Anti-theft device with adjustable locking arms for securing an article of merchandise
10858865 ยท 2020-12-08
Assignee
Inventors
- Christopher A. Kelsch (Palm Harbor, FL, US)
- John N. Figh, Jr. (Oldsmar, FL, US)
- Matthew Kuntz (Tampa, FL, US)
- Lucas P. Swartwood (San Jose, CA, US)
- Wade Zhu (Westchase, FL, US)
- Volodymyr Andreev (Lviv, UA)
- Peter D. Iezzi (Coral Springs, FL, US)
- Andriy Los (Lviv, UA)
Cpc classification
E05B73/0017
FIXED CONSTRUCTIONS
E05B73/0023
FIXED CONSTRUCTIONS
E05B73/0082
FIXED CONSTRUCTIONS
International classification
Abstract
An anti-theft device for securing an article of merchandise against unauthorized removal from a display counter. The anti-theft device includes two pairs of arms slidingly disposed within the housing. Grips are disposed on distal ends of the arms and are configured to receive and secure edges of an article of merchandise. A locking mechanism is disposed within the housing of the anti-theft device. Complimentary gear teeth are disposed on the outer surface of the locking component and the inner edges of the arms. An actuator transitions the locking components between a first unlocked configuration in which the gear teeth of the locking components are retracted away from the gear teeth of the arms, and a second locked configuration in which the gear teeth of the locking components engage the gear teeth of the arms.
Claims
1. An anti-theft device for securing an article of merchandise, comprising: a housing; a first pair of arms and a second pair of arms slidingly disposed within the housing, the first pair of arms being in an orthogonal orientation relative to the second pair of arms, wherein a length of each arm extending beyond the housing is independently adjustable by sliding the arm inwardly or outwardly with respect to the housing; a grip disposed at an end of each arm, each grip configured to receive an edge of the article of merchandise; a first set of gear teeth disposed along each arm; a locking component disposed within the housing, wherein the locking component is non-rotational; a second set of gear teeth disposed on an outer surface of the locking component, the second set of gear teeth disposed on the locking component configured to interlock with the first set of gear teeth disposed along the arms, whereby the anti-theft device has a first unlocked configuration in which the locking component is radially or axially retracted away from the arms such that the first and the second sets of gear teeth are disengaged, and a second locked configuration in which the first and the second sets of gear teeth are interlocked, wherein to adjust the length of each arm extending beyond the housing, the second set of gear teeth must be disengaged from the first set of gear teeth; and an actuator disposed within the housing, the actuator configured to apply a force onto the locking component to transition the locking component from the first unlocked configuration into the second locked configuration, thereby immobilizing the arms within the housing.
2. The anti-theft security device of claim 1, wherein each arm comprises a flange configured to retain the arm within the housing.
3. The anti-theft security device of claim 1, wherein at least one gear tooth of the first set of gear teeth has a sloped side, such that when the locking component engages the sloped side of the gear tooth, the arms slide inwardly relative to the housing.
4. The anti-theft security device of claim 1, wherein the grip is encased by a sleeve configured to undergo elastic deformation responsive to being pressed against the edge of the article of merchandise.
5. The anti-theft security device of claim 4, wherein the sleeve is non-conductive.
6. The anti-theft security device of claim 4, wherein the sleeve is made of an elastomeric material.
7. The anti-theft security device of claim 1, further comprising a biasing element configured to displace the locking component away from the first and the second pair of arms, thereby urging the locking component toward the first unlocked configuration.
8. The anti-theft security device of claim 7, wherein the force applied onto the locking component by the actuator exceeds a biasing force exerted onto the locking component by the biasing element.
9. The anti-theft security device of claim 1, wherein the actuator is screw-threadedly disposed within the housing, whereby rotation of the actuator about a longitudinal center axis thereof causes the actuator to apply the force onto the locking component.
10. The anti-theft security device of claim 1, wherein the locking component has a frustoconical shape, and wherein the second set of gear teeth is disposed along the outer surface of the frustoconical shape.
11. The anti-theft security device of claim 1, wherein the housing has a female port in which the actuator resides, the female port having an opening on a first surface of the housing opposite to a second surface of the housing facing the article of merchandise, thereby enabling access to the actuator when the article of merchandise is secured within the anti-theft device.
