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Respond to a signal with a defined owner

Recognize the approved signal and notify its owner.. Follow the visual, practise a decision, then check your thinking.

Fictional teaching examples and AI-generated illustrations. Proposed changes and goals are not achieved results. Use the written instructions and check local conditions before applying a method.

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Teaching view 1 of 2

Respond to a signal with a defined owner

Method exhibit: Recognize signal, Define suspect boundary, Contain exposure, Investigate + restore, Verify + authorize.
Original OPEX teaching diagram. Follow the steps below, then try the practice question. View full size ↗

A signal is useful only when the response is clear. An out-of-control action plan identifies who recognizes the abnormality, who contains potentially affected output, how evidence is preserved and who can authorize restoration. Start with a justified suspect boundary, then examine downstream stock, rework and other exposure that may extend it. Do not confuse quarantining product with correcting the underlying process. Investigate using time, settings and lot identity, implement an authorized action and verify that the process and product are suitable before release. Update the control plan when learning changes the required response. The boundary here is an arithmetic illustration, not a universal containment rule.

Follow the method

  1. Recognize signal
  2. Define suspect boundary
  3. Contain exposure
  4. Investigate + restore
  5. Verify + authorize

Read the example carefully

101 through140 inclusive contains40 serials.

This is an initial boundary before downstream/WIP/rework review.

Containment is not corrective-action effectiveness or release authority.

Teaching view 2 of 2

Reconcile the 40-unit initial exposure across three locations

A containment record maps serials 101–110 to packing,111–125 downstream and 126–140 at the cell, totaling 40; quality retains a provisional boundary and separate release decision.
Original OPEX teaching diagram. Follow the steps below, then try the practice question. View full size ↗

Fictional training case: at a machining cell the check on serial 140 fails. Serial 100 is the last verified acceptable checkpoint in the supplied record. Team leader Jules follows the local reaction plan and must locate potentially affected output before the next move. The precise technical fault is not supplied.

Follow the method

  1. 101–110
  2. 111–125
  3. 126–140
  4. 101–140
  5. Release

Read the example carefully

Expand the initial suspect interval to 81–140:60 units. Add the 20 newly identified units to the controlled scope and reassess downstream exposure.

60 =140 minus 81 plus 1; the previous 40 remain included. The new evidence changes the boundary, not just the label on the old hold.

Apply the method

The first boundary is a starting point

Construct an evidence-based suspect boundary, reconcile affected locations, and distinguish restoration, verification and authorized release.

Fictional training case: at a machining cell the check on serial 140 fails. Serial 100 is the last verified acceptable checkpoint in the supplied record. Team leader Jules follows the local reaction plan and must locate potentially affected output before the next move. The precise technical fault is not supplied.

Role: Team leader coordinating quality, downstream supervision and the authorized process specialist.

Normal condition

The checkpoint record is traceable to the correct characteristic, method and serial. Potentially affected output remains identifiable until disposition.

The gap

The cell has only 15 suspect pieces beside it, while 25 have already moved downstream or to packing. Someone proposes holding only the visible pieces.

  • The initial interval assumes serial order represents production order and the serial 100 checkpoint is trustworthy.
  • A passing restart check does not itself authorize release of earlier output; the applicable reaction/disposition plan controls that decision.
Supplied case inputs
Supplied recordEvidence
Last verified acceptableSerial 100
Failed checkSerial 140; response initiated
At cell / WIP126–140:15 units
Downstream queue111–125:15 units
Packed, not shipped101–110:10 units
Total initial interval101–140 inclusive:40 unique units
  1. Secure the event record

    Jules records the failed characteristic, serial 140, time, measurement reference and reaction-plan owner. He initiates the prescribed local response and retains the checkpoint evidence.

    Why: A vague note saying bad batch cannot anchor an exposure investigation. Immediate action and later cause investigation need a common event identity.

    Evidence: An OCAP event record links the failure to serial 140 and the last verified checkpoint 100.

  2. Declare an initial interval

    He marks 101–140 as potentially affected:140 minus 101 plus 1 equals 40 serials. He labels this initial, pending trace and checkpoint validation.

    Why: Inclusive counting prevents an off-by-one omission. The last good sample is a boundary hypothesis based on the supplied trace, not proof that every intervening unit passed.

    Evidence: The map shows 100 as a checkpoint and 101–140 as the initial suspect interval.

  3. Follow the output, not the aisle

    He asks downstream and packing owners to identify and control their listed ranges. The three location records reconcile 15 +15 +10 to 40 unique units.

    Why: Product can travel beyond the machine before a signal appears. A hold covering only the pieces in sight misses exposure.

    Evidence: Each range has a receiving owner and hold acknowledgment; none is double-counted.

