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George Moroses

Infor LX & BPCS Manufacturing Tip: Backward Scheduling

Operations are automatically backward scheduled at shop order release time. The backward scheduling algorithm starts with the shop order due date and schedules each operation based upon the standard move and queue times in the routings and the number of days the job is expected to run at standard. The system calculates and stores the operation scheduled start date. The dates may be modified by the shop order maintenance program. The number of days that a job is expected to run an operation is dependent upon the available capacity for that work center and the total hours scheduled for that operation.

The backward scheduling algorithm also considers the shop calendar for weekends, shutdowns, holidays, and partial days. Backward Scheduling Process The algorithm starts with the due date of the shop order or planned order. The system makes the following calculations for each operation in the reverse sequence:

1. The number of move days is subtracted from the due date (or initial date of the previous operation) to get the due date for this operation. The move days are only used on valid shop calendar days.

2. The system uses the following calculation for the number of clock hours for the operation: Standard run or machine hrs/No. of operators + setup hours

3. The number of clock hours is spread over the available daily capacity of the work center for those given days. The system uses the following calculation for the daily capacity of the work center: Number of shifts x hours per shift x average efficiency/100

4. Each day is checked against the shop calendar; the calculation bypasses inactive days or adjusts for any changes in the work center capacity for that day.

5. Queue time days are subtracted in the same manner as move time days. The resulting date is the operation start date.

The algorithm then goes to the previous operation. When all operations have been included, the resulting date is the scheduled start date of the shop order. Note that MRP uses the item lead time to determine material requirement dates on planned orders.

Backward scheduling is supported in all shop order release programs (SFC500, SFC550, and FAS510). Backward scheduling is recalculated if a shop order is maintained through SFC500 when the due date or the required quantity is changed; however, you cannot enter move and queue times through the maintenance program when adding an operation to the shop order.

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Tips:  LX | BPCS | M3

Using SFC600 to enter downtime.

You are tracking downtime and using SFC600 to enter the downtime, but you don’t know where to go to setup downtime reasons. You can set up the downtime reason codes in the INV application by selecting the reason code maintenance program INV140D1.

Once you are in the reason code maintenance program, position to the transaction effect code “D”. Using the transaction effect code “D” you can now setup as many downtime reason codes as needed. The reason code field is alpha numeric, so be creative with your reason code assignments.

The LMP module (Lean Manufacturing Process) uses work centers but refers to them as production cells.

A cell is one or more work centers that produces an end item. So when a company decides to adopt the lean manufacturing philosophy, the concept of work centers takes on a new meaning.

In lean terms, the work center, or group of work centers, becomes a production cell. In other words, a mini-factory producing end items with similar characteristics.
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Tips: LN | Baan

All actions required for converting, validating, matching, and posting electronically received bank statements can be performed within a single session:

  • Bank Statement Workbench (tfcmg5610m100)
  • Bank Statement (tfcmg5610m000)

Alternatively, you can use the sequence of electronic bank statement sessions outlined below.

Steps to Process Electronic Bank Statements:

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