Phoenix Contact G-INVEN Series Light Grey Polyamide Cable Gland, M12 x 1.5 Thread, 4 mm min., 7 mm max., IP67, IP66

Subtotal (1 pack of 5 units)*

PHP1,843.67

(exc. VAT)

PHP2,064.91

(inc. VAT)

Add to Basket
Select or type quantity
Temporarily out of stock
  • Shipping from May 18, 2026
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.
Pack(s)
Per Pack
Per Unit*
1 +PHP1,843.67PHP368.734

*price indicative

Bag the Deal of the Season
RS Stock No.:
558-121
Mfr. Part No.:
1424532
Manufacturer:
Phoenix Contact
Find similar products by selecting one or more attributes.
Select all

Brand

Phoenix Contact

Thread Size

M12 x 1.5

Product Type

Cable Gland

Maximum Cable Diameter

7mm

Minimum Cable Diameter

4mm

Material

Polyamide

Colour

Light Grey

Series

G-INVEN

IP Rating

IP67, IP66

Hazardous Area Certification

No

Minimum Operating Temperature

-20°C

Maximum Operating Temperature

100°C

Standards/Approvals

cUL E199260, DNV TAE00003WX, UL 94V-2, UL E199260

COO (Country of Origin):
TR
The Phoenix Contact Cable Gland embodies innovation and reliability, designed to meet the demands of standard applications with utmost precision. Engineered with a robust materials specification, this product integrates a pressure compensation element that effectively prevents low pressure formation within enclosures. With its light grey RAL 7035 finish, it not only serves a functional purpose but also enhances the aesthetic appeal of your installations. The external cable diameter range from 4 mm to 7 mm ensures compatibility across various cable types, making this cable gland a versatile choice for diverse industrial sectors.

Capable of accommodating a range of external cable diameters for versatile installations

IP67 and IP66 degree of protection which ensuring exceptional resilience against water ingress

Utilises a flat gasket seal ensuring secure connection and minimal maintenance

Designed with ease of installation in mind facilitating quicker assembly times

Lightweight design contributes to a reduction in overall system weight improving efficiency

Related links