
DESIGN AND TOpology - Indico - Variable Energy Cyclotron Centre
... power supply. It incorporate two numbers of power transformers, each rated at 100 kVA, 415V/12kV, 3phase, 50Hz, vector group Dy11- d0 and force air cooled operating in 12 pulse mode. The 3-phase power is connected to each of two transformers via air core choke and back to back SCR in each line throu ...
... power supply. It incorporate two numbers of power transformers, each rated at 100 kVA, 415V/12kV, 3phase, 50Hz, vector group Dy11- d0 and force air cooled operating in 12 pulse mode. The 3-phase power is connected to each of two transformers via air core choke and back to back SCR in each line throu ...
bolt heating equipment
... APPLICATION : The joint flange bolts of turbines need considerable pretensioning because of the longitudinal expansion which occurs under operating conditions. This pretensioning of the bolts can be achieved by either. The application of suitably high mechanical force to the bolts when cold or heati ...
... APPLICATION : The joint flange bolts of turbines need considerable pretensioning because of the longitudinal expansion which occurs under operating conditions. This pretensioning of the bolts can be achieved by either. The application of suitably high mechanical force to the bolts when cold or heati ...
Document
... In victim circuit, inductive voltage drop in shield return is precisely cancelled by the magnetically induced voltage in the signal circuit ...
... In victim circuit, inductive voltage drop in shield return is precisely cancelled by the magnetically induced voltage in the signal circuit ...
Coupling Between Wire Lines and Application to Transfer
... In victim circuit, inductive voltage drop in shield return is precisely cancelled by the magnetically induced voltage in the signal circuit ...
... In victim circuit, inductive voltage drop in shield return is precisely cancelled by the magnetically induced voltage in the signal circuit ...
Slides - Indico
... produce a change in the output. This causes the loop to act as a low pass filter with a bandwidth such that it can only correct for changes at a frequency below the loop bandwidth. The open loop gain is the amount an error on the input affects the output. A high gain will lead to faster corrections ...
... produce a change in the output. This causes the loop to act as a low pass filter with a bandwidth such that it can only correct for changes at a frequency below the loop bandwidth. The open loop gain is the amount an error on the input affects the output. A high gain will lead to faster corrections ...
model test ( sem-iii)
... B. applying two-phase supply across the two windings C. introducing capacitive reactance in the auxiliary winding circuit D. connecting the two windings in series across a single phase supply. ...
... B. applying two-phase supply across the two windings C. introducing capacitive reactance in the auxiliary winding circuit D. connecting the two windings in series across a single phase supply. ...
Document
... either assist one another or oppose one another. It will be noted that each coil has a flat and rounded edge. When two coils are mounted, keep the flat edge of both coils either to the bottom or both flat edges to the top. The connections to the junction box should then be as shown in the diagram fo ...
... either assist one another or oppose one another. It will be noted that each coil has a flat and rounded edge. When two coils are mounted, keep the flat edge of both coils either to the bottom or both flat edges to the top. The connections to the junction box should then be as shown in the diagram fo ...
Energy Harvesting From Human Body Using Thermoelectric Generator
... domestic and industrial heating and burning processes. Many of these systems require electric energy support for full performance. By applying thermoelectric generators to these heat sources it is possible to develop independent electric energy source, which start generation in the moment when there ...
... domestic and industrial heating and burning processes. Many of these systems require electric energy support for full performance. By applying thermoelectric generators to these heat sources it is possible to develop independent electric energy source, which start generation in the moment when there ...
Resonant inductive coupling
Resonant inductive coupling or electrodynamic induction is the near field wireless transmission of electrical energy between two magnetically coupled coils that are part of resonant circuits tuned to resonate at the same frequency. This process occurs in a resonant transformer, an electrical component which consists of two high Q coils wound on the same core with capacitors connected across the windings to make two coupled LC circuits. Resonant transformers are widely used in radio circuits as bandpass filters, and in switching power supplies. Resonant inductive coupling is also being used in wireless power systems. Here the two LC circuits are in different devices; a transmitter coil in one device transmits electric power across an intervening space to a resonant receiver coil in another device. This technology is being developed for powering and charging portable devices such as cellphones and tablet computers at a distance, without being tethered to an outlet.Resonant transfer works by making a coil ring with an oscillating current. This generates an oscillating magnetic field. Because the coil is highly resonant, any energy placed in the coil dies away relatively slowly over very many cycles; but if a second coil is brought near it, the coil can pick up most of the energy before it is lost, even if it is some distance away. The fields used are predominately non-radiative, near fields (sometimes called evanescent waves), as all hardware is kept well within the 1/4 wavelength distance they radiate little energy from the transmitter to infinity.One of the applications of the resonant transformer is for the CCFL inverter. Another application of the resonant transformer is to couple between stages of a superheterodyne receiver, where the selectivity of the receiver is provided by tuned transformers in the intermediate-frequency amplifiers. The Tesla coil is a resonant transformer circuit used to generate very high voltages, and is able to provide much higher current than high voltage electrostatic machines such as the Van de Graaff generator. Resonant energy transfer is the operating principle behind proposed short range (up to 2 metre) wireless electricity systems such as WiTricity or Rezence and systems that have already been deployed, such as Qi power transfer, passive RFID tags and contactless smart cards.