10 MHz to 33 GHz LAN Wide Dynamic Range Average Power Sensor

The Keysight L2053XA is a fast, accurate, and wide dynamic range 10 MHz – 33 GHz LAN average power sensor.

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  • Connector type

    3.5 mm (m)

  • Frequency range

    10 MHz to 33 GHz

  • Power range

    -70 to +26 dBm

  • Connectivity

    LAN

Top configurations

See what's included, and how you can upgrade your experience with Keysight.

L2053XA  10 MHz to 33 GHz LAN Wide Dynamic Range Average Power Sensor
L2053XA 10 MHz to 33 GHz LAN Wide Dynamic Range Average Power Sensor

Model:

L2053XA

QTY

Options

1

LAN wide dynamic range average power sensor, 10 MHz - 33 GHz | KeysightCare Technical Support - 3 years | Return to Keysight Warranty - 3 years.

1

Type 3.5 mm (m) connector

1

LAN cable, 5ft (1.5m)

Highlights

  • Frequency range of 10 MHz – 33 GHz
  • LAN connectivity with a wide dynamic range of -70 to +26 dBm for small signal measurements
  • Fast real-time measurement of 50,000 readings/sec
  • Real-time measurement with zero dead time to ensure every single continuous pulse is measured
  • Average mode time-selectivity function allows full dynamic range for average and time selectivity average power measurements
  • Internal zero and automatic calibration saves time and reduces measurement uncertainty
  • Your instrument now comes with the BenchVue Basic Power Meter/Sensor Control and Analysis App (BV0007B). The BenchVue software simplifies the process of connecting, controlling instruments, and automating test sequences. Download the BenchVue Basic App (BV0007B) for free to efficiently manage your power meter/sensor instruments

Accurately measure any modulated signal with the Keysight Technologies, Inc. U/L2050/60 X-Series wide dynamic range power sensors. The USB/LAN connectivity models come with wide dynamic range, covering -70 to +26 dBm. This sensor offers very accurate and repeatable power measurements for any modulated signal and comes with super-fast measurement speed of 50,000 readings/sec, which enables higher manufacturing throughput. Users can also save time and reduce measurement uncertainty with the internal zero and calibration function.