Embedded Camera Systems Engineer; MIPI/ISP/SoC
Job in
Palo Alto, Santa Clara County, California, 94306, USA
Listed on 2026-07-21
Listing for:
Proception Inc.
Full Time
position Listed on 2026-07-21
Job specializations:
-
Software Development
Embedded Systems/ Firmware/ IoT, Robotics, Embedded Software Engineer, Unix/Linux
Job Description & How to Apply Below
Embedded Camera Systems Engineer (MIPI / ISP / SoC)
Build the low-level camera and imaging systems that power next-generation humanoid and robotic perception. You will work across MIPI CSI-2 cameras, ISPs, FPGA bridges, and embedded SoCs to bring up, calibrate, synchronize, and deploy multi-camera systems s role sits at the boundary between hardware, kernel drivers, and real-time perception pipelines.
Requirements- BS/MS in Electrical Engineering, Computer Engineering, Robotics, or equivalent industry experience
- Strong experience with embedded Linux camera stacks (V4L2, Media Controller, libcamera)
- Hands‑on experience bringing up MIPI CSI-2 cameras on SoCs such as RK3588 or Jetson Orin
- Understanding of MIPI CSI-2, D‑PHY / C‑PHY, lane configurations, and bandwidth constraints
- Experience with camera sensor drivers, device tree configuration, and kernel debugging
- Proficiency in Rust and C/C++ for embedded systems and kernel‑adjacent development
- Experience with camera calibration (intrinsics, extrinsics, stereo, multi‑camera rigs)
- Comfortable working with oscilloscopes, logic analyzers, and hardware bring‑up tools
- Strong Linux fundamentals (drivers, DMA, memory, interrupts, power management)
- Bring up and validate MIPI CSI-2 camera sensors on RK3588, Jetson Orin, and custom boards
- Develop and debug camera sensor drivers, ISP pipelines, and device tree configurations
- Integrate RGB, stereo, and depth cameras into real-time perception pipelines
- Design and support multi‑camera synchronization and hardware triggering strategies
- Work with FPGA‑based camera bridges or aggregators when needed
- Implement and maintain camera calibration pipelines (mono, stereo, multi‑view)
- Optimize throughput, latency, and stability for high‑resolution and multi‑camera systems
- Collaborate with perception, SLAM, and hardware teams to ensure end‑to‑end reliability
- Support manufacturing test, validation, and field diagnostics for camera subsystems
- Competitive salary and meaningful equity
- Comprehensive health, dental, and vision coverage
- Work on real robotic systems deployed in the physical world
- High‑ownership role spanning hardware, kernel, and perception interfaces
- Opportunity to define the camera architecture for next‑generation humanoid robots
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