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Allied Power Solutions
Patparganj, New Delhi, Delhi
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Surge Arrester

Prominent & Leading Manufacturer from New Delhi, we offer hakel piiim pv 1000 surge arrester, cathodic protection surge arrester, piiim pv 600 hakel surge arrester, hakel surge arrester, spc pv 600 ds lightning surge arresters and communication line surge arrester.
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Hakel PIIIM PV 1000 Surge Arrester
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Approx.
Rs 1,350
Per Unit

Hakel PIIIM PV 1000 Surge Arrester

Product Details:
BrandHakel
Rated current40KA
Product idPIIIM PV 1000/M V series
It was type 2 surge protector. Used in photovolatic systems for equipotential bonding of positive & negative busbars of that system. It eliminates of transient over voltage that originate during atmospheric discharges or switching processes.

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Cathodic Protection Surge Arrester
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Approx.
Rs 2,000
Per Piece

Cathodic Protection Surge Arrester

Product Details:
ClassificationType B
Poles Number1pole+N, 2 Pole, 3 Pole, 3 Pole+N
IP RatingIP66

Buried pipelines for oil, gas and other inflammable materials are normally provided with Cathodic Protection Surge Arrester. This, in turn, requires the use of insulating flanges at terminal points on the pipeline system, such as at tank farms, governor stations, etc. In order to limit the extent of the appliedcathodic protection and prevent the loss of protective current to other buried metallic structures. In these locations, in the event of a lightning strike on to any above ground pipe work or connected structure, or an electrical fault causing a voltage surge on the pipe, a flashover across the insulating components to the flange could occur. HGS100 Ex is an explosion-proof gas discharge tube Spark gap with flexible connecting cable (varies to meet application requirements) for equipotential bonding acc to IEC 61024-1 and also for the use in IT installations acc to IEC 60364-5-54. It complies with EN 50014 and EN 50028 standards. It is recommended for insulated flanges and insulated screw joints bridging incathodic protected parts of industrial technology. In case of potential difference origin between two sides of insulation flanges, the high Spark gap ignites and interconnects both parts for a transient time (typical value of internal resistance at startup of HGS100 Ex is 0.001… 0.002). HGS100 Ex is certified for EEx m II T3 (FTZU 04 ATEX 0255X) and is suitable to be used in hazardous areas. The reasons motivating the choice of the interconnection of metallic masses are important. They should be well known in order to consider acceptable solutions that may reconcile the incompatibilities between these standards and the cathodic protection. On should well distinguish the risks of lightning and other potential surges that may lead to damage to electrical equipment, the electrical hazards for personnel as well as the means to ensure their protection. For the risks of lightning, theoretically, on could not implement a grounding circuit. It is useless with respect to the issue equipotentiality as mentioned above. Moreover, the grounding resistances, measured at low frequency (50 Hz) are totally different from the value of their impedance which is to be considered at very high frequency (lightning). In fact, the grounding systems are of no use for the evacuation of the lightning currents, they only act as a protection of personnel against the hazards related to the potentials at industrial frequencies. Because of this fact they have been made mandatory by the legislation in force. For the protection of persons the important criterion consists of avoiding a potential difference, which is deemed hazardous, between two regions of the human body. In case of a potential test post, for instance, a grounding system should be installed at the location where the individual is supposed to touch a point at which the potential is different from the one where his feet are in contact with the ground. A person is always supposed to be exposed to a potential difference if he touches two parts that are electrically isolated one from each other (for instance two metallic structures separated by an insulating joint). It is this reason that justifies the interconnection of the metallic structures. By interconnection of metallic masses one should understand the interconnection of the structures (including rebar of concrete and the grounding systems of buildings), the grounding of the premises (safety of personnel) and the lightning protections. The essential objective is to ensure a preferential path of return, of the lowest resistance, for the currents to the ground. Moreover the potential gradient created at the ground surface by the flow of the current is diminished with regard to what it would be on individual groundings (safety of personnel).


