Wideband, linear amplifier solutions for modern EMC testing
Maury Microwave has more than 60 years of experience in designing, manufacturing, and supporting turnkey measurements solutions.
Our expertise includes base station and handset, radar, Wi-Fi, and FEM testing. EMC testing is a natural fit.
EMC is now venturing into higher frequencies beyond 6 GHz, integrating modulation testing into its standards. The overlap between typical semiconductor and FEM testing techniques with EMC is getting closer and closer.
The Maury Microwave EMC line uses the experience of the semiconductor industry to offer outstanding wideband ranges and linearity required for modern EMC testing.
Learn more about Maury solutions for EMC immunity testing
Radiated Immunity testing: typical test bench
EMC amplifiers will support the future development of 5G products, automotive and ordinary equipment, or military equipment to be compliant with international standard such as IEC, CISPR, ISO, IEEE, CENELEC, ETSI, FCC, ANSI, RTCA and the MIL-STDs.
Maury Amplifiers will support full CW, Pulsed, AM, PM, FM or complex modulation such as OFDM. All our models are equipped with user-friendly remote control features, integrated couplers and power detection to properly simplify test bench architecture.
Latest News & Blogs
What Are High-Power Microwaves and Why Do They Matter on the Battlefield?
High power microwave (HPM) technology is an effective tool to counter hostile electronic systems quickly and precisely. In this post, we’ll explore what HPM systems are, how they work, and…
How Can Engineers Validate the Power and Precision of High-Power Microwaves?
When an electronic threat is identified, high-power microwave (HPM) pulses can be used to shut down or destroy a target’s most essential systems. Achieving this level of performance requires advanced…
Why Does Pulse Shape Matter for Radar (and How to Accurately Characterize It)?
From air traffic control operations to weather monitoring to mission-critical military applications, pulsed and pulse compression (CHIRP) radar plays a vital role in target detection and tracking applications. In this…
How Do Natural Effects & RF Impairments Impact Satellite Transmissions?
Satellite communications signals travel through environments filled with natural effects and impairments that can impact transmissions. For example, signals must contend with distortions introduced from various interfering sources. Free-space propagation…
Why Is Channel Emulation Key for Deploying 5G Non-terrestrial Networks Successfully?
Relying solely on traditional ground-based infrastructure has limitations, particularly when providing coverage to remote or underserved areas. 5G non-terrestrial networks (NTN) enhance the capabilities of terrestrial systems by integrating non-terrestrial…
Want to Optimize Satellite Communications Testing? Join Us at Booth #2112 during SATELLITE 2024
Hosted in Washington, DC, SATELLITE 2024 is a premiere conference for the global space and satellite communities to discuss the latest innovations, products, and services. In this blog post, learn what attendees can…
How Can Local Oscillators Impact the Performance of Radar and Satellite Systems?
Local oscillators (LO) are crucial components used in the upconversion and downconversion chains of radar and satellite communications systems. In this post, learn the role of the LO and how…
Why Should Directed Energy Weapons Integrate an Additive White Gaussian Noise Source?
Embedding a noise source into a laser weapon’s electronics can improve its effectiveness in neutralizing hostile targets. Want to learn how that’s possible? Available now is the Noisecom webinar, “How Can…
