TCS Pune

Motor Driver and Power PCB Review

Advanced · 8–12 hours

Motor Driver and Power PCB Review

Review a mixed-power motor-control PCB with safe separation, thermal design and measurable bring-up limits.

EDA workflow: KiCad / Altium / compatible EDA

Design requirements

  • Logic and motor power domains clearly identifiednDriver selected for stall current with engineering marginnReverse polarity, over-current and inductive transients controllednCurrent-sense and supply test points accessiblenEmergency disable defaults to safe state

Required deliverables

  • Reviewed schematic and calculations
  • ERC, DRC and high-current path report
  • Thermal design evidence
  • Gerber/drill and fabrication drawing
  • Controlled BOM and alternates
  • Assembly drawing and torque notes
  • Current-limited bring-up procedure
  • Electrical, thermal and functional test report

Schematic and ERC review

DoneCheckAcceptance criteriaEvidence
Motor driverVoltage, peak/stall current and thermal limits verifiedCalculation and datasheet
ProtectionFuse, polarity, TVS and flyback/current-decay path reviewedSchematic evidence
Gate/control statesPull resistors guarantee safe power-upTruth table
Ground strategyCurrent return avoids logic and ADC reference pathsCurrent-path diagram
ConnectorsVoltage/current rating and polarity marking adequatePart specification

PCB layout and DFM review

DoneCheckAcceptance criteriaEvidence
High-current pathsWidth, copper weight and temperature rise calculatedIPC-based calculation
Thermal reliefDriver exposed pad and vias follow recommendationLayout inspection
Loop areaSwitching and recirculation loops kept compactCurrent-loop markup
ClearanceMotor voltage/transients meet internal design ruleDRC report
SensingKelvin routes used where requiredLayout review
MechanicalMounting, terminal access and heatsink clearance verified3D review

Gerber and fabrication package

DoneFile or checkRequirementEvidence
Copper and masksCorrect layers and no unintended exposed copperGerber viewer
Drill mapTerminal, mounting and thermal-via sizes verifiedDrill report
Fabrication notesCopper weight, finish, material and current requirements statedFab drawing
Assembly drawingPolarity, pin 1 and no-fit components clearPDF drawing
BOMCurrent/voltage/temperature ratings and alternates controlledBOM review
Release archiveRevision and checksum match approved designRelease record

Assembly bring-up and test

DoneTestExpected resultInstrumentSafety limit
Unpowered checksNo short and expected gate/control biasDMMMotor disconnected
Logic powerCorrect logic rail and safe enable stateBench supplyLow current limit
Motor railStable rail with driver disabledScope and DMMCurrent limit enabled
PWM outputCorrect driver waveform into safe unloaded setupOscilloscopeKeep clear of moving parts
Current senseReading agrees with reference currentDMM and scopeStay below driver/motor limits
Thermal runTemperature stabilises below approved limitThermal cameraStop at defined maximum

Bill of materials

Download BOM CSV
QtyReferenceValuePackageManufacturer partSupplier / SKUNotes
1U1Motor driverHTSSOPDRV8876PWPRSupplier / TBDSize for stall current
1F1Resettable fuse1812MF-MSMF200-2Supplier / TBDVerify trip curve
1D1TVS diodeSMBSMBJ18ASupplier / TBDMatch motor rail
1R1Current shunt2512WSL2512R0500FEASupplier / TBD50 mΩ, rated power
2J1-J2Power terminal5.08 mm1935161Supplier / TBDCurrent rated
4C1-C4100 nF0603Generic X7RSupplier / TBDLogic decoupling
1C5470 uFRadialLow-ESR rated partSupplier / TBDMotor transient bulk

Assembly documentation

  1. Inspect thermal-pad solder coverage with the approved method.
  2. Torque high-current terminals to the manufacturer specification.
  3. Keep no-fit options clearly identified in BOM and drawing.
  4. Power logic first where the driver sequence requires it.
  5. Run initial motor test unloaded and mechanically restrained safely.
  6. Record no-load, startup and controlled stall/current-limit behaviour.

Fabrication notes

  • State copper weight and finished dimensions explicitly.
  • Heavy-copper or current requirements require fabricator confirmation.
  • Do not change thermal-via fill/cap process without review.
  • Use appropriate creepage/clearance for the actual maximum transient voltage.
  • Panel tabs must not weaken high-current terminal edges.
  • Assembly vendor must preserve current-shunt value and tolerance.
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Project documentation

Release workflow

  1. Freeze requirements and confirm the exact component variants.
  2. Complete schematic/ERC review and resolve every approved exception.
  3. Complete layout, DRC and independent Gerber review.
  4. Release revision-controlled BOM, fabrication and assembly documents.
  5. Assemble using controlled substitutions and inspection records.
  6. Power through current limiting, record measurements and approve production only after all mandatory tests pass.
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