One DC input.
Follow every connection.
Two detector methods, each with its own PCB. Choose a board to see how it gets power, what it measures, and where each wire goes.
12 V or 24 V goes into the detector board. The onboard converters create its local rails. This input powers the detector electronics, not the electron gun.
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Power the circuit. Follow the signal.
The overview shows where power branches and how readings reach the host. Open the stage details for component values, then match each connector to the pin schedule.
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Follow each power and signal stage
Power path
External DC → onboard conversion → detector supplies
Measurement path
Collected current → amplifier → digitization → readout
The CA02P-5 bias converter is fitted on this PCB. It is a soldered DC/DC module. Its connection is internal to the board; it is not a separate external power box.
Locate the connection first.
Match the connector reference and pin number in the PCB source to the wiring schedule below. Wire by the pin labels, not by the board’s on-screen orientation.
View the source schematicComponent values, nets and pin assignments
From this pin. To this point.
| Board connector / pin | From | To | Connection detail |
|---|
No connector schedule is supplied in this revision’s metadata.
The complete connector schedule is checked against the CAD specification. Use the matching KiCad revision for assembly.
Bring it up in this order.
Full commissioning and noise checks ↗Collector firmware setup ↗
The board behind the diagram.
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Editable design files and generated outputs for the selected revision.
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Know what has been checked.
These are the recorded results and limits for the selected design. Layout checks and UI clarity scores do not establish hardware performance or electrical qualification.
No verification results are supplied in this revision’s metadata.