EP0451992A2

Polysilicon resonating beam transducers and method of producing the same.

Abstract

Force transducers are formed of a beam (34) of polysilicon which is mounted at its ends to a silicon substrate (31) and is encapsulated within a polysilicon shell (40) which defines, with the substrate, a cavity around the resonating beam. The cavity is sealed off from the atmosphere and evacuated to maximize the Q of the resonating beam. The beam is produced by deposition of polysilicon in such a way that, combined with subsequent annealing steps, the beam is in zero or low tensile strain. Resonant excitation of the beam may be accomplished in various ways, including capacitive excitation, and the vibratory motion of the beam may be detected utilizing an implanted resistor (44) which is piezoresistive. Formation of the beam is carried out by depositing the beam on a sacrificial layer and surrounding it in a second sacrificial layer before the encapsulating polysilicon shell is formed. The sacrificial layers are etched out with liquid etchant which passes through channels in the periphery of the shell. Following etching, the interior of the cavity surrounding the beam is maintained in a wash liquid so that the beam is not deflected toward any of the adjacent surfaces, and the wash liquid is removed by freezing and sublimation. The interior surfaces of the cavity and the outer surfaces of the beam are passivated and the channels leading into the cavity may be sealed by oxidation in an oxidizing atmosphere, which also results in consumption of oxygen within the cavity.

EP0451992A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 27 March 2011, 15.5 years ago.

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10 claims: 2 independent, 8 dependent

  1. 1
    A resonant beam transducer comprising:(a) a substrate;(b) a polysilicon beam mounted to the substrate at at least one of its ends and spaced from the substrate between its ends to allow free vibration of the beam;(c) an encapsulating shell of polysilicon surrounding the beam and affixed to the substrate to define a cavity with the substrate which surrounds the beam and which is sealed off from the atmosphere, the cavity being substantially evacuated;(d) means for exciting mechanical vibration in the beam;and (e) means for projecting light through the polysilicon shell onto the beam and means for receiving the projected light reflected from the beam and for converting the received light into an electrical signal corresponding to the received light which is indicative of the vibration of the beam.
  2. 10
    A method of detecting the vibrations of a microbeam encapsulated within a shell which will pass light of selected wavelengths, comprising the steps of:(a) directing substantially monochromatic light through the encapsulating shell onto the vibrating beam, the spacing between the shell and the beam being close to the wavelength of the light such that inteference patterns are formed as the beam vibrates;(b) detecting light reflected from the beam in the interference pattern and providing an electrical signal corresponding thereto which is indicative of vibrations of the beam.