L
Latvia Ashby
Electronic Design Engineer – Autopilot & Edge Perception Hardware
BangalorePosted 1w ago
Computer VisionMid LevelFull-time
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About the Role
We're Hiring: Electronic Design Engineer – Autopilot & Edge Perception Hardware
Full time | Core team
LAT Aerospace | Defence
At LAT Aerospace, we’re building India’s first clean-sheet hybrid-electric STOL aircraft and a next-generation autonomy stack powering aircraft for complex missions. Our team is kicking off a new chapter — developing the full flight-control, obstacle-avoidance, GNSS-denied navigation, and swarm-coordination layers that will define LAT’s autonomy architecture.
We’re hiring two Electronic Design Engineers who will design the core electronics that run LAT’s autonomy stack:
1. Autopilot & flight-control hardware
2. Edge perception compute modules for real-time vision + sensor fusion
This team owns the full lifecycle — architecture, schematic design, PCB layout, bring-up, testing, and integration on real UAV platforms.
What you’ll do
- Design next-generation autopilot hardware, including sensor interfaces, MCU/SoC architectures, power conditioning, redundancy, and safety-critical pathways.
- Develop edge perception compute hardware for onboard SLAM, vision, and multi-sensor fusion — balancing compute, thermal, and form-factor constraints.
- Create schematics, PCB layouts (4–12 layer) and review boards for manufacturability, noise immunity, and aerospace reliability.
- Select and integrate IMUs, compasses, barometers, GNSS modules, high-speed interfaces, and sensor conditioning circuits.
- Design high-speed digital, mixed-signal, and low-noise analog circuits for flight and perception systems.
- Own bring-up, debugging, and validation of avionics and compute boards using oscilloscopes, logic analyzers, power analyzers, and test jigs.
- Work closely with the Embedded Software, GNC, Perception, and Autonomy teams to ensure hardware supports real-time compute, sensor fusion, and control requirements.
- Ensure thermal, EMI/EMC, vibration, and power integrity compliance for UAV integration.
- Support manufacturing, testing, and reliability qualification for flight-ready hardware.
What we're looking for
- Strong experience in electronic circuit design, mixed-signal systems, and PCB development.
- Comfortable with MCUs, SoCs, FPGAs, sensor interfaces, and high-speed digital design.
- Hands-on experience with Altium, KiCad, or similar EDA tools.
- Deep understanding of signal integrity, power integrity, grounding, EMI/EMC, and thermal constraints.
- Experience designing robust boards for robotics, drones, automotive, aerospace, or industrial systems.
- Ability to design and debug power supplies, DC-DC converters, regulators, and battery interfaces.
- Strong hardware bring-up skills using lab equipment.
- Ability to rigorously document designs and create repeatable hardware workflows.
Why LAT?
- Core-team role building the autonomy brain of India’s most ambitious aerospace startup.
- Ownership, speed, and the opportunity to define a new class of systems from scratch.
Full time | Core team
LAT Aerospace | Defence
At LAT Aerospace, we’re building India’s first clean-sheet hybrid-electric STOL aircraft and a next-generation autonomy stack powering aircraft for complex missions. Our team is kicking off a new chapter — developing the full flight-control, obstacle-avoidance, GNSS-denied navigation, and swarm-coordination layers that will define LAT’s autonomy architecture.
We’re hiring two Electronic Design Engineers who will design the core electronics that run LAT’s autonomy stack:
1. Autopilot & flight-control hardware
2. Edge perception compute modules for real-time vision + sensor fusion
This team owns the full lifecycle — architecture, schematic design, PCB layout, bring-up, testing, and integration on real UAV platforms.
What you’ll do
- Design next-generation autopilot hardware, including sensor interfaces, MCU/SoC architectures, power conditioning, redundancy, and safety-critical pathways.
- Develop edge perception compute hardware for onboard SLAM, vision, and multi-sensor fusion — balancing compute, thermal, and form-factor constraints.
- Create schematics, PCB layouts (4–12 layer) and review boards for manufacturability, noise immunity, and aerospace reliability.
- Select and integrate IMUs, compasses, barometers, GNSS modules, high-speed interfaces, and sensor conditioning circuits.
- Design high-speed digital, mixed-signal, and low-noise analog circuits for flight and perception systems.
- Own bring-up, debugging, and validation of avionics and compute boards using oscilloscopes, logic analyzers, power analyzers, and test jigs.
- Work closely with the Embedded Software, GNC, Perception, and Autonomy teams to ensure hardware supports real-time compute, sensor fusion, and control requirements.
- Ensure thermal, EMI/EMC, vibration, and power integrity compliance for UAV integration.
- Support manufacturing, testing, and reliability qualification for flight-ready hardware.
What we're looking for
- Strong experience in electronic circuit design, mixed-signal systems, and PCB development.
- Comfortable with MCUs, SoCs, FPGAs, sensor interfaces, and high-speed digital design.
- Hands-on experience with Altium, KiCad, or similar EDA tools.
- Deep understanding of signal integrity, power integrity, grounding, EMI/EMC, and thermal constraints.
- Experience designing robust boards for robotics, drones, automotive, aerospace, or industrial systems.
- Ability to design and debug power supplies, DC-DC converters, regulators, and battery interfaces.
- Strong hardware bring-up skills using lab equipment.
- Ability to rigorously document designs and create repeatable hardware workflows.
Why LAT?
- Core-team role building the autonomy brain of India’s most ambitious aerospace startup.
- Ownership, speed, and the opportunity to define a new class of systems from scratch.
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