Company

R&D

  • About the study
  • Research missions
  • Entwick Institute for Non-invasive Therapeutic Technologies

    Since its inception, the Entwick Institute for Non-invasive Therapeutics has been working on a variety of non-invasive therapeutic technologies.
    Our labs are led by senior members with decades of experience and include hardware, firmware, instrumentation, and certification teams.

    It is organized and operates a variety of metrology equipment, including high-performance Tesla meters, RF meters, and optical meters, to enable reliable development. We currently have a variety of non-invasive treatment technologies, including ELF-EMF, LLL, EMS, and ultrasound, and are pursuing safety and (pre-)clinical validation to enable safer and more effective treatments.

    • Hardware Team

      Hardware design and development to support certification testing to world standard quality.

    • Firmware Team

      Firmware design and development to support certification testing to meet global standards of quality.

    • Mechanical Team

      Mechanical design and sleeve design development. Research and conduct product UI design.

    • Certification Team

      Support for technical and development documentation management and certification testing.

    Research outcomes

    • 2024

      ELF-EMF/LLL Preclinical Progression

      Developing a new hair loss treatment

    • 2023

      Patent application for a pulsating electromagnetic field generator

      Developed an ultrasound arthritis treatment device

      Develop a device to treat deep vein thrombosis

      Acquire ISO13485

      Developing electroceuticals to treat arthritis

    • 2022

      Patent application for an arthritis pain treatment device

      Patent application for a non-invasive eye disease treatment device

    • 1 New Medical Technology, Non-Invasive electroceutical Development

      Developing new med-tech electroceutical that are more effective and safer than traditional medicines

      Developing non-invasive medication delivery vehicles to control the absorption and location of action of existing medicines

      Developing boosting electroceuticals to improve the effectiveness of existing surgical treatments

    • 2 Developing the latest non-invasive therapies

      Identify various non-invasive treatment candidates such as hyperbaric oxygen, pressure, temperature, etc. and validate their effectiveness to apply the technology to new non-invasive e-prescription

      Developing non-invasive therapeutic technologies and form factors optimized to treat a variety of incurable diseases

    • 3 Developing entry-level digital electronics

      Developing personalized electronic medicine that miniaturizes expensive medical devices used in hospitals to low-power levels so patients can continue to treat their illnesses at home

      Developing 'digital electronic therapeutics' by integrating electronic external stimulation technology with digital therapeutics that emphasize software-based therapeutic functions

    • 4 Development of telemedicine digital medication

      Apply measurement and diagnostic capabilities to e-medicines so that healthcare providers can remotely view a patient's condition and set appropriate prescriptions for them

      Device electronics in a metaverse environment for telemedicine without a doctor's office visit

    R & D Mission

    • New Medical Technologies

      New Medical Technology E-medicine with Excellent Efficacy and Stability

      Non-invasive medication delivery

      Boosting e-medicine

    • The latest non-invasive treatment technologies

      Discovering new noninvasive treatment candidates

      Non-invasive therapeutics optimized for intractable diseases

    • Entry-level digital electronics

      Low-power miniaturized personalized medicine

      Digital medicine with electronic external stimulation technology

    • Telemedicine
      e-medicine

      Remote diagnostics and prescribing e-medicine

      Devices in a metaverse environment e-medicine