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    • 4. 发明授权
    • Microwave heating apparatus having two cavities and method of using the
same
    • 具有两个腔的微波加热装置及其使用方法
    • US5296666A
    • 1994-03-22
    • US877852
    • 1992-05-04
    • Vijay K. VaradanVasundara V. VaradanThomas L. Schaffer
    • Vijay K. VaradanVasundara V. VaradanThomas L. Schaffer
    • E04G21/16H05B6/80
    • H05B6/80
    • A system is provided for heating non-metallic material or a discrete layer of the non-metallic material. Microwave energy is introduced into an enclosure defining a first cavity and capable of substantially containing the microwave energy. A semiconductive sheet is positioned at the bottom of the first cavity. Thermal insulation overlies the semiconductive sheet. A second cavity is defined by the undersurface of the semiconductive sheet and flexible microwave shielding in the form of a skirt which is attached to, and depends from, the enclosure. The flexible shielding is composed of a material which also substantially contains the microwave energy. The semiconductive sheet is effective to convert some of the microwave energy into thermal energy and to transmit the thermal energy into the second cavity while transmitting the remainder of the microwave energy directly to the discrete layer, thereby rapidly heating the discrete layer. The system includes a carriage with a handle for moving the apparatus across a surface of the non-metallic material and for adjusting the height of the semiconductive sheet above the surface of the non-metallic material.
    • 提供用于加热非金属材料或非金属材料的离散层的系统。 将微波能量引入到限定第一腔并且能够基本上包含微波能量的外壳中。 半导体片位于第一腔的底部。 隔热层覆盖半导体薄片。 第二空腔由半导体薄片的下表面和裙部形式的柔性微波屏蔽限定,裙部的外壳连接到外壳上,并且与外壳相连。 柔性屏蔽由基本上包含微波能量的材料组成。 半导体薄片有效地将一些微波能量转换成热能并将热能传递到第二腔中,同时将剩余的微波能直接传递到离散层,由此快速加热离散层。 该系统包括具有手柄的滑架,用于使装置移动穿过非金属材料的表面,并用于调节半导体薄片在非金属材料表面上方的高度。
    • 8. 发明授权
    • Electromagnetic shielding and absorptive materials
    • 电磁屏蔽和吸收材料
    • US4948922A
    • 1990-08-14
    • US252516
    • 1988-09-30
    • Vijay K. VaradanVasundara V. Varadan
    • Vijay K. VaradanVasundara V. Varadan
    • H05K9/00
    • H05K9/009H05K9/0015
    • A material having a matrix and a plurality of inclusions which are chiral is effective as a coating to reduce incident reflections and absorptions of microwave frequency electromagnetic energy. The matrix can use an electrically conductive polymeric material as the base as well as any other low loss dielectric material. Chiral inclusions may be in the form of helices or any other small object displaying handedness. Moreover, it is possible to use electrically conductive polymeric materials by themselves as absorbers of electromagnetic energy. There are a variety of uses for these materials and the unique properties including gaskets for controlling the emission of microwave energy from electronic enclosures.
    • 具有矩阵和多个手性夹杂物的材料作为减少微波频率电磁能的入射反射和吸收的涂层是有效的。 该基质可以使用导电聚合物材料作为基底以及任何其它低损耗介电材料。 手性夹杂物可以是螺旋形的形式或任何其他显示手性的小物体。 此外,可以将导电聚合物材料本身用作电磁能的吸收剂。 这些材料有各种用途,以及独特的性能,包括用于控制电子外壳的微波能量发射的垫圈。
    • 9. 发明授权
    • Tunable dual-band ferroelectric antenna
    • 可调式双频铁电天线
    • US06329959B1
    • 2001-12-11
    • US09595933
    • 2000-06-16
    • Vijay K. VaradanPeng Thian Teo
    • Vijay K. VaradanPeng Thian Teo
    • H01Q100
    • H01Q9/0414H01Q1/364H01Q1/38H01Q3/44H01Q9/0407H01Q9/0442H01Q9/14H01Q15/02H01Q21/30
    • A multilayer tunable ferroelectric antenna assembly that includes two superimposed substrate layers. A first substrate layer consists of a low dielectric material carrying on one face an electrically ground plane, and on its opposite face an electrically conductive patch serving as an active feeder-resonator. A second substrate includes a ferroelectric material having one face positioned on top of the feeder-resonator and carrying on the opposite face an electrically conductive patch acting as a director. The upper director patch is fed through capacitve coupling of energy from the feeder-resonator. Application of bias voltage between the director and the feeder-resonator changes the permittivity of the ferroelectric substrate, thereby causing a shift in resonance frequency. A radiation null, corresponding to energy absorption, could be tuned into the resonance frequency at which the antenna is previously exhibiting a radiation characteristic. This provides the antenna a means to behave either as a radiator or an absorber at particular frequency.
    • 包括两个叠加的基底层的多层可调谐铁电天线组件。 第一衬底层由承载在一个面上的电介质层的低电介质材料构成,并且在其相对面上由用作有源馈电共振器的导电贴片组成。 第二基板包括铁电材料,铁电材料具有位于馈送共振器顶部的一个面,并且在相对面上承载用作导向器的导电贴片。 上导向器贴片通过来自馈线共振器的能量的电容耦合馈送。 导向器和馈电共振器之间的偏置电压的应用改变了铁电衬底的介电常数,从而引起谐振频率的偏移。 对应于能量吸收的辐射零点可以调谐到天线先前呈现辐射特性的谐振频率。 这为天线提供了以特定频率作为散热器或吸收器的手段。