IP Library Granted Patent US 9,049,855
Granted Patent B2
US 9,049,855 · App. 13/680,527 · Granted Jun 9, 2015

Insect trap having an air-actuated damper

Inventor: Juan J. Rocha (Lake Forest, IL)
Assignee: Dynamic Solutions Worldwide, LLC.
A01M1/023A01M1/08
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Quick Facts
Patent No.
US 9,049,855
App. No.
13/680,527
Granted
Jun 9, 2015
Kind
B2
Abstract

A device for trapping insects includes a cover and a trap or cage that are disposed at opposite ends of a housing. A fan is disposed in the housing and oriented to direct an airstream through the housing and toward the trap. A damper is disposed in the airstream proximate the trap and includes two independently operable doors. Each door is biased toward a closed position and opens during operation of the fan. Insects in the proximity of the device are overpowered by the airflow and blow into the trap and retained therein by the airflow or the closed orientation of the damper doors. The trap removably cooperates with the housing to facilitate disposal of insects captured therein.

Claims (38)

1. An insect trap comprising:

a housing comprising:

a roof defined by an exterior surface and an interior surface;

a housing body depending downwardly below the roof, the housing body defined by an open top, an inner surface, and an open bottom; and

a cage removably attached to the open bottom of the housing body and defined by an open top, an inner surface, and a closed bottom;

a light source attached to the roof;

an attractant disposed on the inner surface of the housing body and configured to release carbon dioxide;

a first screen disposed across the open top of the housing body, the first screen having a plurality of passages that are each shaped to allow air and insects to pass through the first screen;

a second screen disposed across the open bottom of the housing body, the second screen having a plurality of passages that are each shaped to allow air and insects to pass through the second screen;

a fan assembly surrounded by the housing body and disposed between the first screen and the second screen, the fan assembly being supported by the inner surface of the housing body and including a rotatable fan blade configured to draw air through the housing in a direction from the first screen toward the second screen; and

a damper assembly secured to the housing body below the second screen, the damper assembly comprising:

a first and a second damper shield, each damper shield having a generally semi-circular planar shape defined by an arc connected at both ends by a straight edge;

a coupling arrangement that independently couples each of the first and second damper shields to the housing body such that each damper shield is rotatably attached to the housing body such that the first and second damper shields independently swing toward a closed position when the fan is off and swing toward an open position when the fan is on;

an at least one stop bar, the at least one stop bar being configured to limit rotation of at least one of the first and second damper shields so that less than 90 degrees is provided between the closed position and the open position of the at least one of the first and second damper shields and limiting rotation of the at least one of the first and second damper shields in an opening direction; and

a weighted rod coupled to each of the first damper shield and the second damper shield, each weighted rod positioned within a perimeter of the respective damper shield and the weighted rod extending substantially parallel to the straight edge of the respective damper shield and positioned relative to the coupling arrangement to bias the respective one of the first damper shield and the second damper shield toward the closed position.

2. An insect trap comprising:

a housing comprising:

a roof defined by an exterior surface and an interior surface;

a housing body depending downwardly below the roof, the housing body defined by an open top, an inner surface, and an open bottom; and

a cage removably attached to the open bottom of the housing body and defined by an open top, an inner surface, and a closed bottom;

a light source attached to the roof,

an attractant disposed on the inner surface of the housing body and configured to release carbon dioxide;

a first screen disposed across the open top of the housing body, the first screen having a plurality of passages that are each shaped to allow air and insects to pass through the first screen;

a second screen disposed across the open bottom of the housing body, the second screen having a plurality of passages that are each shaped to allow air and insects to pass through the second screen;

a fan assembly surrounded by the housing body and disposed between the first screen and the second screen, the fan assembly being supported by the inner surface of the housing body and including a rotatable fan blade configured to draw air through the housing in a direction from the first screen toward the second screen; and

a damper assembly secured to the housing body below the second screen, the damper assembly comprising:

a first and a second damper shield, each damper shield having a generally semi-circular planar shape defined by an arc connected at both ends by a straight edge;

a coupling arrangement that independently couples each of the first and second damper shields to the housing body such that each damper shield is rotatably attached to the housing body such that the first and second damper shields swing independently toward a closed position when the fan is off and swing toward an open position when the fan is on;

a first stop bar and a second stop bar, each stop bar being configured to limit rotation of a respective one of the first and second damper shields so that less than 90 degrees is provided between the closed position and the open position of each of the first and second damper shields; and

a weighted rod coupled to each of the first damper shield and the second damper shield, each weighted rod positioned within a perimeter of the respective damper shield and the weighted rod extending substantially parallel to the straight edge of the respective damper shield and positioned relative to the coupling arrangement to bias the respective one of the first damper shield and the second damper shield toward the closed position.

3. The insect trap of claim 2 , wherein the coupling arrangement includes a set of pivot pins and each pivot pin is disposed proximate a linear side of the generally semi-circular planar shape of a respective one of the first and the second damper shields.

4. The insect trap of claim 2 , wherein the attractant is a titanium dioxide material.

5. The insect trap of claim 2 , wherein the roof is transparent.

6. The insect trap of claim 2 , further comprising a twist mechanism between the cage and the housing body that allows the cage to be removed from the housing body and which seals a perimeter of the open bottom of the housing body when cage is secured thereto.

7. The insect trap of claim 2 , further comprising a mounting apparatus fixedly attached to the housing.

8. The insect trap of claim 7 wherein the mounting apparatus is a hanging hook attached to the roof.

9. The insect trap of claim 2 , further comprising a water tray disposed circumferentially on the exterior surface of the housing.

10. The insect trap of claim 2 wherein the first stop bar and the second stop bar limit rotation of the respective damper shield in an opening direction.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Nov 12, 2020
From: ARES CAPITAL CORPORATION
To: DYNAMIC SOLUTIONS WORLDWIDE, LLC
Reel/Frame 054348/0236 →
SECURITY INTEREST Recorded Nov 9, 2020
From: DYNAMIC SOLUTIONS WORLDWIDE, LLC
To: ARES CAPITAL CORPORATION, AS COLLATERAL AGENT
Reel/Frame 054359/0322 →
SECURITY INTEREST Recorded Dec 19, 2019
From: DYNAMIC SOLUTIONS WORLDWIDE, LLC
To: ARES CAPITAL CORPORATION, AS COLLATERAL AGENT
Reel/Frame 051335/0836 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2012
From: ROCHA, JUAN J.
To: DYNAMIC SOLUTIONS WORLDWIDE, LLC
Reel/Frame 029321/0439 →
Continuity (1)
Related Publication 20140137462A1 · May 22, 2014