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    • 83. 发明申请
    • STRAIN-BALANCED EXTENDED-WAVELENGTH BARRIER DETECTOR
    • 应变平衡扩展波长检测器
    • WO2011008979A2
    • 2011-01-20
    • PCT/US2010/042168
    • 2010-07-15
    • LOCKHEED MARTIN CORPORATIONSCOTT, JeffPALOCZI, George
    • SCOTT, JeffPALOCZI, George
    • H01L31/101
    • H01L31/035236B82Y20/00H01L27/142H01L27/14649H01L31/0232H01L31/0304H01L31/03046H01L31/1035H01L31/184H01L31/1844H01L33/14H01L33/30Y02E10/544
    • A strain-balanced photodetector is provided for detecting infrared light at an extended cutoff wavelength in the range of 4.5 µm or more. An InAsSb absorber layer has an Sb content is grown in a lattice-mismatched condition to a GaSb substrate, and a plurality of GaAs strain-compensating layers are interspersed within the absorber layer to balance the strain of the absorber layer due to the lattice mismatch. The strain-compensation layers allow the absorber to achieve a thickness exhibiting sufficient absorption efficiency while extending the cutoff wavelength beyond that possible in a lattice-matched state. Additionally, the strain-compensation layers are sufficiently thin to be substantially quantum-mechanically transparent such that they do not substantially affect the transmission efficiency of the absorber. The photodetector is preferably formed as a majority carrier filter photodetector exhibiting minimal dark current, and may be provided individually or in a focal plane array.
    • 提供一种应变平衡光电检测器,用于检测在4.5μm或更大的范围内的延长截止波长的红外光。 具有Sb含量的InAsSb吸收层在GaSb衬底中以格子失配的条件生长,并且多个GaAs应变补偿层散布在吸收层内,以平衡由于晶格失配引起的吸收层的应变。 应变补偿层允许吸收体实现具有足够吸收效率的厚度,同时将截止波长延伸超过晶格匹配状态可能的截止波长。 此外,应变补偿层足够薄以使其基本上是量子力学上透明的,使得它们基本上不影响吸收体的传输效率。 优选地,光电检测器形成为显示最小暗电流的多数载波滤波器光电检测器,并且可以单独地或在焦平面阵列中提供。
    • 84. 发明申请
    • WIRELESS TRACKING AND MONITORING ELECTRONIC SEAL
    • 无线跟踪和监控电子密封
    • WO2011008884A1
    • 2011-01-20
    • PCT/US2010/042014
    • 2010-07-14
    • SAVI NETWORKS LLCLOCKHEED MARTIN CORPORATIONSTEVENS, Timothy Dirk
    • STEVENS, Timothy Dirk
    • G01S19/00
    • G08B13/02G01S5/0027
    • An electronic security seal (e-Seal) is disclosed. The e-Seal monitors security of shipments including intermodal containers, reports tampers in real-time, monitors environmental status of goods and reports exceptions in real-time, and reports the location of the shipment with high frequency. The security monitoring complies with the ISO 17712 standard, adding electronic real-time reporting of tamper time and location and LED tamper indication. The e-Seal can be manufactured and operated at low cost due to diagnostic and logistic features. The e-Seal supports low cost upgrades due to a modular architecture allowing a plug-in update of separate functions. The e-Seal allows flexible usage across supply chain tradelanes, due to highly programmable operation including over-the-air remote programming via wireless communications. The e-Seal provides low power operation to save battery usage and lower costs.
    • 公开了一种电子安全密封件(e-Seal)。 e-Seal监控货物的安全性,包括联运集装箱,实时报告篡改,监控货物的环境状况,实时报告例外情况,并高频报告货物的位置。 安全监控符合ISO 17712标准,添加电子实时报告篡改时间和位置以及LED篡改指示。 e-Seal可以通过诊断和后勤功能以低成本制造和运行。 e-Seal支持低成本升级,因为模块化架构允许插件更新单独的功能。 由于高度可编程的操作,包括通过无线通信进行的空中远程编程,e-Seal可以灵活的跨供应链商业用途。 e-Seal提供低功耗操作,以节省电池使用并降低成本。
    • 86. 发明申请
    • ARMOR HAVING PRISMATIC, TESSELATED CORE
    • 具有预制,压实核心的装甲
    • WO2011005274A1
    • 2011-01-13
    • PCT/US2009/063887
    • 2009-11-10
    • LOCKHEED MARTIN CORPORATIONHUNN, David, L.HAVENS, Kenneth, W.LEE, Sang, J.
