IP Library Granted Patent US 10,639,112
Granted Patent B2
US 10,639,112 · App. 16/260,249 · Granted May 5, 2020

Infrared signal based position recognition system for use with a robot-assisted surgery

Inventors: Robert J. LeBoeuf, II (Salem, NH); Zachary Olenio (Derry, NH); James Yau (Methuen, MA); Neil R. Crawford (Chandler, AZ)
Assignee: Globus Medical, Inc.
A61B34/30A61B5/064A61B34/20A61B90/96A61B90/98G01S5/16A61B17/17A61B90/11A61B2017/00876A61B2034/2051A61B2034/2055A61B2034/2072A61B2090/034A61B2090/0811A61B2090/376A61B2090/3762A61B2090/3937A61B2090/3945A61B2560/0437B25J9/1697
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Quick Facts
Patent No.
US 10,639,112
App. No.
16/260,249
Granted
May 5, 2020
Kind
B2
Abstract

An improved device for regenerating an infrared signal transmitted over the air for use in detecting a 3-dimensional position of an object. The regeneration device includes an infrared signal transmitter and detector that receives from the object a responsive infrared signal in response to the infrared signal transmitted by the transmitter. A low pass filter receives the responsive infrared signal from the detector and outputs a low-pass filtered signal. A comparator compares the output of the infrared signal detector and output of the low pass filter and generates an output representing a logic state based on the comparison.

Claims (28)

1. A device for regenerating an infrared signal transmitted over the air for use in detecting a 3-dimensional position of an object, comprising:

an infrared signal transmitter that transmits an infrared signal over the air towards an object whose position is to be determined;

an infrared signal detector that receives from the object a responsive infrared signal in response to the transmitted infrared signal;

a low pass filter that receives the responsive infrared signal from the detector and outputs a filtered signal; and

a comparator that generates a comparator output representing a logic state based on a first input receiving the responsive infrared signal from the infrared signal detector and a second input receiving the filtered signal from the low pass filter,

an amplifier coupled between the infrared signal detector and the low pass filter and operable to generate an amplified responsive infrared signal; and

a diode connected between the amplifier and the low pass filter to reduce the voltage of the amplified responsive infrared signal by a predetermined amount.

2. The device of claim 1 , wherein the infrared signal detector is configured to receive a reflection of the infrared signal transmitted by the infrared signal transmitter as the responsive infrared signal.

3. The device of claim 1 , wherein the diode has a forward bias voltage of 0.4 Volt or less.

4. The device of claim 1 , wherein the diode includes a Schottky diode.

5. The device of claim 1 , further comprising a diode connected between the amplifier and the low pass filter, wherein the low pass filter includes a capacitor coupled between the diode and ground.

6. The device of claim 1 , wherein the low pass filter includes:

a voltage divider having first and second resistors connected in series between the output of the infrared signal detector and ground, a node between the first and second resistors defining an output of the voltage divider;

a capacitor coupled between the voltage divider output and ground.

7. The device of claim 1 , further comprising a signal processor adapted to receive the comparator output and determine a 3-dimensional position of the object.

8. An infrared signal based position recognition system for use with a robot-assisted surgery comprising:

an infrared signal transmitter that transmits an infrared signal over the air towards an object whose position is to be determined;

an infrared signal receiver that receives from the object a responsive infrared signal in response to the transmitted infrared signal;

a low pass filter that receives the responsive infrared signal from the infrared signal receiver and outputs a filtered signal;

a comparator that generates a comparator output representing a logic state based on a first input receiving the responsive infrared signal and a second input receiving the filtered signal from the low pass filter;

a signal processor adapted to receive the comparator output and determine a 3-dimensional position of the object,

an amplifier coupled between the infrared signal receiver and the low pass filter and operable to generate an amplified responsive infrared signal; and

a diode connected between the amplifier and the low pass filter to reduce the voltage of the amplified responsive infrared signal by a predetermined amount.

9. The position recognition system of claim 8 , further comprising an amplifier coupled between the infrared signal receiver and the low pass filter.

10. The position recognition system of claim 8 , further comprising a diode connected between the amplifier and the low pass filter, wherein the low pass filter includes a capacitor coupled between the diode and ground.

11. The position recognition system of claim 8 , wherein the low pass filter includes:

a voltage divider having first and second resistors connected in series between the output of the infrared signal receiver and ground, a node between the first and second resistors defining an output of the voltage divider;

a capacitor coupled between the voltage divider output and ground.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2019
From: LEBOEUF, ROBERT J., II; OLENIO, ZACHARY; YAU, JAMES; CRAWFORD, NEIL R.
To: GLOBUS MEDICAL, INC.
Reel/Frame 048162/0799 →
Continuity (7)
Division 15135658 · Apr 22, 2016
Continuation In Part 15095883 · Apr 11, 2016
Continuation In Part 14062707 · Oct 24, 2013
Continuation In Part 13924505 · Jun 21, 2013
Provisional Application 61662702 · Jun 21, 2012
Provisional Application 61800527 · Mar 15, 2013
Related Publication 20190239964A1 · Aug 8, 2019