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Teseq CDN M316 Coupling/Decoupling Network

Manufacturer part number: CDN M316
The Teseq CDN M316 is a Coupling/Decoupling Network CDN M3 Type supports a frequency range of 150 kHz - 230 MHz (Optional 10 kHz - 80 MHz)
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Available Configurations

About the CDN M316

  • 3 power lines, (L+N+PE), (2L+PE), Optional L+L+L
  • Frequency range 150 kHz - 230 MHz (Optional 10 kHz - 80 MHz)
  • 433 Volts AC
  • Designed for IEC/EN 61000-4-6
  • Conforms with CISPR 16-1-2
  • Enables testing to CISPR 16-2-1 and CISPR 15 CDN method
  • Excellent performance
  • Calibration kit available
  • 4 mm banana sockets
  • CDN for M3 application

IEC/EN 61000-4-6 specifies the design and performance of a range of coupling/decoupling networks (CDNs). Each CDN is specific to the type of cable and the intended signal carried on the cable. Teseq offers an extensive range of CDNs which fully comply with the requirements of the standard and provide a simple and reliable method of injecting RF energy into the equipment under test (EUT).

Whilst the published standard only specifies the performance of CDN from 150 kHz to 80 MHz, most of Teseq CDNs are specially designed to give the same performance to a wider frequency range. This is required by some product specific standards. Each CDN is also useable for emission testing. Special types meet the requirements of CISPR 15 or can be used as impedance stabilization network (ISN) defined in CISPR 22.

SPECIFICATIONS

Voltage RatingAC max. voltage (line to ground) / (line to line): 250 V / 433 V (CDN M216-1000V: 500 V / 1000 V); DC max. voltage (line to ground) / (line to line): 400 V / 800 V (CDN M216-1000V: 1000 V / 2000 V); Test voltage: 3 kV DC, 2 sec
Frequency Range150 kHz to 230 MHz (Optional 10 kHz - 80 MHz)
Standards MetIEC 61000-4-6, CISPR 16-1-2, CISPR 16-2-1 and CISPR 15
RF ConnectorBNC, 50 Ω
Mains & EUT Connections4 mm, safety (Optional IEC 320 16A)
Current Rating10 Amps Maximum
Common Mode Impedance150 Ω +10/-20 Ω
Application/Test Type3 power lines, (L+N+PE), (2L+PE), (Optional L+L+L)
Insertion LossGreater than 0.1 dB
RF Input VoltageLess than 30 V
Voltage Division Factor20 dB ±1.5 dB
Decoupling of Common Mode DisturbanceGreater than 30 dB
Dimensions4.1 x 3 x 5 inches (10.5 x 7.5 x 12.5 cm)
Weight700 grams (1.5 LB.'s)

Teseq CDN M316 Features:

  • 3 power lines, (L+N+PE), (2L+PE), Optional L+L+L
  • Frequency range 150 kHz - 230 MHz (Optional 10 kHz - 80 MHz)
  • 433 Volts AC
  • Designed for IEC/EN 61000-4-6
  • Conforms with CISPR 16-1-2
  • Enables testing to CISPR 16-2-1 and CISPR 15 CDN method
  • Excellent performance
  • Calibration kit available
  • 4 mm banana sockets
  • CDN for M3 application

Teseq CDN M316 Configurations:

  • CDN M316S: M3 CDN, 3 power lines, 4mm banana (L+N+PE)
  • CDN M316-3LS: M3 CDN, 3 power lines, 4mm banana (L+L+L)
  • CDN M316-10S: M3 CDN, 10 kHz - 80 MHz, 3 power lines, 4mm banana (L+N+PE)
  • CDN M316BS: M3 CDN, 3 power lines, AE Euro IEC 320 16A (L+N+PE)
Description

About the CDN M316

  • 3 power lines, (L+N+PE), (2L+PE), Optional L+L+L
  • Frequency range 150 kHz - 230 MHz (Optional 10 kHz - 80 MHz)
  • 433 Volts AC
  • Designed for IEC/EN 61000-4-6
  • Conforms with CISPR 16-1-2
  • Enables testing to CISPR 16-2-1 and CISPR 15 CDN method
  • Excellent performance
  • Calibration kit available
  • 4 mm banana sockets
  • CDN for M3 application

IEC/EN 61000-4-6 specifies the design and performance of a range of coupling/decoupling networks (CDNs). Each CDN is specific to the type of cable and the intended signal carried on the cable. Teseq offers an extensive range of CDNs which fully comply with the requirements of the standard and provide a simple and reliable method of injecting RF energy into the equipment under test (EUT).

Whilst the published standard only specifies the performance of CDN from 150 kHz to 80 MHz, most of Teseq CDNs are specially designed to give the same performance to a wider frequency range. This is required by some product specific standards. Each CDN is also useable for emission testing. Special types meet the requirements of CISPR 15 or can be used as impedance stabilization network (ISN) defined in CISPR 22.

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