
Real-time spectrum analysis from 9 kHz to 40 GHz. Handheld, IP68, or pocket USB. One platform, one software, the full band in view.
Every ICX-FieldHawk runs the same SpectraCore firmware and the same measurement suite. Pick the form factor your mission needs.

All-in-one 10.1-inch multi-touch handheld. 3.3 lb, up to 40 GHz, 100 MHz real-time bandwidth. Built to walk the site and read the air in real time.

Sealed IP68 tablet with an onboard Nvidia Jetson Orin NX processor. AI-accelerated spectrum work in the harshest field conditions, up to 40 GHz.

Pocket-size USB real-time receiver. Drone-deployable, open API, sweep speeds to 1.0 THz/s. Pairs with Windows, Linux, and embedded hosts.
Two published tiers: 9 kHz to 9.5 GHz and 9 kHz to 40 GHz.
Typical to 33 GHz, for clean measurements in dense RF environments.
At 1 GHz in a 1 kHz resolution bandwidth (−167.5 dBm/Hz on the 9.5 GHz tier).
At 10 kHz offset.
Gap-free real-time capture of transient and agile signals.
Typical, enough for a full field session.
Channel Power, ACPR, OBW, Phase Noise, and more, standard.
Sealed against rain, snow, dust, and submersion. The same lab-grade real-time performance, anywhere.
Two long-form handbooks, free and without a form. Both are written to be useful to an engineer who buys nothing from us.
Open software on a calibrated real-time analyzer. SoapySDR documented in enough detail to write acquisition code from, six GNU Radio signal chains drawn with their full parameter sets, and the ICX-FieldHawk reviewed against requirements derived before any product is named.
Read it →The SDR product landscape and how to choose within it. The silicon that makes products cluster, the sampling and dynamic-range arithmetic that decides what a receiver can see, the software stack from driver to application, and a vendor-neutral selection method you can send to several suppliers.
Read it →Each application ships with a technical brief covering setup, method, and measurement.
Tie spectrum to position with heat maps and triangulation. Find the source on a live map.
ComplianceCISPR-standard detectors, bandwidths, and limit lines on the bench, before the chamber slot.
TelecomCoverage optimization, network validation, and deployment planning across modern bands.
RegulatoryInterference investigation and enforcement, in the office or out in the field.
DefenseReal-time situational awareness, signal characterization, and C-UAS development.
FieldA sub-200 g core module and GNSS turn any UAV into a flying spectrum mapper.
ResearchCost-effective, easy to carry, and easy to demo for teaching and benchtop research.
HandbookDraft handbook: the SoapySDR layer in depth, and six GNU Radio chains built against a calibrated front end.

Wideband active directional antennas with a switchable pre-amplifier, sized for the ICX-FieldHawk band. RFA-3100-N covers 500 MHz to 10 GHz. RFA-3200-N covers 500 MHz to 20 GHz — datasheet in progress, contact us for current specifications. The directional pattern is what makes triangulation and source-finding practical in the field.


Talk to a Berkeley Nucleonics RF engineer about the ICX-FieldHawk configuration for your mission.
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