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Parasurtenseur série ABB OVR BT2 (Parafoudre) - Contacteur,disjoncteur,onduleur solaire,compteur électrique,batteries solaires

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Parasurtenseur série ABB OVR BT2 (Parafoudre)

Brand and Model: ABB OVR BT2 series, specific model 40-440C (3P+N configuration, c'est-à-dire, three-phase four-wire system). Fonction principale: Used to discharge high-amplitude lightning currents, protecting electrical equipment from overvoltage damage. Suitable for lightning protection systems in civil and industrial buildings. Paramètres techniques clés: Tension nominale (Uc): 440V, suitable for three-phase AC circuits. Rated Discharge Current ...

  • Détails du produit

Brand and Model: ABB OVR BT2 series, specific model 40-440C (3P+N configuration, c'est-à-dire, three-phase four-wire system).

Fonction principale: Used to discharge high-amplitude lightning currents, protecting electrical equipment from overvoltage damage. Suitable for lightning protection systems in civil and industrial buildings.

Paramètres techniques clés:

Tension nominale (Uc): 440V, suitable for three-phase AC circuits.

Rated Discharge Current (Dans): 40le (8/20μs waveform), withstands high-amplitude lightning current impacts.

Maximum Discharge Current (Imax): 80le (8/20μs waveform), possesses strong surge discharge capability.

Temps de réponse: ≤25ns, enables rapid response to surge voltage, reducing the risk of equipment damage.

Leakage Current: <15UN, meets lightning protection equipment safety standards.

Indice de protection: IP20, suitable for indoor installation environments.

Caractéristiques du produit

Conception intégrée: The SPD body and dedicated backup protection device (SSD) are integrated into one unit, deeply merging for enhanced protection reliability.

Safety Protection Mechanism: In the event of a short-circuit fault in the SPD, the POD quickly cuts off the power supply; when the SPD ages and leakage current increases, it rapidly cuts off the power frequency current to prevent high-temperature fires.

Compatibilité: Supports use with conventional circuit breakers and fuses, adaptable to various power distribution systems.

Scénarios applicables

Widely used in civil buildings (such as residences and office buildings), industrial facilities (such as factories and data centers), communication base stations, new energy power plants, and other places requiring lightning protection, especially suitable for equipment with high power supply stability requirements (such as servers and precision instruments). Recommended surge protectors with similar functions to the ABB OVR BT2 series, covering different brands and core features:

  1. Siemens Surge Protectors

As a leading global brand in the electrical field, Siemens surge protectors are renowned for their advanced technology and high stability. They are widely used in industrial and commercial scenarios, adaptable to various power distribution systems, and compatible with conventional circuit breakers and fuses. Their protection performance is comparable to the ABB OVR BT2 series.

  1. Schneider Electric Surge Protectors

Schneider products are characterized by high efficiency, safety, and reliability. They support intelligent integration and automated management, and are suitable for locations with high power supply stability requirements (such as data centers and precision instruments). Their short-circuit breaking capacity and aging protection mechanisms are similar in function to the ABB OVR BT2 series.

  1. Other Models in the ABB OVR T2 Series

OVR T2 40-440 P TS QS: Rated discharge current 40kA (8/20µs), voltage 440V, 3P+N configuration, supports fast interruption of short-circuit current and aging leakage current. Technical parameters are similar to the OVR BT2 series, price approximately 402-766 RMB.

OVR T2-T3 20-440 P TS QS: Suitable for T2-T3 level protection, response time ≤25ns, suitable for civil buildings and industrial facilities, with integrated protection design.

  1. Delixi Surge Protectors

A well-known domestic brand, characterized by high cost-performance. Products comply with GB18802.1 standards, covering multiple scenarios such as power supply and signal surge protection. Suitable for civil buildings with limited budgets (such as residential and office buildings), performance meets conventional surge protection requirements.

Recommandations de sélection:

Industrial/High-end Scenarios: Prioritize Siemens and Schneider Electric, focusing on intelligence and system compatibility;

Cost-Effective Options: Delixi or other models in the ABB OVR T2 series, balancing performance and cost;

Parameter Matching: Focus on rated voltage (Uc), discharge current (In/Imax), and protection level to ensure compatibility with the power distribution system.

Selecting a suitable surge protector (SPD) requires considering the protection level, core parameters, and application scenario.

  1. Determine the Protection Level and Installation Location

Surge protection requires tiered configuration, with different protection requirements for different locations:

Niveau 1 Protection (Main Distribution Cabinet, Incoming Line): Protects against direct lightning strikes, requiring high-energy impact. Recommended maximum discharge current (Imax) ≥ 80kA, lightning impulse current (Iimp, 10/350μs waveform) ≥ 12.5kA (single pole). Suitable for power distribution rooms and main incoming lines of buildings.

Niveau 2 Protection (Armoire de distribution): Absorbs residual surges from Level 1 protection. Recommended Imax ≥ 40kA. Suitable for multi-story building unit distribution boxes and industrial plant junction boxes.

Niveau 3 Protection (Before Terminal Equipment, such as service boxes and precision equipment): Protects sensitive equipment. Recommended Imax ≥ 20kA, nominal discharge current (Dans) ≥ 10kA. Suitable for homes, bureaux, serveurs, medical equipment, and other terminals.

  1. Core Parameter Matching

Nominal Discharge Current (Dans): The 8/20μs waveform current that the SPD can stably discharge. ≥ 10kA for civil buildings, ≥ 20kA for industrial/rail transit, and ≥ 5kA for precision scenarios such as communication equipment rooms.

Maximum Discharge Current (Imax): The maximum current (8/20µs) that the SPD can withstand under extreme conditions. Must be selected according to the protection level (par ex., Niveau 1 ≥ 80kA, Niveau 3 ≥ 20kA).

Voltage Protection Level (Up): The residual voltage during discharge. The lower the voltage, the safer the equipment. 220/380V systems require Up ≤ 1.5kV, while precision equipment (such as medical CT scanners) requires ≤ 1.0kV.

Maimum continuous operating voltage (Uc): The AC voltage it can withstand long-term; single-phase 220V lines ≥ 275V, three-phase 380V lines ≥ 385V.

Response time (tA): Must be ≤ 25ns to ensure rapid response.

III. Applicable Scenarios and Equipment Types

Civil buildings (residential, office buildings): Niveau 3 protection, terminal selection In ≥ 10kA, Imax ≥ 20kA, Uc ≥ 275V (monophasé) or 385V (three-phase).

Industrial/High-risk locations (airports, wind farms): Niveau 1 protection requires Iimp ≥ 25kA, Niveau 2 Imax ≥ 40kA, with backup protectors (such as circuit breakers and fuses) to enhance safety.

Precision equipment (serveurs, medical instruments): Emphasis on low residual voltage (Up≤1.0kV), In≥5kA, response time≤10ns.

  1. Précautions

Matching with Power Distribution System: Select 3P+N model for three-phase circuits, and 1P+N for single-phase circuits, ensuring Uc matches the line voltage (par ex., Uc=385V for a 380V system).

Backup Protection Coordination: The SPD needs to be connected in series with a dedicated backup protector (par ex., un disjoncteur) to prevent short-circuit fires. Its breaking capacity must match the SPD’s Imax.

Certifications and Brands: Prioritize products conforming to GB18802.1 standards. Well-known brands (par ex., ABB, Schneider Électrique, Siemens) offer better guarantees in terms of stability and after-sales service.

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