We shall exhibit at "MEDTEC Japan 2017"
Apr. 3, 2017
We shall exhibit at "MEDTEC Japan 2017" which will be held at Tokyo Big Sight during 19th (Wed) to 21st (Fri) of April, 2017.
We shall exhibit our micro fabrication technologies and Biotechnology/ MEMS related service and products based on thin film deposition, photolithography, etching, and nanoimprinting.
Details are follows
Details
Date | 19th-21st of April, 2017 |
---|---|
Venue | Tokyo Big Sight |
Booth NO |
3105 |
Contents
Thin film deposition and nano/micro structure fabrication services
--- For Medical Care/Nursing/Material/Chemical/Electronics ---
- Thin film Deposition Service with over 120 different
- materials(SiO2, Ag, TiO2, Ti, Au etc. )for various functions such as antibacterial, deodorization, hardness enhancement, durability enhancement, corrosion protection etc.
- Patterning fabrication on the flat surface and the three dimensional structure with original nanoimprinting tool for antibacterial, sense of touch, micro channel, super water repellent structure etc.

Manufacturing services for micro machining parts (MEMS) in medical equipment and tools
We offer optimal solution for volume manufacturing in MEMS.
--- Examples of Manufacturing MEMS devices
for medical application ---
- MEMS Vibration Harvester(Application example:Oscillator for leadless pace maker)
- Micro needle(Application example:Medical patch)
- MEMS pressure sensor(Application:Pressure sensor for blood pressure measurement)

IoT total solution
We offer to integrate and consult service for whole IoT components from sensor devices/ network/ data base/ user interface such in healthcare, home healthcare etc.
CEP3D II –Cellar Environment Plate for 3D cell culture
This plate adapting microfluidic technology can be used for iPS and ES cells differentiation induction It save the amount of medium and other additives like hormone or cytokine for cell culture and achieve efficient 3D stem cell culture.

Organ-On-A-Chip
Organ-on-a Chip is a microfluidic cell culture device inhabited by living cells arranged to simulate tissue- and organ- level physiology. These devices produce levels of tissue and organ functionality not possible with 2D or 3D culture systems. This technology has great potential to advance the study of tissue development, organ physiology and disease etiology.

If you intend to visit the event, do not hesitate to stop by our booth.