IP Library Patent Application 12414974
Patent Application
App. No. 12/414,974

System And Method For Wirelessly Powering Medical Devices

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Quick Facts
Patent No.
US None
App. No.
12/414,974
Abstract

A system and method for the wirelessly charging of a power source of a pulse oximeter. The pulse oximeter may include an inductively coupled conductor. The inductively coupled conductor may be coupled to the power source and the inductively coupled conductor may wirelessly receive an electromagnetic charging signal. Based on the received signal, the inductively coupled conductor may at least partially recharge the power source.

Claims (38)

1 . A pulse oximeter comprising:

a power source adapted to power the pulse oximeter; and

an inductively coupled conductor adapted to receive a wireless electromagnetic charging signal and charge the power source at least in part via the wireless electromagnetic charging signal.

2 . The pulse oximeter, as set forth in claim 1 , comprising a control circuit capable of transmitting an identification signal to initialize the transmission of the wireless electromagnetic charging signal.

3 . The pulse oximeter, as set forth in claim 2 , wherein the control circuit is capable of monitoring an amount of charge for the power source and transmitting a power transmission request signal for generating the wireless electromagnetic charging signal when the power source reaches a threshold charge level.

4 . The pulse oximeter, as set forth in claim 2 , wherein the control circuit is capable of monitoring an amount of charge for the power source and transmitting a halt power transmission signal for stopping the generation of the wireless electromagnetic charging signal when the power source reaches a threshold charge level.

5 . The pulse oximeter, as set forth in claim 2 , wherein the control circuit is capable of generating an error indication message if the power source reaches a threshold charge level.

6 . The pulse oximeter, as set forth in claim 5 , comprising a display capable of displaying the error indication message.

7 . The pulse oximeter, as set forth in claim 1 , wherein the inductively coupled conductor comprises a solenoid.

8 . The pulse oximeter, as set forth in claim 1 , comprising a resonant inductive charging device comprising the inductively coupled conductor and at least one capacitor coupled to the inductively coupled conductor.

9 . A wireless inductive power system, comprising:

a pulse oximeter comprising:

a power source adapted to power the pulse oximeter; and

a charging device capable of receiving an electromagnetic charging signal and charging the power source at least in part via the electromagnetic charging signal; and

a charging station capable of generating and wirelessly transmitting the electromagnetic charging signal to the charging device.

10 . The wireless inductive power system of claim 9 , wherein the charging device comprises a resonant inductive charging device comprising a solenoid and at least one capacitor coupled to the solenoid.

11 . The wireless inductive power system of claim 9 , wherein the charging station comprises a power transmitter comprising a resonant inductive charging device comprising a solenoid and at least one capacitor coupled to the solenoid.

12 . The wireless inductive power system of claim 9 , wherein the pulse oximeter comprises a control circuit capable of:

transmitting an identification signal to initialize the transmission of the wireless electromagnetic charging signal;

monitoring an amount of charge for the power source and transmitting a power transmission request signal for generating the wireless electromagnetic charging signal when the power source reaches a first threshold charge level; and

monitoring the amount of charge for the power source and transmitting a halt power transmission signal for stopping the generation of the wireless electromagnetic charging signal when the power source reaches a second threshold charge level.

13 . The wireless inductive power system of claim 12 , wherein the charging station comprises a receiver capable of receiving the identification signal, the power transmission request, and the halt power transmission signal.

14 . The wireless inductive power system of claim 13 , wherein the charging station comprises a processor capable of activating and deactivating the transmission of the electromagnetic charging signal based at least in part on each of the identification signal, the power transmission request, and/or the halt power transmission signal, and/or combinations thereof.

15 . The wireless inductive power system of claim 9 , wherein the pulse oximeter comprises:

a sensor comprising:

a light emitting diode capable of transmitting electromagnetic radiation; and

a photodetector capable of detecting the electromagnetic radiation and generating electrical signals based at least in part upon the detected electromagnetic radiation; and

a monitor coupled to the sensor, wherein the monitor is configured to measure physiological parameters of a patient based at least in part on the electronic signals generated by the sensor.

16 . A method comprising:

receiving a wireless electromagnetic charging signal in a pulse oximeter; and

charging a power source of the pulse oximeter at least in part via the wireless electromagnetic charging signal.

17 . The method of claim 16 , comprising tuning the wireless electromagnetic charging signal at the pulse oximeter based at least in part upon the natural resonance frequency of an inductively coupled conductor of the pulse oximeter.

18 . The method of claim 16 , comprising transmitting the wireless electromagnetic charging signal at least in part via a charging station external to the pulse oximeter.

19 . The method of claim 18 , comprising:

transmitting an identification signal from the pulse oximeter to initialize the transmission of the wireless electromagnetic charging signal;

monitoring an amount of charge for the power source at the pulse oximeter and transmitting a power transmission request signal from the pulse oximeter for generating the wireless electromagnetic charging signal when the power source reaches a first threshold charge level; and

monitoring the amount of charge for the power source at the pulse oximeter and transmitting a halt power transmission signal from the pulse oximeter for stopping the generation of the wireless electromagnetic charging signal when the power source reaches a second threshold charge level.

20 . The method of claim 19 , comprising receiving the identification signal, the power transmission request, and/or the halt power transmission signal at a charging station and modifying the transmission of the electromagnetic charging signal based at least in part on the identification signal, the power transmission request, and/or the halt power transmission signal at the charging station, and/or combinations thereof.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2012
From: NELLCOR PURITAN BENNETT LLC
To: COVIDIEN LP
Reel/Frame 029386/0230 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2009
From: PRICE, THOMAS
To: NELLCOR PURITAN BENNETT LLC
Reel/Frame 022599/0210 →