    • HUNN, David, L.HAVENS, Kenneth, W.LEE, Sang, J.
    • F41H5/02
    • F41H5/0492
    • An armor includes a core that, in turn, includes a first layer of prismatic elements arranged in a tessellated fashion and a second layer of prismatic elements arranged in a tessellated fashion. The first layer of prismatic elements is nested into the second layer of prismatic elements. An armor includes a strike face sheet, a rear face sheet, and a core disposed between the strike face sheet and the rear face sheet. The core includes a first layer of prismatic elements arranged in a tessellated fashion, a second layer of prismatic elements arranged in a tessellated fashion, and a strain isolation layer. The first layer of prismatic elements is nested into the second layer of prismatic elements with the strain isolation layer disposed between the first layer of prismatic elements and the second layer of prismatic elements. The armor is at least one of curved in at least one direction, configured to include a corner, and configured to include a prismatic element of the first layer of prismatic elements or the second layer of prismatic element having a metallic layer disposed thereon.
    • 一个装甲包括一个芯,其又包括以细分方式布置的第一层棱柱形元件和以细分方式布置的第二层棱柱形元件。 第一层棱镜元件嵌套在第二层棱镜元件中。 装甲包括打击面板,后面板和设置在冲击面板和后面板之间的芯。 芯部包括以镶嵌方式布置的第一层棱柱元件,​​以镶嵌方式布置的第二层棱柱形元件和应变隔离层。 第一层棱镜元件被嵌套到第二层棱镜元件中,其中应变隔离层设置在第一层棱镜元件和第二层棱镜元件之间。 装甲是沿至少一个方向弯曲的至少一个,其被构造成包括角部,并且构造成包括棱镜元件的第一层的棱柱形元件或者具有设置在其上的金属层的第二棱镜元件层。
    • 89. 发明申请
    • CNT-INFUSED EMI SHIELDING COMPOSITE AND COATING
    • CNT-INFUSED EMI屏蔽复合材料和涂层
    • WO2010124260A1
    • 2010-10-28
    • PCT/US2010/032312
    • 2010-04-23
    • LOCKHEED MARTIN CORPORATIONSHAH, Tushar, K.ALBERDING, Mark, R.MALECKI, Harry, C.
    • SHAH, Tushar, K.ALBERDING, Mark, R.MALECKI, Harry, C.
    • H05K9/00G02B6/12
    • H05K9/009H01B1/18H01B1/24H01Q17/002Y10T428/249924
    • A composite for use in electromagnetic interference (EMI) shielding applications includes a carbon nanotube(CNT)-infused fiber material disposed in at least a portion of a matrix material. The composite is capable of absorbing or reflecting EM radiation, or combinations thereof in a frequency range from between about 0.01 MHz to about 18 GHz. The electromagnetic interference (EMI) shielding effectiveness (SE), is in a range from between about 40 decibels (dB) to about 130 dB. A method of manufacturing the composite includes disposing a CNT-infused fiber material in a portion of a matrix material with a controlled orientation of the CNT-infused fiber material within the matrix material, and curing the matrix material. A panel includes the composite and is adaptable to interface with a device for use in EMI shielding applications. The panel is further equipped with an electrical ground.
    • 用于电磁干扰(EMI)屏蔽应用的复合材料包括设置在基体材料的至少一部分中的碳纳米管(CNT) - 填充的纤维材料。 复合材料能够在约0.01MHz至约18GHz的频率范围内吸收或反射EM辐射或其组合。 电磁干扰(EMI)屏蔽效能(SE)在约40分贝(dB)至约130dB之间的范围内。 制造复合材料的方法包括将CNT输入的纤维材料设置在基体材料的一部分中,并将CNT-注入的纤维材料的受控取向放置在基体材料内,并固化基体材料。 面板包括复合材料,适用于与EMI屏蔽应用中使用的设备的接口。 该面板还配有电气接地。