PRINCETON MICROWAVE TECHNOLOGY INC — Department of Defense SBIR Phase I: ABSTRACT: In October of 2003 the FCC opened the 71-76 GHz, 81-86 GHz, and 92-95 GHz for c
PRINCETON MICROWAVE TECHNOLOGY INC — SBIR Phase I award from Department of Defense.
- Amount
- $98,524
- Agency
- Department of Defense · Air Force
- Program / Phase
- SBIR · Phase I
- Solicitation
- 2010.3
- NAICS
- —
- Place of performance
- NJ
- Period
- 2011-02-17
Description
ABSTRACT: In October of 2003 the FCC opened the 71-76 GHz, 81-86 GHz, and 92-95 GHz for commercial use. Since these bands are also available for satellite applications there is a need for space-qualifiable front-end E-band components developed in parallel with robust components for terrestrial use. Phase I effort focuses on developing an E-band low-noise amplifier (LNA) design, using 0.15um technology and then validating the design with modeling and simulation. This effort will make non-traditional bands such as 81-86 GHz available for military applications. The LNA design has specific goals in low noise-figure, small-signal gain, wide operating temperature range, and radiation-hardness. In Phase I we will be identifying the most favorable device technologies and foundries in terms of both the focused Phase I radiation-hardened LNA objectives. We consider the most favorable device technology to be AlGaN/GaN fabricated on SiC and the most favorable foundry to be HRL. This viewpoint is based on system considerations: GaN has at least an order-of-magnitude better self-protection capability than GaAs or InP, it has the potential for higher-power transceiver MMICs, and it has a higher radiation tolerance than competing technologies. However, InP has a lower noise and higher gain and has sufficient radiation hardness. Uncertainties include the time that will be needed to bring GaN"s current high costs down relatively to other technologies. BENEFIT: This effort will align with the overall Air Force effort to make bands such as 81-86 GHz available for military applications.