Marshall PEDL-90008 MG Series 4-Way STOMPWARE Foot Controller

£34.00

This is a New Marshall PEDL-90008 MG Series 4-Way STOMPWARE Foot Controller from Marshall, listed in Pedal Switchers on Just Pedals. Read More below.

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The Marshall MG Series 4-Way STOMPWARE Foot Controller is the best way to make the most of your Marshall Amplifiers features. Boasting their very own patent-pending Stompware technology developed from Marshalls award-winning JVM Series. This quality design makes using your MG FX Amp a seamless smooth-sailing experience. Its simplicity at its best. Plus an easy-to-navigate LED panel lets you know exactly what features and channels are engaged while the digital display indicates the currently selected footswitch. With a durable steel chassis and classic Marshall styling the STOMPWARE Foot Controller is a must-have accessory for any Marshall MG FX Amp owner.

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Brand

Marshall

In the current JustPedals catalogue, Marshall is represented by Overdrive Pedals, Distortion Pedals and Pedal Switchers. Current listings include DSL Amp Series, JVM Amp Series and 1959 Amp Series. That makes the range relevant to players looking for drive, gain and clipping, plus pedalboard infrastructure and control. Check each model for its exact circuit or processing platform, controls, power requirements and connections, particularly where the catalogue includes both pedals and supporting gear.

Category

Pedal Switchers

A pedal switcher routes effects through independently controlled loops so several pedals can be engaged, bypassed or reordered from one set of footswitches. Simple loop strips shorten the live signal path; programmable systems store combinations as presets and may send MIDI commands or change amplifier channels. Loop count, buffer placement, stereo support, spillover and routing flexibility define the system.

Tags

Digital

Converts the signal or control process into numerical data for algorithmic processing. Digital designs can provide precise timing, long memory, complex routing and repeatable presets; sample rate, conversion, internal resolution and latency influence fidelity and response.