Transfer Innovation Sandbox: Selected Projects

The High Performance Center Micro/Nano supports application-driven transfer projects to accelerate technology development towards market readiness. A selection of projects is presented here.

You are interested in one of the topics? Don't hesitate to contact us!

 

Ultra-Low Power Li-Fi TinySpot

  • Optical wireless data transfer with up to 20 Mbps
  • Ultra-low power consumption of 5 mW
 

Evaluation platform for ultrasound sensors

  • Evaluation offering for miniaturized ultrasonic transducers
  • Faster technology selection with reduced risk
 

Customer sampling of CMUT hydrophones

  • Broadband hydrophones for precise acoustic measurement technology
  • End-user feedback accelerates technology transfer
 

Multichannel-CMUT-Evaluation-Kit

  • Easy access to technology testing for users
  • 8 independent channels and open access to raw data
 

Efficient Simulation of Surface Processes

  • Precise characterization of molecular adsorption and diffusion on surfaces
  • AI agents and automated workflows reduce development costs
 

Galv. Al-Coating for Hybrid Bonding

  • Replacing multi-step processes with aluminum coating
  • Evaluating deep eutectic solvents (DES) as a sustainable alternative
 

Radar Sensor for Railway Environment

  • Detection of Minute Movements from a Safe Distance
  • Benchmarking Against Reference Sensors in Long-Term Monitoring
 

UHF-RFID-Based Wireless Sensors

  • Communication ranges of several meters
  • Development platform for accelerated market access
 

Plug-and-Play Quantum Communication

  • Cost-effective and easily accessible evaluation kit
  • Low-barrier entry into quantum communication
 

Time-Correlated Single-Photon Counting

  • More affordable, mobile, easy-to-use demonstrator
  • Strengthening technology transfer and training 
 

Parylene-Aluminum for redistribution layers

  • CMOS-compatible
  • Excellent physical properties
  • Ideal for high-frequency applications
 

RF Traffic Emulator for IoT systems

  • Simulation of realistic radio environments
  • Extensive signal library and traffic models

Get in touch with us:

 

Contact

Dr. Christian Körner

Head of the Office

Fraunhofer IPMS, Maria-Reiche-Str. 2, 01109 Dresden, Germany
Phone: +49 351 8823-1515