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MODEL KEY FEATURES Image
RIOV-2478
  • • 3U OpenVPX™ form-factor (VITA 65)
  • • Freescale QorIQ™ P3/P4 processor
  • • One Crosspoint switch (PCIe x4, GbE, 10GbE)
  • • Three PCIe x4 on VPX-P1/P2 and XMC
  • • Eight GbE on VPX-P1/P2 and XMC
  • • Two 10GbE on VPX-P1/P2 and XMC
  • • One UART on VPX-P2 and three UARTs on front-panel
  • • One Aurora debug on VPX-P2
  • • One XMC site
RIOV-2473
  • • 3U OpenVPX™ form-factor (VITA 65)
  • • Freescale QorIQ™ P3041/P4080/P5020 processor
  • • One Crosspoint switch (PCIe x4, GbE, 10GbE)
  • • Three PCIe x4 on VPX-P1/P2
  • • Eight GbE on VPX-P1/P2
  • • Two 10GbE on VPX-P1/P2
  • • One UART on VPX-P2
  • • Three UARTs on front-panel
  • • One Aurora debug on VPX-P2
RIO6-8096
  • • 6U VME64x form-factor
  • • Freescale® QorIQ® P2010/P2020 processor
  • • Xilinx Spartan®-6 LX100T user-programmable FPGA (optional)
  • • One PCI Express switch
  • • One PCIe x4 on VME-P0
  • • Three PCIe x4 on XMCs
  • • Four high-speed links on XMC (optional)
  • • Three GbE, one USB 2.0 and two UARTs on VME-P2
  • • Two PMC / XMC sites
  • • Static routing module (CES FlexIO™)
RIO6-8093
  • • 6U VME64x form-factor
  • • Freescale QorIQ P2010/P2020 processor
  • • Xilinx Spartan ®-6 LX100T user-programmable FPGA (optional)
  • • One PCI Express switch
  • • Three PCIe x4 on XMCs
  • • Four high-speed links on XMC (optional)
  • • Two GbE, one USB 2.0 and two UARTs on front-panel
  • • Two PMC / XMC sites
  • • Static routing module (CES FlexIO™)
RIO6-8092
  • • 6U VME64x form-factor
  • • Freescale® QorIQ® P2010/P2020 processor
  • • Xilinx Spartan®-6 LX100T user-programmable FPGA (optional)
  • • One PCI Express switch
  • • Three PCIe x4 on XMCs
  • • Four high-speed links on XMC (optional)
  • • Two GbE and two UARTs on VME-P2
  • • One USB 2.0 on VME-P0
  • • Two PMC / XMC sites
  • • Static routing module (CES FlexIO™)
RIO5-8086
  • • 6U VME64x form-factor
  • • Dual Freescale MPC8640D processors (with Altivec)
  • • Xilinx Virtex-6 LX130T user-programmable FPGA
  • • One PCI Express switch
  • • One Gigabit Ethernet switch
  • • Two PCIe x4 on VME-P0
  • • Eight high-speed links on SFP
  • • Two GbE on VME-P2
  • • Two GbE on front-panel
  • • Two UARTs on VME-P2
  • • Six UARTs on front-panel
RIO4-8072
  • • 6U VME64x form-factor
  • • Freescale® MPC7448 processor
  • • Xilinx Virtex-5 LX30 user-programmable FPGA
  • • Two GbE on RJ45 connectors (optional)
  • • Two PMC sites
  • • Static routing module (FlexIO™) (optional)
  • • Requires only +5V power
  • • Multiple Operating Systems version support
RIO3-8066
  • • 6U VME64x form-factor
  • • IBM PowerPC® 750FX / 750GX processor
  • • One FETH on VME-P2
  • • Two UARTs on VME-P2
  • • Two PMC sites
RIO3-8064
  • • 6U VME64x
  • • Freescale MPC7457 processor
  • • One fast Ethernet port
  • • Two onboard PMC slots
  • • PCI-P0 extension
RIO3-8064
  • • 6U VME64x
  • • IBM PowerPC® 750 / 755 processor
  • • One fast Ethernet port
  • • Two onboard PMC slots
  • • PCI-P0 extension
MFCC-8557
  • • Design Assurance Level C (DO-178C/DO-254)
  • • Extended Range Conduction-Cooled
  • • Low-SWaP bundle options with I/O rich avionics interfaces or high performance video graphics
  • • XMC 2.0 (VITA-61) form factor
  • • Freescale QorIQ™ P3041 processor
  • • Low power: 15W typical
  • • Four PCIe Gen2 interfaces on XMC (Full Mesh Support)
  • • One FETH interface on XMC (DAL-C)
  • • Maintenance / Mission mode with specific hardware logic
  • • Safety Optimized Board Management Controller
MFCC-8566
  • • PrPMC / XMC form-factor (VITA 42)
  • • Freescale® QorIQ® P2020 processor
  • • Xilinx Spartan®-6 LXT user-programmable FPGA*
