AMC-9210 AdvancedMC Module

- AMC.0 R2.0 mid-size and full-size AdvancedMC module
- Cavium Networks high performance OCTEON Plus CN58xx family of packet processors
- 4x GbE (AMC.2) plus x4 PCI Express (AMC.1) to carrier
- 4x GbE small form factor plug-in (SFP) interfaces on front panel
http://www.emersonnetworkpowerembeddedcomputing.com/amc_9210_advancedmc_module/305
ATCA-9305 Many-Core Processor Blade

- Two Cavium OCTEON 16-core CN5860 processors operating up to 800 MHz
- Freescale MPC8548 PowerQuicc III integrated communications processor operating at 1 GHz
- Hardware acceleration with thread pinning, security, de-compression, regexp, packet queuing and scheduling functions
- Broadcom BCM56802 10 Gigabit Ethernet (GbE) multilayer switch
http://www.emersonnetworkpowerembeddedcomputing.com/atca_9305_advancedtca_1_and_10_gigabit_processor_blade/280
MVME7100 Multi-core VMEbus SBC

- System-on-chip Freescale MPC8641D with dual PowerPC® e600 processor cores, dual integrated memory controllers, DMA engine,
- PCI Express interface, Ethernet, and local I/O
- Four Gigabit Ethernet ports
- Up to 2GB of DDR2 ECC memory, 128MB NOR flash and 4 or 8GB NAND flash
http://www.emersonnetworkpowerembeddedcomputing.com/mvme7100_vme_with_system_on_chip_freescale_mpc8641d_processor/76
ATCA-7350 Quad-Core Processor Blade

- High performance processor blade with SMP support
- Two, Quad-Core Intel® Xeon® (2.13 GHz) LV processors
- Up to 32GB main memory
- Multiple software packages including operating system
http://www.emersonnetworkpowerembeddedcomputing.com/atca_7350_atca_intel_based_processing_blade/304
Centellis™ 4440 AdvancedTCA Platform Core

- Emerson’s first 40GbE ATCA based platform core
- Best-in-class thermal characteristics
- Fabric interface bandwidth options for 1/10/40GbE
- 14-slot, 13U, 19” form factor
- Designed for CP-TA B.4 thermal compliance
- Combined switch/control blades to maximize billable application slots
- Designed for NEBS/ETSI compliance
http://www.emersonnetworkpowerembeddedcomputing.com/centellis_platform_core/44
Avantellis™ Middleware
Avantellis™ Middleware is a comprehensive, fully tested and validated commercial distribution based on the OpenSAF™ High Availability Middleware project (www.opensaf.org). It is portable, road mapped, and fully supported by Emerson Network Power Embedded Computing 24x7 global technical support. Emerson backs up this offering of Avantellis Middleware with a complete suite of services enabling customers meet critical time-to-market needs. The Avantellis Middleware distribution is designed to be portable, enabling its usage across various bladed architectures. The combination of Service Availability Forum™ standards compliance, open source licensing under LGPL 2.1, adaptability to multiple hardware architectures, full validation, and support by Emerson add up to the most compelling offering of high availability base platform middleware in the industry.
As an open source solution, Avantellis Middleware alleviates vendor lock-in concerns and allows customers to customize the product if desired. Emerson’s exhaustive testing provides the basis for true 5NINES capability. Emerson’s experience in deploying SA Forumcompliant
solutions in telecom markets is evidence of a fieldhardened solution.
Key Benefits
- Deploy your high availability application quickly and efficiently with reduced time to market.
- Reduce costs by eliminating the burden of building your own high availability base platform middleware or even maintaining your own distribution based on OpenSAF.
- Orient your resources to work on the “revenue producing” application and not the non-differentiating high availability middleware.
- Dedicated 24x7 support on open source based product when you need it.
http://www.emersonnetworkpowerembeddedcomputing.com/avantellis_middleware/313
Avantellis™ Middleware Support Services
- OpenSAF — High availability base platform middleware that is SA Forum AIS compliant
- Platform Adaptation Interface (PAI) and Reference Implementation of Target Platform Services (TPS)
- Hardware Platform Management using HPI