• Study Resource
  • Explore Categories
    • Arts & Humanities
    • Business
    • Engineering & Technology
    • Foreign Language
    • History
    • Math
    • Science
    • Social Science

    Top subcategories

    • Advanced Math
    • Algebra
    • Basic Math
    • Calculus
    • Geometry
    • Linear Algebra
    • Pre-Algebra
    • Pre-Calculus
    • Statistics And Probability
    • Trigonometry
    • other →

    Top subcategories

    • Astronomy
    • Astrophysics
    • Biology
    • Chemistry
    • Earth Science
    • Environmental Science
    • Health Science
    • Physics
    • other →

    Top subcategories

    • Anthropology
    • Law
    • Political Science
    • Psychology
    • Sociology
    • other →

    Top subcategories

    • Accounting
    • Economics
    • Finance
    • Management
    • other →

    Top subcategories

    • Aerospace Engineering
    • Bioengineering
    • Chemical Engineering
    • Civil Engineering
    • Computer Science
    • Electrical Engineering
    • Industrial Engineering
    • Mechanical Engineering
    • Web Design
    • other →

    Top subcategories

    • Architecture
    • Communications
    • English
    • Gender Studies
    • Music
    • Performing Arts
    • Philosophy
    • Religious Studies
    • Writing
    • other →

    Top subcategories

    • Ancient History
    • European History
    • US History
    • World History
    • other →

    Top subcategories

    • Croatian
    • Czech
    • Finnish
    • Greek
    • Hindi
    • Japanese
    • Korean
    • Persian
    • Swedish
    • Turkish
    • other →
 
Profile Documents Logout
Upload
TOA Electronics Amplifier Guide
TOA Electronics Amplifier Guide

Relays General information
Relays General information

... electrical contact to effect the operation of other devices in the same or another circuit. Relays are an important factor in today's industrial processes. More than 25 billion relays operate today all over the world as an interface between electrical control circuits and electrical loads. Technical ...
arcing fault
arcing fault

... At a high arc voltage and system impedance, the value of the arc current may lie below the magnetic tripping current of the overcurrent circuit breaker. ...
Aalborg Universitet Converters Applied to Wind Power Generation Systems
Aalborg Universitet Converters Applied to Wind Power Generation Systems

... becoming a possible solution compared to the traditional power transmission technology for connecting offshore energy plants located at longer distances to the transmission grids due to a series of merits compared to other existing power transmission systems such as higher output voltage levels, mod ...
Impacts of Shunt Reactors on Transmission Line Protection
Impacts of Shunt Reactors on Transmission Line Protection

... of the transmission line and also between the phase conductors and ground. When a transmission line is energized, it draws a large charging current because of the large shunt capacitance of the line. This current is mainly capacitive, and as we see from (2), the voltage at the receiving end of the l ...
PSoC® 3 Power Supervisor - AN76474
PSoC® 3 Power Supervisor - AN76474

... the individual power converter level. This enables system designers to optimize the power ratings for each power converter in order to minimize cost and size. It also enables designers to minimize power consumption through carefully orchestrated power management algorithms. The end result is more en ...
Earth Fault Currents in Three Phase systems
Earth Fault Currents in Three Phase systems

... to incidents such as bridging conductors, a pick struck an underground cable, etc. or the cable being dug by a bulldozer. These circumstances will lead to the fault current being very high, resulting in an electrical explosion. Clearing this type of faults is of utmost importance since it can cause ...
- SlideBoom
- SlideBoom

... simulation and verify the simulated results are the same as the calculated values. Were the values the same? Yes/No. If no, why? 3.Construct the circuit above on the breadboard. Connect the circuit’s input to the power supply and set it to +10 V. Use the handheld DMM to adjust the supply to +10 V. U ...
Neutral Switching Transients
Neutral Switching Transients

... It is reasonable to ask about the likelihood of a ground fault occurring during the short time that the neutral contacts are overlapped. Certainly it is as likely as any other time, but perhaps it is slightly more likely during the period of the transition for the following reasons. As those who per ...
Understanding Motor Nameplate Information NEMA
Understanding Motor Nameplate Information NEMA

... When AC motors are started with full voltage applied, they create an inrush current that's usually many times greater than the value of the full-load current. The value of this high current can be important on some installations because it can cause a voltage dip that might affect other equipment. T ...
M1512 (E)
M1512 (E)

GaN Technology for High Frequency Applications
GaN Technology for High Frequency Applications

... • New Technologies Always Take Longer to Implement Than Predictions • COST/Capability is the Prime Driver • Lowest Cost Solution that Delivers the Minimum Requirement WINS • Gemanium Started it All - Before Everyone in this Room was Born • Quickly Supplanted by Silicon • Ge Still Alive Today – IR Se ...
notes
notes

