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  2. A&R Cambridge Ltd - Wikipedia

    en.wikipedia.org/wiki/A&R_Cambridge_Ltd

    A&R Cambridge's first product was the A60 integrated amplifier, released in 1976, which soon became a classic, admired for its restrained, sleek appearance and its high-end sound performance. [3] The name 'A&R Cambridge' was a shortened form of 'Amplification & Recording, Cambridge' which represented the initial operations of its founders, John ...

  3. Category : Audio equipment manufacturers of the United Kingdom

    en.wikipedia.org/wiki/Category:Audio_equipment...

    Main page; Contents; Current events; Random article; About Wikipedia; Contact us

  4. Acoustic Research - Wikipedia

    en.wikipedia.org/wiki/Acoustic_Research

    Acoustic Research was a Cambridge, Massachusetts-based company that manufactured high-end audio equipment. The brand is now owned by VOXX.Acoustic Research was known for the AR-3 series of speaker systems, which used the 12 in (300 mm) acoustic suspension woofer of the AR-1 with newly designed dome mid-range speaker and high-frequency drivers.

  5. AKG (company) - Wikipedia

    en.wikipedia.org/wiki/AKG_(company)

    The AKG C214 condenser microphone AKG S8X cartridge. AKG Acoustics (originally Akustische und Kino-Geräte Gesellschaft m.b.H., English: Acoustic and Cinema Equipment L.L.C.) is an acoustics engineering and manufacturing company.

  6. Kandy Electoral District - Wikipedia

    en.wikipedia.org/wiki/Kandy_Electoral_District

    Kandy (Mahanuwara) electoral district is one of the 22 multi-member electoral districts of Sri Lanka created by the 1978 Constitution of Sri Lanka. The district is conterminous with the administrative district of Kandy in the Central province .

  7. Lock-in amplifier - Wikipedia

    en.wikipedia.org/wiki/Lock-in_amplifier

    A lock-in amplifier is a type of amplifier that can extract a signal with a known carrier wave from an extremely noisy environment. Depending on the dynamic reserve of the instrument, signals up to a million times smaller than noise components, potentially fairly close by in frequency, can still be reliably detected.