会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 85. 发明申请
    • ASSURING FOOD SAFETY USING NANO-STRUCTURE BASED SPECTRAL SENSING
    • 使用基于纳米结构的光谱感测来保证食品安全
    • US20130017298A1
    • 2013-01-17
    • US13442835
    • 2012-04-09
    • Hong WangXun GuoChunwei LiuHao ZhouNing MaXue Zhong
    • Hong WangXun GuoChunwei LiuHao ZhouNing MaXue Zhong
    • G01N33/03B82Y99/00
    • G01N33/03B82Y30/00G01N21/64G01N21/65G01N33/497
    • A method for inspecting an edible oil includes obtaining a first Raman spectrum from an edible oil sample, discovering an unhealthy, unsanitary, unsafe, or adulterated content in the edible oil sample in part by the intensity level of the fluorescence background in the first Raman spectrum, introducing the edible oil sample to nano-scale surface structures to allow molecules of the edible oil sample to be adsorbed to the nano-scale surface structures, illuminating the edible oil sample and the nano-scale surface structures by a laser beam, obtaining a second Raman spectrum from light scattered by molecules of the edible oil sample adsorbed to the nano-scale surface structures, and identifying the unhealthy, unsanitary, or unsafe content in the edible oil sample using one or more first spectral signatures in the second Raman spectrum.
    • 用于检查食用油的方法包括从食用油样品获得第一拉曼光谱,部分地发现食用油样品中不健康,不卫生,不安全或掺假的含量,部分由第一拉曼光谱中的荧光背景的强度水平 将食用油样品引入纳米级表面结构,使食用油样品的分子吸附到纳米级表面结构上,用激光束照射食用油样品和纳米级表面结构,得到 第二拉曼光谱从被吸收到纳米级表面结构的食用油样品的分子散射的光中,以及使用第二拉曼光谱中的一个或多个第一光谱特征识别食用油样品中的不健康,不卫生或不安全的含量。
    • 86. 发明申请
    • High Sensitivity GLONASS/GPS Automatic Frequency Control
    • 高灵敏度GLONASS / GPS自动频率控制
    • US20120223859A1
    • 2012-09-06
    • US13041312
    • 2011-03-04
    • Hao ZhouHao-Jen ChengQinfang Sun
    • Hao ZhouHao-Jen ChengQinfang Sun
    • G01S19/24H04L27/06
    • G01S19/29
    • Updates to an AFC loop can be performed to provide high-sensitivity tracking. A 20 ms update interval and PDI=10 ms is used for every other update. A setting is used for each update between the 20 ms updates. Notably, the setting uses PDI=5 ms. The setting can include first, second, and third cross-dot pairs associated with a first bit, a second bit, and a cross-bit boundary between the first and second bits, respectively. A sum of these pairs can be scaled down when the signal strength is below a predetermined threshold. In another embodiment, the setting can include a first cross-dot pair associated with a first bit and a second cross-dot pair associated with a second bit. A sum of these pairs can also be scaled down when signal strength is below a predetermined threshold.
    • 可以执行AFC循环的更新以提供高灵敏度跟踪。 每隔一个更新使用20 ms的更新间隔和PDI = 10 ms。 每个20 ms更新之间的更新使用一个设置。 值得注意的是,该设置使用PDI = 5 ms。 该设置可以分别包括与第一位,第二位和第一和第二位之间的跨位边界相关联的第一,第二和第三十字点对。 当信号强度低于预定阈值时,这些对的总和可以缩小。 在另一实施例中,该设置可以包括与第一位相关联的第一交叉点对和与第二位相关联的第二交叉点对。 当信号强度低于预定阈值时,这些对的总和也可以缩小。