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Teseq CAS ISN Calibration Kit for ISN T

Manufacturer part number: CAS ISN
100 kHz to 100 MHz
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Key Features and Functions

The calibration kit CAS ISN is made for function tests and remeasurements on impedance stabilization network (ISN) for unshielded balanced pairs. Measuring parameters are common mode (CM) impedance, phase angle, voltage division factor, decoupling attenuation (isolation) and longitudinal conversion loss (LCL). Impedance stabilization networks (ISN) are defined in CISPR 22 and CISPR 16-1-2. The CISPR 16-1-2 gives additional requirements and provides examples and measurements for the networks. The ITU-T recommendations G.117 and O.9 offers the background knowledge for measurements on symmetrical telecommunication lines.

  • Meets CISPR 22 ed. 5.2 and CISPR 16-1-2
  • Optional extensible for measurements on ISN T2 and ISN T8-Cat6
  • Measurements for common mode impedance, phase angle, voltage division factor, decoupling attenuation (isolation) and longitudinal conversion loss (LCL)
ParameterValue
Frequency range100 kHz to 100 MHz
Impedance for the network analyzer ports50 Ω
ConnectorBNC-type female
Impedance for the balanced port100 Ω
Connectors for the balanced ports and ground1 mm banana
Description

Key Features and Functions

The calibration kit CAS ISN is made for function tests and remeasurements on impedance stabilization network (ISN) for unshielded balanced pairs. Measuring parameters are common mode (CM) impedance, phase angle, voltage division factor, decoupling attenuation (isolation) and longitudinal conversion loss (LCL). Impedance stabilization networks (ISN) are defined in CISPR 22 and CISPR 16-1-2. The CISPR 16-1-2 gives additional requirements and provides examples and measurements for the networks. The ITU-T recommendations G.117 and O.9 offers the background knowledge for measurements on symmetrical telecommunication lines.

  • Meets CISPR 22 ed. 5.2 and CISPR 16-1-2
  • Optional extensible for measurements on ISN T2 and ISN T8-Cat6
  • Measurements for common mode impedance, phase angle, voltage division factor, decoupling attenuation (isolation) and longitudinal conversion loss (LCL)
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