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Overhead Line Insulator

Underground Cable Insulator

  • Cable cleat / support insulator for underground cables in trenches & manholes
  • Spaces and insulates single-core cables to control magnetic forces
  • Holds cable position against short-circuit thrust
  • Porcelain or polymer cleat / standoff form
  • For substation cable racks, manholes and ducts
  • Bolts to the rack / wall, clamps the cable
Type: Cable cleat / standoff
Use: UG cable support
For: Single-core MV / HV
Material: Porcelain / polymer
Mount: Rack / wall
Lead Time: 20–30 days
Download Datasheet

Technical Specifications

Standard models — custom dimensions available, contact us with your drawing.
CatalogFor Cable Ø (mm)TypeShort-circuit (kA)MaterialMount
RAX-UC-120–40Cleat25PolymerRack / wall
RAX-UC-240–70Cleat40PolymerRack / wall
RAX-UC-350–90Standoff40PorcelainRack
RAX-UC-470–120Standoff50PorcelainRack
CustomOther cable sizes / fault levels — send your cable & rack spec
* All dimensions may vary ± 2 mm. Request full datasheet PDF via the inquiry form.

Application & Installation

Underground Cable Insulator application 1 Underground Cable Insulator application 2 Underground Cable Insulator application 3 Underground Cable Insulator application 4

Where it is used

The underground cable insulator (cable cleat / support) spaces and holds single-core power cables on racks, in manholes and through ducts. It fixes the cable position and insulates it from the rack, and — critically — resists the magnetic thrust that single-core cables exert on each other during a short circuit.

Installation sequence

  1. Select the cleat / standoff for the cable diameter and fault level.
  2. Bolt the base to the cable rack or wall.
  3. Lay the cable into the cleat / saddle.
  4. Close and bolt the cleat clamp over the cable.
  5. Confirm the spacing and that the cable cannot move under fault.

Buyer’s Guide: Underground Cable Insulator

1. What an Underground Cable Insulator Is

An underground cable insulator is a cleat or standoff that supports a power cable on a rack, in a manhole or through a duct. It holds the cable at a set spacing, insulates it from the metal rack, and restrains it — the support hardware of an underground or in-station cable run.

2. Short-Circuit Forces

When a fault current flows, parallel single-core cables push or pull on each other with large magnetic forces. The cleat must hold the cable against that thrust so the cables do not whip and damage themselves — its short-circuit (kA) rating is as important as the size.

3. Cleat vs Standoff

A cleat clamps around the cable to hold it laterally and against thrust; a standoff insulator supports the cable on a saddle and spaces it off the rack. Use cleats where fault restraint matters, standoffs for support and spacing.

4. Sizing

Select by cable outside diameter and the system fault level (kA). The cleat must close on the cable firmly and be rated for the short-circuit force at that spacing.

5. Material

Polymer (GRP / LSF) cleats are light, non-magnetic and corrosion-free for most duty; porcelain standoffs suit higher-voltage in-station support. Non-magnetic material avoids heating in single-core runs.

6. Where It Is Used

On substation cable racks, in cable manholes, basements and ducts, and on any single-core cable run that needs spacing and fault restraint. Order to the cable size and fault level.

Frequently Asked Questions

What does an underground cable insulator do?
Supports and spaces a power cable on a rack / in a manhole, insulates it from the rack, and restrains it against short-circuit magnetic forces.
Why does the short-circuit rating matter?
Parallel single-core cables push on each other hard during a fault; the cleat must hold the cable against that thrust. Check the kA rating, not just the size.
Cleat or standoff?
Cleat clamps around the cable for lateral and fault restraint; standoff supports and spaces it on a saddle. Use cleats where fault restraint matters.
How do I size it?
By cable outside diameter and the system fault level (kA), so the cleat closes firmly and is rated for the force at that spacing.
Polymer or porcelain?
Non-magnetic polymer (GRP) for most duty — light and corrosion-free; porcelain standoffs for higher-voltage in-station support.
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