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Ready to make connectivity from space universally accessible, secure, and actionable? Then youâve come to the right place!
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At E-Space, weâre focused on bridging Earth and space with the worldâs most sustainable low Earth orbit (LEO) satellite network. Weâre a team of bold thinkers, ambitious leaders and dynamic doersâand weâre disrupting NewSpace by fundamentally changing the design of legacy LEO space systems to deliver entirely new satellite capabilities at a fraction of the cost.
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Weâre intentional, weâre unapologetically curious and weâre 100% committedâto saving space, to protecting our planet and to turning connectivity into actionable intelligence
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We are seeking a highly skilled and motivated FSW/Embedded Software Developer to design, develop, and optimize software for customized embedded devices, with a strong emphasis on space-related software and algorithms. The role involves designing and developing software for bare-metal, RTOS, and real-time Linux environments, real-time performance, system reliability, and implementing robust recovery mechanisms. You will also contribute to testing and automation. Â
\nCore DevelopmentÂ
Embedded Software Development: Architect/Design, write, debug, and maintain efficient software for real-time embedded systems, including mission critical Flight Software and communication with other space-specific software subsystems/modules, such as TTC (CCSDS protocol), Power, Thermal, GNC, FDIR, CFDP.Â
Communication Protocols and Specifications: Implement protocols used in space-grade software such as UART, CAN, SpaceWire, SPI, I2C, and Ethernet. Experience with Linux bridging, DSA (Distributed Switch Architecture), and L2 protocols such as RSTP/MSTP, HSR, or FRER for redundant network fabrics is highly valuedÂ
Networking and Avionics Fabrics: Design and implement L2 Ethernet networks for inter-board communication on spacecraft, including switch bring up, PHY configuration, and topology design. Configure and debug L2 redundancy protocols (RSTP, HSR, FRER) for fault-tolerant fabrics. Implement deterministic networking using TSN features where mission profiles require bounded latency.Â
Application Integration: Integrate and manage provided applications on top of the customized platform software. Design and bring up Ethernet-based avionics networks, including PHY/MAC initialization, switch configuration, and L2 redundancy protocols. Â
Operational Management: Design and implement efficient memory management, process management, software updates, reprogramming and power saving modes for embedded systems. Experience with multi-board Ethernet fabrics (mesh, ring, or tree topologies) for inter-subsystem communication is a plus. Â
Testing and SupportÂ
Test Framework Development: Create and maintain automated testing frameworks for embedded systems, including HIL, SIL, PIL.Â
Support: Provide support for debugging of real-time and critical faults.Â
Debugging and Validation: Use tools like oscilloscopes, logic analyzers, and protocol analyzers to test and debug embedded software and hardware interfaces.Â
Collaboration and DocumentationÂ
Hardware Interaction: Work closely with global software teams to contribute to the new designs and ensure seamless software-hardware integration.Â
Documentation: Prepare and maintain technical documentation.Â
Hands-on: Proven record of designing and developing significant working software in aerospace applications.Â
Programming Languages: Proficiency in C/C++ and scripting languages like Shell or Bash; familiarity with Python.Â
Embedded Systems: Experience with embedded and multicore platforms and their toolchains. Experience with Yocto is a big plus.Â
Communication Protocols: Knowledge of key hardware and software protocols such as UART, CAN, SPI, I2C. TCP and UDP.Â
Upgrades: Experience with secure firmware updates and reprogramming mechanisms.Â
Debugging Tools: Proficiency with debugging tools like JTAG, GDB, and serial debuggers.Â
Version Control: Expertise with Git or similar version control systems.
Education: Bachelorâs or Masterâs degree in Computer Science, Electronics Engineering, or a related field.Â
Familiarity with wireless communication technologies (e.g., Wi-Fi, Bluetooth, Zigbee, LoRa).Â
Familiarity with hardware simulation tools and flatsat environments for testing.Â
Familiarity with CI/CD pipelines and automated build/test workflows.Â
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Key AttributesÂ
Strong analytical and debugging skills.Â
Passion for quality and attention to detail in software development and testing.Â
Ability to work collaboratively in cross-functional and global teams.Â
Commitment to staying updated with the latest in IoT, embedded systems, and testing automation technologies.Â
A willingness to undertake further relevant training.Â
An understanding and commitment to equal opportunities.Â
Time management, self-reliance and willingness to learn.Â