We are looking for a Senior Backend Software Engineer to help build and maintain the backend platform powering our connected-device products. You will work across cloud services, APIs, data pipelines, fleet management, and real-time device communications.
This is a hands-on role for an engineer who enjoys building production systems, solving practical problems, and working closely with embedded, hardware, frontend, and product teams
Backend Development
Build, maintain, and improve Python/FastAPI backend services, REST APIs, and WebSocket endpoints.
Develop features for device provisioning, fleet management, telemetry, events, device status, firmware management, and OTA updates.
Design and maintain PostgreSQL schemas, migrations, indexes, queries, and data-retention strategies.
Build and improve data-ingestion services using AWS IoT Core, MQTT, Lambda, RDS, Redis, and S3.
Work with infrastructure-as-code and deployment tooling to maintain cloud infrastructure.
Quality and Reliability
Write unit, integration, and end-to-end tests alongside feature development.
Investigate and resolve production issues across APIs, databases, cloud infrastructure, and device integrations.
Improve the reliability of telemetry ingestion through appropriate retries, idempotency, monitoring, and error handling.
Participate in code reviews and contribute to clear, maintainable engineering practices.
Help improve CI/CD, logging, metrics, and operational documentation.
Collaboration
Work closely with embedded, hardware, frontend, and product teams to deliver end-to-end features.
Participate in technical design discussions and communicate implementation tradeoffs clearly.
Share knowledge and help establish sensible backend patterns as the team and platform grow.
Required
5+ years of backend software development experience in production systems.
Strong Python experience and hands-on experience with FastAPI, Django, Flask, or comparable backend frameworks.
Strong knowledge of PostgreSQL, SQL, schema design, migrations, query optimization, and data lifecycle management.
Experience with AWS services—or comparable cloud platforms—with hands-on AWS experience preferred, especially EC2, Lambda, S3, Cognito, and infrastructure-as-code.
Experience with MQTT, WebSockets, message-driven architecture, or real-time data delivery.
Experience designing and building REST APIs.
Strong automated-testing skills, including unit, integration, and end-to-end testing.
Experience with Git workflows, CI/CD, code review, and production deployment practices.
Clear communicator who can work effectively across engineering disciplines.
Experience with Linux.
Nice to Have
Experience building cloud-connected IoT, device-management, telemetry, or other event-driven systems.
Experience with AWS IoT Core, IoT Jobs, Device Shadows, or IoT fleet provisioning.
Experience building firmware OTA, device telemetry, or fleet-management platforms.
Experience with Redis, RDS Proxy, queues, stream processing, or event-driven architectures.
Experience with AWS CDK, Terraform, or other infrastructure-as-code tools.
Familiarity with embedded systems, wireless communications, or sensor-rich hardware.
Experience with security-focused systems, audit logging, or operational compliance.
Experience in aerospace, satellite, industrial IoT, or other mission-critical environments.
How We Work
• On-site, collaborative environment. We build physical hardware - presence matters.
• Small teams with high autonomy. You own your area end-to-end.
• Fast iteration cycles. We prototype, test, and revise quickly.
• Direct feedback culture. We expect candor and respect in equal measure.

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.