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PIIIM PV 600 Hakel Surge Arrester
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Approx.
Rs 1,200
Per Unit

PIIIM PV 600 Hakel Surge Arrester

Product Details:
BrandHakel
ClassificationType B, Type C, Type D
Poles Number1pole+N, 2 Pole, 3 Pole, 3 Pole+N
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Hakel Surge Arrester
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Approx.
Rs 5,200
Per Unit

Hakel Surge Arrester

Product Details:
ClassificationType B, Type C
ColorRed, Green, Yellow, White, Orange
Poles Number1 Pole, 1pole+N, 2 Pole, 3 Pole, 3 Pole+N
ApplicationElectric, Industrial, Home use
We are offering Hakel Surge Arrester.

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SPC PV 600 DS Lightning Surge Arresters
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Approx.
Rs 2,200
Per Unit

SPC PV 600 DS Lightning Surge Arresters

Product Details:
Minimum Order Quantity1 Unit
Arrester TypeStation Type, Intermediate Type, Distribution Type
Housing TypePolymer, Porcelain
Voltage Rating255 V AC
Lifetimemin.100 000 h
Weight900 g
Degree of protection of enclosureIP20
SPC PV is a lightning and surges arrester type 1+2 according to IEC EN 61643-11 and EN 50539-11. It is designed for the protection of positive and negative busbars of photovoltaic systems against the surge effects. These arresters are recommended for use in the Lightning Protection Zones Concept at the boundaries of LPZ 0-2 (according to IEC EN 62305). Particular varistor sectors are equipped with internal disconnectors, which are activated when the varistors fail (overheat). An operational status indication of these disconnectors is partly mechanical (by exserted red signaling target in case of failure) and partly remote monitoring (by potential free change over contacts – only DS types).

Specifications:
  • Max. continuous operating voltage UC 255 V AC
  • Lightning impulse current (10/350) Iimp 110 kA
  • Nominal impulse discharge current (8/20) In 50 kA
  • Voltage protection level Up< 2,5 kV Max
  • Back-up fuse 500 AgL/gG

Additional Information:
  • Delivery Time: stock avilable
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Communication Line Surge Arrester
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Approx.
Rs 3,800
Per Unit

Communication Line Surge Arrester

Product Details:
BrandHakel
ClassificationType B, Type C, Type D
Poles Number1 Pole, 1pole+N, 2 Pole, 3 Pole, 3 Pole+N
Backed and supported by years of experience of this domain, we are instrumental in presenting the premium quality of Communication Line Surge Arrester.

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PIIIM PV 1000 Solar Surge Arrester
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Approx.
Rs 2,000
Per Piece

PIIIM PV 1000 Solar Surge Arrester

Product Details:
BrandHakel
ClassificationType B, Type C, Type D
Poles Number1 Pole, 1pole+N, 2 Pole, 3 Pole, 3 Pole+N
ModelPIIIM PV 1000
The guaranteed service life is offered for their system by most of the solar module manufacturers.

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Surge Arresters
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Approx.
Rs 4,650
Per Unit

Surge Arresters

Product Details:
BrandHakel
ClassificationType B, Type C, Type D
Poles Number1 Pole, 1pole+N, 2 Pole, 3 Pole, 3 Pole+N
Weight346g
Lifetimemin. 100 000 h
Degree of protection of enclosureIP20
Type 1 2 / Class I II / Class B C PIVM is lightning + surge arrester type 1+2 and class I+II according to EN 61643-11 and IEC 61643-1. Complete device consists of a base part and pluggable module. These arresters are recommended for use in the Lightning Protection Zones Concept at the boundaries of LPZ 0-2 (according to IEC 1312-1 and EN 62305) for equipotential bonding and elemination of transient overvoltage that originate during atmospheric discharges or switching processes. The combination of PIVM + B25M is suitable for use in TNS and TT systems. The modular PIVM surge arresters design set new standards in terms of safety and user friendliness. The proven protective circuit with heavy-duty zinc oxide varistors in combination with the “Thermal Disconnecting Control” monitoring device are characteristic of the PIVM series type 1+2/class I+II arrester. The pluggable modules ensures the proper & strong fixing to the base part. Neither vibration during transport nor the enormous electromagnetic forces of discharge can loosen the modules. For the replacement purpose, they can be easily replaced without tools by simply pulling out the protection modules.
The “Thermal Disconnecting Control” monitoring device in the varistor based surge protection devices are well proven technology in terms of safety and considers practical applications where arresters might be damaged. Hakel surge arresters with “Thermal Disconnecting Control” mechanism, the intensity of the discharge current and the surface temperature of the heavy-duty varistor are evaluated. The visual indication of green and red indicator flags shows the proper functioning of every protective circuit and varistor. Apart from this standard visual indication, PIVM... DS devices feature a three-pole remote signalling terminals (Potential Free Contact). With its floating changeover contact, the remote signal can be used as a make or break contact depending upon the circuit concept.

