnetically soft shell provides a relatively high magnetic flux density (B). Due to magnetic exchange coupling between the core and shell, a relatively high maximum energy product (BH)max is achievable over a wide temperature range, including temperatures above 150° C. Further, such effects can be achieved without using rare-earth metals or precious metals helping to keep the manufacturing costs of the magnet low. To allow sufficient exchange magnetic coupling between the core and shell, the width of the shell is less than about 40 nanometers, and the overall dimensions are controlled such that the width of the shell is less than two times the Bloch domain wall thickness of the core.
    • 制造永磁体,使得其具有被薄磁软壳包围的磁性硬芯。 磁性硬磁芯提供相对较高的固有矫顽力(Hci),并且磁软壳提供相对较高的磁通密度(B)。 由于芯和壳之间的磁交换耦合,在宽温度范围内(包括高于150℃的温度)可实现相对较高的最大能量积(BH)max。此外,可以在不使用稀土金属或 贵金属有助于保持低磁铁的制造成本。 为了允许芯和壳之间的充分的交换磁耦合,壳的宽度小于约40纳米,并且整体尺寸被控制,使得壳的宽度小于芯的Bloch畴壁厚度的两倍 。
    • 8. 发明授权
    • M-type hexaferrite antennas for use in wireless communication devices
    • 用于无线通信设备的M型六边形天线
    • US09397391B2
    • 2016-07-19
    • US13885374
    • 2011-11-15
    • Yang-Ki HongSeok BaeJae-Jin Lee
    • Yang-Ki HongSeok BaeJae-Jin Lee
    • B05D5/12H01Q1/36H01F1/34H01Q1/22H01Q1/38
    • H01Q1/364H01F1/348H01Q1/2283H01Q1/38Y10T29/49016
    • An antenna is fabricated using an M-type hexaferrite, such as a tin (Sn) and zinc (Zn) substituted M-type strontium hexaferrite (Sn/Zn-substituted SrM: SrFe12−2xZnxSnxO19), thereby enabling antenna miniaturization, broad bandwidth, and high gain. In one embodiment, an antenna system has a substrate and a chip antenna formed on the substrate. The system also has a conductive radiator contacting the chip antenna, and the chip antenna comprises an M-type strontium hexaferrite for which Fe cations are substituted with tin (Sn) and zinc (Zn) to achieve soft magnetic properties for the antenna. Thus, the coercivity and permeability are lower and higher, respectively, than those of pure SrM. Such fabricated hexaferrite chip antennas have broadband characteristics and show good radiation performance at various frequencies, including in the GHz frequency range.
    • 使用诸如锡(Sn)和锌(Zn)取代的M型六方铁氧锶(Sn / Zn取代的SrM:SrFe12-2xZnxSnxO19)的M型六铁素制造天线,从而使天线小型化,宽带宽, 和高增益。 在一个实施例中,天线系统具有形成在基板上的基板和芯片天线。 该系统还具有与芯片天线接触的导电散热器,并且芯片天线包括M型六方铁氧体,其中Fe阳离子被锡(Sn)和锌(Zn)所取代,以获得天线的软磁特性。 因此,矫顽力和渗透率分别低于纯SrM的矫顽力和渗透率。 这种制造的六方铁芯片天线具有宽带特性,并且在各种频率(包括在GHz频率范围内)表现出良好的辐射性能。
    • 10. 发明授权
    • Magnetic exchange coupled core-shell nanomagnets
    • 磁交换耦合核 - 壳纳米磁体
    • US09076579B2
    • 2015-07-07
    • US13885371
    • 2011-11-15
    • Yang-Ki HongSeok Bae
    • Yang-Ki HongSeok Bae
    • H01F1/00H01F3/00G11B5/706
    • H01F1/0302G11B5/706H01F1/0054H01F1/061H01F3/00
    • A permanent magnet is fabricated such that it has a magnetically hard core surrounded by a thin magnetically soft shell. The magnetically hard core provides a relatively high intrinsic coercivity (Hci), and the magnetically soft shell provides a relatively high magnetic flux density (B). Due to magnetic exchange coupling between the core and shell, a relatively high maximum energy product (BH)max is achievable over a wide temperature range, including temperatures above 150° C. Further, such effects can be achieved without using rare-earth metals or precious metals helping to keep the manufacturing costs of the magnet low. To allow sufficient exchange magnetic coupling between the core and shell, the width of the shell is less than about 40 nanometers, and the overall dimensions are controlled such that the width of the shell is less than two times the Bloch domain wall thickness of the core.
    • 制造永磁体,使得其具有被薄磁软壳包围的磁性硬芯。 磁性硬磁芯提供相对较高的固有矫顽力(Hci),并且磁软壳提供相对较高的磁通密度(B)。 由于芯和壳之间的磁交换耦合,在宽温度范围内(包括高于150℃的温度)可实现相对较高的最大能量积(BH)max。此外,可以在不使用稀土金属或 贵金属有助于保持低磁铁的制造成本。 为了允许芯和壳之间的充分的交换磁耦合,壳的宽度小于约40纳米,并且整体尺寸被控制,使得壳的宽度小于芯的Bloch畴壁厚度的两倍 。