IP Library › Granted Patent US 11,819,018
Granted Patent B2
US 11,819,018 · App. 17/641,409 · Granted Nov 21, 2023

Rodent trap

Inventor: Ulrik Holst-Pedersen (Birkeroed, DK)
A01M23/30A01M23/245G01D5/142
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Quick Facts
Patent No.
US 11,819,018
App. No.
17/641,409
Granted
Nov 21, 2023
Kind
B2
Abstract

A rodent trap is disclosed comprising a base and a kill bar, wherein the kill bar is pivotably connected to the base, a trigger member pivotably connected to the base and arranged between the base and the kill bar such that when the trigger member is activated the kill bar is released and traps or kills a rodent, the rodent trap further comprises a sensor configured to detect at least three different distances between the trigger member and the base. A rodent trap system is disclosed and a related method for determining a ready state, a sprung empty state and a caught state of a rodent trap.

Claims (40)

1. A rodent trap comprising:

a base,

a kill bar, wherein the kill bar is pivotably connected to the base,

a trigger member, wherein the trigger member is pivotably connected to the base and arranged between the base and the kill bar such that, when the trigger member is activated, the kill bar is released and traps or kills a rodent, and

a sensor configured to detect at least three different distances between the trigger member and the base: a first distance associated with a ready state of the rodent trap, a second distance associated with a sprung empty state of the rodent trap, and a third distance associated with a caught state of the rodent trap, and

further comprising a wireless transmitter in communication with the sensor and configured to transmit to a receiver the ready state, the sprung empty state, or the caught state of the rodent trap associated with said first distance, said second distance, or said third distance.

2. The rodent trap according to claim 1 , wherein the trigger member is configured to assume:

a first position when the kill bar is in an armed position in the ready state of the rodent trap,

a second position when the kill bar is in an unloaded position and in abutment with the base corresponding to the sprung empty state of the rodent trap,

wherein the trigger member is movable relative the kill bar in a direction towards the base from the second position to a third position while the kill bar is in said unloaded position,

whereby a gap arranged in between the second and third positions of the trigger member accommodates part of the rodent when trapped in the rodent trap, in the caught state thereof.

3. The rodent trap according to claim 2 , wherein the trigger member is resiliently movable from the second position to the third position upon application of a force on the trigger member towards the base, whereby the trigger member is biased to move from the third position to the second position when the force is removed.

4. The rodent trap according to claim 2 , wherein the kill bar moves the trigger member from the first position to the second position when the kill bar moves from the armed position to the unloaded position.

5. The rodent trap according to claim 2 , wherein the sensor is configured to relate the first distance of the at least three different distances to said first position and the ready state of the rodent trap.

6. The rodent trap according to claim 2 , wherein the sensor is configured to relate the second distance of the at least three different distances to said third position and the caught state of the rodent trap.

7. The rodent trap according to claim 2 , wherein the sensor is configured to relate the third distance of the at least three different distances to said second position and the sprung empty state of the rodent trap.

8. The rodent trap according claim 1 , wherein the sensor comprises a magnetic sensor.

9. The rodent trap according to claim 8 , wherein the magnetic sensor comprises a Hall effect sensor or a reed switch.

10. The rodent trap according to claim 1 , wherein said sensor comprises a first sensor component arranged on the base and a second sensor component arranged on the trigger member and wherein said sensor detects a distance between the first and second sensor components.

11. A rodent trap comprising:

a base,

a kill bar, wherein the kill bar is pivotably connected to the base,

a trigger member, wherein the trigger member is pivotably connected to the base and arranged between the base and the kill bar such that, when the trigger member is activated, the kill bar is released and traps or kills a rodent, and

a sensor configured to detect at least three different distances between the trigger member and the base,

wherein the sensor comprises a magnetic sensor and

wherein the magnetic sensor comprises a magnet and a magnetic sensor unit, wherein the trigger member comprises the magnet, and the base comprises the magnetic sensor unit, wherein the magnetic sensor is configured to detect at least three different separations between the magnet and the magnetic sensor unit corresponding to said at least three different distances.

12. The rodent trap according to claim 11 , wherein the trigger member comprises an extension, wherein the extension comprises the magnet.

13. A method for determining a ready state, a sprung empty state and a caught state of a rodent trap comprising a base, a kill bar pivotably connected to the base and a trigger member pivotably connected to the base and arranged between the base and the kill bar such that when the trigger member is activated the kill bar is released and traps or kills a rodent, the method comprising:

detecting at least three different distances between the trigger member and the base using a sensor: a first distance associated with the ready state of the rodent trap, a second distance associated with the sprung empty state of the rodent trap, and a third distance associated with the caught state of the rodent trap, and

transmitting the ready state, the sprung empty state, or the caught state of the rodent trap associated with said first distance, said second distance, or said third distance to a receiver.

14. The method according to claim 13 , comprising

detecting a first position of the trigger member when the kill bar is in an armed position in the ready state of the rodent trap, and

relating the first distance of the at least three different distances to said first position and the ready state of the rodent trap.

15. The method according to claim 13 , comprising:

detecting a second position of the trigger member when the kill bar is in an unloaded position and in abutment with the base corresponding to the sprung empty state of the rodent trap, and

relating the third trigger distance of the at least three different distances to said second position and the sprung empty state of the rodent trap.

16. The method according to claim 15 , comprising:

detecting a third position of the trigger member, whereupon the trigger member is movable relative the kill bar in a direction towards the base from the second position to said third position while the kill bar is in said unloaded position,

whereby a gap arranged in between the second and third positions of the trigger member accommodates part of the rodent when trapped in the rodent trap, in the caught state thereof, and

relating the second distance of the at least three different distances to said third position and the caught state of the rodent trap.

Priority Claims (1)
SE 1930326-2 · Oct 11, 2019 · national
Continuity (1)
Related Publication 20220295778A1 · Sep 22, 2022
Cited By (1)
US 1,118,810