H3A Zinc Alloy Top and Side Entry Hoods

Series Part Number

Part Number: ULO - HC01 - H3A - TE - M20
Explanation:

Manufacturer

ULO - ULO Electronics

Housing Series

HC01 - HC01 zinc-alloy upper hood series; drawing-format part numbers shown here

Housing Size

H3A - Housing size 3A

Cable Entry

TE - Top entry; M20, PG11 or PG13.5
SE - Side entry; M20 or PG11

Entry Thread

M20 - M20 metric thread, top or side entry
PG11 - PG11 thread, top or side entry
PG13.5 - PG13.5 thread, top entry only

Description

Top and side cable entry

These HC01 upper hoods use a die-cast zinc-alloy body in the 3A size. The TE version directs the cable through the top, while the SE version places the threaded entry on the side. Both have two opposing locking studs for a single locking lever on the mating housing.

Model familyCable entryXX thread optionsOverall heightBody widthWidth across studsBase depth
ULO-HC01-H3A-TE-2B-XXTopM20, PG11, PG13.560mm27.5mm33.4mm28mm
ULO-HC01-H3A-SE-2B-XXSideM20, PG1154.5mm27mm

Select the cable-entry thread within the options listed for each hood. The drawing references omit the 2B segment and identify the variants as ULO-HC01-H3A-TE-M20, ULO-HC01-H3A-TE-PG11, ULO-HC01-H3A-TE-PG13.5, ULO-HC01-H3A-SE-M20 and ULO-HC01-H3A-SE-PG11.

Outline and assembly dimensions

H3A top entry metal hood dimensions
Top entry hood: 60mm overall height, 27.5mm body width, 33.4mm across the locking studs and 28mm base depth. M/PG marks the cable-entry thread.
H3A side entry metal hood dimensions
Side entry hood: 54.5mm overall height, 27mm body width, 33.4mm across the locking studs and 28mm base depth.

Construction and protection

PropertySpecification
Housing typeUpper hood
Series and sizeHC01; 3A
Locking arrangementSingle lock; two opposing studs on the hood
Body materialDie-cast zinc alloy
Surface and colourPowder-coated; grey
Temperature range-40°C to +125°C
Ingress protectionIP65 according to IEC 60529 for the coupled connector

Check the mating housing dimensions, locking lever arrangement and cable entry before selecting an assembly.