FMS offers a comprehensive suite of features to manage maintenance tasks systematically. This includes creating and tracking detailed Issue records and WorkOrders, ensuring a seamless process from issue identification to resolution.
FMS’s adaptability shines through its customizable workflows. The system seamlessly integrates with existing systems like CRM or ERP, aligning with industry-specific business rules and allowing for tailored processes that suit your company’s unique needs.
FMS facilitates collaboration with contractors within the system. Machinery companies can effortlessly create and manage contractor profiles, enabling the delegation and monitoring of work orders with precision. This ensures that maintenance tasks are assigned to qualified personnel for swift resolution.
By generating and affixing QR codes to machines, operators can efficiently report issues, ranging from equipment malfunctions to preventive maintenance needs. FMS’s intuitive interface empowers end-users to report issues seamlessly, with customizable fields catering to industry-specific requirements.
FMS allows managing assets based on their location or zones, providing virtually unlimited nested levels from regions and continents to rooms or shelves. This feature ensures efficient organization and tracking of assets across diverse geographical and operational landscapes.
The system empowers end-users to report issues effortlessly, with customizable fields catering to the unique needs of each client. Clients can define fields associated with assets or issues, such as tracking warranty expiry dates, manufacturing details, dimensions, or specific issue types.
As machinery companies increasingly seek streamlined solutions to manage their diverse assets, FMS stands out as a modern, adaptable, and comprehensive platform. With its emphasis on user experience, customizable fields, and seamless integration capabilities, FMS is poised to become the go-to solution for machinery industries looking to enhance their maintenance processes and ensure optimal operational performance