IP Library › Granted Patent US 11,763,974
Granted Patent B2
US 11,763,974 · App. 16/317,011 · Granted Sep 19, 2023

Isolating transformer

Inventors: Glenn Richard Lacey (Surrey, GB); Andrew Stephen Ackland (Hampshire, GB)
Assignee: UWB X LIMITED
H01F19/08H01F19/04H01F21/12H01F27/2804H01F27/2823H01F27/29H01F41/041H01F2019/085H01F2027/2814H01F2027/2819H01F2027/2833
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Quick Facts
Patent No.
US 11,763,974
App. No.
16/317,011
Granted
Sep 19, 2023
Kind
B2
Abstract

An Isolating Transmission Line Transformer (ITLT) for use in a data communications system is provided, the transformer comprising: a substantially planar substrate formed of electrically insulative material having opposed first and second surfaces; a first port formed of two separate terminals provided at one part of the substrate; a second port formed of two separate terminals provided at a second part of the substrate; a first conductor connected in series to the first port and arranged as a single loop; a second conductor which is electrically isolated from the first conductor and connected in series to the second port, the second conductor being arranged as a single loop in a substantially opposite orientation to the first conductor; wherein the first and second ports and at least part of the first and second conductors are provided on the substrate surface (s); and a core arranged between the first and second ports to cover the majority of the first and second conductors.

Claims (42)

1. An isolating transformer for use in data communications, the isolating transformer comprising:

a substrate of electrically insulative material including opposite first and second edges;

a first port including first and second terminals spaced apart on the first edge of the substrate;

a second port including third and fourth terminals spaced apart on the second edge of the substrate;

a core between the first port and the second port, the core having first and second channels in the core extending between opposite first and second ends of the core;

first, second, third, and fourth tracks on the substrate extending to the core from the first, second, third, and fourth terminals, respectively, the first and second tracks extending from the first port are spaced from each other, and the third and fourth tracks extending from the second port are spaced from each other;

a fifth track on the substrate connecting the core and the first and second tracks;

a sixth track on the substrate connecting the core and the third and fourth tracks, the fifth and sixth tracks being curved;

a pair of twisted wires passing through the first and second channels in the core; and

first and second conductive paths connected in series to the first and second ports respectively, the first and second conductive paths being electrically isolated from each other, the first conductive path extends from the first port and includes the first, second, and sixth tracks, and the pair of twisted wires, and the second conductive path extends from the second port and includes the third, fourth, and fifth tracks, and the pair of twisted wires.

2. The isolating transformer of claim 1 , wherein the core is formed of a ferrite material.

3. The isolating transformer of claim 1 , wherein the core has a permeability of 10,000 or greater.

4. The isolating transformer according to claim 1 , being a transmission line transformer having a characteristic impedance which is substantially half of that which is presented at the first and second ports.

5. The isolating transformer according to claim 1 , wherein the transformer provides an operating bandwidth in excess of 2 GHz.

6. The isolating transformer according to claim 1 , wherein the transformer is operable at data speeds for one or more of 10 G, 40 G, 100 G and 200 G operation.

7. A transformer system, comprising:

a mounting member;

a plurality of isolating transformers, each isolating transformer of the plurality of isolating transformers including:

a first port including a first plurality of terminals;

a second port including a second plurality of terminals;

a core between the first port and the second port, the core having first and second ends with first and second core channels extending between the first and second ends; and

first and second electrically separate conductive paths, the first conductive path connected in series to the first port and the second conductive path connected in series to the second port, the first and second conductive paths each including:

a plurality of first tracks extending to one end of the core, ones of the plurality of first tracks extending from the first or second plurality of terminals;

a pair of wires in the first and second core channel; and

a curved second track interconnecting the pair of wires at an end opposite the one end of the core, the first and second core channels extending between the curved second track of the first conductive path and the curved second track of the second conductive path.

8. The transformer system according to claim 7 , wherein the plurality of isolating transformers are provided on a single substrate.

9. The transformer system according to claim 8 , wherein the mounting member comprises a frame formed of relatively rigid insulative material mounted to one or both surfaces of the single substrate.

10. A method of manufacturing an isolating transformer, the method comprising:

providing a substrate of electrically insulative material having opposite first and second edges;

arranging on the substrate:

a first port formed of first and second terminals spaced apart and adjacent to the first edge of the substrate; and

a second port formed of third and fourth terminals spaced apart and adjacent to the second edge of the substrate;

providing a core between the first and second port, the core having first and second channels in the core extending between opposite first and second ends of the core;

forming first, second, third, and fourth tracks on the substrate extending to the core from the first, second, third, and fourth terminals, respectively, the first and second tracks extending from the first port are spaced from each other, and the third and fourth tracks extending from the second port are spaced from each other;

forming a fifth track on the substrate between the core and the first and second tracks;

forming a sixth track on the substrate between the core and the third and fourth tracks, the fifth and sixth tracks being curved; and

providing a pair of twisted wires through the first and second channels in the core;

wherein the pair of twisted wires, first, second, and sixth tracks form a first conductive path connected in series to the first port; and wherein the pair of twisted wires, third, fourth, and fifth tracks form a second conductive path connected in series to the second port, the first and second conductive paths being electrically isolated from each other.

11. The method of claim 10 , comprising arranging the isolating transformer to have a characteristic impedance which is substantially half of that which is presented at the first and second ports.

12. The method of claim 10 , comprising providing a core formed of ferrite material, and wherein the core has a permeability of 10,000 or greater.

13. The method of claim 10 , comprising providing an operating bandwidth in excess of 2 GHz.

14. The method of claim 10 , comprising arranging the transformer to be operable at data speeds for one or more of 10 G, 40 G, 100 G and/or 200 G operation, or greater.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2022
From: LACEY, GLENN; ACKLAND, ANDY
To: RYBTCHINSKAIA, ELENA
Reel/Frame 060463/0941 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2022
From: RYBTCHINSKAIA, ELENA
To: HIGH SPEED TRANSMISSION SOLUTIONS LIMITED
Reel/Frame 060463/0967 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2022
From: HIGH SPEED TRANSMISSION SOLUTIONS LIMITED
To: UWB X LIMITED
Reel/Frame 060616/0521 →
Priority Claims (1)
GB 1612032 · Jul 11, 2016 · national
Continuity (1)
Related Publication 20190228896A1 · Jul 25, 2019