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STGP19NC60SD
STGP19NC60SD

... Modified gate threshold voltage range on Table 4: Static Updated TO-220 mechanical data Added new package, mechanical data: TO-220FP ...
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Co Simulation Of Electric And Magnetic Circuits
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... This simple magnetic circuit in the example could readily be solved analytically using superposition of the mmf sources, for example. Circuit simulation applied to even this circuit, however, provides all the advantages of electric circuit simulation, including rapid examination of the effects of m ...
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MIL-STD-1553 Bus Connections for Test Configurations

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section 283111 - digital, addressable fire-alarm system
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... Studies shall use computer programs that are distributed nationally and are in wide use. Software algorithms shall comply with requirements of standards and guides specified in this Section. Manual calculations are not acceptable. ...
(ii) Loading cycle test.
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... rubber. This is why the product is said to be “vulcanized” or “cross-linked” polythene. The polythene is inert to chemical reactions as it does not have double bonds and polar groups. Therefore, it was thought that polythene could be cross-linked only through special condition, e.g., by irradiating ...
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... In particular the blades are subject to catastrophic damage, and because of both material and installation costs, any damage to the blades is expensive. A significant other area of damage or disruprions is where lightning affects electrical systems and control circuitry. Statistics shorithat lightni ...
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NTD20N06 - Power MOSFET, 20 A, 60 V, N-Channel DPAK

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< 1 ... 62 63 64 65 66 67 68 69 70 ... 217 >

Electromagnetic compatibility



Electromagnetic compatibility (EMC) is the branch of electrical sciences which studies the unintentional generation, propagation and reception of electromagnetic energy with reference to the unwanted effects (electromagnetic interference, or EMI) that such energy may induce. The goal of EMC is the correct operation, in the same electromagnetic environment, of different equipment which use electromagnetic phenomena, and the avoidance of any interference effects.In order to achieve this, EMC pursues two different kinds of issues. Emission issues are related to the unwanted generation of electromagnetic energy by some source, and to the countermeasures which should be taken in order to reduce such generation and to avoid the escape of any remaining energies into the external environment. Susceptibility or immunity issues, in contrast, refer to the correct operation of electrical equipment, referred to as the victim, in the presence of unplanned electromagnetic disturbances.Interference mitigation and hence electromagnetic compatibility is achieved by addressing both emission and susceptibility issues, i.e., quieting the sources of interference and hardening the potential victims. The coupling path between source and victim may also be separately addressed to increase its attenuation.
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