6-Layer Eagle PCB Routing
Budget: €30 – €250 EUR
The schematic is finalized and the parts are already placed in Autodesk Eagle; what remains is a clean, production-ready route across six layers. Two internal planes are reserved for power distribution and must stay exceptionally low-noise, while a dedicated signal layer will carry high-speed digital lines.
For every RF or clock-sensitive trace I need controlled impedance and routing that actively suppresses crosstalk—no compromises there. You may shuffle pins on the Nordic nORA-B2 (nRF54L15) module when that helps shorten critical paths or improve return-current flow, provided every swap stays 100 % compliant with the datasheet’s alternate-function list.
The finished board must pass Eagle’s DRC with my rule set, respect the planned stack-up, and keep all supply nets quiet on their two planes. I will consider the job complete when I receive the updated .sch and .brd files together with a brief routing report that lists any pin changes, impedance calculations, and the few key constraints you verified on the way.
For every RF or clock-sensitive trace I need controlled impedance and routing that actively suppresses crosstalk—no compromises there. You may shuffle pins on the Nordic nORA-B2 (nRF54L15) module when that helps shorten critical paths or improve return-current flow, provided every swap stays 100 % compliant with the datasheet’s alternate-function list.
The finished board must pass Eagle’s DRC with my rule set, respect the planned stack-up, and keep all supply nets quiet on their two planes. I will consider the job complete when I receive the updated .sch and .brd files together with a brief routing report that lists any pin changes, impedance calculations, and the few key constraints you verified on the way.