IP Library Granted Patent US 12,075,766
Granted Patent B2
US 12,075,766 · App. 18/098,476 · Granted Sep 3, 2024

Pest monitoring system with conductive electrodes

Inventors: James W. Austin (Research Triangle Park, NC); Cheryl Ann Leichter (Durham, NC); Greggory Keith Storey (Cary, NC); Kenneth Scott Brown (Research Triangle Park, NC); Gregory Kent Thompson (Huntsville, AL); Thomas S. Rancour, II (Raleigh, NC); Timothy Robert Sloper (Mount Dora, FL)
Assignee: BASF Corporation
A01M1/026A01M25/002A01M31/002G01V3/02G01V3/06
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Quick Facts
Patent No.
US 12,075,766
App. No.
18/098,476
Granted
Sep 3, 2024
Kind
B2
Abstract

A pest monitoring system generally includes a circuit, wherein the circuit is initially in a first impedance state that is configured to change to a second impedance state due to pest activity, wherein the second impedance state is lower than the first impedance state.

Claims (41)

1. A pest sensing device, comprising:

a circuit having first and second electrodes attached to an electrically insulating material, wherein the electrically insulating material defines a base to which the first and second electrodes are attached, wherein the circuit is configured to change from a first impedance state to a second impedance state due to pest activity; and

a waterproof member configured to prevent moisture intrusion to the first and second electrodes prior to pest activity, wherein at least a portion of the waterproof member is removable by termites.

2. The pest sensing device of claim 1 , wherein at least a portion of the waterproof member is penetrable by termites.

3. The pest sensing device of claim 1 , wherein the waterproof member includes one or more points of interest configured to encourage pest exploitation.

4. The pest sensing device of claim 1 , further comprising:

a control unit within a waterproof housing, wherein the waterproof housing is separable from the waterproof member.

5. The pest sensing device of claim 4 , wherein the circuit is removably connected to the control unit via a connection mechanism.

6. The pest sensing device of claim 4 , wherein the waterproof member is removably connected to the waterproof housing via a connection mechanism.

7. A pest monitoring assembly, comprising:

a pest sensing circuit having first and second electrodes attached to an electrically insulating material;

a waterproof member configured to prevent moisture intrusion to the first and second electrodes prior to pest activity, wherein at least a portion of the waterproof member is penetrable by termites; and

a control unit within a waterproof housing that is separable from the waterproof member, wherein the control unit generates a signal when the pest sensing circuit changes from a first impedance state to a second impedance state due to pest activity.

8. The pest monitoring assembly of claim 7 , wherein at least a portion of the waterproof member is removable by pests.

9. The pest monitoring assembly of claim 7 , wherein the waterproof member includes one or more points of interest configured to encourage pest exploitation.

10. The pest monitoring assembly of claim 7 , wherein the pest sensing circuit is removably connected to the control unit via a connection mechanism.

11. The pest monitoring assembly of claim 7 , wherein the waterproof member is removably connected to the waterproof housing via a connection mechanism.

12. The pest monitoring assembly of claim 7 , wherein the first electrode is not in electrical contact with the second electrode prior to pest activity.

13. A pest monitoring system, comprising:

a pest sensing circuit and a waterproof member configured to prevent moisture intrusion to the pest sensing circuit prior to pest activity, wherein the pest sensing circuit includes first and second electrodes attached to an electrically insulating material, and wherein the waterproof member includes one or more points of interest configured to encourage pest exploitation;

a control unit within a waterproof housing that is separable from the waterproof member, wherein the control unit generates a signal when the circuit changes from a first impedance state to a second impedance state due to pest activity; and

a central station configured to receive the signal from the control unit,

wherein at least a portion of the waterproof member is removable by termites.

14. The pest monitoring system of claim 13 , wherein the signal is indicative of at least one of: a pest sensing circuit impedance, a report number, a battery voltage measurement, a signal strength of a last received acknowledgement, station low-battery condition information, or station low-signal strength information.

15. The pest monitoring system of claim 13 , wherein the control unit generates the signal based on at least one of: a pre-determined time interval, a request for the signal, or a change of impedance of the pest sensing circuit.

16. The pest monitoring system of claim 13 , wherein the signal is representative of a series of pest sensing circuit impedance measurements over a period of time.

17. The pest monitoring system of claim 13 , wherein the pest sensing circuit is removably connected to the control unit via a connection mechanism.

18. The pest monitoring system of claim 13 , wherein the waterproof member is removably connected to the waterproof housing via a connection mechanism.

19. The pest monitoring system of claim 13 , wherein the first electrode is in electrical contact with the second electrode prior to pest activity.

20. A pest monitoring system, comprising:

a) one or more waterproof stations comprising one or more circuit, wherein the one or more circuit monitors impedance;

b) one or more control units in communication with the one or more circuit, wherein the one or more control unit detects any change in impedance and generates a signal in response to a detected change in impedance;

c) one or more gateways in communication with the one or more control unit, wherein the one or more gateways receives the signal and serves as a packet forwarder to a network server; and

d) one or more application platform to receive the signal and interpret the change in impedance as indicative of a pest presence,

wherein the one or more waterproof stations includes a waterproof member configured to prevent moisture intrusion to the one or more circuit prior to pest activity, wherein at least a portion of the waterproof member is penetrable by termites.

21. The pest monitoring system of claim 20 , wherein the signal is indicative of at least one of: an impedance of the one or more circuits, a report number, a battery voltage measurement, a signal strength of a last received acknowledgement, station low-battery condition information, or station low-signal strength information.

22. The pest monitoring system of claim 20 , wherein the control unit generates the signal based on at least one of: a pre-determined time interval, a request for the signal, or a change of impedance of the pest sensing circuit.

23. The pest monitoring system of claim 20 , wherein the signal is representative of a series of impedance measurements of the one or more circuits over a period of time.

24. The pest monitoring system of claim 20 , wherein the one or more circuits are removably connected to the control unit via a connection mechanism.

25. The pest monitoring system of claim 20 , wherein the one or more control units is within a waterproof housing, and wherein the waterproof member is removably connected to the waterproof housing via a connection mechanism.

26. The pest monitoring system of claim 20 , wherein the one or more circuits includes a first electrode and a second electrode, and wherein the first electrode is in electrical contact with the second electrode prior to pest activity.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2024
From: AUSTIN, JAMES W.; LEICHTER, CHERYL ANN; STOREY, GREGGORY KEITH; BROWN, KENNETH SCOTT
To: BASF CORPORATION
Reel/Frame 067084/0320 →
Continuity (6)
Continuation 16570134 · Sep 13, 2019
Continuation 16028899 · Jul 6, 2018
Provisional Application 62670248 · May 11, 2018
Provisional Application 62544428 · Aug 11, 2017
Provisional Application 62529681 · Jul 7, 2017
Related Publication 20230148583A1 · May 18, 2023