R7A-200 ATCA Dual Netlogic XLR Packet Processor Hub or Full Mesh Node Blade
The JumpGen Systems R7A-200 Dual ATCA Netlogic XLR Packet Processor Node/Hub Card is a high-performance network processor AdvancedTCA™ card designed for use in star or full mesh ATCA systems. Featuring Fulcrum low latency switches and two of the the latest Netlogic XLR732 eight core processors or XLR716 quad core processors with up to a 1.2GHz clock rate, the R7A-200 can be delivered with up to 8GB of dual-channel 72-bit wide DDR2 ECC memory running at 800 MHz per XLR processor. The Netlogic XLR732 and Netlogic XLR716 are multi-core, multi-threaded MIPS64® processors with a rich set of Integrated I/O. The R7A-200 is compliant with PICMG 3.0 Revision 3.0 single slot form factor standards.
The Netlogic XLR732 also provides up to 10 Gbps of bulk encryption (DES / 3DES, AES 128/192/256, ARC4 and others) via 4 high-speed crypto cores and integrated security acceleration (RSA / DH Exponentiation for SSL / IPSec). The Netlogic XLR716 provides up to 5 Gbps of bulk encryption. This makes the R7A-200 ideal for security applications in wireless and wireline access points, switches and routers, radio network controllers, media gateways and video processing applications.
The R7A-200 will support the following configuration build options
- Processor Options
- XLR732 or XLR716
- CPU core speeds of 800MHz, 950MHz, 1.0GHz, 1.2GHz
- I/O Options
- Hub Board – Supporting 13 10GigE fabric slots, 13 1 GigE base slots plus 2 GigE to Redundant Shelf Managers, and RTM featuring 1x 10GigE and 4x 1GigE.
- Node Board – Supporting full-mesh 10GigE fabric slots (13 slots of full mesh; also useable a dual-star node board), 2 base ports, and RTM featuring 2x 10GigE and 10x 1GigE.
Download Product Brief PDF version
Features:
Network Processing Units (NPUs) |
- Netlogic XLR732 Processor Family featuring eight 64 bit Processing Cores
- Up to 1.2 GHz with 2MB L2 cache
- Up to 8GB of DDR2 memory w/ ECC on dual-channel x72 bus per XLR732
- Autonomous Security Acceleration Engine® (SAE) @ 10 Gbps
- Netlogic XLR716 Processor Family featuring four 64 bit Processing Cores
- Up to 1.2 GHz with 1MB L2 cache
- Up to 8GB of DDR2 memory w/ ECC on dual-channel x72 bus per XLR732
- Autonomous Security Acceleration Engine® (SAE) @ 5 Gbps
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| Management Processor |
- Intel EP80579 Integrated Processor
- Connected to two serial ports of each XLR for management
- Connected to both 10G and 1G Ethernet switches
- Connected to IPMC
- Controls Base Switch MUX to direct switch ports to base switch or RTM
- Interfaces via I2C with all SFP and SFP+ modules
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| I/O Capabilities |
- Front panel SFP+ 10GigE sites from 10Gbps Switch (5)
- Front panel 10/100/1000Base-T RJ45 to 1Gbps Switch (1)
- Front panel 10/100/1000Base-T RJ45, Serial console and USB from Management Processor
- RTM Support for 10/100/1000 SFP modules (10)
- MUX Controlled at runtime via EP80579 Management CPU
- I2C Ports of SFP modules connected to EP80579 Management CPU
- 10GigE and 1GigE base and fabric support
- Compliant to PICMG 3.1 Revision 1.0 (Ethernet for ATCA Systems)
- Useable for 14 slot chassis as a hub board
- Useable as a node board in a dual-star fabric
- Useable as a node board in a full-mesh fabric up to 14 slots
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| Clocks |
- ATCA backplane Telco Clock Input
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| Mechanical |
- Standard single-slot ATCA form factor
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| Management |
- PICMG 3.0 Revision 3.0 compliant IPMI Management
- Fulcrum “ControlPoint” switch management
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| LEDs |
- Mandatory PICMG 3.0 Revision 3.0 LEDs, including
- Blue hot-swap
- Red, Yellow, and Green (controlled from IPMC)
- Each RJ-45 has integrated Green Link and Yellow Activity LEDs
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| Environmental |
- Operating temperature range: 0 to 55 °C
- Humidity: 0 to 95% (non-condensing)
- Typical power consumption: 180W
- Worst-case power consumption:
- 200W w/ 1.0GHz Netlogic CPU
- 250W w/ 1.2GHz Netlogic CPU
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| Regulatory |
- Designed and manufactured to meet the following requirements
- FCC Class A
- CE
- IEC 60950
- NEBS Level 3
- Company will get certifications as required to meet specific customer requirements
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Block Diagram:
I2C Topology Diagram: