COMMUNICATION DETECTION SYSTEMS USING

Brand Owner (click to sort) Address Description
EYE-COM EYEFLUENCE, INC. 50 W. Liberty Street, Ste. 150 Reno NV 89501 COMMUNICATION AND DETECTION SYSTEMS USING EYE AND EYELID MOVEMENTS, PUPIL DILATION AND OTHER PARTS AND FUNCTIONS OF THE EYE AND OF THE HEAD, AS WELL AS OCULOMETRIC DATA TO INTERPRET VOLUNTARY AND INVOLUNTARY SIGNS OF A PERSON'S PHYSICAL, EMOTIONAL, AND MENTAL STATE, NAMELY, INFRARED EMITTERS, SENSORS, BIOSENSORS, CAMERAS AND CAMERA PARTS USED TO DETECT EYE MOVEMENT, HEADSETS, EYE GLASS FRAMES, DISPLAY MONITORS, PROCESSORS, TRANSMITTERS, RECEIVERS, SYNTHESIZED VOICE MODULES COMPRISED OF PROCESSORS AND SPEAKERS, COMPUTER MEMORY INTEGRATED CIRCUITS AND CIRCUIT BOARDS, AND CONTROLLERS; COMPUTER HARDWARE AND SOFTWARE THAT USES OCULOMETRIC, PHYSIOLOGICAL AND PERFORMANCE VIGILANCE TESTING OUTCOME DATA TO ENABLE ITS USER TO ANALYZE, PREDICT OUTCOMES AND CREATE RESPONSES TO SUCH DATA, SUCH AS HANDS FREE MOVEMENT OF THE CURSOR OR INFORMATION ON THE COMPUTER SCREEN, TRIGGERING COMPUTER OPERATIONS, OR TURNING ON/OFF OR CONTROLLING ANY ELECTRICAL OR ELECTROMECHANICAL DEVICE; COMPUTER HARDWARE AND SOFTWARE THAT USES OCULOMETRIC, PHYSIOLOGICAL AND PERFORMANCE VIGILANCE TESTING OUTCOME DATA TO CALCULATE THE DEGREE OF DIFFERENCE BETWEEN HEAD POSITION AND EYE POSITION;
EYE-MOUSE EYEFLUENCE, INC. 50 W. Liberty Street, Ste. 150 Reno NV 89501 COMMUNICATION AND DETECTION SYSTEMS USING EYE AND EYELID MOVEMENTS, PUPIL DILATION AND OTHER PARTS AND FUNCTIONS OF THE EYE AND OF THE HEAD, AS WELL AS OCULOMETRIC DATA TO INTERPRET VOLUNTARY AND INVOLUNTARY SIGNS OF A PERSON'S PHYSICAL, EMOTIONAL, AND MENTAL STATE, NAMELY, INFRARED EMITTERS AND INFRARED SENSORS USED TO DETECT EYE MOVEMENT AND DIRECTION IN WHICH THE SUBJECT'S HEAD IS TURNED, BIOSENSORS USED TO DETECT EYE MOVEMENT AND DIRECTION IN WHICH THE SUBJECT'S HEAD IS TURNED, HEADSETS, EYE GLASS FRAMES, DISPLAY MONITORS, PROCESSORS, TRANSMITTERS, RECEIVERS, SYNTHESIZED VOICE MODULES COMPRISED OF PROCESSORS AND SPEAKERS, COMPUTER MEMORY INTEGRATED CIRCUITS AND CIRCUIT BOARDS, AND CONTROLLERS; COMPUTER HARDWARE AND SOFTWARE THAT USES OCULOMETRIC, PHYSIOLOGICAL AND PERFORMANCE VIGILANCE TESTING OUTCOME DATA TO ENABLE ITS USER TO ANALYZE, PREDICT OUTCOMES AND CREATE RESPONSES TO SUCH DATA, SUCH AS HANDS FREE MOVEMENT OF THE CURSOR OR INFORMATION ON THE COMPUTER SCREEN, TRIGGERING COMPUTER OPERATIONS, OR TURNING ON/OFF OR CONTROLLING ANY ELECTRICAL OR ELECTROMECHANICAL DEVICE; COMPUTER HARDWARE AND SOFTWARE THAT USES OCULOMETRIC, PHYSIOLOGICAL AND PERFORMANCE VIGILANCE TESTING OUTCOME DATA TO CALCULATE THE DEGREE OF DIFFERENCE BETWEEN HEAD POSITION AND EYE POSITION;EYE MOUSE;
EYECOM EYE-COM CORPORATION 300 E. 2nd St., Suite 1405 Reno NV 89501 COMMUNICATION AND DETECTION SYSTEMS USING EYE MOVEMENT TO INTERPRET VOLUNTARY AND/OR INVOLUNTARY SIGNS OF A PERSON'S PHYSICAL, EMOTIONAL, AND/OR MENTAL STATE, NAMELY, INFRARED EMITTERS AND INFRARED SENSORS USED TO DETECT EYE MOVEMENT, BIOSENSORS USED TO DETECT EYE MOVEMENT, HEADSETS, EYE GLASS FRAMES, DISPLAY MONITORS, PROCESSORS, TRANSMITTERS, RECEIVERS, SYNTHESIZED VOICE MODULES COMPRISED OF PROCESSORS AND SPEAKERS, COMPUTER MEMORY INTEGRATED CIRCUITS AND CIRCUIT BOARDS, AND CONTROLLERS;
 

Where the owner name is not linked, that owner no longer owns the brand

   
Technical Examples
  1. A system for providing reliable communications between components of an irrigation system is provided. The system includes a central control, a number of communication systems each representing a transmission channel, an irrigation controller having a receiver that is configured to receive signals from the communication systems, and one or more valves controlled by the irrigation controller to provide irrigation. According to one aspect of the system, in order to direct the irrigation controller to take certain actions, the central control first generates a message. The message is then delivered to the communication systems. In one instance, the message is transmitted by the communication systems in a rotating manner, i.e., the communication systems take turn in transmitting the message in a predetermined cycle. To ensure proper reception of the message, the irrigation controller conforms to the rotational transmission schedule of the communication systems and monitors the incoming signals accordingly. The received message is then used by the irrigation controller to act on the valves, alter an irrigation schedule or otherwise control irrigation.