-
1.
公开(公告)号:US20240322483A1
公开(公告)日:2024-09-26
申请号:US18736643
申请日:2024-06-07
Applicant: Greatbatch Ltd.
Inventor: Thomas Marzano , Keith W. Seitz , Robert A. Stevenson , Christine A. Frysz , Marc Gregory Martino
IPC: H01R13/52 , A61N1/375 , H01G4/35 , H01R13/426 , H01R13/719
CPC classification number: H01R13/5224 , A61N1/3754 , H01G4/35 , H01R13/426 , H01R13/521 , H01R13/719 , Y10T29/49204
Abstract: A feedthrough terminal pin connector assembly for an active implantable medical device (AIMD) includes first and second terminal pin connectors, each comprising a sidewall having an exterior surface spaced from an interior surface defining a connector opening extending along a longitudinal axis. At least a first portion of the sidewall is electrically conductive. An electrically conductive compliant structure is supported by the electrically conductive portion of the sidewall in each of the first and second connector openings. A common housing contains the first and second terminal pin connectors with an insulative material electrically isolating the first and second electrically conductive sidewall portions from each other. The common housing is configured to be supported on a circuit board having at least a first and a second electrical circuits with the first and second electrically conductive portions being electrically connected to the respective first and second electrical circuits.
-
公开(公告)号:US11980766B2
公开(公告)日:2024-05-14
申请号:US18377609
申请日:2023-10-06
Applicant: Greatbatch Ltd.
Inventor: Jason Woods , Robert A. Stevenson , Christine A. Frysz , Thomas Marzano , Keith W. Seitz
CPC classification number: A61N1/3754 , A61N1/05
Abstract: A self-centering washer is positioned between the feedthrough and filter capacitor of a filtered feedthrough. The washer has openings through which first and second terminal pins extend. A first opening has an inner arcuate portion contacting the first terminal pin and an outer perimeter portion exposing the braze sealing the terminal pin to the insulator. A second opening has an inner arcuate portion contacting the second terminal pin and an outer perimeter portion exposing the braze sealing the terminal pin to the insulator. In an imaginary configuration with the first and second washer openings superimposed one on top of the other, the cumulative arcuate distance of the inner arcuate portions about one of the terminal pins, subtracting overlap, results in a gap between the superimposed washer openings that is less than a diameter of the first and second terminal pins so that the washer is prevented from lateral movement.
-
3.
公开(公告)号:US20240115868A1
公开(公告)日:2024-04-11
申请号:US18377609
申请日:2023-10-06
Applicant: Greatbatch Ltd.
Inventor: Jason Woods , Robert A. Stevenson , Christine A. Frysz , Thomas Marzano , Keith W. Seitz
CPC classification number: A61N1/3754 , A61N1/05
Abstract: A self-centering washer is positioned between the feedthrough and filter capacitor of a filtered feedthrough. The washer has openings through which first and second terminal pins extend. A first opening has an inner arcuate portion contacting the first terminal pin and an outer perimeter portion exposing the braze sealing the terminal pin to the insulator. A second opening has an inner arcuate portion contacting the second terminal pin and an outer perimeter portion exposing the braze sealing the terminal pin to the insulator. In an imaginary configuration with the first and second washer openings superimposed one on top of the other, the cumulative arcuate distance of the inner arcuate portions about one of the terminal pins, subtracting overlap, results in a gap between the superimposed washer openings that is less than a diameter of the first and second terminal pins so that the washer is prevented from lateral movement.
-
公开(公告)号:US20230135610A1
公开(公告)日:2023-05-04
申请号:US17972893
申请日:2022-10-25
Applicant: Greatbatch Ltd.
Inventor: Luis Daniel Villamil , Keith W. Seitz , Jonathan Calamel , Thomas Marzano , Robert A. Stevenson
Abstract: An inductive charging antenna for charging the power source of an active implantable medical device (AIMD) is described. The charging antenna is supported on the body fluid side of the feedthrough insulator, on the device side of the insulator or it is embedded inside the insulator. The charging antenna is connected to electronic circuits housed inside the medical device to charge the power source so that the device can deliver electrical stimulation to a patient and receive sensed biological signals from body tissue, among other functionalities. If the charging antenna is supported on the insulator body fluid side, it is made from a biocompatible material such as platinum. However, if the charging antenna is embedded inside the feedthrough insulator or is supported on the device side of the insulator, it can be made from a less expensive material that is not biocompatible, for example, copper.
