IP Library Granted Patent US 12,390,038
Granted Patent B2
US 12,390,038 · App. 18/623,270 · Granted Aug 19, 2025

System and method of providing packing inventory sensing and management of a supply compartment for a storage receptacle

Inventors: James A. Poss (Jamaica Plain, MA); Jeffrey Satwicz (Waltham, MA)
Assignee: Big Belly Solar LLC
A47G29/22A47G29/141A47G29/20A47G29/30G08B13/18H02J7/0048H02J7/35H02J9/002H02J9/005A47G2029/145A47G2029/148H02J7/0031
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Quick Facts
Patent No.
US 12,390,038
App. No.
18/623,270
Granted
Aug 19, 2025
Kind
B2
Abstract

A package deposit enclosure designed for public use is powered by an efficient storage battery and photovoltaic cell array. These unique features allow the package deposit enclosure to be placed in locations where no power is available, but where there is frequent human traffic. Sensing and wireless data communication features allow the unit to be emptied less often than typical package delivery enclosures. Wireless communication also allows users' access to real-time information. On board power enables other functions, such as lighting and audio, to enhance device functionality.

Claims (40)

1. A storage container comprising:

an enclosure comprising a storage compartment for receiving a plurality of packages from end users, wherein the storage compartment is configured to receive the plurality of packages from the end users via an insertion door but does not enable the end users to retrieve any deposited packages;

at least three sensors configured on the storage container, each respective sensor of the at least three sensors being of a different type than other sensors of the at least three sensors;

a programmable logic controller connected to each respective sensor, wherein the programmable logic controller controls at least one of the at least three sensors based on data received from one or more of the at least three sensors; and

a supply compartment for storing packaging materials and made available to the end users, the supply compartment comprising an access door and an inventory sensor, wherein the inventory sensor is configured to detect a presence of packaging materials contained within the supply compartment, wherein the programmable logic controller is connected to a battery and the inventory sensor, wherein the programmable logic controller is configured to trigger the inventory sensor when an access door sensor detects the access door is in an open position or when an insertion door sensor detects that an insertion door is in an open position.

2. The storage container of claim 1 , wherein the programmable logic controller is further configured to skip an operation when the battery is undercharged until the battery has attained an adequate charge.

3. The storage container of claim 1 , wherein the programmable logic controller is further configured to display a signal indicating a next collection of contents in the storage container.

4. The storage container of claim 1 , wherein the programmable logic controller is further configured to disengage, based on the data received from one or more of the at least three sensors, a transmitter to reduce energy use.

5. The storage container of claim 1 , wherein the programmable logic controller is further configured to disable, based on the data received from one or more of the at least three sensors, unused circuits connected to the battery.

6. The storage container of claim 1 , wherein the programmable logic controller is further configured to regulate a battery charger, and disabling the battery charger when solar power is insufficient to charge the battery.

7. The storage container of claim 1 , wherein electronic components in the storage container are sealed from water to protect the electronic components, wherein the electronic components comprise at least one of the battery, the programmable logic controller, and a package sensor.

8. The storage container of claim 1 , wherein a transmitter and a package sensor are powered from a solar energy that is converted into electric power.

9. The storage container of claim 1 , wherein the programmable logic controller is further configured to track voltage and battery performance over a period of time, and wherein the programmable logic controller is configured to generate a signal if at least one of battery power and solar power is insufficient.

10. A method comprising:

collecting solar energy via a photovoltaic panel connected to a storage container having a package compartment configured to receive packages from end users, wherein the storage container comprises a supply compartment for storing packaging materials and made available to the end users and wherein the supply compartment comprising an access door and an inventory sensor;

gathering, at a programmable logic controller, data from each respective sensor of at least three sensors including the inventory sensor, the at least three sensors each being configured with the storage container, wherein the programmable logic controller is connected to a battery and the inventory sensor;

controlling at least one of the at least three sensors based on the data from at least one sensor of the at least three sensors;

detecting, via the inventory sensor, a presence of packaging materials contained within the supply compartment; and

triggering, via the programmable logic controller, the inventory sensor when an access door sensor detects the access door is in an open position or when an insertion door sensor detects that an insertion door is in an open position.

11. The method of claim 10 , wherein the storage container prevents the end users from accessing deposited packages and the supply compartment for storing the packaging materials available to the end users, wherein the photovoltaic panel is positioned to be exposed to sunlight and convert sunlight into electric power.

12. The method of claim 10 , further comprising skipping an operation when a battery is undercharged until the battery has attained an adequate charge.

13. The method of claim 10 , further comprising displaying a signal indicating a next collection of contents in the storage container.

14. The method of claim 10 , wherein controlling each respective sensor further comprises disengaging a transmitter to reduce energy use based on the data from at least one sensor of the at least three sensors.

15. The method of claim 10 , further comprising disabling unused circuits connected to the battery.

16. The method of claim 10 , further comprising regulating a battery charger, and disabling the battery charger when solar power is insufficient to charge the battery.

17. The method of claim 10 , wherein electronic components in the storage container are sealed from water to protect the electronic components, wherein the electronic components comprise at least one of the battery and a package sensor.

18. The method of claim 10 , wherein a transmitter and a package sensor are powered from the solar energy that is converted into electric power.

19. A storage container comprising:

a battery;

at least three sensors, the at least three sensors including an inventory sensor;

a programmable logic controller connected to the battery at the at least three sensors;

a package compartment, the package compartment configured to receive packages from end users but not enable the end users to access deposited packages;

a supply compartment for storing packaging materials and made available to the end users, the supply compartment being associated with the inventory sensor;

an access door to the supply compartment; and

a computer-readable storage medium having stored therein instructions which, when executed by the programmable logic controller, cause the programmable logic controller to perform operations comprising:

collecting solar energy via a photovoltaic panel connected to the storage container;

gathering, at the programmable logic controller, data from each respective sensor of the at least three sensors, the at least three sensors each being configured with the storage container;

controlling at least one of the at least three sensors based on the data from at least one sensor of the at least three sensors;

detecting, via the inventory sensor, a presence of packaging materials contained within the supply compartment; and

triggering, via the programmable logic controller, the inventory sensor when an access door sensor detects the access door is in an open position or when an insertion door sensor detects that an insertion door is in an open position.

Assignments (4)
CORRECTION OF THE NAME OF THE RECEIVING PARTY Recorded Apr 3, 2025
From: SEAHORSE POWER COMPANY
To: BIG BELLY SOLAR, INC.
Reel/Frame 070794/0800 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2024
From: POSS, JAMES A.; SATWICZ, JEFFREY
To: SEAHORSE POWER COMANY
Reel/Frame 067551/0338 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2024
From: BIG BELLY SOLAR, INC.
To: BIG BELLY SOLAR LLC
Reel/Frame 067551/0642 →
CHANGE OF NAME Recorded May 29, 2024
From: SEAHORSE POWER COMPANY
To: BIG BELLY SOLAR LLC
Reel/Frame 067567/0034 →
Continuity (8)
Continuation 16834405 · Mar 30, 2020
Continuation 12908497 · Oct 20, 2010
Continuation 11760381 · Jun 8, 2007
Continuation 11800572 · May 7, 2007
Continuation In Part 11584822 · Oct 23, 2006
Continuation In Part 10864566 · Jun 9, 2004
Provisional Application 60476832 · Jun 9, 2003
Related Publication 20240245248A1 · Jul 25, 2024
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