... the swing bus power injection (real or reactive). The swing bus real and reactive power injection is obtained only as a function of the solution to the power flow problem (the “solution” to the power flow problem is all voltage magnitudes and angles at all buses) and therefore offers us no basis to ...
Vacuum Gas-FilledRELAys
Vacuum Gas-FilledRELAys

... Gas-filled relays are ideal for the high in-rush capacitive make and capacitive discharge loads found in electrostatic discharge (ESD) test equipment, cable test equipment and heart defibrillators. Typical models are the RGH5-26S or the RGH3-26S. Gas-filled relays also provide low, stable leakage cu ...
NTF3055L108 - Power MOSFET 3.0 Amps, 60 Volts
NTF3055L108 - Power MOSFET 3.0 Amps, 60 Volts

... regardless of any support or applications information provided by ON Semiconductor. “Typical” parameters which may be provided in ON Semiconductor data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, includin ...
Harmonic Current - Renesas e
Harmonic Current - Renesas e

...  Dr MOS solutions for > 93% peak efficiency, up to 1.5MHz  PFC ICs for solutions up to 98% peak efficiency  Smallest CSP packages for POL, Battery Charger and Fuel Gauge Applications ...
Infineon Application Note Reverse Conduction IGBT for Induction
Infineon Application Note Reverse Conduction IGBT for Induction

... technology with a monolithically integrated powerful reverse diode. Due to this technology an additional anti-parallel diode can be avoided. On cell of the IGBT shown in Fig. 4 is based on two major principles, which are the fieldstop layer and the trench gate structure. This structure combination l ...
Series - MESA/Boogie
Series - MESA/Boogie

... Congratulations on choosing the F Series as your amplifier and welcome to the Mesa/Boogie family! The new F Series amplifiers combines high gain lead performance, an amazing mid-gain crunch or blues sound and a bold and beautiful clean sound in a simple 2 Channel, Three Mode, all-tube, hand-built pa ...
U6DNC Nixie Clock Kits - Sphere Research Corporation
U6DNC Nixie Clock Kits - Sphere Research Corporation

... You agree by continuing that you are qualified to work with these dangerous voltages, and do so entirely at your own risk. You are responsible for any final use of the product made from this kit, and accept all responsibility for enclosing it in a safe manner to prevent any shock hazard to users, an ...
TL1963A-Q1 数据资料 dataSheet 下载
TL1963A-Q1 数据资料 dataSheet 下载

... 1.5 A of output current with a dropout voltage of 340 mV. Operating quiescent current is 1 mA, dropping to less than 1 mA in shutdown. Quiescent current is well controlled; it does not rise in dropout as it does with many other regulators. In addition to fast transient response, the TL1963A regulato ...
Folie 1 - RWTH Aachen University
Folie 1 - RWTH Aachen University

... • Easy start-up  If separate DC-DC converters are used for control chips, the controls can be powered on first  If one converter is employed per module, individual modules can be powered on/off ...
RH1185AMK - Negative Regulator with Adjustable Current Limit
RH1185AMK - Negative Regulator with Adjustable Current Limit



... There is a growing interest in multilevel topologies since they can extend the application of power electronics systems to higher voltages and power ratios. Multilevel converters are the most attractive technology for the medium- to highvoltage range (2-13 kV), which includes motor drives, power dis ...
Folie 1 - RWTH Aachen University
Folie 1 - RWTH Aachen University

... • Easy start-up  If separate DC-DC converters are used for control chips, the controls can be powered on first  If one converter is employed per module, individual modules can be powered on/off  In a scenario with one charge pump employed per chip, individual chips can be powered on/off Note: wit ...
MAX1584/MAX1585 5-Channel Slim DSC Power Supplies General Description Features
MAX1584/MAX1585 5-Channel Slim DSC Power Supplies General Description Features

... optimum design flexibility. This optimizes overall efficiency and cost, while also reducing board space. The MAX1584/MAX1585 include 5 high-efficiency DCDC conversion channels: • Step-up DC-DC converter with on-chip FETs • Step-down DC-DC converter with on-chip FETs • Three PWM DC-DC controllers for ...
< 1 ... 102 103 104 105 106 107 108 109 110 ... 1128 >

