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Showing posts with the label Synthetic Aperture Radar

My Book "Practical Microstrip and Printed Antenna Design" is published now!!!

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My Book "Practical Microstrip and Printed Antenna Design" is published now and available for sale.  With all of the functionality now integrated into wireless devices, antenna design and development are taking more and more time. But a reliable design process with the right capabilities, like phased array beamforming, antenna beam shaping, can help you improve design throughput and reduce cost. Review the fundamental specifications of practical microstrip and printed antennas design and see what capabilities you should c onsider getting the right technique for your design.  https://us.artechhouse.com/Practical-Microstrip-and-Printed-Antenna-Design-P2002.aspx https://www.amazon.com/Practical-Microstrip-Printed-Antenna-Design/dp/163081668X Practical Microstrip and Printed Antenna Design

How to design SAR antennas

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Due to project complexity and cost factor, designer first simulates design using commercial EDA tools to get performance data before real production.  Design cycle time plays a big part in determining a product launch schedule. Companies are under enormous pressure to reduce the time and cost of their design cycle.   Simulation tool capability and the way tools are used, plays important role in design cycle time and cost . There are simulation technologies available that can change the way complex integrated array antenna are designed. One solution enables use of different solvers for radiator and 3D feeder networks separately. This hybrid-design technology reduces total design iteration time significantly. Agilent has three most established EM simulation technologies: Method-of-moments (MoM), finite element method (FEM) and finite difference time domain (FDTD). This paper proposes how to use multiple EM simulation solvers along with other techniques thro...