Greer Amps Lightspeed Organic Overdrive Snowblind Edition

£229.00

This is the Greer Amps Lightspeed Organic Overdrive Snowblind Edition from Greer Amps, listed in Overdrive Pedals on Just Pedals. Read More below.

View Just
more
and

Here's What Greer Amps Say About the Lightspeed Organic Overdrive

The Lightspeed Organic Overdrive is a very natural sounding overdrive. Why "organic"?  Well, simply put, it's the clearest, most natural feeling, and best overdrive we've heard for the player looking for a natural drive tone.  Blending with the tone of the guitar and amplifier, this pedal has rich harmonics and complex but smooth clipping. The Lightspeed Overdrive is sensitive to pick attack and has a different "feel" than other overdrives. The Lightspeed can be set to be "transparent," but can also drive your signal to the edge. 

Features

  • Natural light to mild overdrive!
  • Rich harmonics, smooth clipping!
  • Can be set to sound like original signal (what some call "transparent")!
  • True Bypass!
  • Uses 9-Volt battery or standard neg. center, 2.1mm power supply.
  • Built with top quality components
  • Lifetime Warranty to the original owner! (Offered by Greer Amps)

Specifications

  • Enclosure Dimensions (in):  4.77" x 2.6" x 1.39"
  • Power:  9-18 volt neg. center pin ONLY.  
  • Current draw:  11mA @ 9v. 

Related videos

Brand

Greer Amps

Category

Overdrive Pedals

Overdrive uses soft or moderate clipping to add harmonics and compression while retaining more of the original note shape than heavy distortion. Some circuits emphasise the midrange and trim bass before clipping; others remain broad, transparent or amplifier-like. Gain, clipping arrangement, headroom and tone filtering decide whether it supplies a light edge, a saturated drive sound or extra push into another gain stage.

Tags

True Bypass

Connects input directly to output through mechanical or relay switching when the effect is off, removing the active circuit from the audio path. It avoids buffer colour but leaves cable capacitance and switching design to influence high-frequency loss and possible switching noise.