Power engineering



Power engineering, also called power systems engineering, is a subfield of energy engineering that deals with the generation, transmission, distribution and utilization of electric power and the electrical devices connected to such systems including generators, motors and transformers. Although much of the field is concerned with the problems of three-phase AC power – the standard for large-scale power transmission and distribution across the modern world – a significant fraction of the field is concerned with the conversion between AC and DC power and the development of specialized power systems such as those used in aircraft or for electric railway networks. It was a subfield of electrical engineering before the emergence of energy engineering.Electricity became a subject of scientific interest in the late 17th century with the work of William Gilbert. Over the next two centuries a number of important discoveries were made including the incandescent light bulb and the voltaic pile. Probably the greatest discovery with respect to power engineering came from Michael Faraday who in 1831 discovered that a change in magnetic flux induces an electromotive force in a loop of wire—a principle known as electromagnetic induction that helps explain how generators and transformers work.In 1881 two electricians built the world's first power station at Godalming in England. The station employed two waterwheels to produce an alternating current that was used to supply seven Siemens arc lamps at 250 volts and thirty-four incandescent lamps at 40 volts. However supply was intermittent and in 1882 Thomas Edison and his company, The Edison Electric Light Company, developed the first steam-powered electric power station on Pearl Street in New York City. The Pearl Street Station consisted of several generators and initially powered around 3,000 lamps for 59 customers. The power station used direct current and operated at a single voltage. Since the direct current power could not be easily transformed to the higher voltages necessary to minimise power loss during transmission, the possible distance between the generators and load was limited to around half-a-mile (800 m).That same year in London Lucien Gaulard and John Dixon Gibbs demonstrated the first transformer suitable for use in a real power system. The practical value of Gaulard and Gibbs' transformer was demonstrated in 1884 at Turin where the transformer was used to light up forty kilometres (25 miles) of railway from a single alternating current generator. Despite the success of the system, the pair made some fundamental mistakes. Perhaps the most serious was connecting the primaries of the transformers in series so that switching one lamp on or off would affect other lamps further down the line. Following the demonstration George Westinghouse, an American entrepreneur, imported a number of the transformers along with a Siemens generator and set his engineers to experimenting with them in the hopes of improving them for use in a commercial power system.One of Westinghouse's engineers, William Stanley, recognised the problem with connecting transformers in series as opposed to parallel and also realised that making the iron core of a transformer a fully enclosed loop would improve the voltage regulation of the secondary winding. Using this knowledge he built a much improved alternating current power system at Great Barrington, Massachusetts in 1886. In 1885 the Italian physicist and electrical engineer Galileo Ferraris demonstrated an induction motor and in 1887 and 1888 the Serbian-American engineer Nikola Tesla filed a range of patents related to power systems including one for a practical two-phase induction motor which Westinghouse licensed for his AC system.By 1890 the power industry had flourished and power companies had built thousands of power systems (both direct and alternating current) in the United States and Europe – these networks were effectively dedicated to providing electric lighting. During this time a fierce rivalry in the US known as the ""War of Currents"" emerged between Edison and Westinghouse over which form of transmission (direct or alternating current) was superior. In 1891, Westinghouse installed the first major power system that was designed to drive an electric motor and not just provide electric lighting. The installation powered a 100 horsepower (75 kW) synchronous motor at Telluride, Colorado with the motor being started by a Tesla induction motor. On the other side of the Atlantic, Oskar von Miller built a 20 kV 176 km three-phase transmission line from Lauffen am Neckar to Frankfurt am Main for the Electrical Engineering Exhibition in Frankfurt. In 1895, after a protracted decision-making process, the Adams No. 1 generating station at Niagara Falls began transmitting three-phase alternating current power to Buffalo at 11 kV. Following completion of the Niagara Falls project, new power systems increasingly chose alternating current as opposed to direct current for electrical transmission.Although the 1880s and 1890s were seminal decades in the field, developments in power engineering continued throughout the 20th and 21st century. In 1936 the first commercial high-voltage direct current (HVDC) line using mercury-arc valves was built between Schenectady and Mechanicville, New York. HVDC had previously been achieved by installing direct current generators in series (a system known as the Thury system) although this suffered from serious reliability issues. In 1957 Siemens demonstrated the first solid-state rectifier (solid-state rectifiers are now the standard for HVDC systems) however it was not until the early 1970s that this technology was used in commercial power systems. In 1959 Westinghouse demonstrated the first circuit breaker that used SF6 as the interrupting medium. SF6 is a far superior dielectric to air and, in recent times, its use has been extended to produce far more compact switching equipment (known as switchgear) and transformers. Many important developments also came from extending innovations in the ICT field to the power engineering field. For example, the development of computers meant load flow studies could be run more efficiently allowing for much better planning of power systems. Advances in information technology and telecommunication also allowed for much better remote control of the power system's switchgear and generators.
  • studyres.com © 2026
  • DMCA
  • Privacy
  • Terms
  • Report