About the job
Development of Schematic and Layout in Altium Designer by a concept architecture pre-defined and already validated.
The development shall encompass a high-density 30kW Power Supply Unit (PSU) tailored for mission-critical infrastructure. Our project bridges high-voltage power paradigms (400V/800V DC) with ultra-high reliability and density requirements.
Key Responsibilities:
Translate pre-validated block diagrams and control architectures into comprehensive Altium Designer schematics.
Execute advanced PCB Layout with a strict focus on high-voltage DC rules (creepage/clearance), high-current routing, and rigorous thermal management.
Implement EMI/EMC best practices for high-frequency switching converters.
Generate full manufacturing documentation (Gerbers, ODB++, BOM, Pick & Place, 3D STEP models).
Ideal Candidate Profile:
Expert-level proficiency in Altium Designer (including advanced DRC setup and 3D clearance checking).
Proven track record designing high-power (>10kW) and high-voltage (up to 800V) boards, preferably in automotive (EV/BEV), renewable energy, or enterprise power domains.
Deep understanding of galvanic isolation and solid-state protection layout.
Screening Questions (Please answer when applying):
Briefly describe your experience designing PCBs for 400V or 800V environments. How do you manage strict creepage and clearance requirements within Altium's rule matrix?
What is your approach to thermal management on the PCB for c...
read more
Development of Schematic and Layout in Altium Designer by a concept architecture pre-defined and already validated.
The development shall encompass a high-density 30kW Power Supply Unit (PSU) tailored for mission-critical infrastructure. Our project bridges high-voltage power paradigms (400V/800V DC) with ultra-high reliability and density requirements.
Key Responsibilities:
Translate pre-validated block diagrams and control architectures into comprehensive Altium Designer schematics.
Execute advanced PCB Layout with a strict focus on high-voltage DC rules (creepage/clearance), high-current routing, and rigorous thermal management.
Implement EMI/EMC best practices for high-frequency switching converters.
Generate full manufacturing documentation (Gerbers, ODB++, BOM, Pick & Place, 3D STEP models).
Ideal Candidate Profile:
Expert-level proficiency in Altium Designer (including advanced DRC setup and 3D clearance checking).
Proven track record designing high-power (>10kW) and high-voltage (up to 800V) boards, preferably in automotive (EV/BEV), renewable energy, or enterprise power domains.
Deep understanding of galvanic isolation and solid-state protection layout.
Screening Questions (Please answer when applying):
Briefly describe your experience designing PCBs for 400V or 800V environments. How do you manage strict creepage and clearance requirements within Altium's rule matrix?
What is your approach to thermal management on the PCB for components handling continuous high currents (e.g., >50A)?
Are you able to share a sanitized 3D render or generic layout screenshot of a past high-power converter you have designed?
read less
Development of Schematic and Layout in Altium Designer by a concept architecture pre-defined and already validated.
The development shall encompass a high-density 30kW Power Supply Unit (PSU) tailored for mission-critical infrastructure. Our project bridges high-voltage power paradigms (400V/800V DC) with ultra-high reliability and density requirements.
Key Responsibilities:
Translate pre...
read more
Development of Schematic and Layout in Altium Designer by a concept architecture pre-defined and already validated.
The development shall encompass a high-density 30kW Power Supply Unit (PSU) tailored for mission-critical infrastructure. Our project bridges high-voltage power paradigms (400V/800V DC) with ultra-high reliability and density requirements.
Key Responsibilities:
Translate pre-validated block diagrams and control architectures into comprehensive Altium Designer schematics.
Execute advanced PCB Layout with a strict focus on high-voltage DC rules (creepage/clearance), high-current routing, and rigorous thermal management.
Implement EMI/EMC best practices for high-frequency switching converters.
Generate full manufacturing documentation (Gerbers, ODB++, BOM, Pick & Place, 3D STEP models).
Ideal Candidate Profile:
Expert-level proficiency in Altium Designer (including advanced DRC setup and 3D clearance checking).
Proven track record designing high-power (>10kW) and high-voltage (up to 800V) boards, preferably in automotive (EV/BEV), renewable energy, or enterprise power domains.
Deep understanding of galvanic isolation and solid-state protection layout.
Screening Questions (Please answer when applying):
Briefly describe your experience designing PCBs for 400V or 800V environments. How do you manage strict creepage and clearance requirements within Altium's rule matrix?
What is your approach to thermal management on the PCB for components handling continuous high currents (e.g., >50A)?
Are you able to share a sanitized 3D render or generic layout screenshot of a past high-power converter you have designed?
read less