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MORGAN RESEARCH CORP.
UEI: N/A
# of Employees: 450
HUBZone Owned: No
Socially and Economically Disadvantaged: Yes
Woman Owned: Yes
Award Charts
Award Listing
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Microsystems Technology (MST) for Fuzing in Low-Spin/Low-G Launch Environment
Amount: $729,611.00Morgan Research Corp. has developed a compact, lightweight, MEMS based safe and arming device concept for low-G launch, low spin rate munitions such as the 2.75 rocket. The designs include concepts fo ...
SBIRPhase II2006Department of Defense Army -
Modular `Smart Dust' Prognostics and Diagnostics System
Amount: $68,896.00An increasing amount of effort and interest is being expended on development activities incorporating embedded sensors within complex systems for the purpose of collecting data for system-related diag ...
SBIRPhase I2005Department of Defense Navy -
Microsystems Technology (MST) for Fuzing in Low-Spin/Low-G Launch Environment
Amount: $119,356.00Morgan Research Corporation has developed a compact, lightweight, MEMS based safe and arming device concept for low-G launch, low spin rate munitions such as the 2.75 rocket. The designs include conce ...
SBIRPhase I2005Department of Defense Army -
MOEMS Miniaturized Real-time Visible/UV Spectrometer
Amount: $743,108.00This Phase II SBIR proposal is for the development of a miniaturized real-time visible/UV spectrometer prototype based on micro-opto-electro-mechanical systems (MOEMS) technology. Use of MOEMS techno ...
SBIRPhase II2004Department of Defense Office for Chemical and Biological Defense -
Crossover-Free Fiber Optic Gyroscope Micro-Sensor Coils
Amount: $749,198.00Morgan Research Corporation proposes to combine crossover-free fiber winding techniques with the selection of optimal SM fibers, high quality coil form materials, and ideal adhesives to produce an enh ...
SBIRPhase II2004Department of Defense Defense Advanced Research Projects Agency -
Multiparameter Fiber Optic Sensor Suite for Structures
Amount: $67,782.00Structural Health Monitoring (SHM) for microspacecraft is a rapidly growing technology area for the use of fiber optics and MEMS. Morgan Research Corporation proposes an innovative system called a fib ...
SBIRPhase I2004National Aeronautics and Space Administration -
MEMS-Based Rotational Energy Scavenging System
Amount: $69,943.00An SBIR Phase I program is proposed to research, design, and develop a MEMS-based rotational energy scavenging system. MORGAN is proposing the development of a flexible mechanical-to-electrical energ ...
STTRPhase I2004Department of Defense Navy -
STTR Phase I: Packaging of MEMS Inertial Sensors for Mechanically Harsh Environments
Amount: $99,998.00This Small Business Technology Transfer Phase I Project will investigate the feasibility of integrating advanced vibration isolation packaging technology with Micro-electro-mechanical systems (MEMS) i ...
STTRPhase I2004National Science Foundation -
Embedded Microinstrumentation for Health Monitoring of Composite Structures
Amount: $738,060.00This SBIR Phase II program will prototype a stuctural health monitoring system for composite rocket motor cases using embedded optical fibers, instrument miniaturization technologies, and a novel pert ...
SBIRPhase II2003Department of Defense Missile Defense Agency -
LCP-Based Packaging of Exposed MEMS Sensors
Amount: $490,822.00Over many years of development, the microelectronics industry yielded a broad set of advanced microelectronics packaging techniques. These techniques have been designed to increase the reliability of ...
SBIRPhase II2003Department of Defense Defense Advanced Research Projects Agency