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Teseq CDN 3063-S100 Automated Surge CDN Coupler - 3 Phase

Manufacturer part number: CDN-3063-S100
100 Amp, 480 Volts
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Teseq CDN 3063 Automated 3-Phase Coupling/Decoupling Network Series 

The Teseq CDN 3063 is designed to be easily upgradeable. Users can select a CDN from this series that fulfills their basic testing needs with the assurance that they can upgrade it to a model to fit different generator compatibility as their testing requirements change. This unit is designed for maximum reliability in a wide range of test setups. Over temperature protection, which allows short term operation at currents exceeding the nominal rating, prevents damage to internal components.

The new requirements for EUT currents over 16 A in the surge standard IEC/EN 61000-4 5:2005 are fulfilled by the CDN 3063 with fully automated IEC and ANSI compliant coupling networks. In combination with the NSG 3060, the CDN 3063 completely fulfills the unique coupling requirements specified by ANSI C62.41. The CDN 3063 couples surge and burst pulses into 1-, 2-, 3- phase power mains of up to 480 v with a current range up to 32 A, 63 A or 100 A.

Features: 

  • 3-phase models with broad current range up to 100 A
  • Fully automated surge and / or burst coupling
  • IEC and ANSI coupling methods
  • High accuracy switching technology
  • Phase rotation indication for safe EUT operation
  • Modular and upgradeable to fit new generator architecture
  • Instrument supply: 85 to 265 VAC, 50 / 60 Hz
  • Standard-conform pulse:
    • Electric fast transient EFT (Burst)
    • Combination wave
    • Ring wave
  • Connections:
    • HV-surge pulse input from generator (Fischer connector)
    • EFT input connector from generator (SHV connector)
    • Connector for EUT supply input (Screw terminals Phoenix)
    • Connector for EUT supply output (Screw terminals)
    • Power inlet for CDN input
    • System cable (25 pin connector)
    • Earth connection
    • Phase rotation indication
  • EUT supply:
    • Three phase (5 wire)
    • Two phase (4 wire)
    • Single phase (3 wire)
  • EUT VAC line to line:
    • Up to 480 VAC rms, 50 / 60 Hz (below 30 V synchronization not guaranteed, asynchronous mode only)
  • EUT VAC line to neutral / ground:
    • Up to 280 VAC rms, 50 / 60 Hz (below 30 V synchronization not guaranteed, asynchronous mode only)
  • EUT VDC max:
    • 225 VDC
  • DC current range:
    • Up to 125 VDC – full current range / Up to 225 VDC – max. 7 A
  • ANSI/IEEE C62.41
  • EMC Directive
  • EN 300386 V1.3
  • EN 300386-2
  • EN 301489-1
  • EN 301489-17
  • EN 301489-24
  • EN 301489-7
  • EN 50370
  • EN 61000-4-12
  • EN 61000-4-4
  • EN 61000-4-5
  • EN 61000-6-1
  • EN 61000-6-2
  • EN 61643
  • IEC 60255-1
  • IEC 61009-1
  • IEC 61326
  • IEC 61850-3
Description

Teseq CDN 3063 Automated 3-Phase Coupling/Decoupling Network Series 

The Teseq CDN 3063 is designed to be easily upgradeable. Users can select a CDN from this series that fulfills their basic testing needs with the assurance that they can upgrade it to a model to fit different generator compatibility as their testing requirements change. This unit is designed for maximum reliability in a wide range of test setups. Over temperature protection, which allows short term operation at currents exceeding the nominal rating, prevents damage to internal components.

The new requirements for EUT currents over 16 A in the surge standard IEC/EN 61000-4 5:2005 are fulfilled by the CDN 3063 with fully automated IEC and ANSI compliant coupling networks. In combination with the NSG 3060, the CDN 3063 completely fulfills the unique coupling requirements specified by ANSI C62.41. The CDN 3063 couples surge and burst pulses into 1-, 2-, 3- phase power mains of up to 480 v with a current range up to 32 A, 63 A or 100 A.

Features: 

  • 3-phase models with broad current range up to 100 A
  • Fully automated surge and / or burst coupling
  • IEC and ANSI coupling methods
  • High accuracy switching technology
  • Phase rotation indication for safe EUT operation
  • Modular and upgradeable to fit new generator architecture