MegiQ Introduced New 2-Axis Robotics Turntable
The turntable automates 3D antenna measurements for the company's existing Radiation Measurement System.
Updated on Sept. 23, 2026 in Robotics

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MegiQ has launched a new 2-axis turntable designed to automate 3D antenna radiation pattern measurements for its Radiation Measurement System. The hardware allows for full-sphere device rotation without requiring an anechoic chamber.
Why it matters
Automated 3D radiation mapping allows engineers to gain critical insights into how wireless products will perform in real-world conditions. By removing the need for manual repositioning, the system accelerates the testing phase for new electronics.
The turntable supports devices weighing up to 7.5 kg with dimensions of 210 x 256 mm. It operates within a frequency range of 370 MHz to 6 GHz, capturing 3D patterns at 5-degree increments in just 15 minutes.
The players
MegiQ
MegiQ is a technology company that develops testing equipment for wireless product development.
The details
The system utilizes software to control both axes of the turntable, automatically rotating the device under test through a full sphere. This automated process replaces labor-intensive manual adjustments during antenna performance analysis.
Timeline
September 23, 2026: MegiQ introduced the 2-axis turntable.
The Tech Race
This development reflects a broader industry shift toward lab-grade automated testing that bypasses the need for massive, specialized anechoic chamber facilities. It follows the trend of decentralizing complex hardware analysis to improve speed in the wireless design cycle.
Engineers and developers can significantly reduce the time spent on manual antenna testing workflows. The system allows smaller labs to conduct professional-grade 3D performance measurements without the high overhead of external testing facilities.
The takeaway
Automating rotational measurement processes removes a major bottleneck in the wireless product development lifecycle. By utilizing software-controlled hardware, teams can achieve higher precision in shorter timeframes compared to traditional manual positioning methods.
Further reading
Learn more about the latest innovations in Robotics.
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