What you’ll be doing:
- Own the development of a spacecraft battery management system electronics from clean sheet to flight.
- Develop and implement PCBA and battery pack requirements, use-cases, and system integration.
- Schematic capture and PCB layout of battery circuits using Altium Designer.
- Circuit analysis including power related, SWaP, tolerance, and reliability related.
- Collaborate on electro-mechanical design, test, qualification, and manufacturing of battery packs incorporating this BMS.
- BMS electronicsdesign verification testing, qualification and acceptance testing, and system integration support.
- Lead design reviews for inter-disciplinary audiences.
- Manufacturing and flight support as needed.
What you bring to this role:
- Bachelor of Science degree in Electrical Engineering, Computer Engineering, or equivalent.
- 10+ years of experience in power electronics design including schematic capture, PCB layout, and testing.
- 3+ years of experience in battery pack electrical design.
- Expertise in battery management circuitssuch asfault protection, cell balancing,thermal management, power transmission, power supplies, and precision analog instrumentation.
- Awareness of battery pack manufacturing techniques including cell characterization and welding.
- Skilled at schematic capture and layout of complex PCBs.
- Skilled at performing circuit analyses in SPICE and Excel.
- Proficiency with basic electronic lab equipment such as power supplies, oscilloscopes, DMMs, signal generators, soldering iron, etc.
- Demonstrated success working in a dynamic environment.
Bonus points for the following:
- Master’s degree in Electrical Engineering, Computer Engineering, or equivalent.
- Experience designing for space environments including radiation impacts and mitigation.
- Proficiency with Altium Designer.
- Successful implementation or sustainment of automated battery manufacturing and test systems.
- Experience designing rigid-flex PCBs and general electro-mechanical design familiarity.
- FPGA coding experience
- Automated test scripting experience in Python,Tcl, etc.
Skills Required
- Bachelor of Science in Electrical Engineering, Computer Engineering, or equivalent
- 10+ years experience in power electronics design including schematic capture, PCB layout, and testing
- 3+ years experience in battery pack electrical design
- Expertise in battery management circuits (fault protection, cell balancing, thermal management, power transmission, power supplies, precision analog instrumentation)
- Awareness of battery pack manufacturing techniques including cell characterization and welding
- Skilled at schematic capture and layout of complex PCBs
- Skilled at performing circuit analyses in SPICE and Excel
- Proficiency with basic electronic lab equipment (power supplies, oscilloscopes, DMMs, signal generators, soldering, etc.)
- Demonstrated success working in a dynamic environment
- Based in Saratoga, CA (position is office-based)
- Must have work authorization for the role location; employer cannot provide visa sponsorship
- Master's degree in Electrical Engineering, Computer Engineering, or equivalent
- Experience designing for space environments including radiation impacts and mitigation
- Proficiency with Altium Designer
- Successful implementation or sustainment of automated battery manufacturing and test systems
- Experience designing rigid-flex PCBs and electro-mechanical design familiarity
- FPGA coding experience
- Automated test scripting experience in Python, Tcl, or similar
What We Do
E-Space is a global space company focused on bridging Earth and space with the most sustainable low earth orbit (LEO) network that is expected to reach over one hundred thousand multi-application communication satellites to help businesses and governments securely and affordably access the power of space to solve problems on Earth. Founded by industry pioneer Greg Wyler, E-Space is focused on democratizing space and transforming industries by bringing down the cost of space-based communications, raising the level of satellite system resiliency and setting a new standard in sustainable space infrastructure that will effectively minimize and reduce space debris and destruction while preserving access to space for future generations.









