IP Library Granted Patent US 12691290
Granted Patent B2
US 12691290 · App. 18/565,152 · Granted Jul 28, 2026

Implantable medical device, implant communication system and communication method

Inventor: Thomas Doerr (Berlin, DE)
Assignee: BIOTRONIK SE & Co. KG
A61N1/37229A61N1/37235A61N1/37252A61N1/3754
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Quick Facts
Patent No.
US 12691290
App. No.
18/565,152
Granted
Jul 28, 2026
Kind
B2
Abstract

The invention relates to an implantable medical device, in particular a diagnostic monitoring device, a pacemaker, a defibrillator and/or a neuro-stimulator, comprising a first wireless communication interface, operating in a first frequency band reserved for medical implants, a second wireless communication interface, operating in a second frequency band supported by consumer mobile communications devices, in particular smartphones and/or tablet computing devices, and a multi-band antenna connected to the first wireless communication interface and the second wireless communication interface, wherein the multi-band antenna is configured to operate in the first frequency band reserved for medical implants and in the second frequency band supported by consumer mobile communications devices. The invention further relates to an implant communication system, a method for updating an executable code of an implantable medical device and a computer program.

Claims (21)

1 . Implantable medical device, comprising:

a first wireless communication interface, operating in a first frequency band reserved for medical implants;

a second wireless communication interface, operating in a second frequency band supported by consumer mobile communications devices; and

a multi-band antenna connected to the first wireless communication interface and the second wireless communication interface, wherein the multi-band antenna is configured to operate in the first frequency band reserved for medical implants and in the second frequency band supported by consumer mobile communications devices.

2 . Implantable medical device of claim 1 , wherein the first wireless communication interface and the second wireless communication interface are arranged in a metallic housing of the implantable medical device.

3 . Implantable medical device of claim 2 , wherein the multi-band antenna is embedded in a non-metallic header of the implantable medical device.

4 . Implantable medical device of claim 3 , wherein the first wireless communication interface is connected to the multi-band antenna via a first antenna feed led via a first feedthrough from the metallic housing to the non-metallic header, and wherein the second wireless communication interface is connected to the multi-band antenna via a second antenna feed led via a second feedthrough from the metallic housing to the non-metallic header.

5 . Implantable medical device of claim 4 , wherein the first wireless communication interface comprises a first radio and a first matching network configured to match a load impedance of the first radio to a combined input impedance of the first antenna feed and the multi-band antenna, and wherein the second wireless communication interface comprises a second radio and a second matching network configured to match a load impedance of the second radio to a combined input impedance of the second antenna feed and the multi-band antenna.

6 . Implantable medical device of claim 3 , wherein the first wireless communication interface comprises a first radio, wherein the second wireless communication interface comprises a second radio, and wherein the first wireless communication interface and the second wireless communication interface are connected to a third matching network arranged in the metallic housing, said third matching network being configured to match a load impedance of the first radio and/or the second radio to a combined input impedance of the first antenna feed and the multi-band antenna and/or the second antenna feed and the multi-band antenna.

7 . Implantable medical device of claim 6 , wherein the third matching network is connected to the multi-band antenna via a single antenna feed led via a single feedthrough from the metallic housing to the non-metallic header.

8 . Implantable medical device of claim 6 , wherein the third matching network is at least partially arranged in the non-metallic header of the implantable medical device.

9 . Implantable medical device of claim 6 , wherein the third matching network is part of the multi-band antenna.

10 . Implantable medical device of claim 3 , wherein the non-metallic header is arranged on an outer surface of the metallic housing and is hermetically sealed against the metallic housing.

11 . Implantable medical device of claim 1 , wherein the first wireless communication interface is configured to operate in a MICS-band, and wherein the second wireless communication interface is configured to operate in a Bluetooth, Bluetooth Low Energy and/or Bluetooth Mesh-band.

12 . Implant communication system, comprising:

the implantable medical device of claim 1 ;

a programmer configured to communicate with the multi-band antenna of the implantable medical device in a first frequency band reserved for medical implants; and

a consumer mobile communication device configured to communicate with the multi-band antenna of the implantable medical device in a second frequency band supported by consumer mobile communications devices.

13 . Computer implemented method for communicating, comprising the steps of:

communicating between an implantable medical device and an external communication device while both the implantable medical device and the external communication are operating within a communication network environment including a first wireless communication interface, operating in a first frequency band reserved for medical implants, a second wireless communication interface, operating in a second frequency band supported by consumer mobile communications devices, wherein the implantable medical device includes a multi-band antenna connected to the first wireless communication interface and the second wireless communication interface, wherein the multi-band antenna communicates with a programmer in the first frequency band reserved for medical implants, and wherein the multi-band antenna communicates with the consumer mobile communications device in the second frequency band supported by consumer mobile communications devices.

14 . Computer program with program code to perform the method of claim 13 when the computer program is executed on a computer.