IP Library Granted Patent US 12,610,823
Granted Patent B2
US 12,610,823 · App. 18/037,486 · Granted Apr 21, 2026

Flexible electronic circuits with support structures

Inventors: Brian Cobb (Sedgefield, GB); Laurence Scullion (Sedgefield, GB); Richard Price (Sedgefield, GB)
Assignee: PRAGMATIC SEMICONDUCTOR LIMITED
H01L23/562H01L23/50H01Q1/2283
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Quick Facts
Patent No.
US 12,610,823
App. No.
18/037,486
Granted
Apr 21, 2026
Kind
B2
Abstract

A flexible electronic structure for bonding with an external circuit. The flexible electronic structure comprising a flexible body having a first surface, the flexible body comprising at least one electronic component, at least one contact element configured to bond with the external circuit, the at least one contact element operatively coupled with the at least one electronic component and provided at the first surface of the flexible body, and arranged to operably interface with the external circuit after bonding, and at least one support element provided at the first surface of the flexible body, each support element including a contact area arranged to contact a first surface of an external structure comprising the external circuit or a corresponding surface element disposed on the first surface of the external structure, wherein the contact area of each of the at least one support element does not overlie one or more predetermined types of electronic component among the at least one electronic component or one or more predetermined types of element of the at least one electronic component.

Claims (25)

1 . A flexible electronic structure for bonding with an external circuit, the flexible electronic structure comprising:

a flexible body having a first surface, the flexible body comprising a plurality of internal electronic components;

at least one contact element configured to bond with the external circuit, the at least one contact element operatively coupled with the plurality of internal electronic components and provided at the first surface of the flexible body, and arranged to operably interface with the external circuit after bonding; and

at least one support element provided at the first surface of the flexible body, each support element including a contact area arranged to contact a first surface of an external structure comprising the external circuit or a corresponding surface element disposed on the first surface of the external structure,

wherein the contact area of each of the at least one support element does not overlie one or more types of internal electronic component among the plurality of internal electronic components or one or more types of material of the plurality of internal electronic components, and

wherein the flexible electronic structure is a thin-film integrated circuit (IC) or a flexible IC.

2 . The flexible electronic structure of claim 1 , wherein the types of internal electronic component include at least one of transistors, diodes, resistors, inductors and capacitors.

3 . The flexible electronic structure of claim 1 , wherein the types of material of the plurality of internal electronic components includes a dielectric material.

4 . The flexible electronic structure of claim 1 , wherein circuitry of the flexible electronic structure is configured such that the types of internal electronic component are provided in one or more areas of the flexible body, and the contact area of the at least one support element does not overlie the one or more areas.

5 . The flexible electronic structure of claim 1 , wherein circuitry of the flexible electronic structure is configured such that the types of internal electronic component are provided outside of one or more areas of the flexible body, and the contact area of the at least one support element overlies the one or more areas.

6 . The flexible electronic structure of claim 5 , wherein the one or more areas includes a plurality of areas, and the plurality of areas are substantially regularly spaced apart.

7 . The flexible electronic structure of claim 1 , wherein there is at least a minimum lateral separation between a footprint of the contact area of each support element and a footprint of each of the types of internal electronic component among the plurality of internal electronic components or each of the one or more types of element among the plurality of internal electronic components of the at least one electronic component.

8 . The flexible electronic structure of claim 1 , wherein the contact area of each support element does not overlie any circuitry of the flexible electronic structure.

9 . The flexible electronic structure of claim 1 , wherein the at least one support element is provided at a periphery of the first surface of the flexible body.

10 . The flexible electronic structure of claim 1 , wherein the at least one support element is electrically isolated from the at least one electronic component of the flexible electronic structure.

11 . The flexible electronic structure of claim 1 , wherein at least one support element is configured to establish an electrical connection between two corresponding surface elements disposed on the first surface of the external structure when the flexible electronic structure is bonded to the external circuit.

12 . The flexible electronic structure of claim 1 , wherein substantially the entire area of an upper surface of one or more of the at least one support element is the contact area.

13 . The flexible electronic structure of claim 1 , wherein the at least one contact element and the at least one support element are formed from a redistributive layer (RDL), of the flexible electronic structure.

14 . The flexible electronic structure of claim 1 , wherein the at least one support element is for reducing deplanarisation of the flexible electronic structure during bonding of the flexible electronic structure with the external circuit.

15 . The flexible electronic structure of claim 1 , wherein each support element is configured to bond with the first surface of the external structure or the corresponding surface element disposed on the first surface of the external structure via a conductive adhesive, a curable fluid, or via a sintered metallic ink.

16 . The flexible electronic structure of claim 1 , wherein the interface with the external circuit and the at least one contact element is for communication of signals to be transmitted by or received by an antenna.

17 . The flexible electronic structure of claim 1 , wherein the at least one support element comprises a plurality of support elements, each arranged to contact and electrically connected to a corresponding surface element disposed on the first surface of external structure, and wherein the electrical connection is for the communication of signals to be transmitted or received by an antenna.

18 . The flexible electronic structure of claim 1 , wherein the at least one contact element comprises a plurality of contact elements, wherein the at least one support element is provided between two contact elements of the plurality of contact elements.

19 . The flexible electronic structure of claim 1 , wherein the at least one support element is arranged to provide shielding to one or more of electro-magnetic interference and radiation, for one or more of the at least one electronic component.

20 . The flexible electronic structure of claim 1 , wherein the at least one support element is thermally connected to the at least one electronic component and arranged to provide heat spreading or heat sinking for the at least one electronic component.

Assignments (2)
CHANGE OF NAME Recorded Oct 14, 2024
From: PRAGMATIC PRINTING LIMITED
To: PRAGMATIC SEMICONDUCTOR LIMITED
Reel/Frame 068888/0492 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2023
From: COBB, BRIAN; SCULLION, LAURENCE; PRICE, RICHARD
To: PRAGMATIC SEMICONDUCTOR LIMITED
Reel/Frame 064229/0104 →
Priority Claims (1)
GB 2018551 · Nov 25, 2020 · national
Continuity (1)
Related Publication 20240014148A1 · Jan 11, 2024
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