Theory, Analysis and Design of RF Interferometric Sensors
Nguyen, Cam; Kim, Seoktae
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Description for Theory, Analysis and Design of RF Interferometric Sensors
paperback. Series: SpringerBriefs in Physics. Num Pages: 84 pages, 40 black & white illustrations, biography. BIC Classification: TJFN; TTBS. Category: (P) Professional & Vocational. Dimension: 234 x 156 x 4. Weight in Grams: 143.
Theory, Analysis and Design of RF Interferometric Sensors presents the theory, analysis and design of RF interferometric sensors. RF interferometric sensors are attractive for various sensing applications that require every fine resolution and accuracy as well as fast speed. The book also presents two millimeter-wave interferometric sensors realized using RF integrated circuits. The developed millimeter-wave homodyne sensor shows sub-millimeter resolution in the order of 0.05 mm without correction for the non-linear phase response of the sensor's quadrature mixer. The designed millimeter-wave double-channel homodyne sensor provides a resolution of only 0.01 mm, or 1/840th of the operating wavelength, and can inherently ... Read more
Theory, Analysis and Design of RF Interferometric Sensors presents the theory, analysis and design of RF interferometric sensors. RF interferometric sensors are attractive for various sensing applications that require every fine resolution and accuracy as well as fast speed. The book also presents two millimeter-wave interferometric sensors realized using RF integrated circuits. The developed millimeter-wave homodyne sensor shows sub-millimeter resolution in the order of 0.05 mm without correction for the non-linear phase response of the sensor's quadrature mixer. The designed millimeter-wave double-channel homodyne sensor provides a resolution of only 0.01 mm, or 1/840th of the operating wavelength, and can inherently ... Read more
Product Details
Format
Paperback
Publication date
2011
Publisher
Springer United States
Number of pages
84
Condition
New
Series
SpringerBriefs in Physics
Number of Pages
74
Place of Publication
New York, NY, United States
ISBN
9781461420224
SKU
V9781461420224
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15
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