Lightning Arrester: A Protective Device For Your Electrical Systems
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When lightning strikes, it creates a voltage surge. Both cloud-to-cloud lightning and cloud-to-ground lightning can result in voltage surges. ?Now, this voltage surge wants to equalize itself as soon as possible, and it can do so by short-circuiting your electrical equipment. For example, it can either directly hit your house or strike on a cable line that passes over your home. Thus, a simple way to protect from this surge is to give it a safe path to neutralize. Therefore, you need to have a lightning arrester.
Image: arrester house lightning icon
Methodology to Suppress Lightning and Voltage Surge
To neutralize the surge in voltage, you can adopt one or all of the different ways mentioned here:
How Does a Lightning Arrester Work?
It has two terminals; a high-voltage and a ground one.? You have to install a surge arrester near the point of entry of voltage. This can be your electrical panel or a generator. After installation, if the lightning strikes, the device activates itself. However, you must know that it does not stop the lightning but diverts it to a safe route. It is like a home defense system that protects electrical devices from the drastic effects of high currents.
Image: lightning arrester system
You can find lightning arresters in power transmission and telecommunications systems. In such scenarios, there are small arresters known as surge protectors. These devices allow the average current to flow in the machines. However, when there is a high voltage, it takes that high-voltage current to the ground safely.?
Types of Lightning Arresters
There are several types of lightning arresters available.
Expulsion types: You can also call it a protector tube. You can use this arrester in systems that operate at a voltage of not more than 33kv. It mainly consists of three parts:
When a surge voltage arises over the expulsion tube, it spans the series gap. As a result, arc forms between the electrodes of the box. Now, this arc causes the fibrous material in the tube to evaporate in the form of gas. This gas passes through the vent. One of the electrodes is hollow; it allows the gas to pass and extinguish the arc, similar to circuit breakers.?
Valve-type lightning arresters:
You can also call them non-linear diverters. Unlike, expulsion type, you can use this on systems with high voltage operations. This arrester has a divided spark gap with a resistance in series, and the opposition has non-linear features. The spark gaps, non-linear resistors, and coil units are in a porcelain container.
The spark gap has several gaps connected in series. You will find two electrodes with space in each hole. There are some resistors across the gaps to linearise the voltage. These are grading resistors. During average voltage, you will see no spark. However, when there is surge voltage, the air between the gaps creates an arc between the electrodes. Now, this arc takes surge current to the ground with the help of non-linear resistors.
Gap-less metal oxide arresters:
You can call them zinc-oxide diverters or gapless surge diverters. Here the base material is zinc, and the oxide is Zinc oxide, and this material is semiconducting and has a coating of insulating oxide.
Power fills a disc-shaped structure. A ceramic housing having sulfur hexafluoride encloses this disc. So, the arrester has a barrier at the zinc oxide edges. In normal conditions, this potential obstacle stops the flow of current. However, the obstacle breaks in case of a voltage surge, and the high voltage current passes safely to the ground.
Image: technician installing lightning protection system rod on top of a building.
Classification of lightning Arresters
Based on the nominal discharge current, lightning arresters are divided as under:
Station class: You will find them in electric power stations. Among all the arresters, this type gives the best discharge voltages. It can handle high energy and can withstand the highest fault current. You can find this in ratings of 3 to 684kv. The cantilever strengths of station lightning arresters can vary depending on their applications.?
Intermediate class: They also offer suitable discharge voltages and high fault current bearing capacity. Usually, their ratings range from 3 to 120kv.
Distribution arresters: You can find them on transformers. These have voltage ratings between 1 to 36kv. You can find three categories in this; namely light-duty, standard duty, and heavy-duty.
There is a riser pole arrester in heavy-duty LA (lightning arrester) which protects from the surge voltage faced by underground cables and other equipment. High lightning applications use Heavy-duty LA. On the other hand, low lightning applications generally use regular duty LA.
Secondary arresters: you can use these arresters to protect businesses and homes from lightning strikes. These have voltage ratings below 1000V, and these arresters mainly protect from the secondary surge and reduce the failure rates of the transformer.
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Ldentification of Surge Arresters
You can identify a surge arrester based on information available on the nameplate or rating plate. Identification is based on the:?
Standard ratings of a Lightning Arrester
When you pick a lightning arrester, your objective should be to choose the lowest-rated arrester. These arresters offer considerable protection from the insulation of the equipment.
Rated voltage: A lightning arrester must bear the maximum continuous operating voltage or MCOV. Any leakage current that passes through the arrester limits itself to its specific rated value on this voltage. An arrester’s rated voltage depends on?
Make sure that the voltage rating is more than the highest sound phase to ground voltage.
Rated frequency: The standard rated frequencies of lightning arresters are 50Hz and 60Hz.
Rated nominal discharge current: This is the discharge current that an arrester picks during discharge of surge current.?
Service Condition of lightning Arrester
You can use a lightning arrester for regular operation under normal service conditions.
Sometimes, surge arresters need to work in abnormal working conditions. For this, the manufacturer has to design its structure based on its applications. The abnormal service conditions may include:
Why Should you Install a Lightning Arrestor
Here is a list of advantages that a lightning arrestor offers.
Difference between Surge Suppressor, Surge Arrester, Lightning Rod, and Lightning Arrester?
You often use these words for the same purpose. However, these terms are different based on what kind of systems you use and how you want to protect them.
?Image: lightning rod against a dark cloud sky
Recommended Equipment for Outdoor Antenna Lightning Protection
IIf you use an outdoor antenna or Ethernet cables, you must install a TV antenna lightning arrester kit. These are some of the options.
Image: antenna cable
Conclusion:
So, now, you can see how a lightning arrester can protect your valuable devices and electrical systems. And for any help related to your outdoor antenna lightning protection, you can contact Cloom, and we deal in high-quality cable assemblies and wiring harnesses.