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Master's thesis

Master Thesis: Evaluating coaxial connector contact integrity for ultra-low-level RF receive signals

Ericsson · Stockholm, SE

Posted · Deadline:

Verified active· Checked 30 Sept 2026

A master's thesis in Graduate and Trainee Programmes at Ericsson, based in Stockholm, SE. Applications close on 21 Mar 2027. Compensation is not specified in the listing.

At a glance

Opportunity
Master's thesis
Location
Stockholm, SE
Funding / pay
Not specified
Application source
jobs.ericsson.com

Project summary

## Join our Team About this opportunity: Modern radio systems rely on highly sensitive receiver channels to detect very weak uplink signals. Coaxial connectors are critical interconnection points in these paths, where contact quality can directly affect radio performance and system noise figure. Current connector qualification methods typically measure contact resistance using currents in the tens of milliamperes, while actual receiver signals may correspond to currents in the microampere range. This raises questions about whether conventional qualification methods accurately represent real-world performance, particularly when alternative plating materials are introduced. This thesis will investigate how contact degradation, oxidation, and plating materials influence the transmission of ultra-low-level RF signals. The work will identify potential gaps in current verification methods and provide recommendations for connector qualification in low-noise radio systems. What you will do: * Study the relationship between connector contact integrity, plating materials, degradation, and receiver performance. * Evaluate whether standard contact-resistance measurements correlate with performance under ultra-low-level RF conditions. * Perform experiments using RF measurement equipment, including vector network analyzers, climatic chambers, and low-level signal setups. * Investigate the impact of oxidation and surface degradation on RF performance and system noise figure. * Examine connector contact and material microstructure where relevant. * Relate experimental results to receiver requirements involving filters, interconnections, and low-noise amplifiers. * Recommend improved qualification and verification methods for future radio applications. The skills you bring: * You are pursuing a Master’s degree in Electrical Engineering, Physics, Materials Science, or a related field. * You have knowledge of RF systems and receiver performance, particularly filters, interconnections, and low-noise amplifiers. * Familiarity with vector network analyzers, climatic testing, low-level signal measurements, or other RF laboratory equipment is an advantage. * Interest in connector technology, contact materials, microstructure, and degradation mechanisms is beneficial. * You are analytical, curious, and able to combine experimental work with technical analysis. * Strong communication skills and the ability to work independently. Why join Ericsson?At Ericsson, you´ll have an outstanding opportunity. The chance to use your skills and imagination to push the boundaries of what´s possible. To build solutions never seen before to some of the world’s toughest problems. You´ll be challenged, but you won’t be alone. You´ll be joining a team of diverse innovators, all driven to go beyond the status quo to craft what comes next. What happens once you apply?Click Here to find all you need to know about what our typical hiring process looks like.Encouraging a diverse and inclusive organization is core to our values at Ericsson, that's why we champion it in everything we do. We truly believe that by collaborating with people with different experiences we drive innovation, which is essential for our future growth. We encourage people from all backgrounds to apply and realize their full potential as part of our Ericsson team. Ericsson is proud to be an Equal Opportunity Employer. learn more. Primary country and city: Sweden (SE) || Stockholm Req ID: 791559

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How to apply

Apply via jobs.ericsson.com before 21 Mar 2027. Confirm the current requirements there.

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