Self-Test Tamper-Resistant Industrial Grade GFCI
SKU: #30159
Part: #G5362-TT
UPC: 078477898307
Self-Test Tamper-Resistant Industrial Grade GFCI
SKU: #30159
Part: #G5362-TT
UPC: 078477898307
Description
Self-Test Tamper-Resistant Industrial Grade GFCI Duplex Receptacle Outlet
The SmartlockPro Self-Test Tamper-Resistant GFCI Duplex Receptacle Outlet is an extra heavy-duty industrial specification grade device designed for electrical distributors and lighting solutions providers requiring reliable ground fault protection. Rated for 20 amperes and 125 volts, this device offers enhanced safety features including self-testing functionality and tamper resistance, suitable for use in commercial and industrial environments. It supports back or side wiring and complies with NEMA 5-20R standards, making it compatible with a wide range of wire and cable installations. This switchgear supplier product features self-grounding and is constructed from durable polycarbonate and PBT materials for body and face respectively.
Specifications
- Product Weight: 0.3870 lbs
- Amperage: 20 amperes
- Voltage: 125 volts
- Device Type: Duplex Receptacle Outlet
- Grade: Extra Heavy-Duty Industrial Specification
- Color: Almond
- NEMA: WD-1
- Enclosure: WD-6
- Grounding: Self-Grounding
- Number of Poles: 2
- Number of Wires: 3
- Body Material: Polycarbonate
- Face Material: PBT
- Flammability Class: Rated V-0 Per UL 94
- Operating Temperature: -35 degrees Celsius
- Country of Origin: China
- Manufacturer Part #: G5362-TT
Features
- Self-Test functionality to periodically verify GFCI electronics operation, indicated by a status indicator LED
- Tamper-Resistant design for enhanced safety in compliance with electrical codes
- Back or side wiring options for flexible installation
- Self-Grounding feature simplifies grounding connection
- Compatible with copper or copper-clad wire (not for aluminum wire)
- Includes LED status indicator for visual confirmation of operational status
- Complies with industrial grade specifications for durability and reliability in demanding environments