Build a Custom ERP Scheduling Software Using AI in Minutes

Create your ERP scheduling software in minutes with AI. Apply real capacity to work orders and gate on material availability, no coding.

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Emergent Key Features for Building ERP Scheduling Software

Most ERP planning assumes infinite capacity. It tells you what should be made and when it is due, not whether the plant can actually do it.

Finite Capacity Applied to ERP Demand


Work orders scheduled against genuine machine and labour capacity, since an ERP due date is a requirement rather than a plan the floor can follow.

Two Way Sync Rather Than an Export


Schedules written back so the ERP reflects the achievable plan, otherwise two systems hold different truths and the floor believes neither.

Sequence Optimised Within ERP Constraints


Jobs ordered to reduce changeover while respecting the material and routing rules the ERP already enforces.

Material Availability from ERP Inventory


Component availability read live so a job is not scheduled before its parts exist, which is the most common cause of a stalled works order.

Promise Dates Fed Back to Sales


Achievable dates returned into the ERP so customer commitments are made on capacity rather than on lead time assumptions.

Exceptions Rather Than Rescheduling Everything


Only the orders affected by a change reworked, since a full regeneration each time makes the schedule impossible to trust or follow.

ERP Scheduling Software Use Cases You Can Build in Minutes

Finite Scheduling

What the Plant Can Actually Do

ERP work orders scheduled against real machine and labour capacity with the achievable completion date returned, rather than a due date that assumes infinite resource.

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window.awbMockup = { finiteScheduling: "Build a finite capacity scheduler taking work orders from your ERP and scheduling them against real machine and labour capacity, calculating achievable completion dates, and identifying orders whose ERP due date cannot be met.", twoWayIntegration: "Build a two way ERP integration reading demand, routings and inventory from the ERP and writing the achievable schedule back, so planning, purchasing and customer promises all reference the same dates rather than diverging.", materialGating: "Build a material gating layer reading live inventory and expected receipts from the ERP, preventing works orders being scheduled before required components are available, and listing shortages by the customer orders they would delay.", exceptionHandling: "Build an exception based rescheduler reworking only the orders affected by a breakdown, rush order or late delivery rather than regenerating the whole plan, showing exactly what changed, and preserving the sequence everywhere else."};

Two Way Integration

One Truth, Not Two Systems

The achievable schedule written back into the ERP so planning, purchasing and sales all work from the same dates rather than the floor quietly running to a different plan.

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window.awbMockup = { finiteScheduling: "Build a finite capacity scheduler taking work orders from your ERP and scheduling them against real machine and labour capacity, calculating achievable completion dates, and identifying orders whose ERP due date cannot be met.", twoWayIntegration: "Build a two way ERP integration reading demand, routings and inventory from the ERP and writing the achievable schedule back, so planning, purchasing and customer promises all reference the same dates rather than diverging.", materialGating: "Build a material gating layer reading live inventory and expected receipts from the ERP, preventing works orders being scheduled before required components are available, and listing shortages by the customer orders they would delay.", exceptionHandling: "Build an exception based rescheduler reworking only the orders affected by a breakdown, rush order or late delivery rather than regenerating the whole plan, showing exactly what changed, and preserving the sequence everywhere else."};

Material Gating

Do Not Schedule What Cannot Be Built

Component availability read live from ERP inventory so a works order is not released before its parts exist, with shortages expressed as the orders they delay.

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window.awbMockup = { finiteScheduling: "Build a finite capacity scheduler taking work orders from your ERP and scheduling them against real machine and labour capacity, calculating achievable completion dates, and identifying orders whose ERP due date cannot be met.", twoWayIntegration: "Build a two way ERP integration reading demand, routings and inventory from the ERP and writing the achievable schedule back, so planning, purchasing and customer promises all reference the same dates rather than diverging.", materialGating: "Build a material gating layer reading live inventory and expected receipts from the ERP, preventing works orders being scheduled before required components are available, and listing shortages by the customer orders they would delay.", exceptionHandling: "Build an exception based rescheduler reworking only the orders affected by a breakdown, rush order or late delivery rather than regenerating the whole plan, showing exactly what changed, and preserving the sequence everywhere else."};

Exception Handling

Reschedule the Affected, Not Everything

A breakdown, a rush order or a late delivery reworking only the orders genuinely affected, since regenerating the entire schedule makes it impossible for the floor to follow.

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window.awbMockup = { finiteScheduling: "Build a finite capacity scheduler taking work orders from your ERP and scheduling them against real machine and labour capacity, calculating achievable completion dates, and identifying orders whose ERP due date cannot be met.", twoWayIntegration: "Build a two way ERP integration reading demand, routings and inventory from the ERP and writing the achievable schedule back, so planning, purchasing and customer promises all reference the same dates rather than diverging.", materialGating: "Build a material gating layer reading live inventory and expected receipts from the ERP, preventing works orders being scheduled before required components are available, and listing shortages by the customer orders they would delay.", exceptionHandling: "Build an exception based rescheduler reworking only the orders affected by a breakdown, rush order or late delivery rather than regenerating the whole plan, showing exactly what changed, and preserving the sequence everywhere else."};

Add finite scheduling to your ERP in four steps

Work orders scheduled against real capacity, achievable dates written back so both systems agree, and only affected orders reworked when something changes.

Establish capacity, routings and what the ERP already holds

Your work centres with genuine capacity, routings and setup times, which data lives in the ERP, and where its planning assumptions currently break down.

Connect the ERP in both directions

Read demand, routings and inventory from SAP, NetSuite or your own system, and write the achievable schedule back so purchasing and sales work from the same dates.

Handle a change without regenerating everything

A breakdown, a rush order, a late delivery. Only the affected orders are rescheduled and the floor sees what changed rather than a new plan.

Compare ERP due dates against achievable dates

Run the finite schedule once and see how many orders were never going to make their date, because that gap explains most of the expediting.

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