Features:
  • Varistor arrester type 1+type 2
  • 4-pole arrester
  • 3-phase power supply network TN-S, TT
  • LPZ 0-2 >> LPL III, IV
  • I total 25kA
  • M-spare module
  • DS-remote monitor (optional)

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Surge Arrester
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Approx.
Rs 2,000
Per Piece

Surge Arrester

Product Details:
BrandHakel
ClassificationType B, Type C, Type D
Poles Number1 Pole, 1pole+N, 2 Pole, 3 Pole, 3 Pole+N
Type 1 / Class I / Class B a Surge Arrester is a device which is capable of passing the IEC Class I test consisting of a 10/350 waveform impulse of unrealistically high peak current, charge, and specific energy. Traditional spark gap devices have been around for many years, and are used as lightning protection by electric utilities for high voltage applications (primary side of the transformer). Traditional spark gaps, sometimes called air gaps, are simply a gap of air separated by two electrodes. When a high enough voltage (difference in potential) occurs between the two electrodes, the air gap sparks over and creates a short circuit for current to flow. One reason arc gap technology has historically not been used on the secondary side of the transformer is because of the difficulty in extinguishing the arc. The arc, once created by the impulse voltage is sustained as “follow on” current, AC current that flows through the arc plasma. Effectively the arc appears as a short circuit across the AC mains. This results in a short circuit on the system that will trip upstream circuit protection devices therefore limiting the reliability of the system. More recently LV spark gap arresters have appeared on the market with a number of useful features. The first and most important feature is the construction of arc chutes which allow the arc to extinguish. Other manufacturers have different arrangements to aid in extinguishing the arc. Spark gap diverters have very high surge ratings and based upon the premise that bigger must be better they should be the answer to all surge protection problems. Unfortunately this is not always the case. Spark gap diverters originated in Germany where the emphasis is on cheap domestic protectors. The largest MOV based protectors typically available from the European manufacturers is 40kA. So something inexpensive was needed which had a high surge rating. The situation in the US and Australia is different. These countries have developed high energy MOV based surge diverters and the use of spark gaps has been almost unknown.

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Hakel PIVM PV 600 Surge Arresters
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Approx.
Rs 1,200
Per Unit

Hakel PIVM PV 600 Surge Arresters

Product Details:
BrandHakel
ClassificationType C, Type D
Poles Number1pole+N, 2 Pole, 3 Pole, 3 Pole+N
IP RatingIP 20
Owing to the years of industrial experience, we have been able to serve our valued clients with a wide range of Surge Arrestor.

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Lightning Surge Arresters
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Approx.
Rs 3,500
Per Unit

Lightning Surge Arresters

Product Details:
Maximum continuous operating voltage UC275 V AC / 350 V DC
Maximum discharge current Imax50 kA
Voltage protection level Up1,3 kV
Failure signalisation (S)green - ok / red - failure
Housing materialPolyamid PA6, UL94 V-0
Test class according to EN 61643-11 ed. 2 and IEC 61643-11TYP 2, CLASS II
PIIIM is surge arrester type 2 and class II according to EN 61643-11 and IEC 616431. Complete device consists of a base part and pluggable module. These arresters are recommended for use in the Lightning Protection Zones Concept at the boundaries of LPZ 1-2 (according to IEC 1312-1 and EN 62305) for equipotential bonding and elimination of transient over voltage that originate during atmospheric discharges or switching processes. The combination of PIIIM + B20M is suitable for use in TNS and TT systems.

