Phoenix Contact SAC, 1.5 m 5 Core Power Cable, Grey Polyvinyl Chloride 80 °C

Stock information currently inaccessible
RS stock no.:
519-335
Mfr. Part No.:
1424609
Manufacturer:
Phoenix Contact
Find similar products by selecting one or more attributes.
Select all

Brand

Phoenix Contact

Product Type

Power Cable

Number of Cores

5

Jacket Colour

Grey

Cable Length

1.5m

Outside Diameter

9.1 mm

Jacket Material

Polyvinyl Chloride

Voltage

63 V

Minimum Operating Temperature

80°C

Cable CSA

5 x 1.5 mm²

Standards/Approvals

DIN EN 60332-1-2, cUL Listed, DIN EN 60811-404, IEC 61076-2-111, EAC, UL 758/1581, UL Listed, RoHS, 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 engineered for reliability and efficiency in power supply applications. This robust 5-position power cable features a straight M12 connection with L-coding, ensuring a secure and stable connection suitable for direct current operations up to 12 A at 63 V. Its durable PVC construction in a subtle grey hue adds to the aesthetic appeal while ensuring long-lasting performance in various environments. Designed to operate in temperatures ranging from -40 °C to 80 °C and extreme conditions with an IP65/IP67 protection rating, this product is ideal for use across multiple industries, from automation to automotive. The thoughtful integration of high-quality materials guarantees electrical integrity, making it a reliable choice for demanding applications.

Designed for direct current up to 63 V

Crafted to withstand extreme temperatures between -40 °C and 80 °C

Incorporates robust L-coding for protection against mismatching

IP65 and IP67 rated for dust and water resistance

Constructed with PVC for flexibility and durability

Extensive testing guarantees 100% electrical reliability

Suitable for insertion and withdrawal cycles of over 100

Features a distinctly grey outer sheath for easy identification

Utilises high-quality CuZn contact material for optimal conductivity

Related links