Nova Patents
EP0973149A2

Ultrasonic transducers

Abstract

Sonic transducers utilize resonant cavities of varying depths to achieve wide operational bandwidth. The transducers (29) may include a conductive membrane (38) spaced apart from one or more backplate electrodes (32a,32b). In one approach, spacing is achieved using a dielectric spacer (34) having a series of depressions (36) arranged in a pattern, the depressions forming cavities each resonant at a predetermined frequency. In another approach, the conductive membrane (62) is piezoelectrically active, and the transducer is simultaneously driven in both piezoelectric and electrostatic modes.

EP0973149A2, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Projected expiry passed 15 July 2019, 7.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

20 claims: 3 independent, 17 dependent

  1. 1
    A sonic transducer (29;60) comprising:(a) a conductive membrane (38;62);(b) a backplate (32;64) comprising at least one electrode (32a,32b,32c);and (c) disposed between the membrane and the backplate, a dielectric spacer (34;34a,34b;66) comprising a series of depressions (36;36a,36b;68) arranged in a pattern, the depressions forming cavities each resonant at a predetermined frequency.
  2. 15
    A sonic transducer (60;80) comprising:(a) a substantially nonconductive piezoelectric membrane having a pair of opposed conductive surfaces;(b) a backplate (64) comprising at least one electrode;(c) means (66;82) for creating a plurality of resonant cavities (68;86) between the membrane (62) and the at least one electrode;(d) means (70) for urging the membrane (62) into the resonant cavities (68;86);and (e) an AC source (72;72a) connected across the membrane.
  3. 20
    A method of operating a sonic transducer (60;80) comprising a substantially nonconductive piezoelectric membrane (62) having a pair of opposed conductive surfaces, a backplate (64) comprising at least one electrode, and means (66;86) for creating a plurality of resonant cavities (68;86) between the membrane and the at least one electrode, the method comprising the steps of:(a) urging the membrane (62) into the resonant cavities (68;86);and (b) applying AC signals across the membrane (62).