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Lesson 1 - Introduction
Lesson 1 - Introduction

BK 2703B Multimeter Instructions
BK 2703B Multimeter Instructions

... 1. Power to the circuit is present and use caution to avoid becoming a part of the circuit. Again note: High voltages can be lethal! 2. Connect the black probe to the “com” and the red probe to the “mA” terminal for low current measurements; less than 200 mA (.200 A). Connect the red probe to the 10 ...
Datasheet - Integrated Device Technology
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... reduced. The datasheet specifies a lower differential amplitude, however this only applies to differential signals. For single-ended applications, the swing can be larger, however VIL cannot be less than -0.3V and VIH cannot be more than VCC + 0.3V. Though some of the recommended components might no ...
M48Z08
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... (min) window. All outputs become high impedance, and all inputs are treated as “Don't care.” Note: A power failure during a WRITE cycle may corrupt data at the currently addressed location, but does not jeopardize the rest of the RAM's content. At voltages below VPFD (min), the user can be assured t ...
IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE) e-ISSN: 2278-1676,p-ISSN: 2320-3331,
IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE) e-ISSN: 2278-1676,p-ISSN: 2320-3331,

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Operational Amplifiers
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... The voltage gain of this configuration is 1. The output voltage follows the input. So what is the usefulness of this op-amp circuit? Let’s look at the input and output resistance characteristics of the circuit. As we have discussed, the resistance at the input terminals of the op-amp is very large. ...
MAX1980 Quick-PWM Slave Controller with Driver Disable for Multiphase DC-DC Converter General Description
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... fundamental circuit functions within the electronics industry and addresses a wide field of market sectors, applications and supply requirements. A general trend, (to pursue cost, size and reliability advantages) has been to reduce the size of the DC-DC converter systems, and as the inductive elemen ...
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... Chttp://www.mianfeiwendang.com/doc/ea0f083302a80ec7e2c19ac3F = 50 pF yields a phase margin of about 45° for the values shown in Figure 45. ...
LP3869x-ADJ/Q1 500-mA Low-Dropout CMOS
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... If used in a dual-supply system where the regulator load is returned to a negative supply, the OUT pin must be diode clamped to ground. At elevated temperatures, device power dissipation must be derated based on package thermal resistance and heatsink values (if a heatsink is used). When using the W ...
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Module 2: Fundamentals of Electricity

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... Figure 1 shows how a differential input can be wired to accept single ended levels. The reference voltage V1= VCC/2 is generated by the bias resistors R1 and R2. The bypass capacitor (C1) is used to help filter noise on the DC bias. This bias circuit should be located as close to the input pin as po ...
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... with hysteresis, digital soft-start/soft-stop for glitch-free power-up and power-down of the converter. The poweron reset (RESET) with an adjustable timeout period monitors both outputs and provides a RESET signal to the processor when both outputs are within regulation. Protection features include ...
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... circuit and it is always possible to view even a very complicated circuit in terms of much simpler equivalent source and load circuits. Subsequently the reduction of computational complexity that involves in solving the current through a branch for different values of load resistance ( RL ) is also ...
AN3392
AN3392

... Other electronic components are the bypass diodes and the blocking diodes. Each bypass diode protects the panel to which it is connected by providing an alternative path for the current flow generated by other panels. These diodes guarantee both panel protection and system functionality in case of d ...
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CMOS



Complementary metal–oxide–semiconductor (CMOS) /ˈsiːmɒs/ is a technology for constructing integrated circuits. CMOS technology is used in microprocessors, microcontrollers, static RAM, and other digital logic circuits. CMOS technology is also used for several analog circuits such as image sensors (CMOS sensor), data converters, and highly integrated transceivers for many types of communication. In 1963, while working for Fairchild Semiconductor, Frank Wanlass patented CMOS (US patent 3,356,858).CMOS is also sometimes referred to as complementary-symmetry metal–oxide–semiconductor (or COS-MOS).The words ""complementary-symmetry"" refer to the fact that the typical design style with CMOS uses complementary and symmetrical pairs of p-type and n-type metal oxide semiconductor field effect transistors (MOSFETs) for logic functions.Two important characteristics of CMOS devices are high noise immunity and low static power consumption.Since one transistor of the pair is always off, the series combination draws significant power only momentarily during switching between on and off states. Consequently, CMOS devices do not produce as much waste heat as other forms of logic, for example transistor–transistor logic (TTL) or NMOS logic, which normally have some standing current even when not changing state. CMOS also allows a high density of logic functions on a chip. It was primarily for this reason that CMOS became the most used technology to be implemented in VLSI chips.The phrase ""metal–oxide–semiconductor"" is a reference to the physical structure of certain field-effect transistors, having a metal gate electrode placed on top of an oxide insulator, which in turn is on top of a semiconductor material. Aluminium was once used but now the material is polysilicon. Other metal gates have made a comeback with the advent of high-k dielectric materials in the CMOS process, as announced by IBM and Intel for the 45 nanometer node and beyond.
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