Portable High Power EMP Generator
Budget / Salary$250–750
TypeFreelance project
LocationRemote
Posted1 hour ago
I need a complete concept-to-prototype package for a portable, high-power electromagnetic pulse generator that will be used strictly for controlled laboratory research. The unit must fit in a small carry case, run from readily available batteries or an external 12–100 V DC source, and deliver repeatable, well-characterised pulses strong enough to stress-test shielding and instrumentation on the bench.
Please stay within safe, legally compliant emission limits and document every precaution so the system can be operated inside a Faraday enclosure without risk to bystanders or nearby equipment. Design choices should favour off-the-shelf components where possible to simplify sourcing and future replication.
Deliverables (all in English, editable formats):
• Detailed schematic and PCB layout files (KiCad or Altium).
• Bill of materials with supplier links and cost ranges.
• Mechanical drawings / 3-D model of the enclosure showing heat management and connector placement.
• Firmware, if any, with inline comments and build instructions.
• Step-by-step assembly, calibration, and safety procedure.
• Test report confirming pulse amplitude, rise time, and repetition rate meet the agreed-upon targets.
The work is considered complete once the documentation allows a competent electronics technician to reproduce the unit and achieve the same electrical performance inside a shielded room.
Please stay within safe, legally compliant emission limits and document every precaution so the system can be operated inside a Faraday enclosure without risk to bystanders or nearby equipment. Design choices should favour off-the-shelf components where possible to simplify sourcing and future replication.
Deliverables (all in English, editable formats):
• Detailed schematic and PCB layout files (KiCad or Altium).
• Bill of materials with supplier links and cost ranges.
• Mechanical drawings / 3-D model of the enclosure showing heat management and connector placement.
• Firmware, if any, with inline comments and build instructions.
• Step-by-step assembly, calibration, and safety procedure.
• Test report confirming pulse amplitude, rise time, and repetition rate meet the agreed-upon targets.
The work is considered complete once the documentation allows a competent electronics technician to reproduce the unit and achieve the same electrical performance inside a shielded room.
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