The modular PIIIM surge arresters design set new standards in terms of safety and user friendliness. The proven protective circuit with heavy-duty zinc oxide varistors in combination with the “Thermal Disconnecting Control” monitoring device are characteristic of the PIIIM series type 2/class II arrester. The pluggable modules ensures the proper & strong fixing to the base part. Neither vibration during transport nor the enormous electromagnetic forces of discharge can loosen the modules. For the replacement purpose, they can be easily replaced without tools by simply pulling out the protection modules.

The “Thermal Disconnecting Control” monitoring device in the varistor based surge protection devices are well proven technology in terms of safety and considers practical applications where arresters might be damaged. Hakel surge arresters with “Thermal Disconnecting Control” mechanism, the intensity of the discharge current and the surface temperature of the heavy-duty varistor are evaluated.

The visual indication of green and red indicator flags shows the proper functioning of every protective circuit and varistor. Apart from this standard visual indication, PIIIM DS devices feature a three-pole remote signaling terminals (Potential Free Contact). With its floating changeover contact, the remote signal can be used as a make or break contact depending upon the circuit concept.
  • High discharge capacity: Heavy-duty zinc Oxide Varistors/ GDT
  • 2-pole arrester
  • 1-phase power supply network TN-S, TT
  • LPZ1-2
  • I max 50kA
  • M-spare module
  • DS-remote monitor (optional)

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PI K-8 Surge Arresters
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Approx.
Rs 1,500
Per Piece

PI K-8 Surge Arresters

Product Details:
ClassificationType B, Type C, Type D
Poles Number1 Pole, 1pole+N, 2 Pole, 3 Pole, 3 Pole+N
Weight130 g
Lifetimemin. 100 000 h
Back up fuse8 A
Degree of protection of enclosureIP20

PI-k8 is a single-phase surge arrester type 3, which is equipped with high-frequency filter, according to EN 61643-11 and IEC 61643-11. It is intended for use in the power supply lines, which are operated as TN-S system. The arrester PI-k8 is constructed for mounting on DIN rail 35mm and designed for protection of single-phase electronic appliances in L.V. power supply systems against the transient surge and high-frequency disturbance. The type PI-k8 is fitted with a light indicator signalling the right function (greed LED diode), type PI-k8 DS indicates the failure by target disconnection of mechanical thermal fuse.

 

They can be manufactured in a comprehensive range of the Nominal voltages UN = 6, 12, 24, 48, 60, 80, 110, 120, 130, 160 and 230V (AC/DC).


Additional Information:
  • Item Code: PI-K8
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PIVM PV 800 Surge Arresters
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Approx.
Rs 6,700
Per Unit

PIVM PV 800 Surge Arresters

Product Details:
ClassificationType B, Type C, Type D
Poles Number1 Pole, 1pole+N, 2 Pole, 3 Pole, 3 Pole+N
Weight390 g
Lifetimemin.100 000 h
Degree of protection of enclosureIP20

PIVM PV800are the lightning and surge arresters type 1+2 according to EN 61643-11 and IEC 61643-11 and UTE C 61-740-51. These arresters are recommended for use in the Lightning Protection Zones Concept at the boundaries of LPZ 0-2 (according to IEC EN 62305) for equipotential bonding of positive and negative busbars of photovoltaic systems and elimination of transient overvoltage that originates during the atmospheric discharges or switching processes. Particular varistor sectors, connected between the terminals L+, L- and PE, are equipped with internal disconnectors, which are activated when the varistors fail (overheat). Operational status indication of these disconnectors is partly visual (discoloration of the signal field) and partly remote monitoring (by potential free change over contacts – only DS types).

 

The marking M specifies a type of construction with removable module.


