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Narda-STS EA 5091 E-Field Probe, Shaped FCC

Manufacturer part number: EA5091
Narda-STS EA 5091 Probe: E-Field, shaped FCC, 300kHz to 50GHz, 0.5 to 600% of FCC Occupational/Controlled limits for NBM-series meters.
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Narda-STS EA5091 E-Field Probe, Shaped FCC

The Narda Safety Test Solutions NBM-Series of probes provide Electric or Magnetic and Flat or Shaped response coverage. Detection is performed by diode, thermocouple or compensated diode with thermocouple for the highest accuracy obtainable.

There is an internal eeprom in each probe to identify the probe to the meter and provide all calibration and measurement range data.

These probes contain 6 dipoles, three diode based and three thermocouple based dipoles. The correctly tuned overlap of two dipoles, one acting as a high pass filter the other as a low pass filter, provides a frequency sensitivity that mirrors a particular standard. Testing for compliance to that standard is very easy to perform, as the emitted frequency need not be known.

  • Calibration
  • Calibration certificate
  • Manual
  • All additional standard accessories
  • 300kHz to 50GHz
  • Standard: 0.5 to 600% of FCC-1997 Occupational/Controlled limits
  • Dynamic Range: 30dB
  • Directivity: Isotropic (non-directional tri-axial)
  • Compatibility: NBM-500 series meters
  • RF Safety
Description

Narda-STS EA5091 E-Field Probe, Shaped FCC

The Narda Safety Test Solutions NBM-Series of probes provide Electric or Magnetic and Flat or Shaped response coverage. Detection is performed by diode, thermocouple or compensated diode with thermocouple for the highest accuracy obtainable.

There is an internal eeprom in each probe to identify the probe to the meter and provide all calibration and measurement range data.

These probes contain 6 dipoles, three diode based and three thermocouple based dipoles. The correctly tuned overlap of two dipoles, one acting as a high pass filter the other as a low pass filter, provides a frequency sensitivity that mirrors a particular standard. Testing for compliance to that standard is very easy to perform, as the emitted frequency need not be known.

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