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Logic IC Master Reference summarizes the identification codes, functions, pinouts, and package styles for a broad range of digital IC devices. The main body of this book is divided into three sections: Section I - 54/7400 TTL and CMOS devices; Section II - 4000-series CMOS devices; Section III - ECL devices. The selections regarding functions are generally limited to small- and medium-scale devices, logic functions, buffers, decoders, multiplexers, counters, and shift registers. A few large-scale digital devices and devices provided by two or more major IC manufacturers are included. The two indexes are organized by device identification code and by device function. This reference text will prove useful to digital design engineers and technicians.
For beginning to mid-level electronics technicians and hobbyists, this easy-to-use, bestselling reference supplies a wealth of technical information on the most widely used integrated circuits. Respected author Delton Horn focuses on the ICs themselves rather than the circuits they are used in, providing new or upgraded material on oscillators and signal generators, RF and video devices, voltage regulators, and digital/analog crossovers.
Design exibility and power consumption in addition to the cost, have always been the most important issues in design of integrated circuits (ICs), and are the main concerns of this research, as well. Energy Consumptions: Power dissipation (P ) and energy consumption are - diss pecially importantwhen there is a limited amountof power budgetor limited source of energy. Very common examples are portable systems where the battery life time depends on system power consumption. Many different techniques have been - veloped to reduce or manage the circuit power consumption in this type of systems. Ultra-low power (ULP) applications are another examples where power dissipation is the primary design issue. In such applications, the power budget is so restricted that very special circuit and system level design techniquesare needed to satisfy the requirements. Circuits employed in applications such as wireless sensor networks (WSN), wearable battery powered systems [1], and implantable circuits for biol- ical applications need to consume very low amount of power such that the entire system can survive for a very long time without the need for changingor recharging battery[2–4]. Using newpowersupplytechniquessuchas energyharvesting[5]and printable batteries [6], is another reason for reducing power dissipation. Devel- ing special design techniques for implementing low power circuits [7–9], as well as dynamic power management (DPM) schemes [10] are the two main approaches to control the system power consumption. Design Flexibility: Design exibility is the other important issue in modern in- grated systems.
Integrated Optics explains the subject of optoelectronic devices and their use in integrated optics and fiber optic systems. The approach taken is to emphasize the physics of how devices work and how they can be (and have been) used in various applications as the field of optoelectronics has progressed from microphotonics to nanophotonics. Illustrations and references from technical journals have been used to demonstrate the relevance of the theory to currently important topics in industry. By reading this book, scientists, engineers, students and engineering managers can obtain an overall view of the theory and the most recent technology in Integrated Optics.
Work in the field of neuroprosthetics requires multidisciplinary teams, but these collaborators must meet on common ground to develop an understanding of the capabilities and limitations of each part of a bioengineering project. The Handbook of Neuroprosthetic Methods provides a comprehensive resource for the techniques, methodologies, and options
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