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9978A - NEMA 5-15 Plug to 2 Way IEC320 C13 Connectors 4.5 Meters / 15 Feet 15A/125V 14/3 SJT 24 Inch Legs Black - Splitter Power Cord

USD26.22

SKU:
9978A
Weight:
2.00 LBS

Key Features

  • NEMA 5-15 to (2) IEC320 C13
  • 125 Volts / 15 Amps
  • Power multiple devices from a single source

Documentation

Specifications

Amperage 15 Amps
Cable Jacket North America SJT
Cable Length 4.5 Meter / 15 Feet
Certification(s) US & Canada - cULus
Color Black
Conductor Color Code Black, White, and Green | North American Color Code (NACC)
Conductor Count 3 wires
Conductor Size 14 Gauge AWG
Female Connector IEC320 C13
Jacket Material PVC
Jacket Temperature Rating 105° C
Leg Count 2
Leg Length 24 Inch
Male Plug NEMA 5-15
Outside Diameter 9.1-9.5mm
Packaging Coiled
Testing Each cord is tested for dielectric voltage-withstand (Hi-Pot), polarization and continuity.
Tolerance ± 80 mm / ± 3.2 inches for molded cords± 150 mm / ± 6 inches for mechanical cords
Voltage 125 Volts

Application Notes

This NEMA splitter cords is designed to distribute power from a single NEMA 5-15 to (2) IEC320 C13 outlets. These assemblies are commonly used in commercial, industrial, construction, and temporary power environments where multiple devices must be powered from a single branch circuit connection.

The total connected load across all (2) IEC320 C13 outlets must not exceed the rating of the NEMA 5-15, the cable assembly, or the upstream breaker. Always verify voltage, amperage, and phase requirements before installation, and ensure compliance with applicable electrical codes.

Product FAQs

What applications are NEMA splitter cords used for?

They are commonly used for temporary power distribution, job sites, event production, workshops, data centers, and industrial facilities where multiple devices need to operate from a single circuit connection.

Are there load limitations?

Yes. The combined amperage draw of all connected devices must remain within the rating of the NEMA 5-15, the conductor gauge, and the upstream circuit breaker. Overloading can result in overheating or nuisance breaker trips.

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