LC tank - vertaling naar Engels
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LC tank - vertaling naar Engels

ALSO CALLED A TANK CIRCUIT
Resonant circuit; Tank circuit; LC filter; Tuned electrical circuit; Tuned Circuit; CL Circuit; Cl circuit; Tuned circuit; LC network; Lc circuit; LC tank; LC tank circuit; Lc constant; Tuned circuits; L–C circuit; L–C loaded; Voltage magnification; Current magnification; L-C network; Inductor-capacitor network; LC oscillation; L-C circuit; L-C loaded; Applications of LC circuits
  • LC circuit diagram
  • LC circuit ''(left)'' consisting of ferrite coil and capacitor used as a tuned circuit in the receiver for a [[radio clock]]
  • Parallel LC circuit
  • Series LC circuit

LC tank         

общая лексика

колебательный LC-контур

resonant circuit         

общая лексика

резонансный контур

tuned circuit         

общая лексика

настроенный контурж резонансный контур

Definitie

КОЛЕБАТЕЛЬНЫЙ КОНТУР
замкнутая электрическая цепь, состоящая из конденсатора емкостью С и катушки с индуктивностью L, в которой могут возбуждаться собственные колебания с частотой , обусловленные перекачкой энергии из электрического поля конденсатора в магнитное поле катушки и обратно. В реальных колебательных контурах всегда есть активное сопротивление, которое обусловливает затухание колебаний.

Wikipedia

LC circuit

An LC circuit, also called a resonant circuit, tank circuit, or tuned circuit, is an electric circuit consisting of an inductor, represented by the letter L, and a capacitor, represented by the letter C, connected together. The circuit can act as an electrical resonator, an electrical analogue of a tuning fork, storing energy oscillating at the circuit's resonant frequency.

LC circuits are used either for generating signals at a particular frequency, or picking out a signal at a particular frequency from a more complex signal; this function is called a bandpass filter. They are key components in many electronic devices, particularly radio equipment, used in circuits such as oscillators, filters, tuners and frequency mixers.

An LC circuit is an idealized model since it assumes there is no dissipation of energy due to resistance. Any practical implementation of an LC circuit will always include loss resulting from small but non-zero resistance within the components and connecting wires. The purpose of an LC circuit is usually to oscillate with minimal damping, so the resistance is made as low as possible. While no practical circuit is without losses, it is nonetheless instructive to study this ideal form of the circuit to gain understanding and physical intuition. For a circuit model incorporating resistance, see RLC circuit.

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