IP Library › Granted Patent US 12,616,520
Granted Patent B2
US 12,616,520 · App. 18/038,510 · Granted May 5, 2026

Magnetic auto-alignment connector

Inventors: K V S Manoj Kumar Vadali (Hyderabad, IN); Joseph D. Brannan (Lyons, CO); Venkata Prasad Mooram (Hyderabad, IN)
Assignee: Covidien LP
A61B18/1815A61B2018/1823
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Quick Facts
Patent No.
US 12,616,520
App. No.
18/038,510
Granted
May 5, 2026
Kind
B2
Abstract

A microwave ablation system includes a surgical instrument having an instrument connector and a microwave generator having a generator connector. The instrument connector includes a magnet and a plurality of conductors. The generator connector is configured to couple to the instrument connector and includes a housing, a support base, a magnet, at least one spring, and a plurality of pogo pins. The support base is operably coupled to the housing and configured to move longitudinally along a longitudinal axis of the generator connector. The magnet is operably coupled to the support base and positioned to align with the magnet of the instrument connector. The spring is configured to bias the support base proximally within the housing. The pogo pins extend distally from the support base with each pogo pin being configured to align with a respective conductor of the plurality of conductors of the instrument connector.

Claims (39)

1 . A microwave ablation system, comprising:

a surgical instrument including an instrument connector, the instrument connector including a first magnet and a plurality of conductors; and

a microwave generator including a generator connector configured to operably couple to the instrument connector, the generator connector including:

a housing;

a support base operably coupled to the housing and configured to move longitudinally along a longitudinal axis of the generator connector;

a second magnet operably coupled to the support base and positioned to align with the first magnet of the instrument connector;

at least one spring configured to bias the support base proximally within the housing; and

a plurality of pogo pins extending distally from the support base, wherein each pogo pin of the plurality of pogo pins is configured to align with a respective conductor of the plurality of conductors of the instrument connector.

2 . The microwave ablation system according to claim 1 , wherein the second magnet of the generator connector is configured to cause the support base to move distally against the bias of the spring when the instrument connector is properly aligned with the generator connector and the instrument connector is in proximity to the generator connector.

3 . The microwave ablation system according to claim 1 , wherein distal movement of the support base causes each pogo pin of the plurality of pogo pins to advance distally relative to the housing and contact the respective conductor of the plurality of conductors.

4 . The microwave ablation system according to claim 1 , wherein the second magnet of the generator connector is configured to cause the support base to move proximally with the bias of the spring when the instrument connector is improperly aligned with the generator connector and the instrument connector is in proximity to the generator connector to prevent the plurality of pogo pins from contacting the plurality of conductors.

5 . The microwave ablation system according to claim 1 , wherein the second magnet of the generator connector has a first polarity and the generator connector includes a third magnet having a second polarity.

6 . The microwave ablation system according to claim 5 , wherein the first polarity and the second polarity are opposite.

7 . The microwave ablation system according to claim 5 , wherein the first magnet of the instrument connector has a polarity opposite the first polarity of the second magnet of the generator connector and the instrument connector includes a fourth magnet having a polarity opposite the second polarity of the third magnet of the generator connector.

8 . The microwave ablation system according to claim 1 , wherein the first magnet of the instrument connector is a polymagnet defining a first polarity pattern and the second magnet of the generator connector is a polymagnet defining a second polarity pattern configured to align with the first polarity pattern of the first magnet of the instrument connector.

9 . The microwave ablation system according to claim 1 , wherein the surgical instrument includes a thermocouple and a microwave antenna and at least one of the plurality of conductors is operably coupled to at least one of the thermocouple or the microwave antenna.

10 . A microwave generator including a generator connector configured to operably couple to an instrument connector, the generator connector comprising:

a housing;

a support base operably coupled to the housing and configured to move longitudinally along a longitudinal axis of the generator connector;

a magnet operably coupled to the support base and positioned to align with a magnet of the instrument connector;

at least one spring configured to bias the support base proximally within the housing; and

a plurality of pogo pins extending distally from the support base, wherein each pogo pin of the plurality of pogo pins is configured to align with a respective conductor of a plurality of conductors of the instrument connector.

11 . The microwave generator according to claim 10 , wherein the magnet of the generator connector is configured to cause the support base to move distally against the bias of the spring when the instrument connector is properly aligned with the generator connector and the instrument connector is in proximity to the generator connector.

12 . The microwave generator according to claim 10 , wherein distal movement of the support base causes each pogo pin of the plurality of pogo pins to advance distally relative to the housing and contact the respective conductor of the plurality of conductors.

13 . The microwave generator according to claim 10 , wherein the magnet of the generator connector is configured to cause the support base to move proximally with the bias of the spring when the instrument connector is improperly aligned with the generator connector and the instrument connector is in proximity to the generator connector to prevent the plurality of pogo pins from contacting the plurality of conductors.

14 . The microwave generator according to claim 10 , wherein the magnet of the generator connector is a first generator magnet having a first polarity and the generator connector includes a second generator magnet having a second polarity.

15 . The microwave generator according to claim 14 , wherein the first polarity and the second polarity are opposite.

16 . The microwave generator according to claim 10 , wherein the magnet of the generator connector is a polymagnet defining a polarity pattern configured to align with a polarity pattern of a polymagnet of the instrument connector.

17 . A surgical instrument, comprising:

a microwave ablation antenna; and

an instrument connector operably coupled to the microwave ablation antenna and configured to operably couple to a generator connector of a microwave generator, the instrument connector including:

a housing;

a support base operably coupled to the housing and configured to move longitudinally along a longitudinal axis of the instrument connector;

a magnet operably coupled to the support base and positioned to align with a magnet of the generator connector;

at least one spring configured to bias the support base proximally within the housing; and

a plurality of pogo pins extending distally from the support base, wherein each pogo pin of the plurality of pogo pins is configured to align with a respective conductor of a plurality of conductors of the generator connector.

18 . The surgical instrument according to claim 17 , wherein the magnet of the instrument connector is configured to cause the support base to move distally against the bias of the spring when the instrument connector is properly aligned with the generator connector and the instrument connector is in proximity to the generator connector.

19 . The surgical instrument according to claim 17 , wherein distal movement of the support base causes each pogo pin of the plurality of pogo pins to advance distally relative to the housing and contact the respective conductor of the plurality of conductors.

20 . The surgical instrument according to claim 17 , wherein the magnet of the instrument connector is configured to cause the support base to move proximally with the bias of the spring when the instrument connector is improperly aligned with the generator connector and the instrument connector is in proximity to the generator connector to prevent the plurality of pogo pins from contacting the plurality of conductors.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2023
From: BRANNAN, JOSEPH D.
To: COVIDIEN LP
Reel/Frame 063745/0681 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2023
From: VADALI, K V S MANOJ KUMAR; MOORAM, VENKATA PRASAD
To: MEDTRONIC ENGINEERING AND INNOVATION CENTER PRIVATE LIMITED
Reel/Frame 063745/0805 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2023
From: MEDTRONIC ENGINEERING AND INNOVATION CENTER PRIVATE LIMITED
To: COVIDIEN PRIVATE LIMITED
Reel/Frame 063745/0943 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2023
From: COVIDIEN PRIVATE LIMITED
To: COVIDIEN AG
Reel/Frame 063746/0023 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2023
From: COVIDIEN AG
To: COVIDIEN LP
Reel/Frame 063746/0068 →
Continuity (2)
Provisional Application 63119038 · Nov 30, 2020
Related Publication 20240016542A1 · Jan 18, 2024
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