Phoenix Contact SAC, 10 m 5 Core Power Cable, Grey Polyvinyl Chloride 80 °C

Stock information currently inaccessible
RS Stock No.:
519-121
Mfr. Part No.:
1414897
Brand:
Phoenix Contact
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Brand

Phoenix Contact

Product Type

Power Cable

Number of Cores

5

Jacket Colour

Grey

Cable Length

10m

Jacket Material

Polyvinyl Chloride

Outside Diameter

10.1 mm

Voltage

63 V

Minimum Operating Temperature

80°C

Cable CSA

5 x 2.5 mm²

Standards/Approvals

UL 758/1581, RoHS, IEC 61076-2-111, EAC, DIN EN 60811-404, DIN EN 60332-1-2, cUL Listed, UL Listed, UL 758/1581 FT1

Conductor Material

Bare Copper Wire

Series

SAC

Maximum Operating Temperature

80°C

COO (Country of Origin):
PL
The Phoenix Contact power cable is expertly designed for efficient energy supply solutions within various industrial applications. Built with five robust positions and a plug straight M12 connection, it guarantees reliability for direct current systems up to 16 A and 63 V. The PVC construction in grey (RAL 7001) ensures durability and flexibility, making it suitable for both fixed and flexible installations. With an operational temperature range spanning from -40 °C to 80 °C, this cable is engineered to endure challenging environmental conditions. Its user-friendly design includes shielding features and special L-coding for enhanced protection against mismatching, ensuring seamless integration into your systems. Ideal for professionals seeking a dependable solution, this power cable provides a combination of safety, durability, and performance, making it an exemplary choice for modern industrial needs.

Designed for various industrial applications including automation and power supply

Exceptional insulation resistance ensures longevity and reliability

L coding prevents connection errors, enhancing safety

Meets stringent flammability ratings for increased operational safety

Accommodates extensive operational temperature ranges for diverse settings

Robust connectors designed for over 100 insertion and withdrawal cycles

Efficient conductor structure optimises energy delivery and performance

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