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Hadamard transformer using charge transfer devices

  • US 4,389,673 A
  • Filed: 03/09/1981
  • Issued: 06/21/1983
  • Est. Priority Date: 03/11/1980
  • Status: Expired due to Fees
First Claim
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1. A Hadamard transformer which makes a group of N transformed samples Y1 . . . Yj . . . YN correspond to a group of given samples X1 . . . Xi . . . XN, each having transformed samples being defined by a weighted sum of N given samples, the weighting coefficients being equal to +1 and -1, wherein it comprises:

  • (A) a charge transfer device incorporating;

    (a) N rest electrodes R1 . . . Ri . . . RN preceded by N transfer electrodes R1 '"'"' . . . Ri '"'"' . . . RN '"'"'(b) 2N reading electrodes, which rest electrodes Ri being positioned between a first reading electrode Li+ and a second reading electrode Li- ;

    (c) 2N transfer electrodes GTi+ and GTi- positioned between each rest electrode Ri and the associated reading electrodes Li+ and Li- ;

    (B) an input circuit able to convert the samples X1 . . . Xi . . . XN into proportional charge groups;

    (C) a means for injecting these charge groups beneath the rest electrodes in such a way that the charges corresponding to the samples X1 . . . Xi . . . XN are respectively positioned beneath the electrodes R1 . . . Ri . . . RN ;

    (D) a differential charge reader with two inputs, one positive and the other negative, the reading electrode Li+ being connected to the positive input and the reading electrode Li- to the negative input and to an output supplying the transformed samples Y1 . . . Yj . . . YN ;

    (E) a control circuit having a first output connection connected to the rest electrodes Ri and carrying a signal φ

    1 and a second output connection connected to the transfer electrodes Ri and carrying a signal φ

    2 in phase opposition to φ

    1, a first group of N output connections connected to the N transfer electrodes GTi+ and carrying signals φ

    GTi+ and a second group of N output connections connected to the N transfer electrode GTi- and carrying signals φ

    GTi-, said signals φ

    1, φ

    2, φ

    GTi+ and φ

    GTi- being able to firstly control the transfer of charges positioned beneath each rest electrode to one of the two associated reading electrodes, then the return of these charges to said rest electrodes, this taking place N times to obtain the N transformed samples.

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