  • • One PCIe x2 on XMC*
  • • Three high-speed links on XMC*
  • • Two GbE on PMC/XMC*
  • • One USB 2.0 on PMC/XMC*
  • • Three UARTs on PMC/XMC*
MFCC-8550
  • • PrPMC / XMC form-factor
  • • Freescale® QorIQ® P2020 processor
  • • Xilinx Spartan®-6 LXT user-programmable FPGA
  • • One PCIe x2 on XMC*
  • • Three high-speed links on XMC*
  • • Two GbE on front panel
  • • One USB 2.0 on XMC* or one USB 2.0 on front-panel
  • • One UART on front-panel
  • • 8 general-purpose LEDs on front panel
MFCC-8446
  • • PrPMC form-factor
  • • IBM PowerPC® 750CXe/750FX processor
  • • Xilinx Virtex-E 600 user-programmable FPGA
AGM-7460
  • • VNX-standard-based small form factor
  • • Extended Range Conduction-Cooled ruggedization (-40°C to +85°C)
  • • AMD G-Series SoC
  • • DisplayPort
  • • PCIe Gen2
  • • Gigabit Ethernet
  • • SATA II
  • • USB 2.0, 3.0
  • • 32 GB FLASH
RIO5-8088
  • • 6U VXS form-factor (VITA 41)
  • • Single or dual Freescale MPC8640D processors (with Altivec)
  • • Xilinx Virtex-6 LX130T user-programmable FPGA
  • • One Gigabit Ethernet switch
  • • Eight high-speed links on VXS-P0
  • • Two GbE on VME-P2
  • • Four GbE on front-panel
  • • Four UARTs on VME-P2
  • • Four UARTs on front-panel
RIO4-8077
  • • 6U VXS (VITA 41)
  • • Single or Dual Freescale MPC7448 processors
  • • Xilinx Virtex-II Pro VP30 FPGA
  • • Four high-speed links on VXS
  • • Six high-speed links on secondary XMC
  • • Two gigabit Ethernet ports on a private PCI bus
  • • Two onboard PMC slots (one with secondary XMC connector)
  • • Ultra-high-speed advanced memory subsystem (DDR2)
MODEL KEY FEATURES Image
MVME8110
  • • Freescale QorIQ P5010 1.2GHz
  • • Up to 4GB DDR3-1200 MHz ECC Memory
  • • 512KB MRAM
  • • 2PMC/XMC sites
  • • Embedded NAND Flash (8GB eMMC)
  • • Up to 3 USB 2.0 ports
  • • Up to 3 Ethernet ports
  • • Up to 5 Serial ports
  • • 2 GPIO
MVME8100
  • • Freescale QorIQ P5020 1.8/2.0GHz
  • • Up to 8GB DDR3-1333MHz ECC Memory
  • • 512KB FRAM
  • • 2 PMC/XMC sites
  • • Embedded NAND Flash (8GB eMMC)
  • • 2x4 PCIe or 2x4 SRIO connectivity to VXS backplane P0
  • • Up to 3 USB 2.0 ports
  • • Up to 5 Ethernet ports
  • • Up to 5 Serial ports
  • • 4 GPIO
  • • Extended Temperature and Conduction Cooled variants
MVME250x Series
  • • 800 MHz, 1.0 GHz or 1.2 GHz Freescale QorIQ P2010 and P2020 processors
  • • 1GB or 2GB DDR3-800, soldered down
  • • Three on-board Gigabit Ethernet interfaces (one front, one rear, one configurable by customer to front or rear)
  • • Five serial ports
  • • One USB 2.0 port
  • • One or two PCM/XMC site
  • • Optional rear transition module
  • • Hard drive mounting kit available
  • • Optional conformal coating
  • • Extended temperature (-40°C to +71°C) and rugged variants
MVME7100
  • • Up to 1.3 GHz system-on-chip Freescale MPC864xD with dual PowerPC® e600 processor cores, dual integrated memory controllers, DMA engine, PCI Express interface, Ethernet, and local I/O
  • • Extended temperature (-40°C to +71°C) and rugged board variants available
  • • Four Gigabit Ethernet ports
  • • Up to 2GB of DDR2 ECC memory, 128MB NOR flash and 2, 4 or 8GB NAND flash
  • • USB 2.0 controller for integrating cost-effective peripherals (commercial temperature only)
  • • 2eSST VMEbus protocol with 320MB/s transfer rate across the VMEbus
  • • Board support packages for VxWorks, LynxOS, and Linux
  • • Dual 33/66/100MHz PMC-X sites for expansion via industry standard modules with support for processor PMCs
  • • 8x PCI Express expansion connector for PMC-X and XMC expansion using Artesyn XMCspan
  • • MVME7216E direct-connect rear transition module (RTM) for I/O routing through rear of a VMEbus chassis
