Studer MDC 2412-5 DC/DC Converter

Studer MDC 2412-5 DC/DC Converter

£20.00 Excl. VAT
Sale price  £20.00 Excl. VAT Regular price 
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Studer MDC 2412-5 DC/DC Converter

Studer MDC 2412-5 DC/DC Converter

141-0942
£20.00 Excl. VAT
Sale price  £20.00 Excl. VAT Regular price 
1 in stock

Pickup available at Advance Yacht Systems - Romsey

Usually ready in 1 hour

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Studer MDC 2412-5 DC/DC Converter

Advance Yacht Systems - Romsey

Pickup available, usually ready in 1 hour

Advance Yacht Systems
9 Fernacre Business Park, Budds Lane
Romsey SO51 0HA
United Kingdom

+441794523900

The MDC type DC/DC converters are used, depending on the model, either to step up or to step down a DC voltage.

The MDC 2412-5 will convert a 'nominal' 24V supply into 13.2V and the maximum output current it can deliver is 5.5A @ 13.2V. Sometimes DC/DC converters are rated in terms of watts. This converter can handle 65W.

Sheet 02 — Overview

DC/DC Converters & Chargers

DC/DC Converters can be used (depending on model) for three distinct purposes:

  1. To provide a supply of power for a device which uses a different voltage from the service voltage available on the vessel.
  2. Convert a service voltage into a different voltage to facilitate battery-to-battery charging. This option can be accomplished in a simply way using a DC/DC converter with an output voltage that is slightly higher than the resulting voltage of the battery. Cristec DC/DC chargers output is adjustable resulting in a modern 5-stage charger.
  3. To stabilise power. When devices such as electric winches, bowthrusters or even powerful inverters are connected to the service batteries, they may cause a dip in voltage when used. This might affect navigation instruments, causing them to switch off and then back on again. This would be disruptive and may cause stored information to be lost. In this case a DC/DC converter which has the same nominal input voltage as its output voltage will act as a stabilised power supply. The input voltage may drop but the output voltage will remain at the exact voltage you have set using the internal potentiomenter. The current drawn from the input will rise to compensate for the drop in that voltage, ensuring the output power remains stable.

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