Role: Manhattan Active WM Consultant
Location: Atlanta, GA - onsite daily
W2 Only
Must Have's:
1. Manhattan Active WM Configuration skills
2. Ability to understand WM requirements and do fit gap analysis and process mapping.
3. Very strong communication skills
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| Analysis | | |
| Manhattan WMS | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | |
Configure Manhattan Active WM capabilities including facility setup, locations, inventory rules, allocation, task generation, waving, cartonization, packing, shipping, equipment, users/roles, reason codes, exceptions, and operational workflows.
Design, build, and support MAWM extensions using Manhattan ProActive, Groovy/Java-style extension logic where applicable, custom services, UI extensions, labels/documents, events, and configuration-driven enhancements.
Own integration design and delivery between MAWM and MHE/WES/WCS systems such as conveyors, sorters, ASRS, shuttle systems, AMRs/AGVs, pick-to-light, put walls, print/apply, dimensioners, and automated packing solutions.
Define message flows, API/event contracts, canonical payloads, sequencing, retry/error handling, idempotency, monitoring, and reconciliation patterns for real-time warehouse automation integrations.
Partner with ERP, OMS, TMS, and middleware teams to integrate inventory, orders, ASN/receipts, shipments, carrier manifesting, labor, item/location masters, and operational visibility data.
Support fit-gap analysis, process design workshops, configuration workbooks, functional specifications, technical design documents, test strategy, cutover planning, hypercare, and stabilization.
Perform hands-on troubleshooting across MAWM configuration, extensions, integration payloads, logs, automation events, operational exceptions, and performance bottlenecks.
Provide technical leadership to developers, testers, and offshore teams; review designs, code, test cases, and deployment plans for quality and completeness.
Advise clients on warehouse automation integration patterns, operational control points, fallback procedures, exception handling, and support model design