MVME4100
  • • 1.3 GHz system-on-chip Freescale MPC8548E with e500 processor core, double precision floating point operations, integrated memory controller, DMA engine, PCI-X and PCI Express interface, Ethernet, and local I/O
  • • Extended temperature (-40°C to +71°C)
  • • 2GB of DDR2 ECC memory, 128MB NOR flash and 4GB NAND flash
  • • 512KB of MRAM non-volatile memory
  • • Four Gigabit Ethernet ports
  • • Five serial ports
  • • USB 2.0 controller for integrating cost-effective peripherals (commercial temperature only)
  • • 2eSST VMEbus protocol with 320MB/s transfer rate across the VMEbus
  • • Board support packages for VxWorks and Linux
  • • Dual 33/66/100MHz PMC sites for expansion via industry standard modules with support for processor PMCs
  • • 8x PCI/PCI-X expansion connector for PMC/XMC expansion using Artesyn XMCspan carrier
  • • MVME7216E direct-connect rear transition module (RTM) for I/O routing through rear of VMEbus chassis
MVME6100
  • • 2eSST VMEbus protocol with 320MB/s transfer rate across the VMEbus
  • • MPC7457 PowerPC® processor running at up to 1.267 GHz
  • • 128-bit AltiVec coprocessor for parallel processing, ideal for data-intensive applications
  • • Up to 2GB of on-board DDR ECC memory and 128MB of flash memory for demanding applications
  • • Two 33/66/100 MHz PMC-X sites allow the addition of industry-standard, applicationspecific modules
  • • Dual Gigabit Ethernet interfaces for high performance networking
MVME5500
  • • MPC7457 PowerPC® processor at 1GHz
  • • 512KB of on-chip L2 cache and 2MB of L3 cache
  • • AltiVec coprocessor for high-performance computational applications
  • • Two banks of soldered flash memory (32MB and 8MB)
  • • Dual independent 64-bit PCI buses and PMC sites with a bus speed of up to 66 MHz
  • • Gigabit Ethernet interface plus an additional 10/100BaseTX Ethernet interface
  • • 64-bit PCI expansion mezzanine connector allowing up to four more PMCs
  • • I/O compatibility with MVME51xx family
  • • Support for processor PMCs (PrPMCs)
MVME3100
  • • System-on-chip Freescale MPC8540 with PowerPC® e500 processor core, integrated memory controller, DMA engine, PCI-X interface, Ethernet and local I/O
  • • Two Gigabit Ethernet ports plus an additional 10/100BaseTX port
  • • Up to 512MB of DDR333 ECC memory
  • • USB 2.0 and Serial ATA controllers for integrating cost-effective peripherals
  • • 2eSST VMEbus protocol offering interoperability with products such as the MVME6100 at higher bandwidths
  • • Board support packages for VxWorks, LynxOS, and Linux
  • • Dual 33/66/100MHz PMC-X sites for expansion via industry standard modules, support for processor PMCs and PMCspan
  • • MVME721 direct-connect rear transition module (RTM) for I/O routing through rear of compact VMEbus chassis
PMCspan
  • • Single-slot 6U VMEbus format
  • • PLX6150 PCI-to-PCI interface bridge
  • • Support for two single-wide or one double-wide PCI Mezzanine Card (PMC) per PMCspan
  • • Stacking capability
  • • Front-panel and/or P2 I/O
  • • Compliant with PCI local bus specification (revision 2.1)
  • • Injector/ejector handles per VME64 extensions
  • • Compatible with Artesyn's PowerPlus™ VME series
XMCspan
  • • Single-slot 6U VMEbus format
  • • PLX PEX8533 PCI Express 6-port switch
  • • Tundra Tsi384 PCI Express to PCI-X interface bridges
  • • Support for two single-wide, or one double-wide XMC or PMC per XMCspan
  • • Stacking capability
  • • Front-panel I/O
  • • Single 4-lane interface with P15 connector for XMCs
  • • Injector/ejector handles per VME64 extensions
  • • Compatible with Artesyn's MVME7100 and MVME4100 VMEbus SBCs
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