Arc resistant switchgear is designed to help mitigate the harmful effects of an arc flash by helping to prevent, reduce, and channel it away from workers equipment. But what is arc flash and why is it s.
Who makes arc-resistant switchgear?
Crown Arc-Resistant Switchgear Crown Technical Systems is one of the few companies in the world that engineers and manufactures arc-resistant switchgear. Our original engineering team pioneered the widespread use of arc-resistant gear throughout Canada.
What is arc-resistant Magnum DS switchgear?
Arc-resistant Magnum DS switchgear is certified ANSI Type 2B. This rating certifies the arc-resistant rating around the entire perimeter of the equipment, even when the low voltage instrument compartment door and the secondary door above the breaker door are open.
How does an arc flash switchgear work?
Generally, this type of switchgear will come with flaps that open under the intense pressure of arcing energy. The flaps allow the heated gases of an arc flash and the pressure to safely vent out of the enclosure and away from the operator. When venting arc flash gases outside of the switchgear room is necessary, extra duct work is used.
Does Eaton Magnum DS have arc-resistant switchgear?
Genuine Magnum DS switchgear accessories and replacement parts improve the reliability, safety and longevity of the switchgear. Eaton Magnum DS arc-resistant low voltage switchgear protects personnel from dangerous arcing faults by containing and redirecting the arc energy, with ratings up to 100 kA for 0.5 seconds.
What arc flash protection methods are used by arc resistant switchgear?
Other arc flash protection methods employed by arc resistant switchgear include, but are not limited to, the following. Workers who maintain and operate the switchgear must also wear the proper Personal Protective Equipment (PPE), which includes arc-rated clothing, gloves, face shields, and other gear.
What is switchgear arc protection?
Switchgear arc protection mainly involves the use of vents and duct system to carry away the super-hot gases and high pressures of an arc flash away from the switchgear enclosure and to a safe location. This can be in the area above the switchgear or outside the switchgear room.