IP Library Granted Patent US 10,867,457
Granted Patent B1
US 10,867,457 · App. 16/180,718 · Granted Dec 15, 2020

Pharmaceutical transport system including electronic lock based pharmaceutical transport container and related methods

Inventors: James W. McCracken, Jr. (Winston Salem, NC); Brian Rogers (Greensboro, NC); Michael Snellenburg (Winston Salem, NC)
Assignee: INMAR RX SOLUTIONS, INC.
G07C9/00182G06K7/1413H04L63/10G07C2009/00253
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Quick Facts
Patent No.
US 10,867,457
App. No.
16/180,718
Granted
Dec 15, 2020
Kind
B1
Abstract

A pharmaceutical transport system may include a pneumatic tube network and a pharmaceutical transport container movable within the pneumatic tube network. The pharmaceutical transport container may include a tubular container having open and closed positions for receiving at least one pharmaceutical therein, and an electronic lock securing the tubular container in the closed position and opening based upon a match between an entered digital code and a current changing digital code.

Claims (27)

1. A pharmaceutical transport system comprising:

a pneumatic tube network;

a pharmaceutical transport container movable within the pneumatic tube network and comprising

a tubular container having open and closed positions for receiving at least one pharmaceutical therein, and

an electronic lock securing the tubular container in the closed position and opening based upon determining a match between an entered digital code and a wirelessly received current pseudorandom digital code from among a sequence of pseudorandom digital codes; and

an authorization server configured to psuedorandomly generate the sequence of pseudorandom digital codes and wirelessly transmit the current pseudorandom digital code to the electronic lock for determining the match between the entered digital code and the current pseudorandom digital code.

2. The pharmaceutical transport system of claim 1 wherein the electronic lock comprises a manual code input device to permit manual entry of the digital code.

3. The pharmaceutical transport system of claim 1 wherein the electronic lock comprises a wireless receiver to permit wireless entry of the digital code.

4. The pharmaceutical transport system of claim 1 wherein the electronic lock comprises a camera to permit optical entry of the digital code.

5. The pharmaceutical transport system of claim 1 wherein said authorization server is configured to send the current pseudorandom digital code to a user device.

6. The pharmaceutical transport system of claim 1 wherein the electronic lock comprises a processor and associated memory, and an electromechanical actuator coupled to the processor.

7. The pharmaceutical transport system of claim 1 wherein the tubular container comprises a tubular body, and a pair of movable end caps coupled to respective ends of the tubular body; and wherein the electronic lock secures at least one of the tubular end caps to the tubular body.

8. The pharmaceutical transport system of claim 1 wherein the tubular body comprises a pair of mating container sections.

9. A pharmaceutical container movable within a pneumatic tube network of a pharmaceutical transport system, the pharmaceutical container comprising:

a tubular container having open and closed positions for receiving at least one pharmaceutical therein; and

an electronic lock securing the tubular container in the closed position and opening based upon determining a match between an entered digital code and a wirelessly received current pseudorandom digital code from among a sequence of pseudorandom digital codes, and configured to receive each current pseudorandom digital code from an authorization server, the authorization server configured to psuedorandomly generate the sequence of pseudorandom digital codes and wirelessly transmit the current pseudorandom digital code to the electronic lock for determining the match between the entered digital code and the current pseudorandom digital code.

10. The pharmaceutical container of claim 9 wherein the electronic lock comprises a manual code input device to permit manual entry of the digital code.

11. The pharmaceutical container of claim 9 wherein the electronic lock comprises a wireless receiver to permit wireless entry of the digital code.

12. The pharmaceutical container of claim 9 wherein the electronic lock comprises a camera to permit optical entry of the digital code.

13. The pharmaceutical container of claim 9 wherein the electronic lock comprises a processor and associated memory, and an electromechanical actuator coupled to the processor.

14. The pharmaceutical container of claim 9 wherein the tubular container comprises a tubular body, and a pair of movable end caps coupled to respective ends of the tubular body; and wherein the electronic lock secures at least one of the tubular end caps to the tubular body.

15. The pharmaceutical container of claim 9 wherein the tubular body comprises a pair of mating container sections.

16. A method of providing at least one pharmaceutical in a pharmaceutical container movable within a pneumatic tube network of a pharmaceutical transport system, the method comprising:

operating an electronic lock securing a tubular container, having open and closed positions for receiving at least one pharmaceutical therein, between the closed position and the open position based upon determining a match between an entered digital code and a wirelessly received current pseudorandom digital code from among a sequence of pseudorandom digital codes from an authorization server, the authorization server configured to psuedorandomly generate the sequence of pseudorandom digital codes and wirelessly transmit the current pseudorandom digital code to the electronic lock for determining the match between the entered digital code and the current pseudorandom digital code.

17. The method of claim 16 wherein operating the electronic lock comprises operating a manual code input device to permit manual entry of the digital code.

18. The method of claim 16 wherein operating the electronic lock comprises operating a wireless receiver to permit wireless entry of the digital code.

19. The method of claim 16 wherein operating the electronic lock comprises operating a camera to permit optical entry of the digital code.

Assignments (4)
SECURITY INTEREST Recorded Jun 28, 2023
From: INMAR, INC.; INMAR SUPPLY CHAIN SOLUTIONS, LLC; AKI TECHNOLOGIES, INC.; INMAR ANALYTICS, INC.; INMAR BRAND SOLUTIONS, INC.; INMAR CLEARING, INC.; INMAR RX SOLUTIONS, INC.; INMAR - YOUTECH, LLC; QUALANEX, LLC; CAROLINA COUPON CLEARING, INC. (N/K/A INMAR CLEARING, INC.); COLLECTIVE BIAS, INC. (N/K/A INMAR BRAND SOLUTIONS, INC.); MED-TURN, INC. (N/K/A INMAR RX SOLUTIONS, INC.)
To: JEFFERIES FINANCE LLC
Reel/Frame 064148/0903 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2020
From: INMAR CLEARING, INC.
To: INMAR RX SOLUTIONS, INC.
Reel/Frame 053946/0712 →
CHANGE OF NAME Recorded Sep 29, 2020
From: CAROLINA COUPON CLEARING, INC
To: INMAR CLEARING, INC.
Reel/Frame 053927/0549 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2018
From: MCCRACKEN, JR., JAMES W.; ROGERS, BRIAN; SNELLENBURG, MICHAEL
To: CAROLINA COUPON CLEARING, INC.
Reel/Frame 047430/0621 →