Technical Document
Specifications
Brand
TE ConnectivitySplice Type
Parallel
Product Type
Splice Connector
Overall Length
7.6mm
Diameter
3.6 mm
Minimum Wire Size AWG
22 AWG
Insulation
Insulated
Maximum Wire Size AWG
14 AWG
Series
36490
Contact Material
Copper
Contact Plating
Tin
Thickness
1.45mm
Standards/Approvals
RoHS
Product details
TE Connectivity SOLISTRAND Closed Barrel Parallel Splices
SOLISTRAND closed barrel parallel splices designed to terminate solid and stranded wire and irregular shaped conductors. These SOLISTRAND closed barrel parallel splices are made from fine grade high conductivity copper with tin plating and have closed barrels with brazed seams that create a uniform metal strength around the barrel. The inner surface of the barrels of these SOLISTRAND parallel splices are either dimpled or serrated for maximum tensile strength and to maximise the electrical contact area after crimping
TE Connectivity SOLISTRAND Terminals and Splices
Stock information temporarily unavailable.
EGP 1,997.00
EGP 19.97 Each (In a Pack of 100) (ex VAT)
Standard
100
EGP 1,997.00
EGP 19.97 Each (In a Pack of 100) (ex VAT)
Stock information temporarily unavailable.
Standard
100
Technical Document
Specifications
Brand
TE ConnectivitySplice Type
Parallel
Product Type
Splice Connector
Overall Length
7.6mm
Diameter
3.6 mm
Minimum Wire Size AWG
22 AWG
Insulation
Insulated
Maximum Wire Size AWG
14 AWG
Series
36490
Contact Material
Copper
Contact Plating
Tin
Thickness
1.45mm
Standards/Approvals
RoHS
Product details
TE Connectivity SOLISTRAND Closed Barrel Parallel Splices
SOLISTRAND closed barrel parallel splices designed to terminate solid and stranded wire and irregular shaped conductors. These SOLISTRAND closed barrel parallel splices are made from fine grade high conductivity copper with tin plating and have closed barrels with brazed seams that create a uniform metal strength around the barrel. The inner surface of the barrels of these SOLISTRAND parallel splices are either dimpled or serrated for maximum tensile strength and to maximise the electrical contact area after crimping


