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PHY222 – Lab 4 Ohm`s Law and Electric Circuits
PHY222 – Lab 4 Ohm`s Law and Electric Circuits

BA14741F
BA14741F

AR4301228233
AR4301228233

91 accracy invetigations.p65
91 accracy invetigations.p65

... Calculations with potential dividers are only accurate if the load is much larger than the resistances in the divider itself. In practical situations, a voltmeter must be used to provide an accurate value for the output p.d. ...
STW88N65M5
STW88N65M5

Power Electronics Prof. B. G. Fernandes Department of Electrical
Power Electronics Prof. B. G. Fernandes Department of Electrical

R 1
R 1

... • Input resistance is R2/A, very small. (Try this!) • Since the photodiode has capacitance inside, if a large resistor for high output voltage is used instead of op-amp, time constant would be large, which means it can not be used in high frequency circuit. • Transresistance amplifier is currently u ...
Discussion 3A - EECS: www
Discussion 3A - EECS: www

... (a) V0 is the voltage amplitude and is the highest value of voltage v(t) will attain at any time. Similarly, I0 is the current amplitude. (b) ω is the frequency of oscillation. (c) φv and φi are the phase terms of the voltage and current respectively. These capture a delay, or a shift in time. We kn ...
15.4 Emitter-Coupled Logic (ECL)
15.4 Emitter-Coupled Logic (ECL)

Tender No.: 07/SPS/EE/2016 Dated
Tender No.: 07/SPS/EE/2016 Dated

BD8306MUV
BD8306MUV

MANUAL Transistor Servo-Drive TV6.2 for DC Motors
MANUAL Transistor Servo-Drive TV6.2 for DC Motors

... The current limiting can be adjusted internally by means of the potentiometers P6 (Imax1) and P5 (I max 2) from 0 and 200% type current (rated current). In this case the switches S6:K2 and S6:K3 must be closed (ON). For external current limiting adjustments or control the switches S6:K2 and S6:K3 mu ...
Lab 1 - Portal UniMAP
Lab 1 - Portal UniMAP

... “M”scale in mega-ohms and so on. There is no zero-adjust on a DMM meter but make sure that the resistance reads zero when shunting both leads. Polarity does not concern in resistance measurement. Either lead of the meter can be placed on either terminal end of the component, it will be the same. Vo ...
Lecture1 Introduction
Lecture1 Introduction

OPA827
OPA827

... degrade device reliability. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those specified is not supported. Input terminals are diode-clamped to the power-supply rails. Input signals that can swing more than 0.5V beyond the supply rails ...
ZXLD1360 Description Pin Assignments Features Typical
ZXLD1360 Description Pin Assignments Features Typical

... Device operation (refer to Figure 1 - Block diagram and Figure 2 Operating waveforms) Operation can be best understood by assuming that the ADJ pin of the device is unconnected and the voltage on this pin (VADJ) appears directly at the (+) input of the comparator. When input voltage VIN is first app ...
SMTR Single and Dual DC-DC Converters
SMTR Single and Dual DC-DC Converters

... minimizing interference and reducing the need for filtering. In sync mode, the converter will run at any frequency between 500 kHz and 675 kHz. The sync control operates with an active high at any duty cycle between 40% and 60%. The sync pin should be connected to input common pin when not in use. ...
Single-stage Amplifier-CS
Single-stage Amplifier-CS

PI Design Advice.pdf
PI Design Advice.pdf

Lab 3.8 Impedance of test instruments (p79)
Lab 3.8 Impedance of test instruments (p79)

... Reading: p82-93 “Transistor circuits” See also the hyperphysics notes on junction transistors: http://hyperphysics.phyastr.gsu.edu/hbase/solids/trans.html#c1 Follow the instructions in the lab manual for lab 4.2. Answer the following questions in your report: 1) Sketch the input and output waveform ...
4.5-V to 18-V Input Voltage, 2-A/3
4.5-V to 18-V Input Voltage, 2-A/3

... The TPS65270 features a precision 0.8-V reference and can produce output voltages up to 15 V. Each converter features an enable pin that allows dedicated control of each channel that provides flexibility for power sequencing. Soft-start time in each channel can be adjusted by choosing different exte ...
design of buck-boost converter
design of buck-boost converter

... View the carrier signal in CRO at T3. Set the switch SW1 in downward direction. Set the switch SW2 in downward direction. View the PWM signal in CRO at T1. Vary the Set voltage adjust POT from minimum to maximum and note down the ton and T values. Set the PWM signal at desired duty cycle ratio (maxi ...
MAX3095/MAX3096 ±15kV ESD-Protected, 10Mbps, 3V/5V, Quad RS-422/RS-485 Receivers ________________General Description
MAX3095/MAX3096 ±15kV ESD-Protected, 10Mbps, 3V/5V, Quad RS-422/RS-485 Receivers ________________General Description

... logic high output when the inputs are open circuit (no termination resistor used). This occurs when the transmitter is removed from the bus or when all transmitter outputs are high impedance. However, when the line is terminated and the transmitters are disabled, the differential voltage between the ...
16-Bit, Voltage Output Digital-to-Analog Converter
16-Bit, Voltage Output Digital-to-Analog Converter

Note to EE 312 Students
Note to EE 312 Students

... Shockley diffusion theory did not apply. The ideality factor n was in the range 1.84 to 1.91, and the value for the energy gap was EG = 0.5 eV. The value for n was twice as large as expected. The value for EG was approximately 50% of what was expected for a silicon diode. The data sheets for the 1N4 ...
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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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