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  • Series
    DS150E
  • Model
    DS154E-400
  • Brand / Made in
    CITEL / FRANCE
  • SPD type (following IEC tests): 1+2
  • Network: 230/400 V 3-phase+N, AC system: IT
  • Nominal line voltage Un: 230 Vac,
  • Max. AC operating voltage Uc: 400 Vac
  • Max. discharge current (max. withstand @ 8/20 µs by pole) Imax: 140 kA
  • Impulse current by pole (max. withstand 10/350µs by pole) Iimp: 15 kA
  • Residual voltage (at Iimp) Ures: 1.5 kV
  • Protection level (at In) Up: 2.5 kV
  • Remote signaling of disconnection: output on changeover contact
  • Standards compliance: NF EN 61643-11 / IEC 61643-1 / EN 61643-11 / UL1449 

The DS150E is a Heavy Duty Type 1 AC Surge Protector Device (SPD) designed to be connected at the entrance of the electrical installation. This SPD provides an efficient protection against direct and indirect effects and is particularly useful in a high lightning density area where the risk of heavy surge current or even direct strike is high (e.g. : buildings equipped with lightning rods).
  • The DS150E is a one-pole SPD and can be used in common mode (DS150Es connected between L/PE and N/PE) or common and differential mode (DS150Es connected between L/N and 1 x DS100EG between N/PE).
  • This SPD is designed to withstand a 15 kA lightning current (10/350μs impulse). It is based on «multi-MOV» diagram : this technology allows a very discharge capability and the best behaviour possible on AC network (no follow current).
  • To meet standards, the DS150E includes a thermal disconnection mechanism, fault indicator and an internal microswitch for remote signaling.
  • The SPD is DIN rail compatible and is featured with a double terminal for line wire to allow improved connection to the AC network.

Electrical Characteristics

  • SPD type (following IEC tests): 1+2
  • Network: 230/400 V 3-phase+N
  • AC system: IT
  • Nominal line voltage Un: 230 Vac
  • Max. AC operating voltage Uc: 400 Vac
  • Temporary Over Voltage (TOV) UT: 400 Vac withstand
  • Operating current Continious current at Uc Ic: < 2 mA
  • Follow current If: None
  • Nominal discharge current (15 x 8/20 µs impulses) In: 60 kA
  • Max. discharge current (max. withstand @ 8/20 µs by pole) Imax: 140 kA
  • Impulse current by pole (max. withstand 10/350µs by pole) Iimp: 15 kA
  • Total lightning current(max. total withstand @ 10/350µs) Itotal: 60 kA
  • Residual voltage (at Iimp) Ures: 1.5 kV
  • Protection level (at In) Up: 2.5 kV
  • Protection level L/PE (@ In (8/20µs)) Up L/PE: 2.5 kV
  • Admissible short-circuit current Isccr: 25000 A

Associated disconnection devices

  • Thermal disconnector: internal
  • Fuses:  Fuses type gG - 125 A max. (see Note 1)
  • Installation ground fault breaker: Type S or delayed

Mechanical characteristics

  • Dimensions: see diagram
  • Connection by screw terminals : 6-35 mm² / by bus
  • Disconnection indicator: 3 mechanical indicators
  • Remote signaling of disconnection: output on changeover contact
  • Mounting: symmetrical rail 35 mm
  • Operating temperature: -40/+85 °C
  • Protection class: IP20
  • Housing material: Thermoplastic PEI UL94-5VA

Standards compliance

  • NF EN 61643-11 France Parafoudre Basse Tension - Essais Classe I et II
  • IEC 61643-1 International Low Voltage SPD - Test Class I and II
  • EN 61643-11 Europe Low Voltage SPD - Test Class I and II
  • UL1449 ed.2 USA Low Voltage TVSS

INSTALLATION

DS154E-400 Type 1+2 AC surge protector - 3-phase+N are connected in parallel on the AC network and must be equipped with external fuses for short-circuit current protection

  • The total length of parallel connection wires to AC network must be lower than 0.5 m in order not to increase the protection level (Up) provided by the SPD.
  • Wiring is made by screw connections. On some models, a distribution bus can be used.
  • The protection wire coming from the SPD must be connected to the bonding bar of the electrical panel. Paralleling the protection wire with phases conductors must be avoided.
  • The cross sectional wire must be 6 mm² minimum for Type 2 SPD and 16 mm² for Type 1.
  • Local earthing resistance must be in compliance with the electrical rules.

Further information can be found in IEC 61643-12 standard (selection and application principles for low voltage SPD).

 

 

 

 

 

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