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Table of Contents
stylenone

Assembly Checks

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  •  Verify no connector pins look soldered together

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  •  Verify no pins on STM32 look shorted

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  •  Verify all components for Flight 5.7V Variant are fitted

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  •  Solder on radial capacitor for input buck

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  •  Solder on test input leads for buck testing

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  •  Verify pin 1 on chips aligns with indicator

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  •  Apply a few plug/unplug cycles on connectors

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  • to test solder joint quality

Power Testing

DMM

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  •  Make sure no power rails are shorted to ground or each other with DMM

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  •  Slowly increase voltage (with low current limit, 100mA max) on buck input, check its not drawing excessive current/power (ensure no output load)

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  •  Probe the output net for voltage stability with DMM

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  •  Slowly increase voltage on internal

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  • 5V rail

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  • and verify the internal

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  • 3.3V rail turns on (LDO functionality)

E-load

  •  Perform a load test on buck converter: use

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  • an e-load to fully saturate the buck and verify you get the output current expected (up to 1A)

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  •  Step the load and perform efficiency calculations: 12V, 24V, 50V

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Oscilloscope

  • scope switch node

  • probing output net for voltage stability with oscilloscope

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  •  Load transient testing: Step the e-load and view the transient response from buck converter output.

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  •  Battery inrush test: simulate hot-plugging a battery on the input terminal and view transient voltage spike/oscillations.

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  •  Then, handoff to firmware for testing.

Firmware Testing

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  •  Attempt to flash all boards

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all leds functional

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pwm output functional

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CAN circuit functional

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  •  Verify functionality of all LEDs
  •  Verify the PWM output
  •  Verify CAN circuit functionality
  •  Pixhawk servo CAN system test

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