Fourier transformer - translation to russian
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Fourier transformer - translation to russian

TYPE OF ELECTRICAL TRANSFORMER
Bridge transformer; Hybrid transformer
  • W and Y, X and Z are conjugate pairs
  • Wiring diagram of a single transformer hybrid
  • Using hybrids for bidirectional amplification

Fourier transformer      

медицина

преобразователь Фурье

Fourier transform         
  • chord]]. The first three peaks on the left correspond to the frequencies of the [[fundamental frequency]] of the chord (C, E, G). The remaining smaller peaks are higher-frequency [[overtone]]s of the fundamental pitches. A [[pitch detection algorithm]] could use the relative intensity of these peaks to infer which notes the pianist pressed.
  • Some problems, such as certain differential equations, become easier to solve when the Fourier transform is applied. In that case the solution to the original problem is recovered using the inverse Fourier transform.
  • Animation showing the Fourier Transform of a time shifted signal. [Top] the original signal (yellow), is continuously time shifted (blue). [Bottom] The resultant Fourier Transform of the time shifted signal. Note how the higher frequency components revolve in complex plane faster than the lower frequency components.
  • The [[rectangular function]] is [[Lebesgue integrable]].
  • The [[sinc function]], which is the Fourier transform of the rectangular function, is bounded and continuous, but not Lebesgue integrable.
MATHEMATICAL TRANSFORM THAT EXPRESSES A FUNCTION OF TIME AS A FUNCTION OF FREQUENCY
Fourier Transform; Fourier integral; Fourier transforms; Fourier transformation; Reality condition; ℱ; Continuous fourier transform; Continuous Fourier transform; CTFT; Forier transform; Fourier Transformation; Fourrier transform; Fourier shift theorem; List of Fourier transforms; Fourier wave analysis; Fourier uncertainty principle; Fourier component; Fourier transformations; Table of Fourier transforms; Fourier components; F-hat; Continuous-time Fourier transform

медицина

преобразование Фурье

secondary coil         
  • "E" shaped plates for transformer cores developed by Westinghouse
  • Camouflaged]] transformer in [[Langley City]]
  • Interleaved E-I transformer laminations showing air gap and flux paths
  • Ideal transformer connected with source ''V''<sub>''P''</sub> on primary and load impedance ''Z''<sub>''L''</sub> on secondary, where 0&nbsp;<&nbsp;''Z''<sub>''L''</sub>&nbsp;<&nbsp;∞.
  • An [[electrical substation]] in [[Melbourne]], [[Australia]]
showing three of five 220&nbsp;kV – 66&nbsp;kV transformers, each with a capacity of 150&nbsp;MVA
  • Power transformer overexcitation condition caused by decreased frequency; flux (green), iron core's magnetic characteristics (red) and magnetizing current (blue).
  • Substation transformer undergoing testing.
  • Transformer at the [[Limestone Generating Station]] in [[Manitoba]], Canada
  • Leakage flux of a transformer
  • Core form = core type; shell form = shell type
  • Schematic of a large oil-filled power transformer 1. Tank 2. Lid
3. Conservator tank 4. Oil level indicator 5. Buchholz relay for detecting gas bubbles after an internal fault 6. Piping
7. Tap changer 8. Drive motor for tap changer 9. Drive shaft for tap changer
10. High voltage (HV) bushing
11. High voltage bushing current transformers
12. Low voltage (LV) bushing
13. Low voltage current transformers
14. Bushing voltage-transformer for metering
15. Core 16. Yoke of the core
17. Limbs connect the yokes and hold them up 18. Coils
19. Internal wiring between coils and tapchanger
20. Oil release valve
21. Vacuum valve
ELECTRICAL DEVICE THAT TRANSFERS ENERGY THROUGH ELECTROMAGNETIC INDUCTION FROM ONE CIRCUIT TO ANOTHER CIRCUIT
AC transformer; Powerstat; Primary coil; Secondary Coil; Transformers (electrical); Transfomer; Line transformer; Tap (transformer); Electrical transformer; Air-core transformer; Primary winding; Secondary winding; Voltage conversion; Power transformer; Secondary coil; Power drums; Step down transformer; Step up transformer; Electric transformer; Ideal transformer; Step-down transformer; Step-up transformer; Primary circuit; Secondary circuit; Xformer; Electricity transformer; Magnetizing current; Displacement factor; Unit auxiliary transformer; Dry-type transformer; Dry type transformer; Trafo; TRAFO; Transformer turn ratio; Transformer ratio; Turn ratio; Xfmr; Oil natural, air natural; Oil natural, air forced; Oil forced, air forced; Stepdown transformer; Voltage to Hertz ratio; Overfluxing; Applications of transformers
вторичная катушка

Definition

ФУРЬЕ, ЖАН БАТИСТ ЖОЗЕФ
(Fourier, Jean Baptiste Joseph) (1768-1830), французский математик и физик. Родился 21 марта 1768 в Осере, где окончил Военную школу; работал там же. В 1796-1798 преподавал в Нормальной и Политехнической школах - двух новых высших учебных заведениях Парижа. В 1798 вместе с другими учеными принял участие в Египетском походе Наполеона. По возвращении во Францию в 1802 был назначен префектом департамента Изер со штаб-квартирой в Гренобле. Здесь Фурье написал свой основной труд - Аналитическая теория тепла (Thorie analytique de la chaleur, 1822), в котором изложена математическая теория теплопроводности. Эта теория послужила основой современных методов математической физики, относящихся к интегрированию уравнений в частных производных при заданных граничных условиях. Метод Фурье состоял в представлении функций в виде тригонометрических рядов (рядов Фурье) и нашел широкое применение в различных разделах физики и математики. Помимо этого, Фурье построил первую математическую теорию теплового излучения, впервые применил формулы размерностей. В 1823 независимо от Х.Эрстеда открыл термоэлектрический эффект, показал, что он обладает свойством суперпозиции, создал первый термоэлектрический элемент.
В 1808 Фурье получил титул барона и был награжден орденом Почетного легиона. В 1817 был избран членом Парижской Академии наук, с 1822 был ее секретарем. Состоял членом Петербургской Академии наук и Лондонского королевского общества.
Умер Фурье в Париже 16 мая 1830.

Wikipedia

Hybrid coil

A hybrid coil (or bridge transformer, or sometimes hybrid) is a transformer that has three windings, and which is designed to be configured as a circuit having four ports that are conjugate in pairs.

A signal arriving at one port is divided equally between the two adjacent ports but does not appear at the opposite port. In the schematic diagram, the signal into W splits between X and Z, and no signal passes to Y. Similarly, signals into X split to W and Y with none to Z, etc.

Correct operation requires matched characteristic impedance at all four ports. Hybrids are a class of directional coupler in which the input port power is split equally between the two output ports. Forms of hybrid other than transformer coils are possible; any format of directional coupler can be designed to be a hybrid. These formats include transmission lines and waveguides.

What is the Russian for Fourier transformer? Translation of &#39Fourier transformer&#39 to Russian