12. A method of securing an article of merchandise within an anti-theft device, comprising: receiving the anti-theft device having a housing and four arms slidingly disposed therein, each arm having a grip disposed on an end thereof; extending four arms of the anti-theft security by sliding each arm out of the housing; positioning an article of merchandise between the grips; retracting the arms into the housing such that each grip receives an edge of the article of merchandise; operating an actuator disposed within the housing to transition the anti-theft device from a first unlocked configuration into a second locked configuration, wherein operation of the actuator causes the actuator to apply a force onto a locking component residing within the housing, thereby causing the locking component to radially or axially translate within the housing toward the arms until the locking component engages the arms, wherein the locking component is non-rotational and wherein in the first unlocked configuration the locking component is retracted away from the arms; wherein a first set of gear teeth is disposed along the arms and a second set of gear teeth is disposed on the locking component, whereby, in the second locked configuration, the second set of gear teeth disposed on the locking component interlocks the first set of gear teeth disposed along the arms, thereby immobilizing the arms within the housing and retaining the article of merchandise within the grips, wherein to extend each arm, the second set of gear teeth must be disengaged from the first set of gear teeth.
13. The method of claim 12, wherein a biasing element is disposed within the housing and is configured to retract locking component away from the arms, thereby urging the anti-theft device into the first unlocked configuration.
14. The method of claim 13, wherein the force applied onto the locking component by the actuator exceeds the biasing force exerted by the biasing element.
15. The method of claim 12, wherein the actuator is screw-threadedly disposed within the housing, whereby operation of the actuator involves rotation of the actuator about its longitudinal center axis.
16. The method of claim 12, wherein the locking component is configured to immobilize two arms, wherein the two arms being immobilized are in an orthogonal orientation with one another.
17. The method of claim 12, wherein the locking component has a frustoconical shape, and wherein the second set of gear teeth is disposed along the outer surface thereof.
18. The method of claim 12, wherein the locking component has a partially sloped recess and the actuator has a pointed distal end engaging the sloped recess.
19. The method of claim 12, wherein the housing has a female port in which the actuator resides, the female port having an opening on a first surface of the housing opposite to a second surface of the housing facing the article of merchandise, thereby enabling access to the actuator when the article of merchandise is secured within the anti-theft device.
20. The method of claim 12, wherein each arm comprises a flange configured to retain the arm within the housing.
21. The method of claim 12, wherein at least one tooth of the first set of gear teeth has a sloped side, such that when the locking component engages the sloped sides of the at least one gear tooth, the arms slide inwardly relative to the housing.
22. The method of claim 12, wherein each grip is encased by a sleeve configured to undergo elastic deformation responsive to being pressed against the edge of the article of merchandise.
23. The method of claim 22, wherein the sleeve is non-conductive.
Description
DESCRIPTION OF THE DRAWINGS
(1) For a fuller understanding of the invention, reference should be made to the following detailed description, taken in connection with the accompanying drawings, in which:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(17) In the following detailed description of the preferred embodiment, reference is made to the accompanying drawings, which form a part hereof, and within which specific embodiments are shown by way of illustration by which the invention may be practiced. It is to be understood that other embodiments may be utilized and structural changes may be made without departing from the scope of the invention.
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(19) Referring to
(20) As depicted in
(21) To ensure that arms 12 cannot be manipulated by an unauthorized individual, security device 10 includes a locking mechanism 20, depicted in
(22) In an embodiment depicted in
(23) As depicted in
(24) Locking components 28 are configured to transition between an unlocked configuration depicted in
(25) In the locked configuration, depicted in
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(29) To transition security device 10 into the unlocked configuration, an authorized personnel member in possession of tool 38 uses tool 38 to rotate actuator 34 in a counterclockwise direction, thereby retracting actuator away from locking components 28. Biasing element 36 pulls locking components 28 toward each other, thereby disengaging gear teeth 30 from gear teeth 24. When the gear teeth 30 fully disengage gear teeth 24, security device 10 is in the unlocked configuration and lengths of arms 12 can be adjusted, thereby releasing the article of merchandise from grips 16.
(30) In an embodiment depicted in
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(33) To transition security device 10 into the unlocked configuration, an authorized personnel member in possession of tool 38 uses tool 38 to rotate actuator 34 in a counterclockwise direction, thereby retracting locking component 28. Biasing element 36 urges locking component 28 toward port 32, thereby disengaging gear teeth 30 from gear teeth 24. When the gear teeth 30 fully disengage gear teeth 24, security device 10 is in the unlocked configuration and lengths of arms 12 can be adjusted, thereby releasing the article of merchandise from grips 16.
(34) The advantages set forth above, and those made apparent from the foregoing description, are efficiently attained. Since certain changes may be made in the above construction without departing from the scope of the invention, it is intended that all matters contained in the foregoing description or shown in the accompanying drawings shall be interpreted as illustrative and not in a limiting sense.