IP Library Granted Patent US 10,677,886
Granted Patent B2
US 10,677,886 · App. 16/058,786 · Granted Jun 9, 2020

Mini blockchain in a chip device and methods of utilization

Inventor: William D. Meadow (Jacksonville, FL)
Assignee: LocatorX, Inc.
G01S5/10G01S5/0027G01S5/0036G01S5/0221G01S5/14
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Quick Facts
Patent No.
US 10,677,886
App. No.
16/058,786
Granted
Jun 9, 2020
Kind
B2
Abstract

The present disclosure relates to methods and apparatus for creating a Definable Blockchain in a Chip along with other components that can receive process and communicate information to enable locating, identifying, and tracking physical Assets and data contained within the Assets. More specifically, the present disclosure presents a Definable Blockchain in a Chip that can be inserted into product labels or packaging which can communicate via Bluetooth with a Smartphone or other Authenticated Radio Source to update the Definable Blockchain with a validated transaction and then optionally provide that information to a Cloud.

Claims (34)

1. A global resource locator apparatus comprising:

a semiconductor chip apparatus comprising micro sized clock generating a timing signal capable of accuracy of 10 −7 seconds per day;

a blockchain stored on a storage included in the global resource locator apparatus;

a processor in logical communication with each of: an authenticated radio source, the micro sized clock and the blockchain;

a wireless transceiver for receiving wireless timing signals from at least three authenticated radio sources, each authenticated radio source located at a respective reference location;

a memory in logical communication with the processor and storing a universally unique identifier (UUID), public key, private key, hash and data;

an affixing vehicle for affixing the chip apparatus comprising the blockchain to an asset and thereby fixedly associate each of the blockchain, the UUID, public key and private key pair with the asset;

executable software stored on the memory and executable on demand, the software operative with the processor to cause the global resource locator apparatus to:

receive respective transmissions from the at least three authenticated radio sources;

determine a geospatial location based upon the respective transmissions from the at least three authenticated radio sources and timing signal capable of accuracy of 10 −7 seconds per day;

store the geospatial location on the blockchain as a blockchain entry; and

transmit the blockchain storing the geospatial location, the UUID, and the public key to a smart device.

2. The global resource locator apparatus of claim 1 wherein the UUID and the multiple reference locations are transmitted via one or more of: of radio, visual and auditory data.

3. The global resource locator apparatus of claim 1 wherein the micro sized clock comprises a fullerene based timing device.

4. The global resource locator apparatus of claim 3 , wherein the authenticated radio source comprises another blockchain device.

5. The global resource locator apparatus of claim 3 , wherein the authenticated radio source comprises a device including GPS functionality.

6. The in a chip apparatus of claim 1 , further comprising an energy harvesting mechanism operative to harvest energy from an ambient environment to the blockchain in a global resource locator apparatus and supply electrical current to one or more components included in the blockchain in a chip apparatus.

7. The in a global resource locator apparatus of claim 1 , wherein the software is further operative to cause the blockchain in a chip apparatus to determine a domain UUID and transmit the domain UUID.

8. A method of providing a location of an asset, the method comprising:

entering a value for a universally unique identifier (UUID) and a private key into a memory of a blockchain in a global resource locator apparatus, said blockchain chip apparatus comprising a processor, a memory storing executable software, a miniature atomic clock, and a transceiver;

establishing a blockchain in the memory;

entering the UUID into the blockchain;

associating the private key with access to contents of the blockchain;

affixing the blockchain in a chip apparatus to the asset;

associating the UUID with the asset;

generating a timing signal via the miniature atomic clock;

receiving into the transceiver a respective timing signal from three or more reference locations;

determining a physical location of the blockchain in a chip apparatus via execution of programmable code by the processor, wherein the physical location is based upon the respective timing signal from three or more reference locations and the timing signal from the miniature atomic clock; and

transmitting with the transceiver, the determined physical location, the private key and the UUID via a smart gateway configured to provide logical communication between the global resource locator apparatus and a digital communications network.

9. The method of claim 8 additionally comprising the steps of:

a. generating a range of accuracy value for the determined physical location;

b. generating a range of accuracy for a timing value generated by the miniature atomic clock; and

c. generating a hashed value based upon a private key value, the determined location, the range of accuracy value for the determined location; and the range of accuracy for the timing value generated by the atomic clock.

10. The method of claim 9 additionally comprising the step of providing a public key that may be matched with the hash value to verify the physical location of the asset to which the blockchain in a chip apparatus is affixed.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2019
From: MEADOW, WILLIAM D
To: LOCATORX, INC.
Reel/Frame 048032/0070 →
Continuity (7)
Continuation In Part 15803163 · Nov 3, 2017
Continuation 14988103 · Jan 5, 2016
Provisional Application 62189427 · Jul 7, 2015
Provisional Application 62117946 · Feb 18, 2015
Provisional Application 62100033 · Jan 5, 2015
Provisional Application 62542666 · Aug 8, 2017
Related Publication 20190120929A1 · Apr 25, 2019
Cited By (6)
US 12,196,874 US 12,272,200 US 12,461,192 US 12,580,759 US 12,625,224 US 12,718,258