EP1666091A2

An implantable device and communication integrated circuit implementable therein

Abstract

An implantable device and a wireless communication integrated circuit (IC) implementable in the implantable device for communicating with a remote unit, wherein the communication IC is capable of self-initializing, namely initial booting without requiring an external general booting program to force the booting process. The communications IC can download program instructions from the remote unit for the operation of the implantable device. Moreover, the implantable device and the communication IC provide for checking of the validity and integrity of any program instructions received from the remote unit for the desired operation of the implantable device. The implantable device and the communication IC therein have power-saving capability in order to extend the operation of the implantable device between battery charges. A further embodiment provides a robust communication IC, whereby signal distortion or interference between the analog and digital components collectively residing on the same communication IC is minimized or eliminated.

EP1666091A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 30 November 2025, 0.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

11 claims: 7 independent, 4 dependent

  1. 1
    An implantable device comprising:an RF transceiver;a digital processing unit comprising: a communication controller configured to independently initialize and enable the wireless communication operation of the implantable device with a remote unit, anda general purpose controller configured to receive program instructions from the remote unit for the operation of the implantable device.
  2. 4
    The implantable device of any one of claims 1 to 3, further comprising an internal ROM for providing parameters to the communication controller for independently initializing and enabling the wireless communication operation of the implantable device with the remote unit.
  3. 5
    The implantable device of any one of claims 1 to 4, further comprising a capture buffer coupled to the RF transceiver, wherein the capture buffer receives digitized communication signals from the RF transceiver and stores the digitized communication signals therein.
  4. 8
    The implantable device of any one of claims 5 to 7, further comprising a frame timing unit coupled to the capture buffer and the digital processing unit, wherein the frame timing unit synchronizes the operations of the capture buffer and the digital processing unit.
  5. 9
    The implantable device of any one of claims 1 to 8, further comprising a power control unit configured to provide power to a plurality of electronic components in the implantable device, wherein the power control unit selectively inactivates power delivery to at least one of the plurality of electronic components, when such at least one of the plurality of electronic components is not performing operations.
  6. 10
    A communication integrated circuit implementable in an electronic device, said communication integrated circuit comprising:an RF transceiver for transceiving analog communication signals;a capture buffer, communicating with the RF transceiver for predetermined periods of time, wherein the capture buffer receives digitized communication signals from the RF transceiver and stores the digitized communication signals therein;a digital processing unit, coupled to the capture buffer, for processing the digitized communication signals, wherein the digital processing unit is adapted to stop operating, when said RF transceiver and said capture buffer are communicating, for the predetermined periods of time, and wherein said RF transceiver, said capture buffer and said digital processing unit collectively reside on said communication integrated circuit.
  7. 11
    An implantable device having a wireless communication integrated circuit, comprising:an RF transceiver for transceiving analog communication signals;a capture buffer, communicating with the RF transceiver for predetermined periods of time, wherein the capture buffer receives digitized communication signals from the RF transceiver and stores the digitized communication signals therein;a digital processing unit, coupled to the capture buffer, for processing the digitized communication signals;a power distribution unit, controlled by the digital processing unit, for providing power to electronic components on the communication integrated circuit, wherein the digital processing unit by controlling the power distribution unit selectively removes power from the electronic components when said electronic components are not performing operations, thereby reducing power consumption in the implantable device.