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
    • 61. 发明申请
    • Ultra-low volume fraction collection and analysis
    • 超低体积分数收集和分析
    • US20060211133A1
    • 2006-09-21
    • US11348807
    • 2006-02-07
    • Thomas CorsoColleen Van PeltJie Li
    • Thomas CorsoColleen Van PeltJie Li
    • G01N1/10
    • G01N30/80B01L3/0275B01L3/0293B01L2300/0838G01N35/10G01N35/1016G01N2035/103G01N2035/1039G01N2035/1053G01N2035/1055Y10T436/2575
    • An ultra-low volume fraction collection and concentration method provides practical application in collecting fractions, e.g. as low as 25 nL, from nanoLC columns into pipette tips at user-defined timed-intervals. The fractions are dried to create a concentrated band at the very end of the interior of the pipette tip and subsequently reconstituted directly in the pipette tips in solvent prior to analysis. As the chromatography and reconstitution solvent choice are independent, the reconstitution solvent can be selected to maximize ionization efficiency without compromising chromatography separation. In the infusion analysis of the nanoLC fractions, a low flow electrospray chip enables each nanoLC fraction to be analyzed for over ten minutes. This increase in analysis time allows for advantages over prior methods. Optionally, the nanoLC fractions can be archived in the pipette tips for analysis at a later date.
    • 超低体积分数收集和浓缩方法提供了实际应用于收集级分,例如。 低至25 nL,由用户定义的定时间隔从nanoLC色谱柱移至吸头。 将级分干燥以在移液管尖端内部的最末端产生浓缩带,随后在分析之前将其直接重新配置在溶剂中的吸头中。 由于色谱和重构溶剂选择是独立的,因此可以选择重构溶剂以使电离效率最大化而不损害色谱分离。 在nanoLC部分的输注分析中,低流电喷雾芯片使得能够分析每个nanoLC部分超过10分钟。 分析时间的这种增加允许优于现有方法的优点。 任选地,nanoLC部分可以存档在移液管尖端中以供日后分析。
    • 67. 发明授权
    • Robotic claw and robot using same
    • 机器人爪和机器人使用相同
    • US08602472B2
    • 2013-12-10
    • US13152422
    • 2011-06-03
    • Chi-Hsien YehZhong QinJie Li
    • Chi-Hsien YehZhong QinJie Li
    • B25J15/00
    • B25J15/0047
    • A robotic claw includes a sleeve, a rod, a plurality of balls and a plunger. The sleeve comprises a mounting portion and a clamping portion. A mounting hole defined at an end of the mounting portion. A plurality of receiving through holes defined in the clamping portion, and an assembling hole communicating with the receiving through hole, and is defined at an end of the clamping portion. The balls are movably received in the receiving through holes correspondingly. The rod comprises an urging portion movably received in the sleeve to push the balls toward the receiving through holes. The plunger seals the assembling hole to prevent the balls from dropping out of the receiving through holes, and the balls can be mounted in the receiving through holes through the assembling hole.
    • 机器人爪包括套筒,杆,多个球和柱塞。 套筒包括安装部分和夹持部分。 安装孔,限定在安装部分的端部。 限定在夹持部分中的多个接收通孔,以及与接收通孔连通的组装孔,并且限定在夹持部分的端部。 滚珠相应地可移动地容纳在接收通孔中。 杆包括可移动地容纳在套筒中以将球推向接收通孔的推动部分。 柱塞密封组装孔,以防止球从接收通孔中脱落,并且球可以通过组装孔安装在接收通孔中。
    • 68. 发明授权
    • Apparatus and method for echo control in parameter domain
    • 参数域回波控制的装置和方法
    • US08571204B2
    • 2013-10-29
    • US13555502
    • 2012-07-23
    • Jie LiJunbin LiangYulong LiJingfan Qin
    • Jie LiJunbin LiangYulong LiJingfan Qin
    • H04M9/08
    • H04M9/082
    • The present invention relates to call voice signal processing, and particularly, to apparatus and method for echo control in parameter domain. The apparatus includes: an echo detection module configured to extract parameter domain characteristic parameters of a far-end output signal and a near-end input signal, respectively, through parameter domain decoding, and detect whether a near-end input signal frame is an echo frame according to the parameter domain characteristic parameters; and a transition module configured to re-quantize the fixed codebook gain, the adaptive codebook gain and an LSF prediction error in the near-end input signal frame when the echo detection module detects the near-end input signal frame as a non-echo frame, and replace the original fixed codebook gain, the original adaptive codebook gain and the original LSF in the near-end input signal frame.
    • 呼叫语音信号处理技术领域本发明涉及呼叫语音信号处理,特别涉及参数域中回波控制的装置和方法。 该装置包括:回波检测模块,被配置为分别通过参数域解码提取远端输出信号和近端输入信号的参数域特性参数,并检测近端输入信号帧是否为回波 帧根据参数域特征参数; 以及转移模块,被配置为当所述回波检测模块将所述近端输入信号帧检测为非回波帧时,对所述近端输入信号帧中的固定码本增益,所述自适应码本增益和LSF预测误差进行重新量化 并替换原始固定码本增益,原始自适应码本增益和近端输入信号帧中的原始LSF。