TCS Pune

Arduino Sensor Interface PCB

Beginner · 4–6 hours

Arduino Sensor Interface PCB

Design a protected Arduino-compatible sensor interface from schematic review through assembly bring-up.

EDA workflow: KiCad 7+ or compatible EDA

Design requirements

  • 5 V input with reverse-polarity protectionn3.3 V sensor logic must use safe level conversionnI²C, UART and two protected GPIO connectorsnTest points for supply, ground, SDA, SCL, TX and RX

Required deliverables

  • Schematic PDF and editable source
  • ERC and DRC reports
  • PCB renders and assembly drawings
  • Gerber and drill archive
  • BOM CSV with manufacturer parts
  • Pick-and-place file when SMD assembly is used
  • Bring-up measurements and inspection photos
  • Revision-controlled release note

Schematic and ERC review

DoneCheckAcceptance criteriaEvidence
Power symbols and net labelsNo unconnected required power pin; every rail namedERC report
Connector pinoutPin 1, voltage and direction clearly labelledSchematic PDF
Decoupling100 nF at every IC supply pin plus bulk input capacitorAnnotated schematic
ProtectionInput fuse/PTC, polarity and ESD strategy presentDesign note
I²C pull-upsValues suit bus voltage and capacitanceCalculation

PCB layout and DFM review

DoneCheckAcceptance criteriaEvidence
Board outlineClosed Edge.Cuts with confirmed dimensionsGerber viewer
ClearanceMeets selected fabricator minimum plus marginDRC report
Power tracesWidth supports calculated peak currentWidth calculation
Return pathsNo high-speed signal crosses a plane splitLayer review
SilkscreenPin 1, polarity, reference and connector functions visible3D/render review
Test pointsAccessible after assemblyAssembly drawing

Gerber and fabrication package

DoneFile or checkRequirementEvidence
F_Cu and B_CuRS-274X Gerber, correct polarity and visible outlineGerber viewer
F_Mask and B_MaskPads exposed only where requiredGerber viewer
F_Silkscreen and B_SilkscreenNo text on exposed padsGerber viewer
Edge_CutsOne closed outline, no duplicate segmentsDFM report
Drill filesPlated and non-plated holes correctly separatedDrill map
Fabrication archiveOnly approved release outputs includedRelease checksum

Assembly bring-up and test

DoneTestExpected resultInstrumentSafety limit
Unpowered resistanceNo short between each supply rail and groundDMMDo not power below expected resistance
Current-limited power-up5 V rail stable and current below 80 mA unloadedBench supply and DMMStart at 100 mA current limit
3.3 V rail3.20–3.40 VDMMStop outside tolerance
I2C scanExpected sensor address acknowledgesFirmware and logic analyser3.3 V logic only
UART loopbackSent frame returns without errorsSerial terminalConfirm common ground

Bill of materials

Download BOM CSV
QtyReferenceValuePackageManufacturer partSupplier / SKUNotes
1J1POWER INTerminalBlock_21935161Supplier / TBD5 V input
1F1500 mA PTC1206MF-MSMF050-2Supplier / TBDResettable fuse
1D1Reverse protectionSMASS14Supplier / TBDSchottky diode
4C1-C4100 nF0603Generic X7RSupplier / TBDDecoupling
1C547 uF 10 V6.3x5.8 mmGeneric low-ESRSupplier / TBDBulk capacitor
2R1-R24.7 kΩ0603Generic 1%Supplier / TBDI2C pull-ups
1J2Sensor header1x06 2.54 mmGenericSupplier / TBDKey pin 1

Assembly documentation

  1. Verify PCB revision against assembly drawing before kitting.
  2. Record reel/lot information for critical components.
  3. Fit lowest-profile SMD parts first, then connectors.
  4. Inspect polarity, pin 1, solder bridges and tombstoning.
  5. Clean only with a process compatible with components and flux.
  6. Attach annotated assembly photos and inspection result.

Fabrication notes

  • FR-4, 1.6 mm finished thickness unless enclosure requires otherwise.
  • Two copper layers, 1 oz finished copper.
  • Lead-free HASL or ENIG finish; document selection.
  • Minimum track/space and drill follow chosen fabricator capability.
  • State controlled-impedance requirement explicitly: none for this design.
  • Panelisation requires approval before changing board outline.
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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.
Ready when you are

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