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Operational properties of the ASDBLR chip
Operational properties of the ASDBLR chip

... The ASDBLR chip (Amplifier-Shaper-Discriminator with Baseline Restoration) is a leading candidate to be employed as front-end chip of the LHCb Outer Tracker. The eight channel analog bipolar integrated circuit serves as the interface between straw proportional tubes and the edge sensitive timing cir ...
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High-voltage reinforced isolation: Definitions

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MTP40N10E Power MOSFET 40 Amps, 100 Volts

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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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