Sciperio, Inc.

Company Information
Address 12151 RESEARCH PKWY STE 150
ORLANDO, FL, 32826-2920


DUNS: 179523691

# of Employees: 25

Ownership Information

HUBZone Owned: N

Socially and Economically Disadvantaged: N

Woman Owned: N

Award Charts

Award Listing

  1. 3-D Antenna Technology using Additive Manufacturing

    Amount: $149,964.00

    This proposed effort is to fabricate the next generation of Printed Circuit Board (PCB) based antennas using Direct Digital Manufacturing (DDM). The PCB based antennas will be converted to Printed Ci ...

    SBIRPhase I2017Department of Defense Air Force
  2. Printable Materials with Embedded Electronics and Radio Frequency Components

    Amount: $99,624.00

    Direct Digital Manufacturing is a combination of 3D printing, Direct printing, pick and place and milling to manufacture electronic devices. Next generation Direct Digital Manufacturing will have a s ...

    SBIRPhase I2016Department of Defense Army
  3. Printed Low Voltage Munition Ignition Bridge

    Amount: $499,893.00

    The printed approach that Sciperio used in Phase I demonstrated that it is feasible to utilize direct printing to manufacture ignition bridges. The direct printed approach is a combination of printed ...

    SBIRPhase II2015Department of Defense Army
  4. Direct Printing of 3D Structural RF Electronics

    Amount: $749,971.00

    ABSTRACT: Using the advantages of 3D printing, an antenna system wing structure will be printed. The antenna system will be a multi-layer electronic device with a number of antenna elements. The el ...

    SBIRPhase II2014Department of Defense Air Force
  5. Affordable 3D Printed Phased Arrays

    Amount: $79,995.00

    3D printed phased array antennas (PAA) would be more rugged, lighter and take a variety of shapes and including unmanned aerial vehicle (UAV) wings. Printing antennas, passives and interconnects has b ...

    STTRPhase I2014Navy Department of Defense
  6. Printed Low Voltage Munition Ignition Bridge

    Amount: $99,006.00

    Initiators are used in Electro-explosive devices (EEDs) and must ensure the energetic device is not activated by accident and it must activate with guaranteed success when triggered. There are a numb ...

    SBIRPhase I2014Department of Defense Army
  7. Additive Manufacturing of Multifunctional Nanocomposites

    Amount: $149,997.00

    Sciperio with team members Georgia Institute of Technology and Centecorp have teamed up to develop an Additive Manufacturing Composite using nano and micro fillers. The team will develop multi-scale ...

    STTRPhase I2013Army Department of Defense
  8. Direct Printing of 3D Structural Radio Frequency Electronics

    Amount: $148,912.00

    ABSTRACT: Historically, fiberglass/composite manufacturing processes were focused on the fabrication of structural/mechanical subcomponents. For UAVs this would include components such as wings, fuse ...

    SBIRPhase I2012Department of Defense Air Force
  9. Development of Advanced Compact Energy Recovery Pumping System for Shipboard Seawater Reverse Osmosis Desalination

    Amount: $436,367.00

    An energy recovery reverse osmosis pump (RO) capable of delivering 16,000 gallons per day is proposed. The final product after the Phase II option will be a titanium pump to reduce the weight and enha ...

    SBIRPhase II2012Navy Department of Defense
  10. Ultra Low Power Electronics for Autonomous Micro-Sensor Applications

    Amount: $99,095.00

    There are a number of sensors capable of detecting valuable information. However these sensors are many times only valuable if they are in a strategic location. To place the sensor in a strategic lo ...

    SBIRPhase I2010Air Force Department of Defense

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