IP Library Granted Patent US 12664844
Granted Patent B2
US 12664844 · App. 18/768,050 · Granted Jun 23, 2026

Smart pod system for secure and transparent package delivery

Inventor: Buchner V. Castro (Clarkstown, NY)
Assignee: Buchner V. Castro
G07C9/00912G07C9/00309G07C9/00563G07C9/22G08B25/016G07C2009/00539
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Quick Facts
Patent No.
US 12664844
App. No.
18/768,050
Granted
Jun 23, 2026
Kind
B2
Abstract

The present invention relates to a smart pod system comprising a housing, a power supply, an electronic locking mechanism, and an internal camera. The system includes at least one external sensor, such as a motion sensor, microphone, or camera, a wireless communication module for data transmission, and a control unit operatively connected to the components. The user interface includes a touch screen and biometric authentication devices. A software application executable on an external device interacts with the smart pod system to control the locking mechanism, access data from the sensors and internal camera, and manage user authentication. This system enhances the security, transparency, and efficiency of package delivery by providing real-time monitoring of contents and remote access control.

Claims (31)

1 . A smart pod system comprising:

a housing;

a power supply disposed within or on the exterior of the housing;

an electronic locking mechanism disposed on the housing;

at least one sensor disposed on the housing, the at least one sensor selected from the group consisting of a motion sensor, a microphone, and a camera;

an internal camera disposed within the housing, the internal camera configured to capture real-time images or video of the contents within the housing;

a wireless communication module disposed within or on the exterior of the housing, the wireless communication module configured to transmit data, including the real-time images or video captured by the internal camera, to an external device;

a control unit disposed within the housing, the control unit operatively connected to the electronic locking mechanism, the at least one sensor, the internal camera, and the wireless communication module;

a user interface disposed on the housing, the user interface comprising a touch screen and biometric authentication devices;

and

a software application executable on the external device, the software application configured to interact with the smart pod system via the wireless communication module to control the electronic locking mechanism, access data from the at least one sensor and the internal camera, receive and display the real-time images or video from the internal camera to enable a user to remotely view the contents within the housing, and manage user authentication via the biometric authentication devices;

wherein the software application provides a user interface for live viewing of the contents during transit, the smart pod system paired with a cloud-based network to transmit live data and live images to the external device via the cloud-based network.

2 . The smart pod system of claim 1 , wherein the power supply comprises at least one solar panel disposed on the exterior of the housing.

3 . The smart pod system of claim 2 , wherein the power supply further comprises an onboard battery selected from the group consisting of a lithium-ion battery and a nickel-metal hydride battery.

4 . The smart pod system of claim 1 , wherein the at least one sensor further comprises a 360-degree external camera disposed on the exterior of the housing.

5 . The smart pod system of claim 1 , wherein the user interface further comprises an ID reader configured to scan identification credentials.

6 . The smart pod system of claim 1 , wherein the biometric authentication devices are selected from the group consisting of a fingerprint scanner, a facial recognition scanner, and a retinal scanner.

7 . The smart pod system of claim 1 , wherein the electronic locking mechanism is configured to be remotely controlled via the software application.

8 . The smart pod system of claim 1 , wherein the wireless communication module supports connectivity options selected from the group consisting of Wi-Fi and Bluetooth.

9 . The smart pod system of claim 1 , wherein the housing is constructed from a tamper-proof material selected from the group consisting of stainless steel and fiberglass-reinforced plastic.

10 . The smart pod system of claim 1 , wherein the control unit further comprises an audible alarm system configured to emit a sound when unauthorized access is detected.

11 . The smart pod system of claim 1 , wherein the control unit is operatively connected to a global positioning system (GPS) module configured to track the location of the smart pod.

12 . The smart pod system of claim 1 , further comprising an LED alert light disposed on the exterior of the housing, the LED alert light configured to indicate the status of the electronic locking mechanism.

13 . The smart pod system of claim 1 , wherein the internal camera is configured to capture high-definition images or video.

14 . The smart pod system of claim 1 , wherein the control unit includes a microcontroller and onboard firmware memory.

15 . The smart pod system of claim 1 , wherein the software application is configured to provide real-time notifications to users regarding the status and security of the smart pod.

16 . The smart pod system of claim 1 , further comprising an anti-theft tracking chip disposed within the housing, the anti-theft tracking chip configured to provide real-time location updates.

17 . The smart pod system of claim 1 , wherein the housing further comprises internal foam cushions configured to protect the contents of the smart pod during transit.

18 . The smart pod system of claim 1 , wherein the software application is configured to interact with the smart pod system via a cloud-based network.

19 . The smart pod system of claim 1 , further comprising a manual override switch disposed on the exterior of the housing, the manual override switch configured to allow manual access to the contents of the smart pod.

20 . The smart pod system of claim 1 , wherein the software application is further configured to store and analyze historical data related to the smart pod's usage and security events.