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    • 1. 发明申请
    • OPTICALLY ENCODED GLASS-COATED MICROWIRE
    • 光学编织的玻璃包装微波
    • WO2006047355A3
    • 2006-07-13
    • PCT/US2005038072
    • 2005-10-25
    • DEMODULATION INC
    • CLARE ALEXIS GKING WESLEY ALA COURSE WILLIAM CLIEBERMANN HOWARD HO'KEEFE JAMES E JR
    • H01B7/00
    • G06K19/06018G06K19/06187Y10T29/49117Y10T29/49194
    • A drawn glass-coated metallic member has a thermal contraction coefficient differential such that the thermal contraction coefficient of the glass is less than that of the metallic member. The thermal contraction coefficient differential is maintained within a predetermined range during drawing. Drawn glass is placed under residual compression, interfacial bonding between said glass and said wire is substantially uniform, and surface cracking and bond breaks between metal and glass are substantially prevented. Optical properties of the glass coated microwire provide a basis for enabling multi-bit encoding capability. Advantageously data encoding is achieved optically, magneto-optically or using a combined magnetic and optical encoding mechanism. The duplex material constitution of the glass coated microwire permits imparting of data thereon by selection and processing of the glass. Data implantation is readily achieved in­line, during an initial drawing operation, or as a separate post-draw process. Reading of data on optically encoded glass coated microwire is readily accomplished by optical or magnetic methodology, or a combination thereof.
    • 拉制的玻璃涂覆的金属构件具有热收缩系数差,使得玻璃的热收缩系数小于金属构件的热收缩系数。 在拉伸期间,热收缩系数差保持在预定范围内。 拉制玻璃被置于残余压缩之下,所述玻璃和所述丝之间的界面结合基本上是均匀的,并且基本上防止了金属和玻璃之间的表面开裂和结合断裂。 玻璃涂层微丝的光学性质为实现多位编码能力提供了基础。 有利地,光学,磁光学或使用组合的磁和光编码机构实现数据编码。 玻璃涂布的微线的双面材料构成允许通过玻璃的选择和处理在其上赋予数据。 在初始绘图操作期间,或者作为单独的后绘制过程,数据注入很容易实现内联。 通过光学或磁性方法或其组合容易地实现对光学编码的玻璃包覆微丝的数据的读取。
    • 2. 发明申请
    • MULTI-BIT ENCODED GLASS-COATED MICROWIRE AND ARTICLES COMPOSED THEREOF
    • 多层编码的玻璃包裹的微波及其组成的文章
    • WO2005027018A3
    • 2007-03-08
    • PCT/US2004029223
    • 2004-09-08
    • DEMODULATION INC
    • LIEBERMANN HOWARD HLA COURSE WILLIAM CCLARE ALEXIS GKING WESLEY AO'KEEFE JAMES E JR
    • G08B13/14B22D11/00B32B9/00B32B17/00G06K20060101G06K19/06H01F1/09H01F1/38
    • G06K19/06018G06K19/06046G06K19/06187G06K19/06196Y10T428/12465Y10T428/2935Y10T428/2938Y10T428/2949
    • A glass-coated amorphous metallic microwire is encoded with multi-bit digital information. Encoding is achieved magnetically, optically or through a combination of magnetic and optical encoding processes. Magnetic encoding is carried out by modifying the constituent magnetic domain structure through selective relief of interfacial stress between the glass coating and the amorphous metallic alloy core. It is also achieved by selective surface crystallization of the amorphous metallic core in order to produce a controlled magnetic bias field. Optical encoding is associated with the glass coating. It is readily achieved by fluorescent element deposition, patterned removal of fluorescent element coating, Bragg grating, and thermally activated pattern deposition. The magnetic and optical multi-bit encoding approaches for glass-coated amorphous metallic microwire can be used individually or collectively in either a redundant or a complementary manner. Encoded microwire of the instant invention can be assembled into tags for electronic article surveillance and into numerous other structures as well.
