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Frequently Asked Questions Solid-State Relays Frequently Asked
Frequently Asked Questions Solid-State Relays Frequently Asked

Photovoltaic Engineering Module
Photovoltaic Engineering Module

ADP3336 High Accuracy Ultralow IQ , 500 mA anyCAP® Adjustable
ADP3336 High Accuracy Ultralow IQ , 500 mA anyCAP® Adjustable

NCV7680-NCV3136EVB NCV7680-NCV3163 Evaluation Board User's Manual
NCV7680-NCV3136EVB NCV7680-NCV3163 Evaluation Board User's Manual

... Jumper 2: 7680 VP pin connection, allows bias current measurement. Jumper 3: Allows easy connection to switch RSTOP. Jumper 4−11: Enables the user to add external LED loads. Jumper 13: Switch DIAG pull-up resistor. ...
Superposition Method
Superposition Method

... separate electrical units for each source, then adding them after individual computations  This does not apply with dependent sources!  Goal of the stepwise removal is the reduction of complex to simpler problems, followed by the addition of partial results ...
VERS-1 Erin Browning Matthew Mohn Michael Senejoa Motivation
VERS-1 Erin Browning Matthew Mohn Michael Senejoa Motivation

Mechanical work vs. Electrical Discussion of Energy Hill Analogy for
Mechanical work vs. Electrical Discussion of Energy Hill Analogy for

... Car battery demo 2 Student volunteer grabs terminals with hands. A. Nothing. B. Will get zapped (flames etc.) like paperclip C. will get mild jolt, D. other How to figure out? 1st step in process? 1. How much electrical power goes into person? → If a lot, zapped and flames, but if tiny, volunteer wi ...
Introduction: Before describing the Ohmmapper, it is worthwhile to
Introduction: Before describing the Ohmmapper, it is worthwhile to

Polarity adaptive RS-485/RS
Polarity adaptive RS-485/RS

MAX17062 TFT-LCD Step-Up DC-DC Converter General Description Features
MAX17062 TFT-LCD Step-Up DC-DC Converter General Description Features

... Step-up regulators using the MAX17062 can be designed by performing simple calculations for a first iteration. All designs should be prototyped and tested prior to production. Table 1 provides a list of power components for the typical applications circuit (Figure 1). Table 2 lists component supplie ...
Experiment 9: Driven RLC Circuits
Experiment 9: Driven RLC Circuits

... will “dominate” (it fills up limiting the current) and current will lead whereas at high frequencies the inductor will dominate (it fights the rapid changes) and current will lag. At resonance the frequency is such that these two effects balance and the current will be largest in the circuit. Also a ...
Lecture 6. 555 Timer
Lecture 6. 555 Timer

... To figure out the values for RA, RB, and C you can use the chart below or the following equations: The charge time (output high) is given by: t1 = 0.693 (RA +RB )C And the discharge time (output low) by: t2 = 0.693 (RB )C Thus the total period is: T =t1 +t2 = 0.693 (RA +2RB )C The frequency of the w ...
'AND' Away we go!
'AND' Away we go!

... A feedback circuit from the output terminal of the amplifier to one of the input terminals of the amplifier is used to stabilize the output signal at a value that is between zero volts and a maximum (a saturation) value. ...
VERS-1 Erin Browning Matthew Mohn Michael Senejoa Motivation
VERS-1 Erin Browning Matthew Mohn Michael Senejoa Motivation

... matches that of the string's fundamental frequency of vibration. Depending on how the VCO is designed, the scaling of the F/V output may be either linear or logarithmic. Either way, a simple single operation amplifier circuit should suffice. The resistor and capacitor values will have to ...
LM117HV/LM317HV 3-Terminal Adjustable Regulator (Rev. D)
LM117HV/LM317HV 3-Terminal Adjustable Regulator (Rev. D)

... regulator rather than near the load. If R1 is placed too far from the output terminal, then the increased trace resistance, RS, will cause an error voltage drop in the adjustment loop and degrade load regulation performance. Therefore, R1 should be placed as close as possible to the output terminal ...
BG26386390
BG26386390

... was developed by Hitachi. It allows primary inputs to drive gate terminals as well as source-drain terminals of NMOS. The promise of this approach is fewer numbers of transistors are required to implement a given function. Since circuits are differential complementary data inputs and outputs are ava ...
DC Fundamentals, 9-2 - Lab-Volt
DC Fundamentals, 9-2 - Lab-Volt

Monolithic Non-Synchronous Step-Down
Monolithic Non-Synchronous Step-Down

... The TPS5405 is a 28-V, 2-A, step-down (buck) converter with an integrated high-side N-channel MOSFET. To improve performance during line and load transients, the device implements a constant frequency, current mode control which reduces output capacitance and simplifies external frequency compensati ...
Flyback Converter Design
Flyback Converter Design

... This is the MOSFETs ‘Drain Source on resistance’ or Rdson. Again, this needs to be as low as possible. Now, MOSFET manufacturers reduce the ON resistance of the MOSFET by constructing many parallel conduction paths between the Drain and Source. Thus, like connecting resistors in parallel, the ON res ...
1.0 Introduction - Electrical and Computer Engineering
1.0 Introduction - Electrical and Computer Engineering

Chapter 21 Powerpoint
Chapter 21 Powerpoint

... • It turns out the equations for Voltage across an Inductor and Current through an inductor are as follows: ...
Apply Ohm`s Law
Apply Ohm`s Law

SM72295 Photovoltaic Full Bridge Driver (Rev. E)
SM72295 Photovoltaic Full Bridge Driver (Rev. E)

... If Military/Aerospace specified devices are required, please contact the TI Sales Office/ Distributors for availability and specifications. In the application the HS nodes are clamped by the body diode of the external lower N-MOSFET, therefore the HS node will generally not exceed –1V. However, in s ...
File
File

... 2. The charge move from one battery terminal through the wire, which has very little resistance (because it’s a good conductor) 3. The charge gets to the light bulb, which has higher resistance. In the light bulb the charge loses electrical potential energy due to collisions. The PEelec is converted ...
MAX610/MAX611/MAX612 AC-to-DC Regulator (110/220VAC to 5.0
MAX610/MAX611/MAX612 AC-to-DC Regulator (110/220VAC to 5.0

... The MAX610/MAX611/MAX612 AC-to-DC power converters reduce the component count, size, and weight of 1/4 watt power supplies, thus minimizing the overall cost and simplifying designs. With an 8VRMS input voltage, the MAX610 needs only a single filter capacitor to make a complete 5V, 50mA power supply. ...
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Current mirror

A current mirror is a circuit designed to copy a current through one active device by controlling the current in another active device of a circuit, keeping the output current constant regardless of loading. The current being 'copied' can be, and sometimes is, a varying signal current. Conceptually, an ideal current mirror is simply an ideal inverting current amplifier that reverses the current direction as well or it is a current-controlled current source (CCCS). The current mirror is used to provide bias currents and active loads to circuits. It can also be used to model a more realistic current source (since ideal current sources don't exist).The circuit topology covered here is one that appears in many monolithic ICs. It is a Widlar mirror without an emitter degeneration resistor in the follower (output) transistor. This topology can only be done in an IC as the matching has to be extremely close and cannot be achieved with discretes.Another topology is the Wilson mirror. The Wilson mirror solves the Early effect voltage problem in his design.
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