Smart and multiple mouse trap

Information

  • Patent Grant
  • 7913447
  • Patent Number
    7,913,447
  • Date Filed
    Monday, March 23, 2009
    15 years ago
  • Date Issued
    Tuesday, March 29, 2011
    13 years ago
  • Inventors
  • Examiners
    • Ark; Darren W
    Agents
    • Altman & Martin
    • Martin; Steven K
Abstract
The Smart and Multiple Mouse Trap uses two ascendant walls that lead to the top of the mouse trap. On the top of the trap, there is a cylinder shaped wheel that will contain food. In order for the mouse to get the food, it must maneuver upward from one of the two ascendant walls. Then it will go through a one way door. Then as it tries to grab the food from the wheel, it will face the problem of the wheel spinning as well as no room to stand on, providing no stability due to gravity. Then the mouse will have to drop into the mouse trap. The removal of the contents inside the trap will be simply to open the right side door and dump it wherever. The mouse trap does not need to be reset when it traps a mouse.
Description
CROSS-REFERENCES TO RELATED APPLICATIONS

Not Applicable


STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT

Not Applicable


REFERENCE TO A SEQUENCE LISTING, A TABLE, OR A COMPUTER PROGRAM LISTING COMPACT DISK APPENDIX

Not Applicable


BACKGROUND OF THE INVENTION
Field of the Invention

The present invention relates to mouse traps.


BRIEF SUMMARY OF THE INVENTION

The present invention is a mouse trap that holds more than one mouse. The trap has a rectangular bottom. Two ascendant walls to a platform where there are one-way doors. A short step extends from the inside of each of the doors. A freely-rotating wheel containing bait is mounted to the apex of the ascendant walls between the steps. As the mouse reaches for the bait, the wheel spins causing the mouse to lose balance and fall into the bottom. The mouse is removed by opening a door in the side of the bottom and removing a tray.





BRIEF DESCRIPTION OF THE DRAWINGS

For a fuller understanding of the nature and object of the present invention, reference is made to the accompanying drawings, wherein:



FIG. 1 is a side perspective view of the mouse trap of the present invention;



FIG. 2 is a side perspective view of the mouse trap of FIG. 1 showing mice going up the ascendant walls;



FIG. 3 is a side perspective view of the mouse trap of FIG. 1 showing mice falling into the trap; and



FIG. 4 is a side perspective view of the mouse trap of FIG. 1 showing trapped mice being released.





DETAILED DESCRIPTION OF THE INVENTION

The Smart and Multiple Mouse Trap is made using acrylic glass. It is about 12-15 inches tall, 10 inches wide and 24 inches long. However, the size of the trap may vary depending upon demand. The trap is rectangular shaped at the bottom and the top is a half octagon shaped, similar to that of a house roof. To the right and left side of the half octagon shaped roof, there are two ascendant walls A that lead to a platform B the top of the mouse trap. There are entering one way doors C in which the mouse will enter through in order to get to the cylinder wheel F with the food. The two ascendant walls A will have hinges E that will allow the wall A to flip into a compact area when not used for safety standards. In the bottom rectangular portion of the trap there are two sides. The left side K will remain shut, while the right side G will be opened to remove the contents of whatever is trapped, as in FIG. 4.


The Smart and Multiple Mouse Trap uses two ascendant walls A that lead to a platform B at the top of the mouse trap. On top of the trap there is a cylinder-shaped wheel F that will contain some type of food attached to it on the inside. In order for the mouse I to get the food, it will maneuver upward to the food that is placed in a spinning wheel F, as in FIG. 2. Before reaching the cylinder wheel F, the mouse I will face a one-way door C. It will go through the door C and will not be able to get out. The mouse I will stand on a step D. On top there is a wheel F with the food. Then as it tries to grab the food from the wheel F, it will face the problem of the wheel F spinning as well as no room to stand on, providing no stability to eat the food. Then the mouse I will have to drop into the mouse trap J, as at M in FIG. 3. There, it will be trapped along with many more mice I depending on its size. The removal of the contents inside the trap J will be simply to open the right side door G, remove the tray and dump it into the desirable location, as in FIG. 4.


REFERENCE LETTERS

A. The left side ascendant wall. It will lead from the floor to the top door on the octagon shaped roof and also to the cylinder with food. It will have hinges that will allow it to fold for space and safety.


A1. The half portion of the ascendant wall that folds when not used.


B. The area on top of the octagon roof in which the mouse will stand before entering into the one way door.


C. The one way door that will lead inside of the trap.


D. The step after entering from the door. It will be slightly higher than the bottom of the trap.


E. The hinges attached to the walls that fold to close or open.


F. The rotating cylinder that will be filled with food. Which will attract the mice into the trap.


G. The left sliding door that is located at the bottom side of the rectangular shape. It will be used to empty the contents of the trap.


