3M 7652-S-4 COLD SHRINK QT-III TERMINATION KIT 7640-S 7650-S & 7660-S SE
Factory Availability
3M 7652-S-4 COLD SHRINK QT-III TERMINATION KIT 7640-S 7650-S & 7660-S SE
Factory Availability
Stanion #7652S43M
MFG #7000140713
Product Overview
3MTM Cold Shrink QT III Termination Kit 7640-S, 7650-S, & 7660-S Series are engineered to minimize surface stress to help evenly distribute the electrical field over the entire surface of the insulator while providing a conformable and tight seal for jacketed concentric neutral and concentric neutral power cables. Its dependable construction comprises a high dielectric constant material and silicone rubber insulation that gives reliable water resistance in outdoor applications and can be used in indoor operations as well. The product uses cold shrink technology, making for a simple installation that requires no force-fitting and conforms easily to operations in tight spaces. 3MTM Cold Shrink QT III 7640-S, 7650-S, & 7660-S Series Termination Kits comply with IEEE Standard 48, Class 1 requirements for 5, 8, 15, 25/28, and 35 kV and have specific product selections to meet varying voltage requirements ranging from 5 to 35 kV. For comprehensive technical information about a particular product in this series, please consult a 3M expert.
- Attributes
- Documents
- Application
- Includes
- Item Features
- Standards
Brand3M™
ColorBlack
Country of OriginUS
Manufacturer Name3M
MaterialSilicon Rubber, Silicone Rubber
Number of Pieces1
Series7650-S, QT-III 7650-S
Specifications1-Terminal, 5 to 25/28 kV Voltage, 2 to 400 kcmil Conductor, 150 kV BIL, 0.64 to 1.08 in OD Cable Insulation, 12-1/4 in L Max Installed, Medium Voltage, 15 kV Voltage
Suitable For Use WithConcentric Neutral and Jacketed Concentric Neutral Power Cable, Outdoor Applications
TypeCold Shrink, Cold Shrink QT-III
Suitable for outdoor applications
A 1 piece, skirted termination
- Silicone rubber insulation offers durability and reduces leakage currents in damp conditions
- High dielectric-constant material regulates the distribution of electric field stress
IEEE 48 Class I

