Tekceleo in Peer-Reviewed Research | 44 Publications
Tekceleo in Peer-Reviewed Research
Our piezoelectric ultrasonic motors (WLG series) and vibrating mesh nebulizers (Micronice) power cutting-edge research at UCL, MIT, Flinders University, U.S. Naval Research Laboratory, CEA, and 30+ institutions worldwide.
44 Publications
30+ Institutions
12 Countries
USM
MRI Robotics
Tekceleo's WLG piezoelectric motors deliver precision actuation for mri robotics applications. These peer-reviewed publications document their integration in advanced systems by leading research teams worldwide.
USM
Space & Aerospace
Tekceleo's WLG piezoelectric motors deliver precision actuation for space & aerospace applications. These peer-reviewed publications document their integration in advanced systems by leading research teams worldwide.
USM
Cardiac Intervention & Catheterization
Tekceleo's WLG piezoelectric motors deliver precision actuation for cardiac intervention & catheterization applications. These peer-reviewed publications document their integration in advanced systems by leading research teams worldwide.
USM
Motors Research
Tekceleo's WLG piezoelectric motors deliver precision actuation for motors research applications. These peer-reviewed publications document their integration in advanced systems by leading research teams worldwide.
USM
Experimental Physics
Tekceleo's WLG piezoelectric motors deliver precision actuation for experimental physics applications. These peer-reviewed publications document their integration in advanced systems by leading research teams worldwide.
VMN
Aerosol Science
Micronice vibrating mesh nebulizers generate controlled, low-velocity aerosols for aerosol science applications. These publications validate their performance in diverse research environments.
VMN
Nasal Drug Delivery
Micronice vibrating mesh nebulizers generate controlled, low-velocity aerosols for nasal drug delivery applications. These publications validate their performance in diverse research environments.
VMN
Flotation & Mineral Processing
Micronice vibrating mesh nebulizers generate controlled, low-velocity aerosols for flotation & mineral processing applications. These publications validate their performance in diverse research environments.
VMN
Contamination Control
Micronice vibrating mesh nebulizers generate controlled, low-velocity aerosols for contamination control applications. These publications validate their performance in diverse research environments.
VMN
Air Quality & Ventilation
Micronice vibrating mesh nebulizers generate controlled, low-velocity aerosols for air quality & ventilation applications. These publications validate their performance in diverse research environments.
VMN
Mass Spectrometry
Micronice vibrating mesh nebulizers generate controlled, low-velocity aerosols for mass spectrometry applications. These publications validate their performance in diverse research environments.
VMN
Combustion & Emissions
Micronice vibrating mesh nebulizers generate controlled, low-velocity aerosols for combustion & emissions applications. These publications validate their performance in diverse research environments.
VMN
Research & Development
Micronice vibrating mesh nebulizers generate controlled, low-velocity aerosols for research & development applications. These publications validate their performance in diverse research environments.
Leverage Research-Backed Expertise for Your R&D
Our motors and nebulizers power cutting-edge research at 30+ institutions worldwide. Discover how they can accelerate your development — from prototype to production.
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