Festo MSSD-EB 2P DIN 43650 C, Female (Gender A), Male (Gender B) Solenoid Valve Connector, 12 → 24 V ac/dc

Subtotal (1 unit)*

£43.43

(exc. VAT)

£52.12

(inc. VAT)

Add to Basket
Select or type quantity
In Stock
  • Plus 5 unit(s) shipping from 20 October 2025
  • Plus 14 unit(s) shipping from 20 October 2025
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.
Units
Per unit
1 +£43.43

*price indicative

RS Stock No.:
202-3200
Mfr. Part No.:
MSSD-EB-M12-MONO
Brand:
Festo
Find similar products by selecting one or more attributes.
Select all

Brand

Festo

Pole Format

2P

DIN 43650 Type

DIN 43650 C

Voltage Rating

12 → 24 V ac/dc

Gender

Female (Gender A), Male (Gender B)

Series

MSSD-EB

IP Rating

IP65

COO (Country of Origin):
CN

Festo Pneumatic Solenoid Coil Connector, 0.12A, 12 to 24V AC/DC - MSSD-EB-M12-MONO


Use this solenoid coil connector from Festo to link solenoid valves and pressure switches. It's made of durable metal that provides reliable impact resistance, which means it can withstand demanding industrial use. The unit operates with either an alternating current (AC) or direct current (DC) power supply, so it's a versatile solution and suitable for a wide range of devices. For added safety, it also has a surge voltage rating of 2.5kV, which means it can withstand sudden voltage spikes without interruption to service.

• Ingress protection rating of IP65 means it's dust-tight and can withstand low-pressure water jets from any direction
• Operating temperature range of -10°C to +50°C for safe use in industrial environments

Applications


• Bottle filling equipment
• Chemical production facilities
• Gas plants

What precautions should I take when installing this connector?


When installing your connector, it's important to ensure that it's suitably rated to carry the solenoid valve's operating current safely. This device has a permissible current load of 0.12A, which means any solenoid valve plugged into it must have a current consumption lower than 0.12A to prevent overheating and failure.