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Surge Arrester
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Approx.
Rs 2,000
Per Piece

Surge Arrester

Product Details:
ClassificationType B, Type C, Type D
Poles Number1 Pole, 1pole+N, 2 Pole, 3 Pole, 3 Pole+N
Surge Arrester Type 2 / Class II / Class C PIIIM is surge arrester type 2 and class II according to EN 61643-11 and IEC 616431. Complete device consists of a base part and pluggable module. These arresters are recommended for use in the Lightning Protection Zones Concept at the boundaries of LPZ 1-2 (according to IEC 1312-1 and EN 62305) for equipotential bonding and elemination of transient overvoltage that originate during atmospheric discharges or switching processes. The combination of PIIIM + B20M is suitable for use in TNS and TT systems. The modular PIIIM surge arresters design set new standards in terms of safety and user friendliness. The proven protective circuit with heavy-duty zinc oxide varistors in combination with the “Thermal Disconnecting Control” monitoring device are characteristic of the PIIIM series type 2/class II arrester. The pluggable modules ensures the proper & strong fixing to the base part. Neither vibration during transport nor the enormous electromagnetic forces of discharge can loosen the modules. For the replacement purpose, they can be easily replaced without tools by simply pulling out the protection modules. The “Thermal Disconnecting Control” monitoring device in the varistor based surge protection devices are well proven technology in terms of safety and considers practical applications where arresters might be damaged. Hakel surge arresters with “Thermal Disconnecting Control” mechanism, the intensity of the discharge current and the surface temperature of the heavy-duty varistor are evaluated. The visual indication of green and red indicator flags shows the proper functioning of every protective circuit and varistor. Apart from this standard visual indication, PIIIM... DS devices feature a three-pole remote signalling terminals (Potential Free Contact). With its floating changeover contact, the remote signal can be used as a make or break contact depending upon the circuit concept.

Features:
  • High discharge capacity: Heavy-duty zinc Oxide Varistors/ GDT
  • 2-pole arrester
  • 1-phase power supply network TN-S, TT
  • LPZ1-2
  • I max 50kA
  • M-spare module
  • DS-remote monitor (optional)

Additional Information:
  • Item Code: PIIIM-275-1-1
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PIVM PV-1000 DS V Series Surge Arresters
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Approx.
Rs 6,700
Per Unit

PIVM PV-1000 DS V Series Surge Arresters

Product Details:
BrandHakel
ClassificationType B
Number Of Poles4.0
SeriesPIVM PV-1000 DS V
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PIIIM PV 600 Surge Arrester
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Approx.
Rs 2,000
Per Piece

PIIIM PV 600 Surge Arrester

Product Details:
Weight270g
Lifetimemin.100 000 h
Degree of protection of enclosureIP20
The guaranteed service life of 20 years or more is offered for their system by most of the solar module manufacturers. The cost of the modules are justified by calculating this long period of operation. However PV installations are very much exposed to the lightnings and surges/transients. Not only house owners install a PV system on their rooftop but also private companies make more and more investments in shared systems, which are erected on large-surface roofs, on traffic structures or unused open areas. Because of the big space requirements of the photovoltaic generator, PV systems are especially threatened by lightning discharges during thunderstorms. Causes for surges in PV systems are inductive or capacitive voltages deriving from lightning discharges as well as lightning surges and switching operations in the upstream power supply system. Lightning surges in the PV system can damage PV modules and inverters. This can have serious consequences for the operation of the system. It may leads to high repair costs and system failure can result in considerable profit cuts for the operator of the plant. Since the surge protection device shunts the transient/surges to the earth, a low impedance good conductivity earthing, at the same potential is critical for the surge arresters to function properly. Equipotential bonding has to be done for the protection scheme to work efficiently. HAKEL, a Czech Republic company offers a complete range of surge protection solutions specifically for the photovoltaic market. HAKEL surge protection devices are high performance solutions complaint with the international standards in order to ensure the efficiency and reliability of the photovoltaic system.

Recommendations of Surge Protection Device (SPD):
  • AC SPD: The output side of the PV inverter where the AC power supply is fed to the load. Depending upon the power supply system, Single or Three phase AC SPD is recommended.
  • DC SPD: The power supply which is fed into the inverter is of DC which flows from PV modules and are exposed to the lightning & induced surges. Suitable DC SPD ratings (200, 400, 600, 800, 1000V DC, etc) is recommended.
  • DATALINE SPD: Some of the PV installations are connected to the central monitoring system through the datalines (transmitters, receivers, modems, etc) which may get effected by the lightning & induced surges. Suitable DATALINE SPD is recommended.
  • SPUM PV is surge arrester type 2 according to EN 61643-11. Complete device consists of a base part and pluggable modules. These arresters are recommended for use in the Lightning Protection Zones Concept at the boundaries of LPZ 1-2 (according to IEC 1312-1 and EN 62305 ) for equipotential bonding of positive and negative busbars of photovoltaic systems and elimination of transient overvoltage that originate during atmospheric discharges or switching processes. Failure indication of these disconnectors is partly visual (Green-Ok/ Red-Fault) and partly remote monitoring by potential free switching contacts (only SPUM PV* DS type).

