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  • Operation and Modeling of the MOS Transistor
    Operation and Modeling of the MOS Transistor. Geared toward advanced electrical engineering students, this extensive text provides a unified treatment of the operation and modeling of the MOS transistor, the key element of most modern microelectronic chips.
  • Quantum Transport: Atom to Transistor
    Quantum Transport: Atom to Transistor. Written for senior and graduate students, this book presents the conceptual framework underlying the atomistic theory of matter, emphasizing aspects that relate to current flow, including advanced concepts of non-equilibrium quantum statistical mechanics.
  • JFET Application Note: Reset Transistor
    In JFETs designed primarily for silicon drift detectors and Si(Li) detectors,. the reset transistor is configured as shown in Figure 1, with the base. shorted to the source, the collector shorted to the gate, and the emitter. connected to the reset pad. Since the gate-source JFET junction
  • Reset Transistor JFET Application Note
    The Moxtek JFET chips include a secondary PNP "reset transistor" which can be used to remove charge that accumulates on the JFET gate. An example of this is in the front-end electronics of x-ray detectors. Depending on the type of charge that accumulates on the gate (positive or negative
  • Single electron toggles transistor on and off
    A new type of transistor takes only one electron to switch between on and off, a breakthrough that could lead to lowpower chips with higher computing densities. A micrograph of the single-electron transistor (SET) superimposed on experimental circuitry shows the source, , along with the applied ac
  • The Thermal Scaling: From Transistor to Array
    The electrical and thermal performance scaling from transistor to array was studied in this paper to help improve the predictive modeling of the electricalthermal behavior of bipolar arrays. The dc and ac performance scales well at low bias but not to the medium and high bias because thermal
  • Computer Power User Article - White Paper: TeraHertz: Intel's Transistor Breakthrough
    White Paper: TeraHertz: Intel's Transistor Breakthrough March 2002 Vol.2 Issue 3 Page(s) 44-47 in print issue Add To My Personal Library White Paper: TeraHertz: Intel's Transistor Breakthrough Here are some facts and figures related to Intel's TeraHertz transistor: *Intel expects the TeraHertz
  • Low Power and Low Voltage Circuit Design with the FGMOS Transistor
    Low Power and Low Voltage Circuit Design with the FGMOS Transistor. Demonstrating how FGMOS transistors can be used in a low voltage and low power design context, this book provides solutions for situations where the limits of the technology have been pushed far below the values recommended

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