About Lynk
Lynk is the inventor of satellite direct to device or D2D technology, and has the world’s only
commercial license from the FCC to operate a commercial D2D system. Today, Lynk allows
mobile network operators' subscribers to send and receive text messages to and from space via
standard unmodified, mobile devices. Lynk’s service has been tested and proven on all seven
continents, has regulatory approvals in more than 30 countries and is currently being deployed
commercially based on more than 40 MNO commercial service contracts covering
approximately 50 countries.
Our technology will enable all 8 billion people on the planet to stay connected with the existing
standard phone in their pocket. Everywhere. No matter what.
By joining Lynk, you will have the opportunity to directly touch the lives of billions. Your mission
will be to bring mobile broadband to billions, pull hundreds of millions out of poverty, and save
countless lives.
Job Summary
Lynk is developing cellular-based space payloads and seeks a Wireless Engineer to design and
implement feeder link modems for Lynk’s spacecraft and ground systems. This role involves
developing, implementing, and testing DSP and satellite communication protocols. The ideal
candidate will have a strong background in wireless communication, signal processing, and
software engineering to drive innovation in next-generation satellite-based networks.
Must Have’s
● C/C++
● Deep DSP — filter design, clock recovery, channel estimation, channel coding
● Object Oriented Programming proficiency
● Strong real time DSP software implementation experience (GNURadio preferred)
● Hands-on RF lab — spectrum analyzers, signal generators
● Linux proficiency
Core Responsibilities
● Design and implement digital signal processing (DSP) algorithms and wireless
protocols in the PHY and MAC layers.
● Deliver performant and robust production code targeted to software-defined
radio (SDR) platforms using single-board computers and/or FPGAs.
● Evaluate the performance of algorithms in simulation (e.g., MATLAB, Python)
prior to implementation.
● Validate performance on target hardware using RF lab equipment like spectrum
analyzers and channel simulators, as well as networking tools such as ping and
iperf.
● Develop test automation frameworks and manage CI/CD pipelines to support
unit, integration, and system testing of modems.
● Work with cross-functional teams across RF, electronics, and hardware domains
to integrate, benchmark, and debug payload software and communications
systems.
● Debug production issues in conjunction with the operations team to rapidly
resolve complex software and hardware anomalies in orbit or on the ground.
● Create system performance visualizations to continuously monitor
communication links.
● Perform link budget analysis for satellite communication links and evaluate the
selection of spacecraft radios and ground station products.
Qualifications/ Good to have
● A Master’s degree or higher in Electrical Engineering, Computer Science, or
related field.
● Deep understanding of communication theory and signal processing related
algorithms design, such as filter design, clock recovery, signal detection, channel
estimation and equalization, channel coding.
● Strong knowledge of some communications and networking standards, such as
DVB-S2/DVB-S2X, and protocols, such as TCP/IP, UDP, ZeroMQ, Ethernet, etc.
● Experience with C/C++
● Strong knowledge of software defined radios - SDRs and their implementation.
● Proficiency in working with Linux based systems
● Hands-on experience in lab testing & characterization.
● Experience using test equipment like signal generators, spectrum analyzers, etc.
● Experience with implementing DSP algorithms in HDL, such as SystemVerilog,
VHDL is a plus.
● Knowledge of the 3GPP standards, including LTE and 5G PHY, MAC, and RRC
specifications is a plus.