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  2. Phase detector characteristic - Wikipedia

    en.wikipedia.org/wiki/Phase_detector_characteristic

    A phase detector characteristic is a function of phase difference describing the output of the phase detector. For the analysis of Phase detector it is usually considered the models of PD in signal (time) domain and phase-frequency domain. [1]

  3. Phases of clinical research - Wikipedia

    en.wikipedia.org/wiki/Phases_of_clinical_research

    A Phase IV trial is also known as a postmarketing surveillance trial or drug monitoring trial to assure long-term safety and effectiveness of the drug, vaccine, device or diagnostic test. [1] Phase IV trials involve the safety surveillance (pharmacovigilance) and ongoing technical support of a drug after it receives regulatory approval to be ...

  4. Differential phase - Wikipedia

    en.wikipedia.org/wiki/Differential_phase

    To solve the problem of differential phase distortion in PAL system, the polarity of both the colorburst and the color signal are reversed in each consecutive lines. [2] [3] So in odd lines the phase of the colorburst leads and in the even lines the phase of the color signal leads. However, if there is DP distortion in the system, the shift ...

  5. Phase detector - Wikipedia

    en.wikipedia.org/wiki/Phase_detector

    Phase detectors for phase-locked loop circuits may be classified in two types. [1] A Type I detector is designed to be driven by analog signals or square-wave digital signals and produces an output pulse at the difference frequency.

  6. Symmetrical components - Wikipedia

    en.wikipedia.org/wiki/Symmetrical_components

    The imbalance between phases arises because of the difference in magnitude and phase shift between the sets of vectors. Notice that the colors (red, blue, and yellow) of the separate sequence vectors correspond to three different phases (A, B, and C, for example). To arrive at the final plot, the sum of vectors of each phase is calculated.

  7. Incremental encoder - Wikipedia

    en.wikipedia.org/wiki/Incremental_encoder

    At any particular time, the phase difference between the A and B signals will be positive or negative depending on the encoder's direction of movement. In the case of a rotary encoder, the phase difference is +90° for clockwise rotation and −90° for counter-clockwise rotation, or vice versa, depending on the device design.

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  9. Fresnel rhomb - Wikipedia

    en.wikipedia.org/wiki/Fresnel_rhomb

    For glass with a refractive index of 1.51, Fresnel calculated that a 45° phase difference between the two reflection coefficients (hence a 90° difference after two reflections) required an angle of incidence of 48°37' or 54°37'. He cut a rhomb to the latter angle and found that it performed as expected. [31]