Spectra Aerospace & Defense is a trusted and growing platform of C5ISR companies – CALCULEX, Galleon Embedded Computing, and ArgonFDS - bringing over a half-century of rugged, mission-ready, battle-tested experience to bear in aerospace and defense applications. From high-speed data acquisition, data recording and secure, high-density storage, to computing and rugged, clear display of mission data, Spectra delivers the products and subsystems needed for the most demanding military air, land, and sea platforms. With our comprehensive portfolio of rugged products, systems, and solutions, the Spectra family of companies’ customized end-to-end solutions for the C5ISR market help military end-users achieve mission success. Simply put, Spectra's rugged solutions Capture, Process, and Display your mission-critical data in the harshest environmental conditions. In the air, at sea, on land, and in space; We simplify integration.

CAPTURE

Data Acquisition

Sensor Recording

PROCESS

Mission Computing

Encrypted Storage

NAS & File Serving

Processing & Routing

DISPLAY

Displays

Peripherals

Tablets

Workstations

Titan sFPDP XMC

Quad Channel – Up to 10.3125 Gbps

ApplicationsBenefits
‣ Missile testing‣ High performance
‣ Radar development and data recording
‣ Air-cooled and conduction-cooled
‣ High speed sensor data capture‣ Low power
‣ Geological survey and seismic
‣ Physics research

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Overview

The Galleon sFPDP XMC is a versatile platform for various applications such as high-performance image processing, radar processing, and sensor data capture. It is powered by the low-energy Intel® Arria® 10 FPGA, which can support up to four individually adjustable sFPDP links. These links can be adjusted to speeds ranging from 1.0625 to 10.3125 Gbps.

 

The sFPDP XMC is equipped with 2GB SDRAM, allowing for deep FIFOs in applications that require high elasticity. The PCI Express x8 host interface uses the Arria hard IP interface to deliver high-bandwidth data directly to CPU memory. The board is available in both air-cooled and conduction-cooled versions, and it can be fitted with standard rugged front panel LC connectors or recessed rugged LC connectors. Alternatively, the high-speed serial interfaces can be routed through the P16 rear I/O for backplane communication. Linux drivers are provided with the board.

 

Galleon Embedded Computing’s quality management system boasts certification to Aerospace Standard AS/EN 9100 and ISO 9001.

Specifications

FPGA & Memory

  • Intel® Arria® 10
  • 2GB SDRAM

 

High Speed Serial Interfaces

  • 4x channels
  • Per channel configurable sFPDP link speed:
    • Models with 5Gbps transceivers: 1.0625, 2.125, 2.5, 3.125, 4.25, 5 Gbaud
    • Models with 10Gbps 6.25, 8.5, 10 and 10.3125 Gbaud
  • 850nm MM or 1310nm SM transceivers
  • Optional recessed LC connectors for easy internal cabling in conduction cooled systems without front panel connections
  • Duplex LC optical connector
  • Optional rear I/O interface (at restricted link speeds)

 

Configuration FLASH

  • Software upgradable FPGA configuration

 

XMC Interface

  • PCI Express x8
  • 4ch sFPDP (option – restricted link speeds)
  • XMC2 (VITA 61) connectors standard (contact factory XMC/VITA42 version)

 

Timing

  • Programmable clock synthesizer non-standard link speeds
  • Multi-card timing sync. function**

 

Operating Temperature

  • -40°C to +75°C rugged air cooled
  • -40°C to +85°C rugged conduction cooled
  • Conformal coating on all models

 

Humidity

  • Up to 100%, condensing

 

Software

    • Linux drivers

 

* Virtually any link speed up to 10.3125 Gbps can be supported using custom programming of the clock synthesizer, contact factory for custom options.

**Contact factory for custom options

Key Features

Key Features
• 4 channel serial FPDP
• VITA 17.1 & 17.3 compliant
• 2.125, 2.5, 3.125, 4.25, 5, 6.25, 8.5, 10, and 10.3125 Gbps supported
• Intel Arria 10 FPGA
• 2GB SDRAM
• High resolution timestamping
• PCIe x8 host interface
• Timer synchronization between multiple boards
• 4x micro-coax IO for timer synchronization
• Optical duplex LC or rear I/O sFPDP interfaces
• C++ API
• Linux drivers and SDK

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