DTIC ADA469484: A Modular Mixed Signal VLSI Design Approach For Digital Radar Applications - Info and Reading Options
By Defense Technical Information Center
"DTIC ADA469484: A Modular Mixed Signal VLSI Design Approach For Digital Radar Applications" and the language of the book is English.
“DTIC ADA469484: A Modular Mixed Signal VLSI Design Approach For Digital Radar Applications” Metadata:
- Title: ➤ DTIC ADA469484: A Modular Mixed Signal VLSI Design Approach For Digital Radar Applications
- Author: ➤ Defense Technical Information Center
- Language: English
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- Internet Archive ID: DTIC_ADA469484
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"DTIC ADA469484: A Modular Mixed Signal VLSI Design Approach For Digital Radar Applications" Description:
The Internet Archive:
This study explores the idea of building a library of VHDL con gurable components for use in digital radar applications. Con gurable components allows a designer to choose which components he or she needs and con gures those components for a speci c application. By doing this, design time for ASICs and FPGAs is shortened because the components are already designed and tested. This idea is demonstrated with a con gurable dynamic pipelinable fast fourier transform. Many FFT implementations exist, but this implementation is both con gurable and dynamic. Pre-synthesis customization allows the FFT to be tailored to almost any DSP application, and the dynamic property allows the FFT to calculate di erent length FFTs run-time. Three objectives will be accomplished: design and characterization of the aforementioned FFT; analysis of the error involved in the FFT calculation using di erent twiddle factor bit widths; and nally an analysis of all the con gurations for the synthesized design using a 90nm technology library. Speeds of up to 225 MHz have been simulated for a length-1024 FFT using the 90 nm technology.
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"DTIC ADA469484: A Modular Mixed Signal VLSI Design Approach For Digital Radar Applications" is available for download from The Internet Archive in "texts" format, the size of the file-s is: 28.04 Mbs, and the file-s went public at Wed Jun 13 2018.
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- Internet Archive Link: Archive.org page
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- Added Date: 2018-06-13 04:52:57
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