Patent classifications
A01M23/20
Environmentally-friendly device for trapping animals
An environmentally friendly device for trapping animals comprising a collection container (3) comprising an upper opening (3a), an intermediate supporting frame (4), forming a drop duct (8) and such that it at least partly closes the opening (3a) of said collection container (3), a closing guard (5), which can be superposed on the intermediate supporting frame (4), comprising an inlet (6) and a compartment forming a trapping corridor (7), a trapping mechanism (9) supported by the frame (4) and positioned over the drop duct (8), comprising a rotary surface (10) having a main direction of extension (X) extending along a longitudinal axis (10a) coinciding with the direction of entry into the trapping corridor (7), being designed to close the top of the drop duct (8) and to form the treadable surface of the trapping corridor (7). The trapping mechanism (9) comprises two plates (14a, 14b) connected to each other by the rotary surface (10), which is positioned orthogonally to each of them. Each time it is activated the rotary surface and the two plates (10) complete a 180° rotation about an axis (9a) of symmetry which is transversal to said longitudinal axis (10a) coinciding with the direction of entry into the trapping corridor (7).
Environmentally-friendly device for trapping animals
An environmentally friendly device for trapping animals comprising a collection container (3) comprising an upper opening (3a), an intermediate supporting frame (4), forming a drop duct (8) and such that it at least partly closes the opening (3a) of said collection container (3), a closing guard (5), which can be superposed on the intermediate supporting frame (4), comprising an inlet (6) and a compartment forming a trapping corridor (7), a trapping mechanism (9) supported by the frame (4) and positioned over the drop duct (8), comprising a rotary surface (10) having a main direction of extension (X) extending along a longitudinal axis (10a) coinciding with the direction of entry into the trapping corridor (7), being designed to close the top of the drop duct (8) and to form the treadable surface of the trapping corridor (7). The trapping mechanism (9) comprises two plates (14a, 14b) connected to each other by the rotary surface (10), which is positioned orthogonally to each of them. Each time it is activated the rotary surface and the two plates (10) complete a 180° rotation about an axis (9a) of symmetry which is transversal to said longitudinal axis (10a) coinciding with the direction of entry into the trapping corridor (7).
Cage trap with over-center set mechanism
A cage-type animal trap has an over-center set mechanism for holding open a door for closing the trap access opening. The set mechanism includes a pivotally mounted set lever coupled to the door of the trap by an actuating cable. A bait pedal is movably mounted inside the trap with a trip rod and link assembly secured to the pedal and to the set mechanism so that when an animal enters the trap, the weight of the animal moves the pedal, causing the trip rod and link assembly to actuate the set mechanism. Upon actuation, the set lever pivots past its over-center position to allow movement of the cable which enables the door to move from an opened position to a closed position to trap the animal inside the trap.
Systems and methods for animal trapping
A trap for capturing a plurality of animals is provided. The trap can comprise an enclosure having an opening through which the at least one animal can pass to enter the enclosure. A gate, movable between an open position and a closed position, is positioned therein the at least one opening and can be selectively moved from the open position to the closed position when desired. Methods are also provided for capturing at least one animal by providing a trap with a gate, positioning the gate in an open position, monitoring the trap until at least one animal has entered the trap, and remotely triggering the gate to move from the open position to a closed position.
Systems and methods for animal trapping
A trap for capturing a plurality of animals is provided. The trap can comprise an enclosure having an opening through which the at least one animal can pass to enter the enclosure. A gate, movable between an open position and a closed position, is positioned therein the at least one opening and can be selectively moved from the open position to the closed position when desired. Methods are also provided for capturing at least one animal by providing a trap with a gate, positioning the gate in an open position, monitoring the trap until at least one animal has entered the trap, and remotely triggering the gate to move from the open position to a closed position.
Remote-controlled cage trap door-opening mechanism
A remotely activated door-opening mechanism is provided for a cage trap having an animal enclosure, preferably a cage trap as disclosed in U.S. Publ. No. US2008/0115405. The mechanism is mounted outside the enclosure of the trap and is preferably remotely activated by an IR or RF transmitter to open a door of the trap and release a trapped animal when the operator is at a safe distance away. The mechanism may also be manually set with a time delay and may be associated with either a main entry door to the trap or with a secondary escape door located at an opposite end of the trap.
Remote-controlled cage trap door-opening mechanism
A remotely activated door-opening mechanism is provided for a cage trap having an animal enclosure, preferably a cage trap as disclosed in U.S. Publ. No. US2008/0115405. The mechanism is mounted outside the enclosure of the trap and is preferably remotely activated by an IR or RF transmitter to open a door of the trap and release a trapped animal when the operator is at a safe distance away. The mechanism may also be manually set with a time delay and may be associated with either a main entry door to the trap or with a secondary escape door located at an opposite end of the trap.
ELECTROMECHANICAL TRAP FOR SMALL ANIMALS
An electromechanical trap for small animals having a container attached to a module whose upper side is a swing frame which includes a solar panel. The module includes a tunnel with an open end and an access to let the animals to be caught enter and the floor includes a first fixed part, a second part, which has a missing section which coincides with the cutting on the module floor and a third fixed part where there is an appropriate vessel for the bait. First part and missing section of the second part have a tilting lamina as of at least an axis connected to the side ends of the tunnel. The tunnel has several sensors which generate a beam whose interruption sends a signal captured by the microprocessor enabling a single exit, energizing the coil which, during a programmed time equals the polarity of the permanent magnet freeing the lamina whose end, as the result of the animal weight, goes violently down tilting over the axis and lifting the opposite end in an equal or higher angle of 45 degrees.
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Systems And Methods For Animal Trapping
A trap for capturing a plurality of animals is provided. The trap can comprise an enclosure having an opening through which the at least one animal can pass to enter the enclosure. A gate, movable between an open position and a closed position, is positioned therein the at least one opening and can be selectively moved from the open position to the closed position when desired. Methods are also provided for capturing at least one animal by providing a trap with a gate, positioning the gate in an open position, monitoring the trap until at least one animal has entered the trap, and remotely triggering the gate to move from the open position to a closed position.
Systems And Methods For Animal Trapping
A trap for capturing a plurality of animals is provided. The trap can comprise an enclosure having an opening through which the at least one animal can pass to enter the enclosure. A gate, movable between an open position and a closed position, is positioned therein the at least one opening and can be selectively moved from the open position to the closed position when desired. Methods are also provided for capturing at least one animal by providing a trap with a gate, positioning the gate in an open position, monitoring the trap until at least one animal has entered the trap, and remotely triggering the gate to move from the open position to a closed position.