AYP500 | Electrozad South

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AYP500

Manufacturer: Burndy | Catalog # AYP500 | Electrozad South Part # 5342

$71.54 /ea
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AYP500, Compression Pin Adapter, 500 kcmil, Aluminum Termination, Straight Pin, .68" Pin Dia., 1.6" Pin Length, Al/Cu Rated, Tin Plated

Technical Information

Applications
For Mechanical Connectors in Molded Case Circuit Breakers, Panel Board Equipment and Meter Sockets
Color Coding
Pink
Conductor Material
ALUMINUM / COPPER
Conductor Size
500 kcmil
Conductor Type
Aluminum
Connection Type
Pin Terminal
Insulation Type
EPDM Rubber
Material
Aluminum
Max Voltage
35000 V
Pin Length
1.6 in
Plated?
Yes
Plating Type
Tin
Size
38 IN Length
Standard
CSA,E2186,UL
Temperature Rating
194 degrees F
Type
Insulated
Voltage
35000 V
Wire Size
500 MCM

Manufacturer Information

Brand
Burndy
Sub Brand
Hyplug™

General Product Info

12-Digit UPC
781810737743
Finish
Electro Tin Plated
GTIN
00781810737743
Product UPC
78181073774

Dimensions

Height
1.31 in
Length
3.08 in
Overall Length
3.08 in
Width
1.31 in

Certifications & Compliance

Country of Origin
USA
CSA
Yes
Overview
  • Electro-tin plating resists corrosion
  • Solid plug has equivalent cross-sectional area as current carrying equivalent copper wire permitting use of larger aluminum wire to connect equipment
  • EPDM rubber covers supplied with each connector and rated for 600V eliminating taping
  • Solid electro-tin plated aluminum plug
  • Provides the shortest connector length design possible permitting easy installation in equipment with limited working space
  • All-aluminum electro-tin plated design eliminates possible bi-metallic corrosion
  • Offset plug design available in sizes 2/0 through 750 kcmil providing flexibility and maximizing the use of limited space while eliminating interference between conductors and equipment
  • Factory pre-filled with PENETROX oxide inhibiting compound with conductive metallic particles to penetrate aluminum oxide between strands and forms an air-tight connection
  • Proper electrical connection made easily and eliminates the \"how tight is tight\" issue



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