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The LSProbe 1.2 Variant E Field Probe is a high-speed, high-accuracy, and high-dynamic range electric-Field probe.

  • Its standard frequency range of 10 kHz – 8.2 GHz. 15,000 V/m
  • Best-in-class compensation of linearity, frequency, and temperature guarantees accurate measurements from less than 15 to at least 15,000 V/m.
  • A dynamic range of 100 dB is achieved for many frequencies, enabling Field measurements at more than 10,000 V/m.
  • Customized high Field-strength „X“-variants, supporting up to 30,000 V/m and a damage level of 100,000 V/m, are available upon request.

  • Small biconical microwave antenna
  • (1) 3 - 18 GHz
  • Compliant with CISPR 16-1-4 for site validation above 1 GHz
  • Including transport case
  • 10 W

  • Wideband Precision (9 kHz – 30 MHz): Delivers ±1 dB antenna factor stability across the full frequency range.
  • Long-Life, Low?Noise Operation: Internal NiMH battery pack provides >12 hours of noise-free measurements.
  • Dual-Field Capability: Supports both magnetic (–31.5 dB Ω·m) and “fictive” electric (20 dB/m) field measurements with one probe.
  • Rugged, User-Friendly Design: Milled aluminum housing with LED overload indicator and versatile tripod or handle mounting.

 

The LSProbe 1.2 Variant E Field Probe is a high-speed, high-accuracy, and high-dynamic range electric-Field probe.

  • Its standard frequency range of 10 kHz – 8.2 GHz. 1,000 V/m
  • Best-in-class compensation of linearity, frequency, and temperature guarantees accurate measurements from less than 0.1 to at least 1,000 V/m.
  • A dynamic range of 100 dB is achieved for many frequencies, enabling Field measurements at more than 10,000 V/m.
  • Customized high Field-strength „X“-variants, supporting up to 30,000 V/m and a damage level of 100,000 V/m, are available upon request.

Stacked Logarithmic-Periodic Broadband Antenna for Linear polarised RX- and TX- applications in the microwave frequency range. The antenna structure is made of laser-cut brass. For the protection of the fine antenna structure against damage, the antenna is equipped with a low loss plastic protection cover. The STLP 9149 is especially suitable for Immunity Testing acc. to IEC 61000-4-3 because of its good field uniformity.

  • (0.6)0.7-9 (10.5) GHz
  • Gain 10.3 dBi +/- 1.5 dBi
  • Type N female

  • Automated Oscilloscope Control – Seamless data collection & waveform adjustments
  • Advanced Signal Compensation – Real-time correction for accurate measurements
  • Multi-Channel Support – Controls multiple oscilloscopes simultaneously
  • Time & Frequency Domain Analysis – Deep signal insight for precise testing
  • User-Friendly Interface – Intuitive setup, measurement logging & export
  • Lifetime License – One-time purchase, no recurring fees

The optoSENT system was developed for the transmission of asynchronous SENT signals (Single Edge Nibble Transfer) aThis system is used for the optical transmission of PSI5-signals and allows the transmission in both directions with a sampling rate of 50 MS/s. It consists of a transceiver, supplied by batteries, for the connection of a sensor, a simplex-62,5/125µm-multimode optical cable, and a receiver with internal batteries as well.nd exists in two different versions.

  • Ultra-Wideband – Covers up to 10 GHz
  • High Accuracy – Superior phase & amplitude balance
  • EMI Shielded – Ensures clean signal transmission
  • Low Loss – Maintains signal integrity
  • Passive DesignNo power required, bidirectional flow
  • Compact & DurableSMA connectors for easy integration

  • 8 kHz – 30 MHz Wideband: Delivers ±1 dB antenna-factor accuracy across the full spectrum.
  • Dual-Mode Measurement: 20 dB/m (E-field) and –31.5 dB Ω·m (H-field) in one compact probe.
  • Long-Life Battery Operation: NiMH pack provides over 12 hours of low-noise, mains-free measurements.
  • Overload Protection: Built-in LED indicator alerts you at the 1 dB compression point.

 

  • Ultra-Fast Response – Time constants from 200 ns to 12 µs for precise signal integration
  • High Bandwidth – Supports frequencies up to 1.4 GHz
  • Accurate Signal Reconstruction – Eliminates errors from numerical integration
  • Passive & Reliable – No power required, ensuring long-term stability
  • Oscilloscope-Compatible – Seamless integration with high-impedance inputs
  • Versatile Connectivity – Available with N, BNC, and SMA connectors

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