Pro-Discharge Lightning Rod

Pro-Discharge Lightning Rod

Equipped with energy storage components, Pro-Discharge Lightning Rod has the ability to trigger the upward leader. Optimize the head radius to reduce the corona effect and ensure the normal operation of the pulse device.

*The price of the product is determined by the volume of your order. We always try to provide our customers with unique discounts and delivery times for their order.

Pro-Discharge Lightning Rod Description:

Equipped with energy storage components, Pro-Discharge Lightning Rod has the ability to trigger the upward leader. Optimize the head radius to reduce the corona effect and ensure the normal operation of the pulse device.

Pro-Discharge Lightning Rod Characteristics:

Strictly fol low the mandatory provisions of the Nationa I Lightning Protection Stand a rd of the People’s Republic of China – “Code for Design of Lightning Protection for Buildings” (GB50057-2010). The electronic components are completely wrapped in epoxy resin to prevent internal electronic components from being damaged by lightning strikes
No radioactive elements, safe and reliable; stainless steel material, corrosion-resistant,beautiful appearance. Accurately judge the timing of discharge, make lightning strikes more accurate, and reduce the probability that the lightning strike point falls on a non-lightning rod body
Fully active system, self-activating

Pro-Discharge Lightning Rod Parameter

Type HDFL-YFD60
Early discharge time 60µs
Length 0.356m
Material Alloy material
Weight 4.5kg
Installation method Flange fixed or welded
Operating hours All day
Anti-corrosion ability Highly resistant to acid and alkali
Outward appearance Beautiful and easy install
Features No need power

Pro-Discharge Lightning Rod Installation

Pre-discharge lightning rods must strictly follow the mandatory provisions of the National Lightning Protection Standard of the People’s Republic of China – “Code for Design of Lightning Protection in Buildings” (GB50057-10)

1. Determine building lightning protection based on the area and height of the protected building, the number of lightning days in the location, the geographical environment correction coefficient, the nature of the building’s use, etc.
2. The down conductors (down conductors) should be electrically connected to the main steel bars of the building, or two or more down conductors (down conductors) should be made as required
3. The down conductor (down conductor) should be disconnected and insulated on the ground nearby
4. The grounding body, grounding resistance, and lightning protection ground network should be implemented in accordance with the lightning protection standard GB50057-2010

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