IP Library Granted Patent US 12,034,429
Granted Patent B2
US 12,034,429 · App. 17/431,411 · Granted Jul 9, 2024

Saw device with improved thermal management

Inventors: Kamran Cheema (Apopka, FL); Bambang Kunardi (Singapore, SG); Yu Jen Chong (Singapore, SG); Chong Choon Lee (Singapore, SG)
Assignee: RF360 Singapore Pte. Ltd.
H03H9/02834H03H9/02992H03H9/6483
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Quick Facts
Patent No.
US 12,034,429
App. No.
17/431,411
Granted
Jul 9, 2024
Kind
B2
Abstract

This invention focuses on minimizing the hot spots on a filter chip by creating thermal radiators using the mechano-acoustic structures and connection circuitry. A gradual increase of metal to wafer relation is made to provide better heat dissipation and heat sinking. Preferably the shunt lines of the ladder type arrangement of SAW resonators (RS 1 , RS 2 , RS 3 ) comprise a broadened section (BBCN). Each two series resonators (RS 1 , RS 2 , RS 3 ) that are subsequent to each other in the series signal line are connected via a common busbar (BBCN) extending over a whole length of that subsequent series resonators, a lateral extension of the common busbars represents a first section of a respective shunt line each, each first shunt line section between a node and the parallel resonator (RP 1 , RP 2 ) of a shunt line (SLS 1 ) comprises a broadened section (BS) that is broader than the common busbar, the broadened section extends over the whole width of the parallel resonator (RP 1 ), the first reflector (REF 1 ) of the parallel resonator that faces the laterally adjacent series resonator is formed from the broadened section (BS).

Claims (34)

1. A SAW filter device with a ladder type structure, comprising:

series resonators arranged in a series signal line;

respective shunt lines connected to respective nodes situated in the series signal line between two adjacent series resonators of the series resonators; and

parallel resonators each being arranged in a respective shunt line of the shunt lines, each of the parallel resonators comprising a first reflector, wherein:

each of the parallel resonators has a length measured in a longitudinal direction and a width measured in a transversal direction,

each of the two adjacent series resonators are connected via a common busbar extending over a length of the two adjacent series resonators,

a lateral extension of each of the common busbar forms a first section of each of the respective shunt lines,

each of the respective shunt lines comprises a broadened section that is broader than the respective common busbar, the broadened section located between the respective common busbar and a corresponding parallel resonator of the parallel resonators,

the broadened section extends over the width of the corresponding parallel resonator, and

the first reflector of each of the parallel resonators is formed at least in part from the broadened section.

2. The SAW filter device of claim 1 ,

wherein the series resonators are twofold cascaded by means of each of the common busbar, and

wherein each of the common busbar has a width of at least 10 μm.

3. The SAW filter device of claim 1 ,

wherein the lateral extension of each of the common busbar forms a busbar of the corresponding parallel resonator.

4. The SAW filter device of claim 1 ,

wherein each of the parallel resonators has the first reflector and a first busbar formed by the first section of the lateral extension, and

wherein a second busbar and a second reflector of each of the parallel resonators are formed by a second section of a corresponding shunt line of the shunt lines.

5. The SAW filter device of claim 1 ,

wherein the series resonators are lined-up one below the other in a line parallel to the transversal direction,

wherein the respective shunt lines extend from the series signal line in the longitudinal direction,

wherein reflectors of the series resonators are formed from a strip-type metallization extending over a combined length of the series resonators, and

wherein the strip-type metallization is connected to a ground terminal.

6. The SAW filter device of claim 1 , wherein

the series resonators are arranged between a first and a last node in the series signal line and are each cascaded by a series connection of two single resonators, and

respective reflectors of the series resonators are common to the two single resonators and are extending over a total width of the two single resonators.

7. The SAW filter device of claim 1 ,

wherein in a series resonator of the series resonators that is next to an I/O terminal, a reflector of the series resonator, a busbar of the series resonator, and the I/O terminal are formed from a same metallization and/or are connected to a same electric potential.

8. The SAW filter device of claim 1 , wherein

the series resonators are each cascaded by a series connection of two single resonators,

all reflectors of each of the two single resonators are electrically isolated from each other.

9. The SAW filter device of claim 1 , wherein each of the respective shunt lines are connected to a common grounded area that has a width in the longitudinal direction of a respective second reflector of each of the parallel resonators.

10. The SAW filter device of claim 1 , designed as a transmit filter wherein an I/O terminal is a transmit terminal and wherein a series resonator of the series resonators next to the transmit terminal is un-cascaded and has a length that is at least a twofold length of each of the remaining series resonators.

11. The SAW filter device of claim 1 , wherein the first reflector is positioned between a corresponding series resonator and the corresponding parallel resonator.

Assignments (3)
CHANGE OF OWNER'S ADDRESS Recorded Nov 22, 2024
From: RF360 SINGAPORE PTE. LTD.
To: RF360 SINGAPORE PTE. LTD.
Reel/Frame 069761/0931 →
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 Jun 3, 2022
From: CHEEMA, KAMRAN; KUNARDI, BAMBANG; CHONG, YU JEN; LEE, CHONG CHOON
To: RF360 EUROPE GMBH
Reel/Frame 060091/0841 →
Priority Claims (1)
DE 10 2019 104 993.8 · Feb 27, 2019 · national
Continuity (1)
Related Publication 20220140807A1 · May 5, 2022
Cited By (1)
US 12,355,422