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PIVM PV 600 Surge Arresters
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Approx.
Rs 5,500
Per Unit

PIVM PV 600 Surge Arresters

Product Details:
Weight300g
Lifetimemin.100 000 h
Method of assemblyDIN rail 35 mm
Degree of protection of enclosureIP20

PIVM PV 600 DS is a lightning and surge arrester type 1+2 according to EN 61643-11 and IEC 61643-11 and UTE C 61-740-51. These arresters are recommended for use in the Lightning Protection Zones Concept at the boundaries of LPZ 0-2 (according to IEC EN 62305) for equipotential bonding of positive and negative busbars of photovoltaic systems and elimination of transient overvoltage that originates during the atmospheric discharges or switching processes. Particular varistor sectors, connected between the terminals L+, L- and PE, are equipped with internal disconnectors, which are activated when the varistors fail (overheat). Operational status indication of these disconnectors is partly visual (discoloration of the signal field) and partly remote monitoring (by potential free change over contacts – only DS types).

 

The marking M specifies a type of construction with removable module.


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Hakel Surge Arresters
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Approx.
Rs 4,500
Per Unit

Hakel Surge Arresters

Product Details:
BrandHakel
DC SPD ratings200, 400, 600, 800, 1000V DC,
Model IDPIIIM PV600
Type2
PV system limiters are installed in the LPZ 0-1 or 1-2 (Lightning Protection Zones Concept) for the protection type in accordance with the requirements of the standards. In particular, the varistor sectors incorporated between the L +, L- and PE terminals are equipped with internal disconnectors which are switched on when the varistor is over-heated.

Protection of PV systems: surge arresters on the DC generator side and on the AC side
  • TYPE 1 + 2 (class B + C), lightning protection and surge protection ( SPC PV )
  • TYPE 1 (Class C), Lightning Protection and Surge Protectors PIVM PV
  • TYPE 2 (Class B), Surge Protectors ( PIIIM PV )

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Surge Arresters
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Approx.
Rs 3,800
Per Unit

Surge Arresters

Product Details:
BrandHakel
ClassificationType B, Type C, Type D
Poles Number1 Pole, 1pole+N, 2 Pole, 3 Pole, 3 Pole+N
Owing to the years of industrial experience, we have been able to serve our valued clients with a wide range of Surge Arrestor.

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Combi Controller Surge Arrester
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Approx.
Rs 2,000
Per Piece

Combi Controller Surge Arrester

Product Details:
BrandHakel
ClassificationType B, Type C, Type D
Poles Number1pole+N, 2 Pole, 3 Pole, 3 Pole+N
Combicontroller- Combined Surge Arrester - Type 1+2 / Class I+II / Class B+C

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PIVM PV 1000 Surge Arrester
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Approx.
Rs 6,800
Per Unit

PIVM PV 1000 Surge Arrester

Product Details:
BrandHakel
ClassificationType B
Poles Number3 Pole+N
Power5kV-500kV
SeriesPIVM PV 1000
PIVM PV-1000 V series Surge Arresters type 1+2 according to EN 61643-11, EN 50539-11 and UTE C 61-740-51. Complete device consists of a base part and pluggable modules. These arresters are recommended for use in the Lightning Protection Zones Concept at the boundaries of LPZ 0-2 (according to IEC 1312-1 and EN 62305) for equipotential bonding of positive and negative busbars of photovoltaic systems and elimination of transient overvoltage that originate during atmospheric discharges or switching processes. Failure indication of these disconnectors is partly visual (discoloration of the signal field) and partly remote monitoring by potential free switching contacts (only PIVM PV* DS type).

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