eMaint is an award-winning, cloud-based Computerized Maintenance Management System (CMMS) software designed to improve how organizations manage their maintenance reliability operations, resources, equipment, and compliance. Suitable for any size organization or enterprise, eMaint saves companies valuable time and money by integrating the tools they need in one powerful platform. It covers work order management, maintenance scheduling, reports and dashboards, predictive maintenance, preventive maintenance, mobile maintenance, inventory management, and asset management.
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Redlist is a reliability centered maintenance platform that extends traditional CMMS to track at the individual lubrication point, capturing execution data your ERP was never built to collect.
Available on web, iOS, and Android with full offline capability, Redlist replaces paper lube routes, eliminates pencil-whipping, and connects oil analysis data to technicians in the field.
Lubrication Management
Point-level route execution with the right lubricant, amount, and frequency per ICML standards.
CMMS and Asset Management
Component-level asset hierarchies, work orders, PM templates, and inventory. Integrates with SAP, Oracle EAM, JDE, and Maximo.
Operator Basic Care
Guided inspections and daily tasks that capture institutional knowledge before it retires.
AI Agents
Nine agents for FMEA, RCM, oil analysis, vibration & lubrication optimization.
Serving mining, oil and gas, chemical processing, food and beverage, packaging, and manufacturing. Deployed under 100 days.
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BAE Systems
BAE Systems Reliability Centered Maintenance platform provides a systematic approach to optimizing asset maintenance and establishing safe, optimum levels of maintenance for complex and mission-critical assets. The RCM Toolkit is designed to help organizations create a cost-effective maintenance strategy that addresses the dominant causes of equipment failure, minimizes safety, environmental, and operational failures, and reduces over-maintenance. Instead of relying only on preventive maintenance or repair after failure, the RCM approach uses a structured decision framework to balance risk, cost, and environmental factors while extending through-life expectancy. The toolkit guides users through defining the maintenance problem, gathering basic information, defining equipment functions and desired performance standards, identifying functional failures, establishing failure modes, recording failure effects, and selecting strategies based on the consequences of each failure.
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