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"Nanowire Field Effect Transistor: Basic Principles and
Applications" places an emphasis on the application aspects of
nanowire field effect transistors (NWFET). Device physics and
electronics are discussed in a compact manner, together with the
p-n junction diode and MOSFET, the former as an essential element
in NWFET and the latter as a general background of the FET. During
this discussion, the photo-diode, solar cell, LED, LD, DRAM, flash
EEPROM and sensors are highlighted to pave the way for similar
applications of NWFET. Modeling is discussed in close analogy and
comparison with MOSFETs. Contributors focus on processing,
electrostatic discharge (ESD) and application of NWFET. This
includes coverage of solar and memory cells, biological and
chemical sensors, displays and atomic scale light emitting diodes.
Appropriate for scientists and engineers interested in acquiring a
working knowledge of NWFET as well as graduate students
specializing in this subject.
"Nanowire Field Effect Transistor: Basic Principles and
Applications" places an emphasis on the application aspects of
nanowire field effect transistors (NWFET). Device physics and
electronics are discussed in a compact manner, together with the
p-n junction diode and MOSFET, the former as an essential element
in NWFET and the latter as a general background of the FET. During
this discussion, the photo-diode, solar cell, LED, LD, DRAM, flash
EEPROM and sensors are highlighted to pave the way for similar
applications of NWFET. Modeling is discussed in close analogy and
comparison with MOSFETs. Contributors focus on processing,
electrostatic discharge (ESD) and application of NWFET. This
includes coverage of solar and memory cells, biological and
chemical sensors, displays and atomic scale light emitting diodes.
Appropriate for scientists and engineers interested in acquiring a
working knowledge of NWFET as well as graduate students
specializing in this subject.
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