Nu Waves Ltd.

Company Information

Company Name
Nu Waves Ltd.
Address
OH
Middletown, OH, 45044-3269
Phone
1 513-360-0800
URL
http://nuwaves-ltd.com
DUNS
32326790
Number of Employees
44
Hubzone Owned:
N
Minority Owned:
N
Woman Owned:
N

Award Totals

PROGRAM/PHASE
AWARD AMOUNT ($)
NUMBER OF AWARDS
SBIR Phase I
$819,868.00
8
SBIR Phase II
$1,349,943.00
2
Chart code to be here

Award List

  1. A LIGHTWEIGHT UHF SATCOM TRIPLEXER FOR USE IN EXPENDABLE BUOY SYSTEMS

    Amount: $599,973.00

    Existing filter technology does not suit the mechanical and electrical needs for use in expendable buoy systems. Current diplexer/triplexer designs do not provide adequate rejection of the high power ...

    SBIR Phase II 2010 NavyDepartment of Defense
  2. An Ultra Low Passive Inter-Modulation (PIM) Diplexer

    Amount: $69,987.00

    Passive Intermodulation (PIM) is a phenomenon which results from non-linear voltage/current behavior. PIM is generated when two or more frequencies interact within a non-linear component or structure. ...

    SBIR Phase I 2010 NavyDepartment of Defense
  3. Fiber-Optic RF Distribution (FORD) & Digital Control Signals Network Across a PCB in GPS User Eqpt

    Amount: $99,991.00

    High performance RF circuits found in highly robust GPS user equipment are especially sensitive to inter-board electromagnetic interference, which results in spurious signals and poor circuit-to-circu ...

    SBIR Phase I 2008 Air ForceDepartment of Defense
  4. High Density, Fiber-Optic Sensors, Single Mode/Multi-Mode and High Power Fiber-Optic Rotary Connection Technology

    Amount: $79,973.00

    Electro-Optic technology is rapidly replacing coax based applications. Photonic routing and distribution offer new opportunities for digital and analog RF signal transport over optical fiber networks. ...

    SBIR Phase I 2008 NavyDepartment of Defense
  5. A LIGHTWEIGHT, UHF SATCOM DIPLEXER FOR USE IN EXPENDABLE BUOY SYSTEMS

    Amount: $69,936.00

    Existing filter technology does not suit the mechanical and electrical needs for use in expendable buoy systems. Current diplexer designs do not provide adequate rejection of the high power transmitt ...

    SBIR Phase I 2008 NavyDepartment of Defense
  6. Man Portable Hand Held Wireless Network Survey Interrogation Tool (WiNSIT)

    Amount: $99,992.00

    The ability to Find, Fix, and Finish enemy combatants is highly desirable to winning wars. The capability to positively identify High Value Targets / High Value Individuals is one method to insure su ...

    SBIR Phase I 2009 Special Operations CommandDepartment of Defense
  7. Fiber-Optic RF Distribution (FORD) & Digital Control Signals Network Across a PCB in GPS User Eqpt

    Amount: $749,970.00

    High performance RF circuits found in highly robust GPS user equipment are especially sensitive to inter-board electromagnetic interference, which results in spurious signals and poor circuitto-circui ...

    SBIR Phase II 2009 Air ForceDepartment of Defense
  8. High Efficiency Switching Power amplifier for Earth Radar Observation System (HESPEROS)

    Amount: $124,992.00

    To meet multiple mission needs with limited resources, NASA's Science Mission Directorate (SMD) is pursuing smaller and more affordable spacecraft. The reduction of size, weight, power, and cost ...

    SBIR Phase I 2012 National Aeronautics and Space Administration
  9. Technologically Advanced N-Plexer for GPS III Operation (TANGO)

    Amount: $149,998.00

    ABSTRACT: Currently, the GPS III navigation payload utilizes a triplexer for signal combining. While identifying potential secondary industry sources is an apparent goal of the Air Force, reducing th ...

    SBIR Phase I 2014 Air ForceDepartment of Defense
  10. UAS Power Amplifier for Extended Range of Non-Payload Communication Devices (UPEND)

    Amount: $124,999.00

    The integration of Unmanned Aircraft Systems (UAS) into the National Airspace System (NAS) requires a robust, reliable communication link between the Unmanned Aerial Vehicle (UAV) and its operators. C ...

    SBIR Phase I 2014 National Aeronautics and Space Administration

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