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  2. Loudspeaker time alignment - Wikipedia

    en.wikipedia.org/wiki/Loudspeaker_time_alignment

    This particular crossover has the property that at the crossover frequency the electrical summing is flat (i.e., there is no peak or dip) and the signals being sent to the woofer and tweeter are always in phase (180° out of phase in the LR2 case, which is corrected by simply inverting the tweeter's signal).

  3. Audio crossover - Wikipedia

    en.wikipedia.org/wiki/Audio_crossover

    They use a network of passive electrical components (e.g., capacitors, inductors and resistors) to split up an amplified signal coming from one power amplifier so that it can be sent to two or more loudspeaker drivers (e.g., a woofer and a very low frequency subwoofer, or a woofer and a tweeter, or a woofer-midrange-tweeter combination). Active ...

  4. Loudspeaker - Wikipedia

    en.wikipedia.org/wiki/Loudspeaker

    Crossover frequency(ies) (multi-driver systems only) – The nominal frequency boundaries of the division between drivers. Frequency response – The measured, or specified, output over a specified range of frequencies for a constant input level varied across those frequencies.

  5. Tweeter - Wikipedia

    en.wikipedia.org/wiki/Tweeter

    These vintage cone tweeters exhibited very flat frequency response, low distortion, fast transient response, a low resonance frequency and a gentle low-end roll-off, easing crossover design. Typical of the 1960s/1970s-era was the CTS "phenolic ring" cone tweeters, exhibiting flat response from 2,000 to 15,000 Hz, low distortion and fast ...

  6. Thiele/Small parameters - Wikipedia

    en.wikipedia.org/wiki/Thiele/Small_parameters

    Thiele/Small parameters (commonly abbreviated T/S parameters, or TSP) are a set of electromechanical parameters that define the specified low frequency performance of a loudspeaker driver. These parameters are published in specification sheets by driver manufacturers so that designers have a guide in selecting off-the-shelf drivers for ...

  7. Midwoofer-tweeter-midwoofer - Wikipedia

    en.wikipedia.org/wiki/Midwoofer-tweeter-midwoofer

    The midwoofer-tweeter-midwoofer loudspeaker configuration (called MTM, for short) was a design arrangement from the late 1960s that suffered from serious lobing issues that prevented its popularity until it was perfected by Joseph D'Appolito as a way of correcting the inherent lobe tilting of a typical mid-tweeter (MT) configuration, at the crossover frequency, unless time-aligned. [1]

  8. NS-2000 - Wikipedia

    en.wikipedia.org/wiki/NS-2000

    The frequency response of the woofer is rated down to 28 Hz, making the NS-2000 a full-range speaker that may not need a separate subwoofer for low frequencies. The crossover starts at 500 Hz. The specifications read that the woofer is 33 cm (13 in) in diameter. It is 13 inches when measured between the outer edges of the diecast aluminum frame.

  9. LS3/5A - Wikipedia

    en.wikipedia.org/wiki/LS3/5A

    The crossover has three settings of relative high frequency level, in steps of 0.5dB. Each crossover is tuned to the specific pairs of drive units. [ 11 ] While Stirling's revision deviates technically from the specification, the company took steps to research and test to ensure the LS3/5A sound was preserved, "warts and all".