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Graham Slee Gram Amp 3 Fanfare Phono Stage

£279.00
Availability :Enquire Now



Graham Slee Gram Amp 3 Fanfare Phono Stage
http://www.fanthorpes.co.uk/images/www.fanthorpes.co.uk/thumb/th41406984207Graham_Slee_Gram_Amp_3_Fanfare_PhonoStage.jpg
£279.00
Generous Trade in Available - CALL NOW: 01482 223 096

Graham Slee Gram Amp 3 Fanfare Phono Stage

The Graham Slee Gram Amp 3 Fanfare Phono Stage is available for demonstration in our Hull store by request

Absolutely unique: the only dedicated entry-level moving coil phono preamp in the world — the Graham Slee Gram Amp 3 Fanfare Phono Stage extracts more music from vinyl than you'd think possible for its price and beyond!

The Graham Slee Gram Amp 3 Fanfare Phono Stage lifts the veil on the music, getting rid of the lumpy bass moving coil is often characterised with. The sound-stage is opened up separating instruments and vocals into their rightful sound-stage positions.


Part Exchange Available

As you would expect from Fanthorpes hifi, we offer a generous part exchange against the Graham Slee Gram Amp 3 Fanfare Phono Stage. If you have any hifi that you wish to use as part payment against the Graham Slee Gram Amp 3 Fanfare Phono Stage then either call us on 01482 223096 or email us at shop@fanthorpes.co.uk  and we will give you a price to change. This is a fantastic and hassle free way of making the Graham Slee Gram Amp 3 Fanfare Phono Stage more affordable.


Graham Slee Gram Amp 3 Fanfare Phono Stage Specification:

  • Input sensitivity range: 0.3mV to 1.2mV
  • Output for input sensitivity range: 240mV - 954mV
  • Maximum input level: 6.16mV (ref 1 kHz)
  • Gain (ref 1kHz): 58dB
  • Input impedance resistive: 100 Ohms
  • Output noise: (CCIR Q-Pk 22Hz-22 kHz) -67dB
  • Equivalent Input Noise (EIN) -125dB
  • Reproduction characteristic: RIAA within 0.5dB total deviation 20Hz-20kHz
  • Channel balance: 0.1dB
  • Channel separation: 64dB
  • Size: 107 x 117 x 50mm approx.
  • Total Harmonic Distortion plus noise measured at 80Hz, 1kHz, 5.6 kHz and 16 kHz: less than 0.05% (typically <0.015% at 1 kHz)