Schwarzbeck CISPR LISN's

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Schwarzbeck NSLK 8127 Line Impedance Stabilisation Network View larger

Schwarzbeck NSLK 8127 Line Impedance Stabilisation Network

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  • V-LISN, 9 kHz - 30 MHz
  • 50 µH + 5 Ohm || 50 Ohm
  • 2 x 16 A Schuko socket
  • Artificial Hand

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Test Equipment Description

Schwarzbeck NSLK 8127 CISPR16 LISN 50uH + 5 Ohm || 50 Ohm, 250uH, 2x16A Schuko, Artificial Hand.

Protective earth switch

Using the switch labeled with “Safety ground” you can either put the protection earth of the Schuko socket straight to ground or in series with a parallel connection of a 50 µH choke and a 50 Ω resistor. Thus the protecting function of the protecting earth connector is ensured as long as the LISN is connected to earth properly.

A protective earth conductor that is decoupled RF-wise via the choke simulates the utilization of long cables. Since some interference suppression solutions are based on the protective ground conductor potential the emission of the device under test could vary depending on the switch setting.

Functional Diagram

"Artificial Hand"

If an „artificial hand“ has to be connected to the equipment under test, a copper foil wrapped around the handle of the device under test has to be connected to the screw terminal labeled with “Hand Simulation”.

Instructions for use:

Eine Netznachbildung hat die Aufgabe, den Prüfling (die Störquelle) mit dem Betriebsstrom zu versorgen, die an ihren Klemmen anstehende Störspannung zum Funkstörmessempfänger weiterzuleiten und die vom Prüfling emittierte Hochfrequenz mit einer genormten Impedanz zu belasten. The purpose of a LISN is to provide the device under test with energy, to carry the interference voltage to the EMI measurement receiver and to load the RF emitted by the device under test with standardized impedance.

The NSLK 8127 is equipped with a 250 µH choke as well as with a 50 µH choke which is connected in series for each path. The 250 µH choke provides an excellent decoupling between the power supply and the device under test starting at 9 kHz.

Important! Connect the LISN to protecting earth BEFORE applying any voltage to it! For this purpose you can use the screw terminal at the front panel and the aluminum brackets at the rear side of the device.

Due to high capacities very high leakage currents can occur (above 1 A). Thus it is not possible to use a residual current operated circuit breaker. It is recommended to use an isolating transformer. The supply voltage has to be applied at the back panel of the LISN by using the Schuko connector.

Important! The operator has to make sure that the maximum current is limited to 16 A at the supply side. There is no fuse built into this LISN to protect the device under test!

The device under test has to be connected to the Schuko socket at the front panel. The maximum current that can be drawn is 16 A for each path. The maximum voltage that can be applied is 250 VAC. The input for the power supply is located at the back panel and provides a hard wired connection cable with a Schuko plug.

The coaxial RF output has to be connected to the EMI measurement receiver using a BNC coaxial cable. You can choose the path that needs to be measured with the path selection switch. The path that is actually not measured will be terminated with 50 Ω automatically.

Schwarzbeck NSLK 8127 Specifications
TopologyV-LISN
Frequency Range9 kHz - 30 MHz
Pre-filter choke250 µH
Impedance simulation50 Ω || (50 µH + 5 Ω)
Max. Current2 x 16 A
Max. Voltage250 VAC 50/60 Hz
400 VDC
Supply cablehard-wired three-wire connection cable with CEE 7/4 Type F (Schuko) plug
Connector for EuTCEE 7/4 Type F (Schuko) socket
Connector for "artificial hand"4 mm laboratory socket with screw terminal 6 mm, not removable
Connector to EMI receiverBNC socket 50 Ω
Lenght470 mm
Width445 mm
Height145 mm
Weight9.5 kg
StandardCISPR 16-1-2

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