-
公开(公告)号:US11211741B2
公开(公告)日:2021-12-28
申请号:US16809676
申请日:2020-03-05
Applicant: Greatbatch Ltd.
Inventor: Thomas Marzano , Keith W. Seitz , Christine A. Frysz , Marc Gregory Martino , Robert A. Stevenson
IPC: H01R13/52 , H01R13/719 , H01R13/426 , H01G4/35 , A61N1/375
Abstract: A hermetic feedthrough terminal pin connector for an active implantable medical device (AIMD) includes an electrical insulator hermetically sealed to an opening of an electrically conductive ferrule. A feedthrough terminal pin is hermetically sealed to and disposed through the insulator, the feedthrough terminal pin extending outwardly beyond the insulator on the inside of the casing of the AIMD. A circuit board is disposed on the inside of the casing of the AIMD. A terminal pin connector includes: an electrically conductive connector housing disposed on the circuit board, wherein the connector housing is electrically connected to at least one electrical circuit disposed on the circuit board; and at least one electrically conductive prong supported by the connector housing, the at least one prong contacting and compressed against the feedthrough terminal pin, the at least one prong making a removable electrical connection.
-
公开(公告)号:US11198014B2
公开(公告)日:2021-12-14
申请号:US16004569
申请日:2018-06-11
Applicant: Greatbatch Ltd.
Inventor: Robert A. Stevenson , Christine A. Frysz , Keith W. Seitz , Thomas Marzano , Marc Gregory Martino
IPC: A61N1/375 , H01G4/40 , H01G4/005 , A61N1/08 , H01R43/00 , C22C29/12 , H02G3/22 , H01G4/30 , B23K35/30 , H01G2/10 , H01G4/35 , H01R13/52 , H01G4/236 , B23K35/32 , H01R4/02 , H01R13/719 , B23K35/02 , A61N1/05 , H01G4/12 , A61N1/372 , B22F1/00 , B22F7/08
Abstract: A hermetically sealed filtered feedthrough assembly attachable to an AIMD includes an insulator hermetically sealing a ferrule opening of an electrically conductive ferrule with a gold braze. A co-fired and electrically conductive sintered paste is disposed within and hermetically seals at least one via hole extending in the insulator. At least one capacitor is disposed on the device side. An active electrical connection electrically connects a capacitor active metallization and the sintered paste. A ground electrical connection electrically connects the gold braze to a capacitor ground metallization, wherein at least a portion of the ground electrical connection physically contacts the gold braze. The dielectric of the capacitor may be less than 1000 k. The ferrule may include an integrally formed peninsula portion extending into the ferrule opening spatially aligned with a ground passageway and metallization of an internally grounded feedthrough capacitor. The sintered paste may be of substantially pure platinum.
-
公开(公告)号:US11071858B2
公开(公告)日:2021-07-27
申请号:US16827171
申请日:2020-03-23
Applicant: Greatbatch Ltd.
Inventor: Robert A. Stevenson , Christine A. Frysz , Thomas Marzano , Keith W. Seitz , Marc Gregory Martino
IPC: A61N1/08 , H01G4/005 , H01G4/30 , H01G4/35 , A61N1/375 , H01G4/236 , H01G4/12 , H03H1/00 , A61N1/37
Abstract: A hermetically sealed filtered feedthrough assembly attachable to an AIMD includes an insulator hermetically sealing a ferrule opening of an electrically conductive ferrule with a gold braze. A co-fired and electrically conductive sintered paste is disposed within and hermetically seals at least one via hole extending in the insulator. At least one capacitor is disposed on the device side. An active electrical connection electrically connects a capacitor active metallization and the sintered paste. A ground electrical connection electrically connects the gold braze to a capacitor ground metallization, wherein at least a portion of the ground electrical connection physically contacts the gold braze. The dielectric of the capacitor may be less than 1000 k. The ferrule may include an integrally formed peninsula portion extending into the ferrule opening spatially aligned with a ground passageway and metallization of an internally grounded feedthrough capacitor. The sintered paste may be of substantially pure platinum.
