Palmer PWT 08 MK2 Universal 9V Pedalboard Power Supply 8 Outputs

£94.00

This is a New Palmer PWT 08 MK2 Universal 9V Pedalboard Power Supply 8 Outputs from Palmer is in our Pedalboards category on Just Pedals. Read More below.

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The Palmer PWT 08 MK2 is perfect for powering noise-sensitive and power-hungry effects pedals. With eight individually isolated 9V DC outputs it ensures clean and stable power for your pedalboard. Two of these outputs are adjustable between 6 and 18 volts making them suitable for a variety of voltage needs including simulating old battery drops or powering high-current digital effects. The slim design allows it to fit comfortably under most pedalboards making it a practical choice for both studio and live setups. Each output is protected against short circuits and overvoltage ensuring reliable performance.

Brand

Palmer

In the current JustPedals catalogue, Palmer is represented by Pedalboards and Preamp & DI Pedals. Current listings include CAB M Passive Cabinet Merger, Y-BOX – Splitter and PWT 04 Pedalboard Power Supply. That makes the range relevant to players looking for modelling, direct rigs and multi-effects, 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

Pedalboards

A pedalboard provides a stable surface and cable space for arranging effects as one transportable signal system. Rail spacing, usable area and mounting method determine which enclosures fit, while underside clearance controls power-supply and cable placement. Case type, weight, handles, risers, patch bays and removable sections affect protection and access without changing the audio signal itself.

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.