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Enterprise Technology Terminology: F

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  • Fab Capacity Planning

    Fab capacity planning is the process of modeling and managing semiconductor fabrication plant capacity to align wafer output with demand, cycle-time targets, and cost constraints while accounting for equipment, labor, material, and yield limits in enterprise manufacturing and supply chain planning.

  • Fabless Design Model

    Fabless design model is a semiconductor business approach where companies design integrated circuits but contract external foundries for manufacturing. It matters for enterprises because it underpins many processors and accelerators used in cloud, networking, storage, and specialized workload hardware procurement decisions.

  • Fabric

    Fabric is an integrated architectural layer that unifies control, management, and governance across distributed infrastructure, applications, or data. It matters in enterprise contexts because it supports consistent policies, security, and operations across hybrid, multicloud, and heterogeneous technology environments.

  • Fabric Attached Memory

    Fabric attached memory is a network-based memory architecture in which remote DRAM or persistent memory connects to servers over a high-speed fabric, allowing enterprises to pool and allocate memory independently of individual servers for composable, disaggregated, and high-performance infrastructure designs.

  • Fabric Controller

    Fabric controller is a control-plane software component that manages and automates provisioning, configuration, and health monitoring of compute, storage, and network fabrics, supporting reliable, policy-based operation of cloud and data center infrastructure for enterprise workloads and shared platform services.

  • Fabric Interconnect

    Fabric interconnect is a data center switching and management device that consolidates server, storage, and network connectivity into a single fabric domain, enabling centralized policy control, reduced cabling complexity, and more uniform provisioning and operations for enterprise compute environments.

  • Fabric Manager

    Fabric Manager is a management component for configuring, monitoring, and controlling a data center or network fabric, providing centralized topology awareness, policy enforcement, and lifecycle operations across switches, servers, and fabric-attached resources in enterprise, cloud, storage, or high-performance computing environments.

  • Fabric Overlay

    Fabric overlay is a logical networking construct that creates a virtualized layer over a physical underlay network to provide traffic segmentation, multitenancy, and policy control, which supports scalable enterprise architectures across data center, campus, and wide area environments.

  • Fabrics Management Controller

    Fabrics Management Controller is a centralized control-plane component for configuring, monitoring, and administering network fabrics in data centers or cloud environments, enabling consistent policies, topology management, telemetry, and lifecycle operations across switches, routers, and fabric-attached workloads in enterprise architectures.

  • Facility Access Control

    Facility access control is the set of physical and logical measures that govern who may enter or use specific enterprise buildings or areas, under which conditions, and with which authorization, supporting security, compliance, and operational oversight in organizational environments.

  • Facility Management System

    Facility management system is an integrated software platform that manages building operations, maintenance, space, and asset data across the life cycle of facilities, supporting compliance, cost control, and coordination between facilities, real estate, finance, and risk functions in enterprises.

  • Facility Redundancy Plan

    Facility redundancy plan is a documented strategy that defines how an organization designs and operates facilities with redundant systems and alternate locations to maintain operations during failures or disruptions, supporting business continuity, availability targets, and compliance expectations in enterprise environments.

  • Facility Redundancy Planning

    Facility redundancy planning is the structured design of alternate sites and supporting infrastructure so an organization can continue operations when a primary facility is unavailable, which supports business continuity, disaster recovery, and compliance with availability and resilience requirements.

  • Facility Water Loop

    Facility water loop is a closed or semi-closed water circulation system within a building or campus that transfers heating or cooling between central plant equipment and distributed loads, which affects energy use, reliability, and environmental performance in enterprise facilities.

  • Factory Automation Network

    Factory automation network is a communication infrastructure in industrial environments that connects controllers, field devices, and supervisory systems to support automated manufacturing and data exchange, enabling coordinated control, monitoring, and integration between operational technology systems and enterprise applications.

  • Failover Mechanism

    Failover mechanism is a process or set of controls that transfers workloads or services to redundant systems when primary components fail or degrade, enabling enterprises to maintain availability, meet uptime objectives, and support high availability and disaster recovery strategies.

  • Failover System

    Failover system is a redundancy-based configuration that automatically shifts workloads or services to standby components when primary resources fail or degrade, helping enterprises maintain service continuity, meet availability objectives, and support business continuity and risk management requirements.

  • Failover Testing

    Failover testing verifies that an enterprise system can transfer operations from a primary component to a redundant or standby component during a fault or outage, while meeting defined availability and recovery objectives for business continuity, compliance, and service-level commitments.

  • Fail-Safe Controller

    Fail-safe controller is a control or safety component that forces equipment or processes into a predefined safe state when faults, abnormal conditions, or power loss occur, supporting functional safety, regulatory compliance, and risk reduction in industrial and enterprise environments.

  • Failure Prediction Model

    Failure prediction model is a data-driven model that estimates the probability and timing of future failures in assets, systems, or processes, supporting predictive maintenance, reliability engineering, and risk management decisions in industrial, IT, and other enterprise environments.