Job Description
Role & Responsibilities
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Lead end-to-end system-level hardware architecture including design, manufacturing, assembly, integration, and testing of high-reliability electronics for airborne and space applications.
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Gather system requirements, perform component selection, and create Bills of Materials (BoMs) with consideration for cost, availability, and lead times.
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Design power architectures including DC-DC converters, LDOs, protection circuits, power sequencing, and detailed power budgeting.
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Develop, review, and maintain schematics and PCB layouts for embedded hardware systems.
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Implement and interface RFSoC/MPSoC, FPGAs, MCUs, and SoCs with external peripherals; integrate and validate interfaces such as SPI, UART, I²C, GPIO, and PCIe.
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Coordinate with external partners and vendors for fabrication, assembly, and testing in compliance with aerospace standards (AS9100).
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Collaborate closely with firmware teams to support hardware bring-up, debugging, and system validation.
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Perform comprehensive hardware testing and ensure compliance with quality and reliability standards.
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Create and maintain detailed technical documentation and work effectively with cross-functional teams.
Desired Skills & Qualifications
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Bachelor’s or Master’s degree in Electronics & Communication, Electrical Engineering, or a related scientific or engineering discipline.
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4+ years of demonstrated experience in electronic hardware design, development, and testing.
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Strong hands-on experience in schematic capture and PCB layout (single and multilayer boards) using tools such as Altium, KiCad, Eagle, or similar.
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Experience with microcontrollers and SoCs, peripheral interfacing, and communication protocols including SPI, I²C, UART, CAN, PCI-Express, USB, MIPI, LVDS, DDRx and others.
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Expertise in power supply design, including SMPS, DC-DC converters, LDOs, PMICs, and battery-operated systems with BMS.
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Advanced hardware and firmware debugging skills for effective troubleshooting of embedded system boards.
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Hands-on experience in SI, PI, and EMI/EMC–compliant PCB design, covering stack-up planning, impedance control, power distribution and decoupling, grounding strategies, and EMI mitigation techniques.
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Experience in designing schematics and layouts for RF circuits, integration for wireless modules is highly desirable.
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Excellent problem-solving skills and ability to work in a collaborative team environment.
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