    • 用多位数字信息编码玻璃涂层的非晶态金属微丝。 编码是通过磁学,光学或通过磁和光编码过程的组合实现的。 通过选择性地避免玻璃涂层和非晶金属合金芯之间的界面应力来改变构成磁畴结构来进行磁编码。 也可以通过非晶金属芯的选择性表面结晶来实现,以产生受控的磁偏置场。 光学编码与玻璃涂层有关。 通过荧光元件沉积,荧光元件涂层的图案化去除,布拉格光栅和热激活图案沉积容易实现。 用于玻璃涂覆的非晶金属微丝的磁和光多位编码方法可以单独使用或以多余或互补的方式共同使用。 本发明的编码微线可以组装成用于电子物品监视的标签以及许多其它结构。
    • 4. 发明申请
    • DETECTION OF ARTICLES HAVING SUBSTANTIALLY RECTANGULAR CROSS-SECTIONS
    • 检测具有重大矩形横截面的文章
    • WO2005104052A2
    • 2005-11-03
    • PCT/US2005013195
    • 2005-04-19
    • DEMODULATION INC
    • LIEBERMANN HOWARD HBUFF ERNEST D
    • G08B13/14G08B13/24
    • G08B13/2408G08B13/2422G08B13/2442G08B13/2471
    • A glass-coated article having substantially rectangular cross-section is excited using a tickler magnetic field. Harmonics of the a.c. magnetic field that are thusly caused to emanate from said article are detected by either magnetic field sensing coils or by mixing with a propagating radio frequency field. A portal design ensures the detection of the glass-coated article having substantially rectangular cross-section, no matter its spatial orientation. Teachings of the instant invention are critical for the use of glass-coated articles having substantially rectangular cross-section in a number of applications that include but are not limited to anti-theft systems; monitoring of tamper-proof packages; tracking, tracing and identification of currency, secure documents, drivers licenses, and passports; tracking of personnel, labels and paper products, merchandising items, and composites; monitoring movement of textiles including clothing and garments and materials used to make said textiles containing the invention; authentication and brand theft protection, credit card verification and protection against fraud; biometrics and other medical applications.
    • 具有基本上矩形横截面的玻璃涂层制品是用tick磁体激励的。 a.c.谐音。 因此,通过磁场检测线圈或通过与传播的射频场进行混合来检测由所述物品发出的磁场。 入口设计确保对具有基本上矩形横截面的玻璃涂层制品的检测,无论其空间取向如何。 本发明的教导对于在包括但不限于防盗系统的许多应用中使用具有基本上矩形横截面的玻璃涂覆制品至关重要; 监控防篡改包装; 跟踪,跟踪和识别货币,安全文件,驾驶执照和护照; 跟踪人员,标签和纸制品,商品和复合材料; 纺织品的监测运动,包括用于制造含有本发明的纺织品的服装和服装和材料; 认证和品牌盗窃保护,信用卡验证和防范欺诈; 生物识别和其他医疗应用。
    • 5. 发明申请
    • MULTI-BIT ENCODED GLASS-COATED MICROWIRE AND ARTICLES COMPOSED THEREOF
    • 多层编码的玻璃包裹的微波及其组成的文章
    • WO2005027018A9
    • 2005-04-14
    • PCT/US2004029223
    • 2004-09-08
    • DEMODULATION INC
    • LIEBERMANN HOWARD HLA COURSE WILLIAM CCLARE ALEXIS GKING WESLEY AO'KEEFE JAMES E JR
    • G06K20060101G06K19/06H01F1/09H01F1/38G06K
    • G06K19/06018G06K19/06046G06K19/06187G06K19/06196Y10T428/12465Y10T428/2935Y10T428/2938Y10T428/2949
    • A glass-coated amorphous metallic microwire is encoded with multi-bit digital information. Encoding is achieved magnetically, optically or through a combination of magnetic and optical encoding processes. Magnetic encoding is carried out by modifying the constituent magnetic domain structure through selective relief of interfacial stress between the glass coating and the amorphous metallic alloy core. It is also achieved by selective surface crystallization of the amorphous metallic core in order to produce a controlled magnetic bias field. Optical encoding is associated with the glass coating. It is readily achieved by fluorescent element deposition, patterned removal of fluorescent element coating, Bragg grating, and thermally activated pattern deposition. The magnetic and optical multi-bit encoding approaches for glass-coated amorphous metallic microwire can be used individually or collectively in either a redundant or a complementary manner. Encoded microwire of the instant invention can be assembled into tags for electronic article surveillance and into numerous other structures as well.
    • 用多位数字信息编码玻璃涂层的非晶态金属微丝。 编码是通过磁学,光学或通过磁和光编码过程的组合实现的。 通过选择性地避免玻璃涂层和非晶金属合金芯之间的界面应力来改变构成磁畴结构来进行磁编码。 也可以通过非晶金属芯的选择性表面结晶来实现,以产生受控的磁偏置场。 光学编码与玻璃涂层有关。 通过荧光元件沉积,荧光元件涂层的图案化去除,布拉格光栅和热激活图案沉积容易实现。 用于玻璃涂覆的非晶金属微丝的磁和光多位编码方法可以单独使用或以多余或互补的方式共同使用。 本发明的编码微线可以组装成用于电子物品监视的标签以及许多其它结构。