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Generators and Transformers
Generators and Transformers

HW Lab 1 - HAW Hamburg
HW Lab 1 - HAW Hamburg

... Exercise 3.2: Prove the equivalence of a linear voltage source Connect a load resistor to the terminals A and B of the circuit illustrated above. Measure the load voltage and the current for each of the following resistances: ...
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... control stage (Power supply, MCU, and IGBT Gate Driver), and power-inverter stage. An AC input (185VAC-265VAC) from the power grid is applied to the rectification stage to be converted into a DC value. This DC value then goes through the PFC circuit where its distorted current is reshaped into a wave ...
File Now
File Now

... a. Wiring: Type A lamps connect to AC power using pins on opposite ends. Pins on the same end are shorted internally so it is necessary to connect only one in each pair. b. Connect directly to AC mains. Use of ballast or starter is not allowed. c. Switch off mains supply before installing/removing l ...
MAX17062 TFT-LCD Step-Up DC-DC Converter General Description Features
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additional maximum voltage and maximum power transfer conditions
additional maximum voltage and maximum power transfer conditions

... powers with a maximum of circuitmatched value which is concurrent with the corresponding maximum value of terminal voltage. In addition, the simultaneous discontinuities of voltages and powers shown are indicative of the existence of a cutoff load impedance value above which no transfer of voltage a ...
Alternating Current (AC) Circuits
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RURP1560_F085 15A, 600V Ultrafast Rectifier RURP1560_F 085 15A, 6

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doc - Seattle Central
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Not Recommended for New Designs

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EE 320L Lab #5 Clipping and Clamping Circuits

COMBOLIGHT Remodel Recessed w/ Trim - 12V AR70 - 1 Light
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Bip Transistor 50V 2A VCE(sat):400mV max. NPN Single MP
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Electric Power Engineering and Electrical Engineering
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LM555 Timer
LM555 Timer

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sample questions - Department of Electrical Engineering, IIT
sample questions - Department of Electrical Engineering, IIT

... 3. (a) The dc-dc converter shown in the figure below has the following circuit parameters: V g =48V; LP=80µH; LS=5µH; C=470µF; R=25Ω; D=0.75; TS=10µSec. LP is the self-inductance of the primary coil and LS is the self-inductance of the secondary coil and the coils are perfectly coupled. Find the ste ...
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... combined to form modules. Modules are then grouped into panels, and several panels form a solar array. A photovoltaic power source can consist of one or more arrays. The short circuit current that can be delivered from a photovoltaic panel is only 110% to 115% of the operating current. This is quite ...
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... or "turns". If the second coil has the same number of turns as the first coil, the current in the second coil will be virtually the same size as the one in the first coil. But (and here's the clever part) if we have more or fewer turns in the second coil, we can make the secondary current and voltag ...
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ECE 6130 Lab 4: Diode Detector

... 3. Prototyping: a. Solder on the diode and capacitor using the surface-mount soldering equipment. b. Solder wires through the holes from ground to make necessary short circuits using regular solder equipment. Measurements / Week 2: 4. Test your circuit on the network analyzer. a. Measure S11 for th ...
Applying PMDC motors
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... In practice, the voltage used to power a PM motor is not a pure DC. It is derived DC voltage formed by rectifying an AC voltage. Thus, the DC drive voltage has a wave or ripple component that is related to the frequency of the AC input. Form factor, which is the ratio of Irms to I dc, indicates how ...
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... current impulses of about thousands of A. For this switch there has been developed a rotating spark-gap structure. The rotating electrode is coupled at high voltage. This electrode is rotating in front of the mass coupled electrodes. There are 4 types of this electrode, mounted on a insulating ring, ...
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Rectifier



A rectifier is an electrical device that converts alternating current (AC), which periodically reverses direction, to direct current (DC), which flows in only one direction. The process is known as rectification. Physically, rectifiers take a number of forms, including vacuum tube diodes, mercury-arc valves, copper and selenium oxide rectifiers, semiconductor diodes, silicon-controlled rectifiers and other silicon-based semiconductor switches. Historically, even synchronous electromechanical switches and motors have been used. Early radio receivers, called crystal radios, used a ""cat's whisker"" of fine wire pressing on a crystal of galena (lead sulfide) to serve as a point-contact rectifier or ""crystal detector"".Rectifiers have many uses, but are often found serving as components of DC power supplies and high-voltage direct current power transmission systems. Rectification may serve in roles other than to generate direct current for use as a source of power. As noted, detectors of radio signals serve as rectifiers. In gas heating systems flame rectification is used to detect presence of a flame.Because of the alternating nature of the input AC sine wave, the process of rectification alone produces a DC current that, though unidirectional, consists of pulses of current. Many applications of rectifiers, such as power supplies for radio, television and computer equipment, require a steady constant DC current (as would be produced by a battery). In these applications the output of the rectifier is smoothed by an electronic filter (usually a capacitor) to produce a steady current.More complex circuitry that performs the opposite function, converting DC to AC, is called an inverter.
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