Nova Patents
EP0928064A2

Surface-acoustic-wave filter

Abstract

A SAW bandpass filter includes parallel arms 62-64 each containing a first SAW resonator R1, R3, R5 having a predetermined resonance frequency (frp), and a series arm 61 containing second SAW resonators R2, R4 having a predetermined resonance frequency (frs) approximately equal to or higher than the antiresonance frequency of the first SAW resonator (fap). The resonators have reflectors 132, 133 on both sides of their interdigital electrodes 131. These reflectors, however, can give rise to an undesired ripple in the pass band. In the invention the ripple is substantially eliminated by selecting the thickness (i.e. the weight) of the electrode films so that the ripple is pushed out of the pass band. For instance, with aluminium electrodes the thickness should be 0·06-0·09.λp, where λp is the finger pitch.

EP0928064A2, drawing sheet 1
Sheet 1 of 115

Term

Term ended

Projected expiry passed 27 October 2012, 13.9 years ago.

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

8 claims: 4 independent, 4 dependent

  1. 1
    A SAW filter comprising:a first SAW resonator (21, R1A, R1B) having a pair of terminals and a predetermined resonance frequency (f rp ), the said first SAW resonator being provided in a parallel arm (22) of the SAW filter;a second SAW resonator (23) having a pair of terminals and a predetermined resonance frequency (f rs ) approximately equal to a predetermined antiresonance frequency of the first SAW resonator (f ap ), the said second SAW resonator being provided in a series arm (24) of the SAW filter;wherein: the first SAW resonator comprises an exciting interdigital electrode (201) with first and second reflectors (202, 203) respectively located on opposite sides of this electrode, and the exciting interdigital electrode and the first and second reflectors are made of aluminum, or of an aluminum alloy containing a small percentage of metal other than aluminum by weight, the film thickness of the electrode and the first and second reflectors ranging from 0.06 to 0.09 times the period of the exciting interdigital electrode.
  2. 2
    A SAW filter comprising:a first SAW resonator (21, R1A, R1B) having a pair of terminals and a predetermined resonance frequency (f rp ), the said first SAW resonator being provided in a parallel arm (22) of the SAW filter;a second SAW resonator (23) having a pair of terminals and a predetermined resonance frequency (f rs ) approximately equal to a predetermined antiresonance frequency of the first SAW resonator (f ap ), the said second SAW resonator being provided in a series arm (24) of the SAW filter;wherein: the first SAW resonator comprises an exciting interdigital electrode (201) with first and second reflectors (202, 203) respectively located on opposite sides of this electrode, and the material of the electrode and the first and second reflectors is gold or a gold alloy containing a small percentage of metal other than gold by weight, the film thicknesses of the exciting interdigital electrode and the first and second reflectors ranging from 0.0086 to 0.013 times the period of the exciting interdigital electrode.
  3. 5
    A SAW filter according to any of claims 1 to 3, wherein an inductance element (25, L1) including a bonding wire is connected in series to the first SAW resonator in the parallel arm, this bonding wire (86 3-5 ) being longer than bonding wires (86 1,2 ) for input and output terminals of the filter.
  4. 6
    A SAW filter comprising:a first SAW resonator (21, R1A, R1B) having a pair of terminals and a predetermined resonance frequency (f rp ), the said first SAW resonator being provided in a parallel arm (22) of the SAW filter;a second SAW resonator (23) having a pair of terminals and a predetermined resonance frequency (f rs ) approximately equal to a predetermined antiresonance frequency of the first SAW resonator (f ap ), the said second SAW resonator being provided in a series arm (24) of the SAW filter;wherein: the product of the aperture length (Ap) and the number (Np) of electrode finger pairs of the first SAW resonator is larger than the product of the aperture length (As) and the number (Ns) of electrode finger pairs of the second SAW resonator (Figs. 18-22).