FOUR LAYERS. ONE CONNECTED PROCESS.Preparing your design files
Assembly project preparation

Assembly Panel Requirements

An assembly panel is a handling and alignment structure as well as an arrangement of boards. Its design affects paste printing, placement, soldering, inspection and separation. Review the panel with the populated board, not only with its bare outline, before fabricating material or ordering a stencil.

Discuss your requirements ↗

Distinguish the board from the assembly panel

Provide both the individual board outline and the proposed panel drawing, clearly identifying which file governs fabrication. Show board count, orientation, separation features and any process rails. If panel design is requested as part of the project, state the constraints rather than supplying an unreviewed array as a mandatory solution.

A panel that uses material efficiently can still be inconvenient to handle or separate after population. Tall connectors, overhanging parts and delicate components near edges may change the acceptable arrangement. Engineering review should balance fabrication, assembly and final separation needs instead of optimizing one stage while leaving the others to adapt.

  1. 01Design files
  2. 02Engineering review
  3. 03Fabrication
  4. 04Inspection
  5. 05Delivery
Illustrative workflow. The agreed scope and acceptance criteria define each project.

Reserve handling and alignment features intentionally

Identify process rails, fiducials and tooling holes in the panel drawing. Their sizes and locations need confirmation against the planned equipment and process. Do not copy a generic rail width and assume it is accepted everywhere. Keep customer product features distinguishable from temporary manufacturing features.

Show where components or solderable features extend into the areas used for handling. If a connector overhangs the board edge, include its installed geometry, not only its courtyard. The table summarizes the decisions to close. Required dimensions and clearances are project-specific review items, not capability values implied by this educational page.

Panel featureInformation to supplyReview dependency
ArrayRows, columns, board count and rotationPlacement and test mapping
RailsLocation and proposed dimensionsHandling and component clearance
FiducialsLocations and intended useAlignment and optical access
Tooling featuresHole or fixture referencesMechanical location
SeparationMethod, tabs or scoring proposalTool access and finished edge
IdentificationPanel and position markingUnit status after separation

Keep panel data and placement data synchronized

When multiple boards share a panel, clarify whether coordinates describe one board or the full panel. State the origin, units, board side and orientation convention. Include the array transformation if the assembly setup needs it, and make sure that mirrored or rotated instances are intentional.

Any panel change can affect paste tooling, fiducial positions, inspection programming and separation instructions. Regenerate or review the linked outputs after approval rather than editing one drawing in isolation. A release manifest should name the individual PCB revision and the assembly panel revision separately so a repeat order can reproduce the same relationship.

Review separation around populated components

Choose a proposed separation method with attention to board outline, nearby copper, mounted parts and the acceptable finished edge. Tabs, routed spaces and scoring each introduce their own geometric and handling considerations. Identify edge connectors, brittle components and parts that could obstruct a tool path or experience unwanted loading during separation.

Specify which features must remain intact and where residual tab material is acceptable. If the assembled board fits closely inside an enclosure, include the relevant edge tolerance and clearance. Depanelization should be a planned operation with an acceptance condition, not an undocumented final step performed after all other work is complete.

Plan identification and test while boards are still joined

Decide whether test and programming occur on the panel or on separated boards. A panel-level fixture requires access and mapping for each position, while separated testing needs a way to preserve the unit’s identity. Mark array positions if that information is useful for tracking inspection findings or investigating a repeated location issue.

Define how rejected positions are handled. A panel can contain an incomplete or held unit alongside acceptable units, so the status must remain visible through separation and packing. Avoid treating a panel-level pass label as proof that every individual board received the same checks unless the record actually supports that conclusion.

Approve the panel before committing linked tooling

Request a review drawing that makes dimensions, array count, orientation, rails, fiducials, tooling features and separation details readable. Cross-check it with the populated-board view and assembly sequence. Record approval before releasing associated board fabrication and stencil preparation, and retain the approved drawing for repeat builds.

Use fabrication panelization for the broader panel discussion, stencil planning for paste-tool coordination and assembly scope for process sequencing. Submit your proposed assembly panel with component overhangs and separation constraints. Actual dimensions and process compatibility require engineering confirmation.

PROJECT WORKSPACE

Assembly Panel Requirements checklist

Use this checklist to prepare your inquiry. These selections stay in this browser and do not submit a project.

Use in my inquiry ↗

Frequently asked questions

Can the fabricator create the assembly panel?

That can be requested, but assembly requirements must be supplied and reviewed. A fabrication-efficient array is not automatically suitable for the populated-board process.

Are process rails always required?

Requirements depend on board geometry and the planned handling method. Submit the board and component layout so engineering can confirm the appropriate panel features.

Should placement coordinates describe one board or the panel?

Either convention must be explicitly identified and agreed. The origin, units, transformations and relationship to the approved panel need to be unambiguous.

Can components overhang the panel's board outlines?

Show their installed geometry and review clearance, tool access and separation. Overhangs can restrict arrangement even when the bare boards fit the array.

Why does a panel change require stencil review?

The stencil must align with the intended board images and reference features. Changing the array or alignment geometry can invalidate existing paste-tool correspondence.

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