  4. Check whether the boundary must expand

    Quality checks WIP, rework, alternate routing and any uncertainty in the checkpoint or serial sequence. Unlocated or potentially shipped items trigger the applicable escalation.

    Why: The initial arithmetic cannot settle a broken trace. An unresolved item stays an open issue even if totals on a spreadsheet happen to balance.

    Evidence: A boundary review states known locations, missing evidence and any revised interval.

  5. Separate recovery from release

    The authorized specialist investigates and restores the process under its procedure. Quality verifies the response and decides disposition for affected output through the assigned authority.

    Why: The machine running again answers a different question from whether suspect pieces can be used.

    Evidence: Technical action, verification conditions and product release/disposition are separately referenced; no release is inferred from a restart.

Initial containment reconciliation — fictional event OC14
ScopeCount / locationOwner / decision
101–11010 packed, not shippedPacking lead: hold acknowledged
111–12515 downstream queueDownstream lead: hold acknowledged
126–14015 at cell / WIPCell lead: hold acknowledged
101–14040 unique unitsQuality: provisional boundary
ReleasePending disposition evidenceAuthorized quality decision; not restart alone

The checkpoint cannot be trusted

The measurement-status review finds that the serial 100 check cannot be accepted. The preceding valid checkpoint is serial 80. Records locate 81–100 as 20 additional packed units.

Expand the initial suspect interval to 81–140:60 units. Add the 20 newly identified units to the controlled scope and reassess downstream exposure.

60 =140 minus 81 plus 1; the previous 40 remain included. The new evidence changes the boundary, not just the label on the old hold.

The revised map cites why checkpoint 100 was rejected, retains checkpoint 80 evidence and reconciles all 60 unique serials.

A failed check and one unlocated serial

New fictional event: serial 200 is the last verified acceptable checkpoint and serial 235 fails. Serial 201–210 are packed but not shipped; 211–220 are at downstream inspection; 221–234 are at the cell. Serial 235 was removed for the failing check and its present location is not yet recorded.

Changed practice inputs
Range / checkpointDeclared status
200Last verified acceptable
201–21010 packed
211–22010 downstream
221–23414 at cell
235Failed sample; location unrecorded

Your task

  1. Define and count the initial interval.
  2. Reconcile located and unlocated units and assign the missing-location follow-up.
  3. Explain why a passing restart sample cannot close this event.

Prepare your worksheet

  • Initial interval and assumption
  • Location / serial range / unique count
  • Unlocated exposure and receiving owner
  • Process verification record
  • Product disposition authority and remaining evidence
Reveal the answer and reasoning

201–235 inclusive contains 35 serials. The located ranges contain 10 +10 +14 =34; serial 235 remains one unlocated suspect unit.

Hold/control the known ranges and give the missing sample trace to the quality event owner with a receiving person and review time. Do not silently add 235 to the cell count without confirmation.

A restart check concerns current process recovery. Complete product scope, verification and authorized disposition remain necessary, including the failed sample location and any further exposure identified.

Worked answer record
Scope categorySerials / calculationCount / decision
Initial scope201–23535 units
Located10 +10 +1434 units
UnlocatedSerial 2351 unit; trace open
ClosureNot authorized by restartReconcile and disposition

Check these interpretations

  • The suspect interval is not automatically the entire final containment.
  • A matched total without traceable locations is not a complete reconciliation.

Check your work

  • Count both intervals inclusively and avoid double counting.
  • Keep the missing serial visible and assigned.
  • Distinguish containment, technical recovery and product release.

Run a practice session

Materials

  • Serial-range cards for cell/downstream/packing
  • Blank exposure and disposition record
  • Separate checkpoint-invalid card for exception
  1. Frame the signal and boundary · 5 minutes

    Why is 100 not counted in 101–140?

  2. Move range cards to locations · 7 minutes

    Where are the pieces that have left the cell?

  3. Complete the missing-serial practice · 9 minutes

    Which acknowledgment is still absent?

  4. Reveal checkpoint change and debrief · 6 minutes

    What evidence could enlarge your initial scope?

Debrief

  • If a learner counts only cell stock, follow one downstream handoff.
  • Ask who can release output and what record supports that authority.

Draw the boundary and locations before counting; compare both the total and the unresolved questions with the answer.

Transfer into the work

Owner: Named OCAP/quality event owner with each affected location owner

Record: Signal record, suspect-scope map, acknowledgments and disposition references

Review: At each handoff and before any release; timing follows the local reaction plan

Evidence: Validated checkpoint, traceable unique units, restoration verification and authorized dispositions

Maintain applicable controls, expand investigation and escalate unlocated or downstream exposure through the defined route.

Build on reliable methods

Sources and further reading

  • NIST: Out-of-control response ↗

    A signal calls for the process-specific out-of-control action plan and investigation of an assignable cause.

    Public primary-source summary; underlying paid standards/forms are not reproduced.
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