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Fire Control & Targeting System - 3U 5-Slot

Application Ready 3U Fire Control & Targeting System

The FCT-35CP0D is a preconfigured, rugged system with a NXP® PowerPC™ QorIQ® P2041 processor. It is ideally suited to support a multitude of military/aerospace applications that require 3-axis precision, dual-speed synchro drive and measurement with RS-422/423/485 Serial Communications; Dual-Redundant, Quad Channel MIL-STD-1553B;  Digital-to-Synchro Simulation, Synchro-to-Digital Measurement; AC Reference; Discrete I/O; CANBus (CAN 2.0 A&B or J1939); Differential Transceiver; Latching Relays and Dual-Port Gig-E Ethernet.

NAI’s Fire Control & Targeting (FCT) systems can be applied to a spectrum of applications where a multitude of sensor and command interfaces need to be maintained to ensure steady “on target” aim and control. Critical air, land or sea positioning platforms such as "on-the-move" targeting or “line-of-sight” communications, radar and laser guidance can benefit from the efficient and programmable NAI FCT systems.

The FCT-35CP0D seamlessly integrates with the same field-proven backplane technology as the standard open architecture systems.



Software support includes Wind River® VxWorks®. All I/O and communication libraries are provided at no additional charge.

  • Meets or exceeds MIL-STD-461F and MIL-STD-810G requirements
  • VxWorks® OS
  • < 15 lbs. typical
  • Continuous Background Built-In-Test (BIT)
  • COSA® architecture
  • SWaP-optimized

Block Diagram

(Click diagram to enlarge)

12/4/2018 9:38:55 AM
Accelerate Your Time-to-Mission™ With COSA®

NAI’s Configurable Open Systems Architecture™ (COSA®) offers a choice of over 70 smart I/O, communication, and Ethernet switch functions, providing the highest packaging density and greatest flexibility of any multifunction I/O board in the industry. Preexisting, fully-tested functions can be combined quickly and easily in an unlimited number of ways. Each I/O function has dedicated processing, unburdening the system Single Board Computer (SBC) from unnecessary data management overhead.

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