IP Library › Granted Patent US 11,124,340
Granted Patent B2
US 11,124,340 · App. 16/786,199 · Granted Sep 21, 2021

Anti-theft storage container system

Inventor: Caren Crawley (Bronx, NY)
B65D55/14B65D43/0231B65D2543/00092B65D2543/00351B65D2543/00527B65D2543/00537
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Quick Facts
Patent No.
US 11,124,340
App. No.
16/786,199
Granted
Sep 21, 2021
Kind
B2
Abstract

Lockable storage container systems, such as container systems for food storage or storage of other items, that feature a biometric locking system to help prevent unwanted opening of the container. The systems herein comprise a storage housing and a removable lid, wherein a locking mechanism is controlled by the biometric locking system such that the lid is locked on the housing unless deactivated by the biometric locking system.

Claims (37)

1. A storage container system ( 100 ) with biometric lock, said storage container system ( 100 ) comprising:

a. a storage housing ( 110 ) with an inner cavity ( 115 ) for holding food, liquid, or non-food items, the inner cavity ( 115 ) is accessible via an opening in a top end ( 111 ) of the storage housing ( 110 );

b. a lid ( 120 ) removably attachable to the top end ( 111 ) of the storage housing ( 110 ), the lid ( 120 ) can move between at least an open position wherein the inner cavity ( 115 ) of the storage housing ( 110 ) is accessible and a closed position wherein the inner cavity ( 115 ) of the storage housing ( 110 ) is not accessible;

c. a first threaded component ( 130 a ) disposed at the top end ( 111 ) of the storage housing ( 110 ) and a second threaded component ( 130 b ) disposed at a bottom end ( 122 ) of the lid ( 120 ), wherein the first threaded component ( 130 a ) removably engages the second threaded component ( 130 b ) to prevent access to the inner cavity ( 115 ) of the storage housing ( 110 );

d. a slot ( 140 ) is disposed in the first threaded component ( 130 );

e. a tab housing ( 144 ) disposed in the storage housing ( 110 ) below the slot ( 140 );

f. a motor unit ( 200 ) disposed in the tab housing ( 144 );

g. a tab ( 142 ) slidably disposed in the tab housing ( 144 ) and operatively connected to the motor unit ( 200 ) in the tab housing ( 144 ), the tab ( 142 ) can move between an extended position wherein the tab ( 142 ) extends through at least a portion of the slot ( 140 ) and a retracted position wherein the tab ( 142 ) does not extend through any portion of the slot ( 140 ), wherein the tab ( 142 ) in the extended position blocks movement of the first threaded component ( 130 a ) and second threaded component ( 130 b ) with respect to each other, thereby preventing removal of the lid ( 120 ) from the storage housing ( 110 ), wherein activating the motor unit ( 200 ) causes the tab ( 142 ) to slide between the extended position and the retracted position;

h. a microprocessor ( 155 ) capable of executing instructions;

i. a memory unit ( 156 ) that stores pre-recorded fingerprint data and instructions; and

j. a fingerprint sensor pad ( 150 ) disposed on an external surface of the storage housing ( 110 ) and operatively connected to the microprocessor ( 155 ), the fingerprint sensor pad ( 150 ) obtains fingerprint data from a user when the user contacts his finger to the fingerprint sensor pad ( 150 ), whereupon the fingerprint sensor pad ( 150 ) sends the fingerprint data as a signal to the microprocessor ( 155 );

wherein upon receipt of the fingerprint data from the fingerprint sensor pad ( 150 ), the microprocessor ( 155 ) executes instructions stored in the memory unit ( 156 ) to store the fingerprint data in the memory unit ( 156 ); and

wherein upon receipt of the fingerprint data from the fingerprint sensor pad ( 150 ), the microprocessor ( 155 ) executes instructions stored in the memory unit ( 156 ) to compare the fingerprint data with the pre-recorded fingerprint data stored in the memory unit ( 156 ), wherein if the fingerprint data from the user matches pre-recorded fingerprint data stored in the memory unit ( 156 ), the microprocessor ( 155 ) sends a signal to the tab housing ( 144 ) to the motor unit ( 200 ) of the tab housing ( 144 ) to activate the motor unit ( 200 ) to cause the tab ( 142 ) to move from the extended position to the retracted position so as to allow removal of the lid ( 12 ) from the storage housing ( 110 ).

2. The system ( 100 ) of claim 1 , wherein the storage housing ( 110 ) is cylindrical.

3. The system ( 100 ) of claim 1 , wherein the slot ( 140 ) is perpendicular to axes of the first threaded component ( 130 a ).

