Microsystems for Bioelectronics

Microsystems for Bioelectronics

Scaling and Performance Limits

Cavin III, Ralph K.; Zhirnov, Victor V.

William Andrew Publishing

02/2015

300

Dura

Inglês

9780323313025

15 a 20 dias

730

Descrição não disponível.
1. The nanomorphic cell: Atomic limits of computing

2. Basic Physics of ICT

3. Energy in the small: Integrated micro-scale energy sources

4. Fundamental limits of logic and memory

5. A severely scaled microprocessor

6. Sensors at the micro-scale

7. Nanomorphic cell communication

8. Micro-scale systems
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1-bit ALU; analog signals; atomic-level computing; barrier transitions; benchmarks; binary switch; bio-optical transducers; biochemical transducers; bioelectrical transducers; Boltzmann distribution; capacitor; capacitor energy storage density; capacitor leakage; cell parameters; conformons; device density; device physics; distinguishability; distinguishable states; DNA; DNA memory; DRAM memory; E. coli cell; Electromagnetic radiation; electron transport; electron tunneling; electronic scaling limits; energy barriers; energy harvesting; eukaryotic cells; fan-out; FET; floating gate memory; Frii's Law; galvanic cells biofuel cells; genetic program; heat removal; Heisenberg time; Heisenberg uncertainty principle; in carbo; in carbo design secrets; in carbo energy; In silico; information carriers; information measure; information output-living cell; interconnect models; interfaces; kinetic energy; living cell; logic switch; logic/memory energetics; measurement time; memory access; micron-scale machines; nanomorphic cell; optical/infrared transmission; photovoltaics; pn junction; pn junctions; pn-junction; prokaryotic cells; proteins; quantum confinement; radiation efficiency; radioisotopes; RF/microwave sources; RNA; scaling limits; Schottky barriers; selectivity; semiconductor doping; sensitivity; Sensors; SRAM memory; stimuli; storage capacitor; supercapacitors; synergy; terahertz; thermal energy; thermal noise; thermal noise spectrum; thermal transducers; thermodynamic units; tiling; tunneling; Turing machine; von Neumann architecture; water absorption; wavelength;