Analyzers
From testing the latest RF technology to conducting advanced research, enhance your measurements with Maury analyzers.
High-performance analyzer solutions
From verifying audio fidelity to evaluating complex RF and microwave signals, Maury analyzers are designed to deliver fast, accurate insights across a broad range of test scenarios. Our portfolio includes solutions for phase noise analysis, RF and microwave power measurement, audio signal testing, and modulation characterization, as well as vector network and vector signal analysis. With Maury analyzers, you’ll have the precision and flexibility needed to move your designs forward with confidence.
We specialize in fully integrated solutions.
Related Resources
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Understanding Phase Noise Measurements Poster
This poster provides a clear and concise overview of key phase noise concepts, including its impact on system performance, measurement techniques, cross correlation, confidence factor vs. noise floor, and advanced analysis solutions. Explore phase noise fundamentals using this insightful visual guide.
Latest News & Blogs
How Do Pulsed IV Measurements Reveal True Device Behavior?
Engineers rely on IV measurements to accurately characterize the electrical behavior of semiconductor devices – but what if the measurement process itself affects the results? During conventional DC IV characterization,…
What Can Conventional Load Pull Miss When Characterizing GaN Devices?
GaN power devices used in radar, wireless infrastructure, and pulsed RF systems can behave differently under dynamic operating conditions than under steady-state measurement. Charge trapping following large-signal RF stress can…
See Maury’s Live RF and Microwave Demonstrations at EuMW 2026
Explore advanced solutions for load pull, pulsed IV, satellite link emulation, VNA calibration, EMC immunity, counter-UAS testing, and real-time RF power measurement at Booth B30, ExCel London. What does it…
MT2000 Mixed-Signal Active Load Pull System Expands Modulation Bandwidth to 2 GHz
Maury Microwave is pleased to announce the expansion of the MT2000 Mixed-Signal Active Load Pull System, delivering wideband impedance control now up to 2 GHz modulation bandwidth at the fundamental,…
How Do You Determine Whether a Connector Is Within Tolerance?
Checking the mechanical dimensions before mating ensures all coaxial connectors in a test setup are operating within their specified tolerances. In addition to positioning and alignment, the depth of both…
How Do You Control Impedance with a Slide-Screw Tuner?
Accurately characterizing RF devices often requires testing beyond standard 50 Ω conditions, as performance depends on the impedance presented to the device. To evaluate this behavior, engineers use load pull…
How Can You Identify the Right RF Connector for Your Test Setup?
RF connectors can look similar, but not all are compatible with one another. Connector families such as SMA, 3.5 mm, and 2.92 mm, as well as 2.4 mm and 1.85…
What Causes Time-Varying Propagation Delay in Satellite Links?
Propagation delay is the time required for a signal to travel between a transmitter and receiver. In satellite systems, this delay depends on the signal path length and the speed…