4. The system ( 100 ) of claim 1 , wherein the tab housing ( 144 ) is disposed inside a side wall of the storage housing ( 110 ).

5. The system ( 100 ) of claim 1 , wherein the microprocessor ( 155 ) is operatively connected to a battery ( 157 ).

6. The system ( 100 ) of claim 5 , wherein the battery ( 157 ) is a rechargeable battery.

7. The system ( 100 ) of claim 6 , wherein the rechargeable battery is operatively connected to a charging port ( 160 ) on the storage housing ( 110 ).

8. A storage container system ( 100 ) with biometric lock, said storage container system ( 100 ) comprising:

a. a storage housing ( 110 ) with an inner cavity ( 115 ) for holding food, liquid, or non-food items, the inner cavity ( 115 ) is accessible via an opening in a top end ( 111 ) of the storage housing ( 110 );

b. a lid ( 120 ) pivotally attached to a point at the top end ( 111 ) of the storage housing ( 110 ) via a hinge ( 170 ), the lid ( 120 ) can move between at least an open position wherein the inner cavity ( 115 ) of the storage housing ( 110 ) is accessible and a closed position wherein the inner cavity ( 115 ) of the storage housing ( 110 ) is not accessible;

c. a latch ( 180 ) extending downwardly from a bottom end ( 122 ) of the lid ( 120 );

d. a latch housing ( 182 ) disposed at the top end ( 111 ) of the storage housing ( 110 ), the latch ( 180 ) can removably engage the latch housing ( 182 ) to secure the lid ( 120 ) in the closed position;

e. a slot disposed in the latch ( 180 );

f. a tab housing ( 144 ) disposed in the storage housing ( 110 ) adjacent to the latch housing ( 182 );

g. a motor unit ( 200 ) disposed in the tab housing;

h. a tab ( 142 ) slidably disposed in the tab housing ( 144 ) and operatively connected to the motor unit ( 200 ) in the tab housing ( 144 ), the tab ( 142 ) can move between an extended position wherein the tab ( 142 ) extends through the latch housing ( 182 ) and through at least a portion of the slot in the latch ( 180 ) and a retracted position wherein the tab ( 142 ) does not extend through any portion of the slot in the latch ( 180 ), wherein the tab ( 142 ) in the extended position blocks disengagement of the latch ( 180 ) from the latch housing ( 182 ), thereby preventing opening of the lid ( 120 ), wherein activating the motor unit ( 200 ) causes the tab ( 142 ) to slide between the extended position and the retracted position;

i. a microprocessor ( 155 ) capable of executing instructions;

j. a memory unit ( 156 ) that stores pre-recorded fingerprint data and instructions; and

k. a fingerprint sensor pad ( 150 ) disposed on an external surface of the storage housing ( 110 ) and operatively connected to the microprocessor ( 155 ), the fingerprint sensor pad ( 150 ) obtains fingerprint data from a user when the user contacts his finger to the fingerprint sensor pad ( 150 ), whereupon the fingerprint sensor pad ( 150 ) sends the fingerprint data as a signal to the microprocessor ( 155 );

wherein upon receipt of the fingerprint data from the fingerprint sensor pad ( 150 ), the microprocessor ( 155 ) executes instructions stored in the memory unit ( 156 ) to store the fingerprint data in the memory unit ( 156 ); and

wherein upon receipt of the fingerprint data from the fingerprint sensor pad ( 150 ), the microprocessor ( 155 ) executes instructions stored in the memory unit ( 156 ) to compare the fingerprint data with the pre-recorded fingerprint data stored in the memory unit ( 156 ), wherein if the fingerprint data from the user matches pre-recorded fingerprint data stored in the memory unit ( 156 ), the microprocessor ( 155 ) sends a signal to the tab housing ( 144 ) to the motor unit ( 200 ) of the tab housing ( 144 ) to activate the motor unit ( 200 ) to cause the tab ( 142 ) to move from the extended position to the retracted position so as to allow opening of the lid ( 12 ).

9. The system ( 100 ) of claim 1 , wherein the storage housing ( 110 ) is cylindrical.

10. The system ( 100 ) of claim 1 , wherein the microprocessor ( 155 ) is operatively connected to a battery ( 157 ).

11. The system ( 100 ) of claim 10 , wherein the battery ( 157 ) is a rechargeable battery.

12. The system ( 100 ) of claim 11 , wherein the rechargeable battery is operatively connected to a charging port ( 160 ) on the storage housing ( 110 ).

Continuity (1)
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