IP Library Granted Patent US 10,827,599
Granted Patent B2
US 10,827,599 · App. 15/327,642 · Granted Nov 3, 2020

Piezoelectric transformer

Inventors: Bernhard Doellgast (Deutschlandsberg, AT); Markus Puff (Graz, AT); Pavol Kudela (Deutschlandsberg, AT); Michael Weilguni (Hagenburg, AT)
Assignee: EPCOS AG
H05H1/2475H01L41/047H01L41/0533H01L41/107H05H2001/2481
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Quick Facts
Patent No.
US 10,827,599
App. No.
15/327,642
Granted
Nov 3, 2020
Kind
B2
Abstract

The present invention relates to a piezoelectric transformer ( 1 ) which is divided in the longitudinal direction (L) into an input region ( 2 ) and an output region ( 3 ), wherein electrodes ( 4 ) and piezoelectric material ( 5 ) are alternately stacked in the input region ( 2 ) and an alternating voltage can be applied to the electrodes ( 4 ) in the input region ( 2 ), wherein the output region ( 3 ) comprises piezoelectric material ( 9 ) which effectuates the build-up of an electrical field when alternating voltage is applied in the input region ( 2 ), wherein the piezoelectric transformer ( 1 ) has an output-side end face ( 10 ) which faces away from the input region ( 2 ), and lateral edges ( 13 ) which extend in the longitudinal direction (L), and wherein the piezoelectric transformer ( 1 ) is designed for ionizing atoms or molecules at the output-side end face ( 10 ), thereby avoiding ionization of atoms or molecules at the lateral edges ( 13 ).

Claims (33)

1. A piezoelectric transformer

which is divided in the longitudinal direction into an input region and an output region,

wherein electrodes and piezoelectric material are alternately stacked in the input region and an alternating voltage can be applied to the electrodes in the input region,

wherein the output region comprises piezoelectric material which effectuates the build-up of an electrical field when alternating voltage is applied in the input region,

wherein the piezoelectric transformer has an output-side end face which faces away from the input region, and lateral edges which extend in the longitudinal direction,

wherein the piezoelectric transformer is designed for ionizing atoms or molecules at the output-side end face, thereby avoiding ionization of atoms or molecules at the lateral edges, and

wherein the output-side end face comprises rounded edges and rounded corners.

2. The piezoelectric transformer according to claim 1 , wherein the lateral edges comprise a rounded region.

3. The piezoelectric transformer according to claim 2 , wherein the rounded region extends at least from the output-side end face up to the middle of the output region.

4. A piezoelectric transformer according to claim 2 ,

wherein the rounded region extends along the entire length of the lateral edges.

5. The piezoelectric transformer according to claim 2 , wherein the lateral edges have a radius between 0.1 mm and 3 mm in the rounded region.

6. The piezoelectric transformer according to claim 2 , wherein the rounded region was rounded by means of rubbing, grinding, or sandblasting.

7. The piezoelectric transformer according to claim 1 , wherein the output region is at least partially coated with an insulation layer.

8. The piezoelectric transformer according to claim 7 , wherein the insulation layer comprises a heat shrink tube.

9. The piezoelectric transformer according to claim 8 , wherein the heat shrink tube terminates so as to be flush with the output-side end face or extends beyond the end face.

10. The piezoelectric transformer according to claim 7 , wherein the insulation layer comprises at least one selected from silicone, a cured polymer, or a varnish.

11. The piezoelectric transformer according to claim 7 , wherein the end face is free from the insulation coating.

12. The piezoelectric transformer according to claim 7 , wherein the insulation layer has a thickness in the range from 0.1 mm to 3 mm.

13. The piezoelectric transformer according to claim 1 , which is used for generating a cold atmospheric plasma.

14. The piezoelectric transformer according to claim 1 , wherein said transformer is a Rosen-type transformer.

15. The piezoelectric transformer according to claim 1 , wherein the output-side end face is suitable for generating a widely fanned plasma jet.

16. A device for generating atmospheric-pressure plasma, which comprises a piezoelectric transformer according to claim 1 , which transformer is situated in a gas-filled volume.

17. The piezoelectric transformer according to claim 1 , wherein the output-side end face is metallized.

18. The piezoelectric transformer according to claim 1 , wherein the output-side end face is not metallized.

19. A piezoelectric transformer

which is divided in the longitudinal direction into an input region and an output region,

wherein electrodes and piezoelectric material are alternately stacked in the input region and an alternating voltage can be applied to the electrodes in the input region,

wherein the output region comprises piezoelectric material which effectuates the build-up of an electrical field when alternating voltage is applied in the input region,

wherein the piezoelectric transformer has an output-side end face which faces away from the input region, and lateral edges which extend in the longitudinal direction,

wherein the piezoelectric transformer is designed for ionizing atoms or molecules at the output-side end face, thereby avoiding ionization of atoms or molecules at the lateral edges,

wherein the output region is at least partially coated with an insulation layer, and

wherein the insulation layer comprises at least one a cured polymer or a varnish.

Assignments (2)
CHANGE OF NAME Recorded Mar 17, 2023
From: EPCOS AG
To: TDK ELECTRONICS AG
Reel/Frame 063117/0209 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2017
From: DOELLGAST, BERNHARD; PUFF, MARKUS; KUDELA, PAVOL; WEILGUNI, MICHAEL, DR.
To: EPCOS AG
Reel/Frame 044139/0973 →
Priority Claims (1)
DE 10 2014 110 405 · Jul 23, 2014 · national
Continuity (1)
Related Publication 20170208675A1 · Jul 20, 2017
Cited By (2)
US 12,207,559 US 12,232,422