SBIR Phase I: Diaphonic Valve on a Chip, Harvesting Energy From Audio to Couple Communications Into the Ear

Information

  • NSF Award
  • 1046625
Owner
  • Award Id
    1046625
  • Award Effective Date
    1/1/2011 - 13 years ago
  • Award Expiration Date
    8/31/2011 - 12 years ago
  • Award Amount
    $ 150,000.00
  • Award Instrument
    Standard Grant

SBIR Phase I: Diaphonic Valve on a Chip, Harvesting Energy From Audio to Couple Communications Into the Ear

This Small Business Innovation Research Phase I project, Diaphonic Valve on a Chip, Harvesting Energy from Audio to Couple Communications into the Ear, studies production of chip-like substrates containing Diaphonic Valves. These components harvest energy from audio communications for the purpose of inflating a coupling device in a user's ear. The inflatable coupling is being developed for communications systems (Multimedia Players, Bluetooth headsets, hearing aids, and communications headsets), but the key to making it all work is the Diaphonic Valve. Present embodiments of diaphonic valves are small but macroscopic devices that work in conjunction with an electrically-actuated acoustic sound source. This project will improve understanding of the mechanics of the Diaphonic Valve, miniaturize its mechanism, and organizing Diaphonic Valves on chips for efficient manufacturing and utilization. The inflatable coupling of a communications device to the ear, which is enabled by the Diaphonic Valve, addresses longstanding problems with in-ear devices. This ear-coupling technology is more comfortable than any currently on the market, produces extremely high fidelity audio, reduces listener fatigue and protects from hearing damage, and is less expensive than alternative ear couplings of similar quality like custom ear molds used in hearing aids. <br/><br/><br/>The broader impact/commercial potential of this project is revolutionary new person-to-audio couplings in consumer audio, Bluetooth headsets, hearing aids, and headsets for professional communications (such as pilots, law enforcement, and military applications). This technology has the ability to reduce listener fatigue and hearing damage in the population using in-ear devices, as well as making hearing aids more comfortable for people who already have hearing loss. The strategy to bring this technology to these various markets is to partner with established companies, thereby capitalizing on established sales channels and customer name recognition. The unique system components of the technology (the inflatable ear coupling bubbles and the Diaphonic Valves) will be manufactured and supplied to companies that have licensed the technology. The market for this technology in the hearing aid sector alone could be $5M to $20M in five years. Consumer audio represents a significantly larger market. The first such business arrangement is being finalized with a well known maker of consumer and professional audio headphones. The success of this project will create engineering and business sector jobs as well as manufacturing jobs. Near term, the Phase I project includes funding for a high school student or college undergraduate to participate in the research.

  • Program Officer
    Juan E. Figueroa
  • Min Amd Letter Date
    11/18/2010 - 13 years ago
  • Max Amd Letter Date
    7/25/2011 - 12 years ago
  • ARRA Amount

Institutions

  • Name
    Asius Technologies, LLC
  • City
    Longmont
  • State
    CO
  • Country
    United States
  • Address
    1257 Whitehall
  • Postal Code
    805042668
  • Phone Number
    7202042676

Investigators

  • First Name
    Robert
  • Last Name
    Schulein
  • Email Address
    Stephena@Usermail.com
  • Start Date
    11/18/2010 12:00:00 AM
  • End Date
    07/25/2011
  • First Name
    Stephen
  • Last Name
    Ambrose
  • Email Address
    Stephen.Ambrose@AsiusTechnologies.com
  • Start Date
    7/25/2011 12:00:00 AM