The company is solving the global energy crisis by building the infrastructure for abundant, resilient space-based solar energy. We are tackling one of humanity’s most complex engineering challenges with a world-class team dedicated to delivering a revolutionary power platform. The company is transforming how civilization powers, computes and connects - from orbit to Earth.
Background
The company is building the infrastructure to power and connect the orbital economy. Our modular, scalable satellites collect sunlight in Low Earth Orbit to enable multiple integrated applications: transmitting energy via infrared lasers (space-to-earth and space-to-space), powering on-orbit high-performance computing clusters (GPU/TPU), and providing secure, high bandwidth optical data transport.
Current energy and data systems rely on complex logistics and outdated infrastructure. The company overcomes these challenges by enabling direct, on-demand, secure, and scalable energy distribution and data processing from space. This will revolutionize how we operate in orbit and on Earth, supporting the rapidly expanding space industrial base, ISAM (In-Space Servicing, Assembly, and Manufacturing) operations, remote regions, and military bases.
Baiju Bhatt founded the company in 2024. Inspired by his father’s work with NASA Langley Research Center, Baiju earned his B.S. in Physics and M.S. in Mathematics at Stanford before co-founding Robinhood, now a public company that has helped over 20 million Americans access the financial system.
This is an ambitious mission that demands extraordinary talent. The company’s team has worked at places like SpaceX, Blue Origin, Stoke Space, Astranis and NASA, and is based in San Carlos, CA. If you're ready to solve complex technical challenges and help build the most important energy company in the world, we want to hear from you.
About the Role :
As a Software Engineer, Reliability, you will ensure the software powering our avionics and high-performance compute systems operates flawlessly in orbit. You will own reliability from concept through flight, building automated validation frameworks and testing compute platforms under mission-representative conditions. This hands-on role requires bridging hardware and software to optimize fault tolerance and performance. You’ll be expected to move quickly, resolve complex anomalies, and take ownership of the system stability that directly impacts mission success.
Responsibilities
Own software reliability for avionics and compute systems across the full lifecycle—from concept, design, radiation hardening, and integration to launch and on-orbit operations
Design, develop, and maintain automated test and validation frameworks for embedded and high-performance compute systems
Develop software to validate performance, stability, and fault tolerance of CPUs, GPUs, and custom accelerators under mission-representative conditions
Execute system-level testing including hardware-in-the-loop (HIL), environmental, and stress testing to identify failure modes
Characterize system performance (latency, throughput, resource utilization) and drive optimization across hardware/software boundaries
Investigate and resolve anomalies through deep root cause analysis, using data-driven approaches to improve system reliability
Define reliability metrics, test plans, and acceptance criteria for flight-critical systems
Work closely with electrical, avionics, and software teams to ensure robust integration of compute platforms into spacecraft systems
Build internal tools to support rapid debugging, telemetry analysis, and system observability
Support vehicle and payload bring-up, integration, and pre-flight validation efforts
Support and participate in radiation testing campaigns of avionics and compute parts
Basic Qualifications:
Bachelor’s degree in Computer Science, Electrical Engineering, or a related field
4+ years of experience in software engineering, reliability engineering, or systems validation
Strong programming skills in Python, C++, or similar languages
Experience working with distributed systems, embedded systems, or high-performance compute environments
Familiarity with debugging complex system-level issues across hardware and software
Experience building automated test frameworks or validation infrastructure
Preferred Qualifications:
Experience with avionics systems, spacecraft hardware, or embedded compute platforms
Familiarity with GPU/accelerator-based systems and performance validation (e.g., CUDA, parallel computing)
Experience with hardware-in-the-loop (HIL) testing and system integration
Strong background in performance analysis, profiling, and optimization
Experience with observability tools, logging, and telemetry systems
Understanding of fault tolerance, redundancy, and high-reliability system design
The salary range for this position is $150,000 – $200,000 annually. The actual base salary offered will depend on factors such as job-related skills, experience, qualifications, and internal equity.
Equity in the company Corp.
Employees and their eligible dependents may enroll in medical, dental, and vision insurance
401(k) retirement savings plan
Paid time off
10 paid holidays per calendar year
Paid parental leave
Relocation assistance if applicable
Daily lunch in the office and a fully stocked kitchen with beverages and snacks
ITAR Requirements
Export Control Requirement: To conform to U.S. Government space technology export regulations, including the International Traffic in Arms Regulations (ITAR), applicants must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State. Learn more about ITAR here .