Sr. Wireless Test Architect, LEO Antenna Test Infrastructure

Amazon.com, Inc.
Redmond, United States of America
12 days ago

Role details

Contract type
Permanent contract
Employment type
Full-time (> 32 hours)
Working hours
Regular working hours
Languages
English
Experience level
Senior
Compensation
$ 186K

Job location

Redmond, United States of America

Tech stack

Automation of Tests
Dynamic Host Configuration Protocol
Linux
DNS
Traceroute
Network Troubleshooting
Packet Analyzer
Network Protocols
Signal Processing
Transmission Control Protocol (TCP)
Strategies of Testing
Wi-Fi Technology
5G NR
Front End Software Development

Job description

  • design a DVT and QTP campaign that is adequately trimmed for the devices, campaign goals and resources available
  • Given a campaign goal, design an OTA test that can be performed with available test infrastructure
  • drive strategy of test, custom instrumentation and infrastructure buildup for new wireless tests for DVT, QTP and ATP for all Payload and CT products

Export Control Requirement Due to applicable export control laws and regulations, candidates must be a U.S. citizen or national, U.S. permanent resident (i.e., current Green Card holder), or lawfully admitted into the U.S. as a refugee or granted asylum.

Requirements

Experience in developing functional specifications, design verification plans and functional test procedures

  • Master's degree in Electrical/Communications Engineering, or 8+ years of analog or RF layout design experience
  • Knowledge of antenna fundamental and radiation theory EM simulation experience
  • Strong understanding of RF and Microwave Components design, Frontend design, Radio Architecture
  • Strong understanding of Mixed Signal components, Digital Modulations and OFDM, Signal Theory
  • 4+ yr of industrial experience driving the test strategy for 5G NR FR1 and FR2, WiFi 6 and 7 products
  • 5+ yr experience in test automation

Preferred Qualifications

  • Experience working with interdisciplinary teams to execute product design from concept to production
  • Experience with the project management of technical projects
  • Experience with network troubleshooting tools (telnet, test-netconnection, tracert, tracetcp, iperf, ntttcp, dig, and packet capture tools), or experience in Linux and Networking protocols and experience in Network protocols like DNS/DHCP/TCP
  • Track record of designing and implementing automated testing solutions for wireless platforms, and test frameworks.
  • Strong hands-on experience with radio frequency measurement devices, such as VSA, VSG, and wireless connectivity testing systems. Knowledge of platforms like CMW500 or similar testing solutions is desirable.

Benefits & conditions

The base salary range for this position is listed below. Your Amazon package will include sign-on payments and restricted stock units (RSUs). Final compensation will be determined based on factors including experience, qualifications, and location. Amazon also offers comprehensive benefits including health insurance (medical, dental, vision, prescription, Basic Life & AD&D insurance and option for Supplemental life plans, EAP, Mental Health Support, Medical Advice Line, Flexible Spending Accounts, Adoption and Surrogacy Reimbursement coverage), 401(k) matching, paid time off, and parental leave. Learn more about our benefits at https://amazon.jobs/en/benefits.

USA, WA, Redmond - 137,300.00 - 185,700.00 USD annually

About the company

Amazon LEO is an initiative to increase global broadband access through a constellation of 3,236 satellites in low Earth orbit (LEO). Its mission is to bring fast, affordable broadband to unserved and underserved communities around the world. Amazon LEO will help close the digital divide by delivering fast, affordable broadband to a wide range of customers, including consumers, businesses, government agencies, and other organizations operating in places without reliable connectivity. As an Wireless Test Architect you will engage with an experienced cross-disciplinary team to develop new, advanced test systems for our Digital Phased Array systems, integrating them with our existing test infrastructure. We have near field spherical scanners, robotic manipulators and advanced RF optics that account for some of the fastest antenna characterization systems in the world, but we need to keep improving test coverage, test accuracy and repeatability, and test new features. Although Amazon LEO's communication system typically relied on sat-com concepts and test methods (DVT, ATP and QTP test campaigns and cycles), we look to the 3GPP industry standards and testing practices to adopt those learnings and build upon them.

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