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    • 8. 发明授权
    • Application of a processing pin to a gemstone which is to be cut or polished
    • 将加工销应用于待切割或抛光的宝石
    • US08815039B2
    • 2014-08-26
    • US12810079
    • 2008-12-23
    • Markus Paul WildStefan Koehler
    • Markus Paul WildStefan Koehler
    • B32B38/10
    • B24B9/16B24B9/161B24B9/167Y10T29/49817Y10T29/49822Y10T156/1153
    • A next processing pin is applied as a follow-on pin to a stone, wherein the stone is held by a preceding pin and fixed to the stone by way of a first adhesive bonding location. The preceding pin is separated from the stone. The follow-on pin is fixed to the stone by way of a second adhesive bonding location spaced from the first adhesive bonding location. The follow-on pin frontally receives a fluid adhesive at a spacing from the stone and the spacing between the adhesive-coated front end and the stone is reduced until the adhesive front end contacts the stone. The adhesive is hardened at the contact location as the second adhesive bonding location and heat is transferred by way of the preceding pin to the first adhesive bonding location A force component is exerted on the preceding pin to release the pin from the stone and to hold the stone with the next pin.
    • 下一个加工销作为后续销应用于石头,其中石头由前一个销钉固定,并通过第一粘合位置固定到石头上。 前面的针与石头分开。 后续销通过与第一粘合粘合位置间隔开的第二粘合位置固定到石头上。 后续销以与石头间隔的方式接收流体粘合剂,并且减少粘合剂涂覆的前端和石头之间的间隔,直到粘合剂前端接触石头。 粘合剂在接触位置被硬化,因为第二粘合粘合位置并且热量通过前面的销被转移到第一粘合剂粘合位置。力分量施加在前面的销上以将销从石头释放并保持 石头与下一个针。
    • 10. 发明授权
    • Signal processor and method for processing a receiving signal
    • 用于处理接收信号的信号处理器和方法
    • US08503958B2
    • 2013-08-06
    • US12305689
    • 2007-06-20
    • Alfonso CarreraStefan KoehlerGuenter Rohmer
    • Alfonso CarreraStefan KoehlerGuenter Rohmer
    • H04B1/18
    • H04B1/0085
    • A signal processor for processing a receiving signal having a first usable frequency band and a second usable frequency band includes a first mixer for mixing the receiving signal with a first local oscillator signal, wherein a frequency of the first local oscillator signal is asymmetrical between the first usable frequency band and the second usable frequency band. The first mixer is implemented to obtain an in-phase signal and a quadrature signal, having a first signal portion representing a mixed image of the first usable frequency band, and having a second signal portion representing a mixed image of the second usable frequency band. The signal processor comprises a second mixer) for mixing the in-phase signal and the quadrature signal by using the second local oscillator signal. A frequency of the second local oscillator signal is selected such that the mixed image of the first usable frequency band and the mixed image of the second usable frequency band are at least partly image bands of each other with regard to the second local oscillator signal. The second mixer is implemented to separately provide information content of the first usable frequency band and the second usable frequency band at its output, for obtaining a first output signal, which substantially comprises information content of the first usable frequency band, and for obtaining a second output signal which substantially comprises information content of the second usable frequency band.
    • 一种用于处理具有第一可用频带和第二可用频带的接收信号的信号处理器,包括用于将接收信号与第一本地振荡器信号进行混合的第一混频器,其中第一本机振荡器信号的频率在第一 可用频带和第二可用频带。 实现第一混频器以获得具有表示第一可用频带的混合图像的第一信号部分并且具有表示第二可用频带的混合图像的第二信号部分的同相信号和正交信号。 信号处理器包括第二混频器,用于通过使用第二本机振荡器信号来混合同相信号和正交信号。 选择第二本地振荡器信号的频率,使得第一可用频带和第二可用频带的混合图像的混合图像相对于第二本机振荡器信号至少部分是彼此的图像频带。 第二混频器被实现为在其输出处分别提供第一可用频带和第二可用频带的信息内容,以获得基本包括第一可用频带的信息内容的第一输出信号,并且用于获得第二可用频带 输出信号,其基本上包括第二可用频带的信息内容。