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High voltages can also cause severe burns (as seen on pages 9 and 10). At 600 volts, the current through the body may be as great as 4 amps, causing damage to internal organs such as the heart. High voltages also produce burns. In addition, internal blood vessels may clot.
Low voltage is normally used for doorbells, garage door opener controls, heating and cooling thermostats, alarm system sensors and controls, outdoor ground lighting, household and automobile batteries. Low voltage is supplied by batteries, or by a transformer that converts line voltage to a low voltage.
Low tension lines are more susceptible to faults because it is connected to the loads. HT line. The high-tension line has an operating voltage of 33KV, so the operating voltage of this line will range from 11Kv to 33KV and if it is above 33KV then it is called an extra high tension line.
If the current flow gets too high, the fuse will melt. This destroys the fuse, but protects the remainder of the circuit.
Electricity is classified as high voltage (HV) if it exceeds 1,000 Volt AC or 1,500 Volt DC. Equipment and conductors that carry high voltage have specific safety requirements and procedures.
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Low voltage systems are comprised of electrical equipment that uses 50 volts (V) of electricity or less. Common low voltages include 48 V, 24 V, and 12 V. Residential examples of low voltage systems include doorbells, garage door openers, home security sensors, thermostats, and landscape lighting.
Probable causes of high current with load include mechanical overload, excessively high magnetic flux densities and, less frequently, an open rotor. An error in winding data that results in lower-than-design-level magnetic flux also can cause high current with load.
Higher voltage allows for the production of higher, more dangerous currents. Resistance opposes current, making high resistance a good protective measure against shock. Any voltage above 30 is generally considered to be capable of delivering dangerous shock currents.
High Current Transformers are designed to elevate and check the temperature of conductors at high current levels, in order to simulate the current loading conditions found in electrical circuits. High Current Transformers are designed as an open type transformer.
Higher voltage allows for the production of higher, more dangerous currents. Resistance opposes current, making high resistance a good protective measure against shock. Any voltage above 30 is generally considered to be capable of delivering dangerous shock currents.

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