IP Library Granted Patent US 12,040,777
Granted Patent B2
US 12,040,777 · App. 17/440,158 · Granted Jul 16, 2024

Modified saw transducer, saw resonator, and saw filter comprising same

Inventor: Matthias Pernpeintner (Bavaria, DE)
Assignee: RF360 Singapore Pte. Ltd.
H03H9/145H03H9/02637H03H9/25H03H9/6483
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,040,777
App. No.
17/440,158
Granted
Jul 16, 2024
Kind
B2
Abstract

A SAW transducer and a SAW resonator are proposed composed of consecutively arranged unit cells of length L. Slight geometry or material variations such as variations of the metallization ration or the unit cell length L affecting the pitch) between these unit cells result in improved spurious mode suppression while the main mode performance is unaffected.

Claims (19)

1. A surface acoustic wave (SAW) transducer comprising:

a plurality of unit cells that are arranged consecutively in a longitudinal direction, the plurality of unit cells having parameters including a length Li and a metallization ratio ni, wherein each unit cell of the plurality of unit cells comprises two or more electrode fingers connected to different electrical potentials and is configured to produce a wavelet Wi, wherein the plurality of unit cells show a variation of the parameters Li and ηi over a length of the SAW transducer;

wherein the variation of the parameters Li and ηi over the length of the SAW transducer is such that, for each unit cell, an eigenfrequency of a main operating SAW mode is unchanged and wavelets superimpose constructively at the eigenfrequency of the main operating SAW mode.

2. The SAW transducer of claim 1 , wherein, based on the variation, the eigenfrequency of unwanted resonances differs between neighboring unit cells and the wavelets superimpose at least partially destructively at a frequency of a spurious mode and/or an envelope of the spurious mode along the SAW transducer is shaped so that an excitation maximum is reduced and/or a frequency thereof is shifted.

3. The SAW transducer of claim 1 , wherein the length Li continuously increases and the metallization ratio ηi continuously decreases over the length of the SAW transducer.

4. The SAW transducer of claim 1 , wherein the parameters Li and ni each have a sine-like variation across the length of the SAW transducer, wherein the sine-like variation of the parameters Li and ni have a phase difference of π when graphed.

5. The SAW transducer of claim 1 , wherein one of the parameters Li and ηi has a minimum and another has a maximum in a middle of the transducer.

6. The SAW transducer of claim 1 comprising one or more reflectors.

7. The SAW transducer of claim 1 , wherein the SAW transducer is one of at least two transducers arranged between two reflectors to form a DMS filter.

8. A surface acoustic wave (SAW) transducer comprising:

a plurality of unit cells that are arranged consecutively in a longitudinal direction, the plurality of unit cells having parameters including a length Li, wherein each unit cell of the plurality of unit cells comprises two or more electrode fingers connected to different electrical potentials and is configured to produce a wavelet Wi, wherein the plurality of unit cells show a variation of Li and another frequency-relevant parameter over a length of the transducer;

wherein the variation of the parameters Li and the another frequency-relevant parameter over the length of the transducer is such that, for each unit cell, an eigenfrequency of a main operating SAW mode is unchanged and wavelets superimpose constructively at the eigenfrequency of the main operating SAW mode.

9. The SAW transducer of claim 8 , wherein the length Li continuously increases and the another frequency-relevant parameter continuously decreases over the length of the SAW transducer.

10. The SAW transducer of claim 8 , wherein the another frequency-relevant parameter corresponds to at least one of a metal height of the two or more electrode fingers, or a dielectric layer height, or a broadness of the two or more electrode fingers, or a combination thereof.

11. The SAW transducer of claim 8 , wherein, based on the variation, the eigenfrequency of unwanted resonances differs between neighboring unit cells and the wavelets superimpose at least partially destructively at a frequency of a spurious mode and/or an envelope of the spurious mode along the SAW transducer is shaped so that an excitation maximum is reduced and/or ratio ni is shifted.

12. The SAW transducer of claim 8 , wherein the length Li and the another frequency-relevant parameter each have a sine-like variations across the length of the SAW transducer, wherein the sine-like variations of the parameters Li and ni have a phase difference of π when graphed.

13. The SAW transducer of claim 8 , wherein one of the length Li and the another frequency-relevant parameter has a minimum and another of has a maximum in a middle of the SAW transducer.

14. The SAW transducer of claim 8 comprising one or more reflectors.

15. The SAW transducer of claim 8 , wherein the SAW transducer is one of at least two transducers arranged between two reflectors to form a DMS filter.

Assignments (3)
CHANGE OF OWNER'S ADDRESS Recorded Aug 27, 2024
From: RF360 SINGAPORE PTE. LTD.
To: RF360 SINGAPORE PTE. LTD.
Reel/Frame 068788/0486 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2023
From: RF360 EUROPE GMBH
To: RF360 SINGAPORE PTE. LTD.
Reel/Frame 063272/0475 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2022
From: PERNPEINTNER, MATTHIAS
To: RF360 EUROPE GMBH
Reel/Frame 059477/0973 →
Priority Claims (1)
DE 10 2019 108 843.7 · Apr 4, 2019 · national
Continuity (1)
Related Publication 20220149812A1 · May 12, 2022