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Kathy Barthelt

Infor LN & Baan Tips & Tricks for OPERATIONS: Blocking Operations

Note: The Blocked Operations (tisfc0540m000) session displays the blocked operations.

Introduction

Sometimes a problem occurs that must be solved before an operation proceeds. Examples of such situations are:

  • The quality of an intermediate product must first be inspected.
  • A machine is in repair.
  • A supplier cannot deliver an essential component in time.
  • A customer is late with its payments.

In these situations the operation can get the operation status Blocked.

An operation can be blocked:

  • Manually.
  • Automatically by Quality.

Blocking reasons

Every blocked operation must have a blocking reason. The blocking reason of a blocked operation has two purposes:

  • To indicate why the operation is blocked.
  • To determine which actions you can no longer perform on the operation.

Types of blocking

The following actions can be blocked by means of a blocking reason:

  • Reporting a quantity completed.
  • Reporting a quantity rejected.
  • Reporting a quantity to be inspected.
  • Reporting an operation completed.

You normally carry out these actions in the Report Operations Completed (tisfc0130m000) session.

You can define blocking reasons in the Blocking Reasons (tisfc2100m000) session.

Manual blocking

Use the Report Operations Completed (tisfc0130m000) session to block an operation. When you block an operation, you must also enter a blocking reason. If Quality has already blocked the operation, you can only enter a blocking reason, which is more restrictive than the blocking reason of Quality.

Blocking by Quality Management

Quality uses the blocking reasons specified in the Quality Management Parameters (qmptc0100m000) session, to block operations. For details, see the Using QM for manufacturing operations topic.

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Tips:  LX | BPCS | M3

Tips: LN | Baan

For years, paper work instructions have been a standard part of manufacturing. They were easy to distribute, simple to update, and familiar to operators.

But manufacturing has changed. Products are more complex, customer expectations keep rising, and as experienced employees retire, new hires often need to become productive faster than ever before. As a result, many manufacturers are rethinking how information is delivered on the shop floor.

The Challenge with Paper

Paper work instructions create several common challenges:

  • Multiple versions of the same document
  • Outdated instructions remaining at workstations
  • Time spent searching for the correct information
  • Longer training periods for new employees
  • Inconsistent processes between operators

On their own, none of these seem like a major problem, but together they add up to real quality and productivity issues.

A Shift Toward Digital Work Instructions

One trend we're seeing across the manufacturers we work with is a move toward digital work instructions. Rather than relying on printed documents, operators receive the latest approved instructions directly at their workstation, along with supporting images, videos, and other visual aids. This helps ensure every operator is working from the same information, every time.

Manufacturers making this shift are also gaining new capabilities they didn't have with paper: capturing production data directly from the shop floor, improving traceability, and supporting standardized work across shifts and facilities.

What Manufacturers Are Reporting

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