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    • 3. 发明授权
    • Compensation for lane imbalance in a multi-lane analog-to-digital converter (ADC)
    • 多通道模数转换器(ADC)中车道不平衡的补偿
    • US09030341B2
    • 2015-05-12
    • US13553017
    • 2012-07-19
    • Loke TanSteven JaffeHong LiuLin HeRandall PerlowPeter CangianeRamon GomezGiuseppe Cusmai
    • Loke TanSteven JaffeHong LiuLin HeRandall PerlowPeter CangianeRamon GomezGiuseppe Cusmai
    • H03M1/10H03M1/12
    • H03M1/1052H03M1/1215
    • Various multi-lane ADCs are disclosed that substantially compensate for impairments present within various signals that result from various impairments, such as phase offset, amplitude offset, and/or DC offset to provide some examples, such that their respective digital output samples accurately represent their respective analog inputs. Generally, the various multi-lane ADCs determine various statistical relationships, such as various correlations to provide an example, between these various signals and various known calibration signals to quantify the phase offset, amplitude offset, and/or DC offset that may be present within the various signals. The various multi-lane ADCs adjust the various signals to substantially compensate for the phase offset, amplitude offset, and/or DC offset based upon these various statistical relationships such that their respective digital output samples accurately represent their respective analog inputs.
    • 公开了各种多通道ADC,其基本上补偿由各种损伤(例如相位偏移,幅度偏移和/或DC偏移)导致的各种信号内存在的损伤,以提供一些示例,使得它们各自的数字输出样本准确地表示它们 各自的模拟输入。 通常,各种多通道ADC确定各种统计关系,例如各种相关性,以提供这些各种信号之间的示例,以及各种已知的校准信号,以量化可能存在的相位偏移,幅度偏移和/或DC偏移 各种信号。 各种多通道ADC基于这些各种统计关系调整各种信号以基本上补偿相位偏移,幅度偏移和/或DC偏移,使得它们各自的数字输出样本精确地表示它们各自的模拟输入。
    • 4. 发明授权
    • Thermoelectric device, electrode materials and method for fabricating thereof
    • 热电装置,电极材料及其制造方法
    • US09012760B2
    • 2015-04-21
    • US13257521
    • 2010-03-25
    • Lidong ChenMonika Backhaus-RicoultLin HeXiaoya LiYunshan TangXugui XiaDegang Zhao
    • Lidong ChenMonika Backhaus-RicoultLin HeXiaoya LiYunshan TangXugui XiaDegang Zhao
    • H01L35/16H01L35/34H01L35/08
    • H01L35/34H01L35/08
    • A thermoelectric device, a method for fabricating a thermoelectric device and electrode materials applied to the thermoelectric device are provided according to the present invention. The present invention is characterized in arranging thermoelectric material power, interlayer materials and electrode materials in advance according to the structure of thermoelectric device; adopting one-step sintering method to make a process of forming bulked thermoelectric materials and a process of combining with electrodes on the devices to be completed simultaneously; and obtaining a π shape thermoelectric device finally. Electrode materials related to the present invention comprise binary or ternary alloys or composite materials, which comprise at least a first metal selected from Cu, Ag, Al or Au, and a second metal selected from Mo, W, Zr, Ta, Cr, Nb, V or Ti. The present invention simplifies fabricating procedures, reduces the cost and avoids adverse impacts due to exposing related elements to heat and pressure for a second time.
    • 根据本发明,提供了一种热电装置,制造热电装置的方法和应用于热电装置的电极材料。 本发明的特征在于根据热电装置的结构预先设置热电材料功率,层间材料和电极材料; 采用一步烧结方法制作堆积热电材料的工艺和与要同时完成的器件上的电极组合的工艺; 并获得&pgr 形热电装置。 与本发明相关的电极材料包括二元或三元合金或复合材料,其包含至少一种选自Cu,Ag,Al或Au的第一金属和选自Mo,W,Zr,Ta,Cr,Nb ,V或Ti。 本发明简化了制造过程,降低了成本,并且避免了由于第二次将相关元件暴露于热和压力而引起的不利影响。