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DDC offers online support resources, along with a large network of Field Service Representatives and Applications Engineers, providing technical assistance, and on-site customer support.
DDC's field proven technology is integrated into the world's most advanced civil aerospace, defense, industrial and space applications.
Data Device Corporation (DDC) is a world leader in the design and manufacture of high-reliability Connectivity, Power and Control solutions (Data Networking Components to Processor Based Subsystems, Space Qualified SBCs and Radiation Hardened Components; Power Distribution, Control and Conversion; Motor Control and Motion Feedback) for aerospace, defense, space, and industrial applications.
DDC is the market leader in high-reliability data bus networking solutions, including sub-systems, boards, components, and software for the defense, civil aerospace, and space markets. DDC provides data bus solutions for MIL-STD-1553/1760, ARINC 429/717, Fibre Channel, Ethernet, CANbus, Serial I/O, and other protocols.
DDC offers proven smart power control and power conversion solutions that enable land, sea, air, and space vehicle systems the ability to control and distribute raw and conditioned power, more efficiently and reliably. Power management with DDC's Solid-State Power Controller (SSPC) solutions offer dramatic SWaP-C saving advantages over the electromechanical switches, relays, and circuit breakers they replace. DDC's power conversion and supply solutions, offering greater than 92% efficiency, provide high quality conditioned power in a space saving, reliable, and field-proven, "fit and forget" design.
DDC is a leader in high reliability motor control and synchro/resolver motion feedback solutions for defense, civil aerospace, space, and industrial applications. DDC's motor control solutions deliver high reliability postion, torque and speed control, while our synchro/resolver motion feedback solutions provide high accuracy positioning, direction and speed data for high reliability applications.
DDC is a leader in high reliability transformer, magnetic and cable assembly solutions for the aerospace, defense, and space industries, with Beta Transformer and North Hills brands offering field proven magnetics solutions for the most demanding environments, including extreme temperature, shock, vibration, dust, fluid, and radiation.
DDC is a leading supplier of space qualified SBCs and radiation hardened components. Utilizing multiple radiation hardening techniques, DDC's space solutions incorporate one or more of the following elements: RAD-PAK® technology, Rad Hard by Design, Triple Mode Redundancy (TMR), and Error-Correction Codes (ECC). DDC's space-qualified and field proven solutions are engineered for space’s extreme environmental requirements, while reducing space, weight, and power consumption, along with total cost of ownership.
DDC’s core competencies and unique suite of capabilities for the production of custom solutions span every stage of development including electrical design, mechanical design, test engineering, process engineering, manufacturing, and product assurance. DDC is uniquely qualified to support a wide range of application requirements and technologies based upon our decades of experience in analog and digital microelectronics, magnetics, power supplies, radiation mitigation technology and top quality certifications for AS9100 Rev C, ISO 9001:2008, EN9100, JIS Q9100 and through the DLA MIL-PRF-38534.
The FC-75100 FibreACCESS series are dual-channel Fibre Channel Network Access Controller(NAC) PMC cards optimized for use in military aerospace applications. The FibreACCESS NAC is suitable for a wide variety of applications for embedded avionics and vetronics systems. These include sensor interfacing, multi-processor and DSP arrays, radar systems, display systems, serial backplanes, and storage.
Based on DDC developed Fibre Channel technology, FibreACCESS is optimized to meet the deterministic performance, high reliability, and demanding environmental requirements of embedded, real time, military applications. The FibreACCESS FPGA-based architecture can be tailored to meet a wide range of specific system requirements and is not subject to rapidly changing commercial market forces that can result in shortened life cycles. DDC Fibre ACCESS NACs have been designed to meet the multi-decade life cycle demands of military/aerospace programs, continuing our demonstrated commitment as a long-term military COTS supplier of digital interface devices.
FibreACCESS cards support Class 2 acknowledged and Class 3 unacknowledged Fibre Channel service. The cards provide leading edge performance, with the capability of operating at sustained data rates of over 300 MBytes with 2 Gb signaling and memory-to-memory latency of under 20 µS. Built-in DMA engines and 64-bit 66 Mhz PCI initiator/target interface, operating together with the frame, sequence and outbound exchange management logic, autonomously move payload data to and from PCI space. Using host initiated descriptors, frames are assembled and disassembled autonomously to and from payload buffers in host memory.
Fibre ACCESS supports multiple upper layer protocols (ULPs). These include TCP/IP, UDP/IP, SCSI/FCP, ASM (Anonymous Subscriber Messaging), and Raw Mode.
(16 Pages, 541 KB)
FC-75100 FibreACCESS® Network Access Controller User’s Manual
(40 Pages, 633 KB)
FC-79012S1 and FC-79702S1 FibreACCESS NAC DDK User's Guide for Linux
(120 Pages, 533 KB)
FC-7901XSX FibreACCESS NAC SDK User's Guide for VxWorks
(182 Pages, 745 KB)
FibreACCESS Fibre Channel Network Access Controller
(4 Pages, 402 KB)
Data Bus Boards, Modules, and Software Flyer
(2 Pages, 1 MB)
DDC Corporate Overview
Rev: 2014-12-01 00:00:00
(16 Pages, 2.8 MB)
DDC Product Catalog
(76 Pages, 28 MB)
Software Errata for FC-7901XS1 Fibre Channel NAC DDK for Linux
(2 Pages, 49 KB)
Software Errata for FC-7901XS2 Fibre Channel NAC SDK/DDK for VxWorks
(6 Pages, 63 KB)
Test, Simulation, and Integration of Fibre Channel Networked Systems
Rev: 2006-09-01 00:00:00
(17 Pages, 431 KB)
FC-751XX Series Order Info
Rev: G (1 Pages, 169 KB)