H. An opening that is a door which is attached to the cylinder wheel for adding food inside as well as to clean it.


I. The mice entering the trap using the two ascendant walls into a one way door.


J. The base area of the trap that holds the trapped mice within a tray. It is a large area where many mice will fit in.


W. Wall


L. Ground level

Claims
  • 1. A mouse trap adapted to sit on a horizontal surface, said trap comprising: (a) a bottom having a floor adapted to sit on said horizontal surface, two first opposed walls with upper edges, two second opposed walls, and an open top;(b) a pair of ascendant walls sloping downwardly and away from said upper edges of said first opposed walls toward said horizontal surface and upwardly from said upper edges of said first opposed walls to an apex above said open top;(c) a cylindrical wheel mounted at said apex to freely rotate about a horizontal axis and adapted to hold bait;(d) a break in said ascendant walls between said upper edges of said first opposed walls and said wheel, said break having a horizontal platform;(e) a vertical, one-way door on each of said platforms; and(f) a step inside each of said doors, an edge of said step being open to said open top of said bottom;(g) whereby a mouse walks up one of said ascendant walls to said platform, through said door, and onto said step, then reaches up to said wheel causing said wheel to rotate, thereby causing said mouse to lose balance and fall into said bottom.
  • 2. The mouse trap of claim 1 wherein said bottom includes a removable drawer and a side door through which said drawer can be removed for disposal of said mouse.
  • 3. The mouse trap of claim 1 wherein said ascendant walls are comprised of a clear acrylic.
  • 4. The mouse trap of claim 1 wherein said ascendant walls are hinged at said upper edges of said first opposed walls.
US Referenced Citations (84)
Number Name Date Kind
125290 Harnish et al. Apr 1872 A
230628 Goodwin Aug 1880 A
666233 Lindemann Jan 1901 A
710020 Short Sep 1902 A
864200 Shelton Aug 1907 A
1050220 Link Jan 1913 A
1090750 Peach Mar 1914 A
1101368 Willard Jun 1914 A
1168252 Erdley Jan 1916 A
1169950 George Feb 1916 A
1190859 Causey Jul 1916 A
1220743 Harriman Mar 1917 A
1244069 Neuneker Oct 1917 A
1407861 Hiett Feb 1922 A
1497883 Sosbee Jun 1924 A
1528447 Martin Mar 1925 A
1538707 Krause May 1925 A
1571130 Lynn Jan 1926 A
1616334 Robichaux Feb 1927 A
1653411 Poe Dec 1927 A
1727666 Nicks et al. Sep 1929 A
1739493 Bewan Dec 1929 A
1744412 Patterson Jan 1930 A
1788047 Brunner Jan 1931 A
2056882 Appiani Oct 1936 A
2110678 Robbins Mar 1938 A
2122147 Lamp Jun 1938 A
2126512 Stemen Aug 1938 A
2218746 Arthur Oct 1940 A
2221406 Paiuk Nov 1940 A
2234983 Russell Mar 1941 A
2258904 Murphy Oct 1941 A
2571841 Dague Oct 1951 A
2578762 Torgeson Dec 1951 A
2619765 Sees Dec 1952 A
2775844 Farrell Jan 1957 A
2787082 Paschen Apr 1957 A
2835070 Gomez May 1958 A
3122856 Jones Mar 1964 A
3393468 Wood et al. Jul 1968 A
3423870 Kost Jan 1969 A
3528191 Hand Sep 1970 A
3791065 Snow Feb 1974 A
3872619 McIlwain Mar 1975 A
4154016 Reyes May 1979 A
4155193 MacDonald May 1979 A
4157628 Saslove Jun 1979 A
4214399 Bradley Jul 1980 A
4372074 Arrabit Feb 1983 A
4418493 Jordan Dec 1983 A
4553349 Tsai Nov 1985 A
4603504 Llanos Aug 1986 A
4653221 Pratscher Mar 1987 A
4706408 Mellard Nov 1987 A
4779373 Krenson Oct 1988 A
4829700 Ha May 1989 A
4829701 ImBrogno May 1989 A
4845887 Snyder Jul 1989 A
4876821 Benzie Oct 1989 A
5305545 Cerullo Apr 1994 A
5386663 Fields Feb 1995 A
5410837 Kazzyk May 1995 A
5517784 Sedore May 1996 A
5519962 Cerullo May 1996 A
5528852 Sarff Jun 1996 A
5579601 Norrad Dec 1996 A
5953853 Kim Sep 1999 A
5979105 Marks Nov 1999 A
5996274 Smith et al. Dec 1999 A
6016623 Celestine Jan 2000 A
6088948 Rønnau Jul 2000 A
6212819 Edwards Apr 2001 B1
6272789 Huang Aug 2001 B1
6691452 Knuppel et al. Feb 2004 B1
6718688 Garretson Apr 2004 B2
6938368 Guidry Sep 2005 B2
7530195 Muller et al. May 2009 B2
7627981 Doster et al. Dec 2009 B1
7854089 Deibert Dec 2010 B2
20050102887 Lang et al. May 2005 A1
20050279015 Hall Dec 2005 A1
20090205245 Orchard Aug 2009 A1
20090229169 Weisberg et al. Sep 2009 A1
20100132244 Ridge Jun 2010 A1
Foreign Referenced Citations (7)
Number Date Country
2117621 Oct 1983 GB
09121748 May 1997 JP
11308960 Nov 1999 JP
2001157544 Jun 2001 JP
2001333682 Dec 2001 JP
WO 9848620 Nov 1998 WO
WO 2006010279 Feb 2006 WO