IP Library Granted Patent US 11,579,019
Granted Patent B2
US 11,579,019 · App. 16/943,411 · Granted Feb 14, 2023

Wireless energy-harvesting sensor probe

Inventors: Srikrishna Sitaraman (Fremont, CA); Michael Paul Pacheco (San Francisco, CA); Cristian S. Regus (Union City, CA)
Assignee: TE Connectivity Solutions GmbH
G01K1/024G01K13/00G01K2207/06G01K2215/00
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Quick Facts
Patent No.
US 11,579,019
App. No.
16/943,411
Granted
Feb 14, 2023
Kind
B2
Abstract

A battery-free sensor probe and system for measuring the temperature of food The sensor probe includes a probe portion and a handle. The probe portion has a temperature sensor, a circuit board and a radio frequency identification device. The handle has an antenna connected to radio frequency identification device and the circuit board. The sensor probe harvests energy from a radio frequency transmitter positioned near the sensor probe.

Claims (20)

1. A battery-free sensor probe for measuring the temperature of food, the sensor probe comprising:

a probe portion having a temperature sensor, a circuit board and a near field communication radio frequency identification device;

a handle having an antenna connected to the near field communication radio frequency identification device and the circuit board, the antenna being a nonplanar device; and

a thermal isolation device that is provided to thermally insulate the circuit board from the antenna;

wherein the sensor probe harvests energy from a near field communication radio frequency transmitter positioned near the sensor probe.

2. The sensor probe as recited in claim 1 , wherein the antenna has three planar members which intersect to form a triangular cross-section.

3. The sensor probe as recited in claim 1 , wherein the antenna has four planar members which intersect to form a square cross-section.

4. The sensor probe as recited in claim 1 , wherein the temperature sensor and the near field communication radio frequency identification device are located on the circuit board.

5. The sensor probe as recited in claim 1 , wherein the thermal isolation device is a capacitor.

6. The sensor probe as recited in claim 1 , wherein a diameter of the probe portion is equal to or less than 4 mm.

7. A system for measuring the temperature of food in an oven, the system comprising:

a battery-free sensor probe configured to be inserted into the food, the battery-free sensor probe having a circuit board, a near field communication radio frequency identification device and a nonplanar antenna which is spaced from the near field communication radio frequency identification device by a thermal isolation device; and

a near field communication radio frequency transmitter positioned in the oven, the near field communication radio frequency transmitter utilizing energy from the oven to communicate and power the near field communication radio frequency identification device;

wherein the near field communication radio frequency transmitter sends a signal to the near field communication radio frequency identification device of the battery-free sensor probe to communicate with and power the battery-free sensor probe.

8. The system as recited in claim 7 , wherein the near field communication radio frequency transmitter has a reader electronics board which is positioned in the a wall of the oven and an antenna positioned inside the cavity of the oven.

9. The system as recited in claim 7 , wherein the near field communication radio frequency transmitter has a reader antenna which is positioned in an oven rack positioned in the oven.

10. The system as recited in claim 7 , wherein the nonplanar antenna of the sensor probe is provided in a handle of the sensor probe.

11. The system as recited in claim 10 , wherein the sensor probe has a probe portion having a temperature sensor, the circuit board and the near field communication radio frequency identification device, and the antenna is connected to the near field communication radio frequency identification device and the circuit board.

12. The system as recited in claim 10 , wherein the antenna has three planar members which intersect to form a triangular cross-section.

13. The system as recited in claim 10 , wherein the antenna has four planar members which intersect to form a square cross-section.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2022
From: SITARAMAN, SRIKRISHNA; PACHECO, MICHAEL PAUL; REGUS, CRISTIAN S.
To: TE CONNECTIVITY SOLUTIONS GMBH
Reel/Frame 061684/0538 →
MERGER Recorded Jun 7, 2022
From: TE CONNECTIVITY SERVICES GMBH
To: TE CONNECTIVITY SOLUTIONS GMBH
Reel/Frame 060305/0923 →
Continuity (2)
Provisional Application 62887012 · Aug 15, 2019
Related Publication 20210048347A1 · Feb 18, 2021
Cited By (1)
US 1,101,580