Systems and methods to keep drivers, pilots, or others alert or focused by electromagnetic delivery of signals
Inventors
Butters, John T. • Butters, Lisa C.
Assignees
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Abstract
A system for delivery of ultra-low radio frequency energy to an individual to assist the individual to remain, or become, alert, awake, or focused includes at least one delivery coil and a delivery device that includes at least one memory; at least one data file configured for producing signals derived from measurements of at least one molecule; and at least one processor coupled to the at least one memory and the at least one delivery coil. The at least one processor is configured to perform actions that include directing generation of the signals using the at least one data file and directing delivery of the signals to the at least one delivery coil to produce the ultra-low radio frequency energy.
Core Innovation
The invention relates to a system for delivery of ultra-low radio frequency energy to an individual. The system includes at least one delivery coil configured for placement at an effective distance from the individual, and a delivery device comprising at least one memory and at least one processor coupled to the at least one memory and the at least one delivery coil. At least one data file stored, or storable, in the at least one memory is configured for producing signals derived from measurements of at least one molecule.
The signals are configured to produce the ultra-low radio frequency energy when delivered to the at least one delivery coil. The at least one processor directs generation of the signals using the at least one data file and directs delivery of the signals to the at least one delivery coil to produce the ultra-low radio frequency energy. The at least one data file is configured for producing the signals derived, at least in part, from measurements of at least one molecule selected from nicotine, caffeine, theobromine, or any combination thereof.
The invention further includes embodiments where the data file produces signals derived from a combination of two or more molecules. In additional embodiments, the system includes at least one sensor configured for communication with the delivery device, and the processor comprises instructions for operation of an artificial intelligence configured to receive information from the at least one sensor and determine when to generate the signals in response to the at least one sensor.
Claims Coverage
The independent claims are directed to a system and a method for delivery of ultra-low radio frequency energy to an individual using a delivery coil and a delivery device that generates molecule-measurement-derived signals from data files and directs delivery to the coil. The claim set includes three main inventive feature groups: delivery system architecture; molecule-based signal derivation; and sensor/AI-controlled signal generation timing.
Delivery coil at an effective distance with signal-directed delivery device
At least one delivery coil configured for placement at an effective distance from the individual, and a delivery device comprising at least one memory, at least one data file configured for producing signals, and at least one processor coupled to the at least one memory and the at least one delivery coil, wherein the processor directs generation of the signals and directs delivery of the signals to the at least one delivery coil to produce the ultra-low radio frequency energy.
Molecule-measurement-derived signals from nicotine, caffeine, theobromine or combinations
At least one data file stored, or storable, in the at least one memory, configured for producing signals derived from measurements of at least one molecule, wherein the signals are configured to produce the ultra-low radio frequency energy when delivered to the at least one delivery coil, and wherein at least one of the at least one data file is configured for producing the signals derived, at least in part, from the measurements of at least one molecule selected from nicotine, caffeine, theobromine, or any combination thereof.
Combination of two or more molecules for derived signals
At least one data file configured for producing signals derived from measurements of at least one molecule, wherein the signals produce the ultra-low radio frequency energy when delivered to the at least one delivery coil, and wherein at least one of the at least one data file is configured for producing the signals derived, at least in part, from the measurements of a combination of two or more molecules.
Artificial intelligence determining when to generate signals based on sensor information
At least one sensor configured for communication with the delivery device, and at least one processor comprising instructions for operation of an artificial intelligence configured to receive information from the at least one sensor and determine when to generate the signals in response to the at least one sensor.
Method generating molecule-measurement-derived signals and directing delivery to a coil
A method comprising generating signals using at least one data file, wherein the at least one data file is configured for producing signals derived from measurements of at least one molecule, wherein the signals are configured to produce the ultra-low radio frequency energy when delivered to at least one delivery coil, wherein at least one of the at least one data file is configured for producing the signals derived, at least in part, from the measurements of at least one molecule selected from nicotine, caffeine, theobromine, or any combination thereof, and directing delivery of the signals to at least one delivery coil placed at an effective distance from the individual to produce the ultra-low radio frequency energy.
Across the independent claims, the core coverage is a delivery system and method that use molecule-measurement-derived signals generated from data files and delivered to a delivery coil positioned at an effective distance from the individual to produce ultra-low radio frequency energy, with optional emphasis on combinations of molecules and AI-based timing based on sensor information.
Stated Advantages
Documented Applications
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