Volker Drollinger

Male


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  • Name Volker Drollinger 
    Gender Male 
    Person ID I14557  Drollinger Genealogy
    Last Modified 14 Mar 2016 

  • Notes 
    • Volker may be the son of Klaus Drollinger (b 1943).

      http://www.peoplefinders.com/Summary.asp/viewdetails
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      Subject: DROLLINGER, VOLKER
      1 unique address in ALBUQUERQUE, NM

      Other info:
      Università di Padova, Dipartimento di Fisica "Galileo Galilei", Via F. Marzolo, 8, 35131 Padova, Italy
      Padua
      University of New Mexico

      I believe Volker is a physicist working in collider physics.

      Address as of 2022:
      801 Locust Pl NE #2276
      Albuquerque, NM 87102
      Bernalillo County
      (505) 243-9842

      International Patents
      Inventor: Volker Drollinger
      Residence Place: None, Germany
      Patent Date: 23 Apr 2012
      Patent Country: World Intellectual Property Organization
      Publication Date: 6 Dec 2012
      Publication Number: WO2012163451A2
      Patent Description: CONTROLLING MULTICHANNEL SIGNALS
      Applicant: DROLLINGER VOLKER
      Others Listed
      Volker Drollinger
      Original Application:
      https://patentimages.storage.googleapis.com/65/fe/2b/bbee31e0d29775/WO2012163451A2.pdf
      Abstract: The invention concerns a system capable of controlling multichannel signals which comprise a plurality of n channels. The system comprises a controller (11) with a processor (P), a first magnitude level (L1) and an associated first set of channel values (S1) comprising n channel values (S1 i ), and a second magnitude level (L2) and an associated second set of channel values (S2) comprising n channel values (S2 i ). The controller (11) is adapted to receive a third magnitude level (L3). The processor (P) is configured to determine a third set of channel values (S3) which is associated with the third magnitude level (L3) and which comprises n channel values (S3 i ). The third set of channel values (S3) is determined by determining a channel value (S3 i ) for each channel i = 1,..., n of the third set of channel values (S3) based on the corresponding channel value (S1 i ) of the first set of channel values (S1), the corresponding channel value (S2 i ) of the second set of channel value...