-
8.
公开(公告)号:US20200185662A1
公开(公告)日:2020-06-11
申请号:US16788679
申请日:2020-02-12
Applicant: Greatbatch Ltd.
Inventor: Robert S. Rubino , Keith W. Seitz , Xiaohong Tang , Todd C. Sutay , Brian P. Hohl , Holly Noelle Moschiano , Biswa P. Das , Afsar Ali , Sourabh Biswas , Gary Freitag , David Dianetti , Ho-Chul Yun , Thomas Marzano
IPC: H01M2/02 , H01M2/04 , H01M2/06 , H01M10/0525 , H01M4/131
Abstract: A miniature electrochemical cell having a total volume that is less than 0.5 cc is described. The cell casing is formed by joining two ceramic casing halves together. One or both casing halves are machined from ceramic to provide a recess that is sized and shaped to contain the electrode assembly. The opposite polarity terminals are metal feedthroughs, such as of gold, and are formed by brazing gold into openings machined into one or both of ceramic casing halves. A thin film metallization, such as of titanium, contacts an edge periphery of each ceramic casing half. The first ceramic casing half is moved into registry with the second ceramic casing half so that the first and second ring-shaped metallizations contact each other. Then, a laser welds through one of the casing halves being a substantially transparent ceramic, for example sapphire, to braze the first and second ring-shaped metallizations to each other to thereby join the first and second casing halves together to form a casing housing the electrode assembly. A solid electrolyte (LixPOyNz) activates the electrode assembly.
-
公开(公告)号:US10587073B2
公开(公告)日:2020-03-10
申请号:US15628741
申请日:2017-06-21
Applicant: Greatbatch Ltd.
Inventor: Thomas Marzano , Keith W. Seitz , Michael F. Scalise
IPC: H01R13/52 , H01G4/35 , A61N1/375 , H01R13/426 , H01R13/719
Abstract: A feedthrough filter capacitor assembly comprising a terminal pin connector is described. The terminal pin connector is designed to facilitate an electrical connection between the terminal pin comprising a multitude of compositions to a circuit board of an implantable medical device. The terminal pin connector comprises a clip portion positioned within a connector housing. The connector clip mechanically attaches to the terminal pin of the feedthrough with at least one prong and an exterior surface of the connector housing electrically contacts the circuit board, creating an electrical connection therebetween. The connector housing comprises a material that is conducive to a weld or solder attachment process to the circuit board. The feedthrough filter capacitor assembly is particularly useful for incorporation into implantable medical devices such as cardiac pacemakers, cardioverter defibrillators, and the like, to decouple and shield internal electronic components of the medical device from undesirable electromagnetic interference (EMI) signals.
-
公开(公告)号:US20200030613A1
公开(公告)日:2020-01-30
申请号:US16578476
申请日:2019-09-23
Applicant: Greatbatch Ltd.
Inventor: Robert A. Stevenson , Thomas Marzano , Keith W. Seitz , Christine A. Frysz , Dallas J. Rensel , Brian P. Hohl
IPC: A61N1/375 , A61N1/05 , B23K35/30 , A61N1/08 , H01R43/00 , H01G4/35 , C22C29/12 , H01G4/12 , H01G2/10 , H01G4/005 , H02G3/22 , H01G4/30 , C04B37/02 , C04B35/645 , B32B18/00
Abstract: A method for manufacturing a singulated feedthrough insulator for a hermetic seal of an active implantable medical device (AIMD) is described. The method begins with forming a green-state ceramic bar with a via hole filled with a conductive paste. The green-state ceramic bar is dried to convert the paste to an electrically conductive material filling via hole and then subjected to a pressing step. Following pressing, a green-state insulator is singulated from the green-state ceramic bar. The singulated green-state insulator in next sintered to form an insulator that is sized and shaped for hermetically sealing to close a ferrule opening. The thusly produced feedthrough is suitable installation in an opening in the housing of an active implantable medical device.
-
-
-
-
-
-
-
-
-