LABORATORY SCALE ULTRASONIC IRRADIATION VESSELS

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PROSONIX Prosonix Limited Magdalen Centre, Robinson Avenue, United Kingdom LABORATORY SCALE ULTRASONIC IRRADIATION VESSELS IN THE NATURE OF TUBES, CYLINDRICAL DUCTS AND CONTAINERS USED TO SUBJECT FLUIDS TO ULTRASOUND FOR THE PURPOSE OF ASSISTING SONOCHEMISTRY, SONOPROCESSING AND CRYSTALLIZATION PROCESSES IN THE CHEMICAL, MINERAL AND PHARMACEUTICAL FIELDS;ULTRASONIC IRRADIATION VESSELS IN THE NATURE OF TUBES, CYLINDRICAL DUCTS AND CONTAINERS USED TO SUBJECT FLUIDS TO ULTRASOUND FOR THE PURPOSE OF ASSISTING SONOCHEMISTRY, SONOPROCESSING AND CRYSTALLIZATION PROCESSES IN THE CHEMICAL, MINERAL AND PHARMACEUTICAL FIELDS FOR USE IN ULTRASONIC MACHINES FOR MANUFACTURING, PRODUCING AND PROCESSING CRYSTALS;SCIENTIFIC AND TECHNICAL CONSULTATION SERVICES ON THE APPLICATION OF ULTRASOUND TO CHEMICAL PROCESSES; SCIENTIFIC AND TECHNICAL CONSULTATION SERVICES ON THE APPLICATION OF ULTRASOUND TO CRYSTALLIZATION PROCESSES; LICENSING OF INTELLECTUAL PROPERTY RELATING TO THE APPLICATION OF ULTRASOUND;
PROSONIX EXPERTS IN SOUND SCIENCE Prosonix Limited Magdalen Centre, Robinson Avenue, United Kingdom LABORATORY SCALE ULTRASONIC IRRADIATION VESSELS IN THE NATURE OF TUBES, CYLINDRICAL DUCTS AND CONTAINERS USED TO SUBJECT FLUIDS TO ULTRASOUND FOR THE PURPOSE OF ASSISTING SONOCHEMISTRY, SONOPROCESSING AND CRYSTALLIZATION PROCESSES IN THE CHEMICAL, MINERAL AND PHARMACEUTICAL FIELDS;ULTRASONIC IRRADIATION VESSELS IN THE NATURE OF TUBES, CYLINDRICAL DUCTS AND CONTAINERS USED TO SUBJECT FLUIDS TO ULTRASOUND FOR THE PURPOSE OF ASSISTING SONOCHEMISTRY, SONOPROCESSING AND CRYSTALLIZATION PROCESSES IN THE CHEMICAL, MINERAL AND PHARMACEUTICAL FIELDS FOR USE IN ULTRASONIC MACHINES FOR MANUFACTURING, PRODUCING AND PROCESSING CRYSTALS;SCIENTIFIC AND TECHNICAL CONSULTATION SERVICES ON THE APPLICATION OF ULTRASOUND TO CHEMICAL PROCESSES; SCIENTIFIC AND TECHNICAL CONSULTATION SERVICES ON THE APPLICATION OF ULTRASOUND TO CRYSTALLIZATION PROCESSES; LICENSING OF INTELLECTUAL PROPERTY RELATING TO THE APPLICATION OF ULTRASOUND;
 

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Technical Examples
  1. A blood pressure measuring apparatus oppresses blood vessels of a human body by an inflating unit through a cuff. When the blood vessels are oppressed through the cuff, a pulse wave superposed on a cuff pressure signal through a cuff pressure detector is detected by a pulse wave detector. The waveform of the detected pulse wave changes similarly to changes of pressure in the oppressed blood vessels in one heartbeat period. The information of the detected pulse wave waveform and the cuff pressure at this time are stored in a memory. A blood pressure calculator determines the scale of pulse wave waveform on the basis of the information stored in the memory, and matches the determined scale of pulse wave waveform with the scale of waveform showing pressure changes in the blood vessels, so that a plurality of timings of coincidence of cuff pressure and blood pressure are detected, and the systolic pressure and diastolic pressure are calculated by using these detected information and stored information of pulse wave waveforms. It is therefore possible to measure blood pressures in a short time.