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Resettable Fuses – PTCs
Resettable Fuses – PTCs

... fuses is 125°C. The following temperature derating curves (see chart at bottom of page) that compare PTCs to fuses illustrate that more derating is required for a PTC at a given temperature. ...
Phase Distance & Power Transformers
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... Capacitive Voltage Transformers (CVTs) create certain problems for fast distance relays applied to systems with high Source Impedance Ratios (SIRs): > CVT-induced transient voltage components may assume large magnitudes (up to 30-40%) and last for a comparatively long time (up to about 2 cycles) > 6 ...
PQ_Unit IV
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Operational Manual  - The Official Tsurumi Pump Store
Operational Manual - The Official Tsurumi Pump Store

... :The mark indicates a prohibited action. The symbol inside the mark, or a notation in the vicinity of the mark describes the precaution in more detail ("disassembly prohibited", in the case of the example on the left). :The mark indicates an action that must be taken, or instructs how to perform a t ...
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Part V Busbar Systems - Electrical Engineering Book
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Troubleshooting a 4/20mA loop

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... the case of reinforced insulation. Compliance is checked by inspection and if necessary by measurement. For appliances provided with an appliance inlet, the measurements are made with an appropriate connector inserted; for appliances with Type X attachment, they are made with supply conductors of th ...
BD7541G
BD7541G

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... shows different standard designs by reverse blocking voltage and current class. However, the central aspect of all designs is the semiconductor chip, which serves to switch a current and block a voltage. Power dissipation occurs during this process. The blocking losses are negligible in comparison t ...
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... the change in flux density. The magnetizing branch impedance is normally above 5,000% on a transformer’s base, so we can neglect it in many cases. The core losses are often referred to as iron losses or no-load losses. The load losses are frequently called the wire losses or copper losses. The vario ...
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Ground (electricity)



In electrical engineering, ground or earth is the reference point in an electrical circuit from which voltages are measured, a common return path for electric current, or a direct physical connection to the Earth.Electrical circuits may be connected to ground (earth) for several reasons. In mains powered equipment, exposed metal parts are connected to ground to prevent user contact with dangerous voltage if electrical insulation fails. Connections to ground limit the build-up of static electricity when handling flammable products or electrostatic-sensitive devices. In some telegraph and power transmission circuits, the earth itself can be used as one conductor of the circuit, saving the cost of installing a separate return conductor (see single-wire earth return).For measurement purposes, the Earth serves as a (reasonably) constant potential reference against which other potentials can be measured. An electrical ground system should have an appropriate current-carrying capability to serve as an adequate zero-voltage reference level. In electronic circuit theory, a ""ground"" is usually idealized as an infinite source or sink for charge, which can absorb an unlimited amount of current without changing its potential. Where a real ground connection has a significant resistance, the approximation of zero potential is no longer valid. Stray voltages or earth potential rise effects will occur, which may create noise in signals or if large enough will produce an electric shock hazard.The use of the term ground (or earth) is so common in electrical and electronics applications that circuits in portable electronic devices such as cell phones and media players as well as circuits in vehicles may be spoken of as having a ""ground"" connection without any actual connection to the Earth, despite ""common"" being a more appropriate term for such a connection. This is usually a large conductor attached to one side of the power supply (such as the ""ground plane"" on a printed circuit board) which serves as the common return path for current from many different components in the circuit.
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