Skip to product information

AMP 200N2 Low Frequency Amplifier

Product Features

  • Automatic closed loop test procedures
  • Built-in DDS sinus signal generator up to 500 kHz
  • Output voltage max. 160 V p-p, 50 V rms
  • Output current max. 18 A rms
  • Designed for EVs and more
  • Supports magnetic field tests up to 1100 A/m
  • Short-circuit protected
  • Integrated frequency-selective measurement 10 Hz – 250 kHz

Standards: ISO 7637-4, ISO 11452-8, ISO 11452-10, ISO 16750-2, ISO 21498, SAE J1113, RTCA DO-160, MIL-STD-461, MIL-STD-704



Interested in this product?

Send us your details and we’ll get back to you with availability, pricing, and any additional information you need.

AMP 200N2 Low Frequency Amplifier

The EM TEST AMP 200N2 has been designed as a low-frequency signal source to generate sinusoidal signals used to simulate ripple noise and ground shift noise as required by a variety of standards in the avionics, military and automotive industry.

The AMP 200N2 is controlled by either the NetWave (for testing electrical vehicles, avionics, military and nautic standard requirements, e.g. LV 123, ISO 21498 and ISO 7637-4 Pulse C) or the AutoWave for LV automotive test requirements such as Ford FMC1278 or ISO 16750-2 Ed. 5. Additionally, the AMP 200N2 can be used to generate magnetic fields by means of a radiation loop or small Helmholtz coils as per various standards.

Key Features

  • Automatic closed loop test procedures
  • Built-in DDS sinus signal generator up to 500 kHz
  • Output voltage max. 160 V p-p, 50 V rms
  • Output current max. 18 A rms
  • Designed for EVs and more
  • Supports magnetic field tests up to 1100 A/m
  • Short-circuit protected
  • Integrated frequency-selective measurement 10 Hz – 250 kHz

Standards: ISO 7637-4, ISO 11452-8, ISO 11452-10, ISO 16750-2, ISO 21498, SAE J1113, RTCA DO-160, MIL-STD-461, MIL-STD-704

Frequency range: DC – 500 kHz

Official product page

Get in touch

We're available 24/7 to assist. Just let us know what we can help you with and we'll do our best.

We'll aim to get back to you within 24 hours.