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Tx/Rx SignalBlade
This ATCA compatible test card offers the flexibility to verify the performance of Advanced TCA fabric and base channels. The set of four Transmit pairs and four Receive pairs allows access to a full channel's eight pairs for backplane path characterization. The card includes a HM-ZD connector segment for access to the backplane and edge-launch SMA connectors for ease of test cable attachment. DC blocking capacitors are included on the receive pairs as required by Advanced TCA.
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ATCA CO2 AC-DC 2 Slot 3U
The AdvancedTCA® CO2, 2-slot chassis, AC-DC version allows to build a dedicated application in a very limited rack space.
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ATCA CO6 DC 6 Slot 5U
The AdvancedTCA® CO6, 6-slot chassis, DC version is dedicated for applications where available space is limited.
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ATCA I/O Rear Transition Module (RTM)
ART001
The ART001 is an I/O expansion ATCA Rear Transition Module (ARTM) that provides GbE, 10 GbE, PCIe and Management I/O for the front blade. The module is designed to mate with any ATCA Carrier. ART001 provides PCIe x8 access via an iPASS connector to the rear. The GbE rear access is provided via six SFP ports and five RJ-45 ports. The module has dual 10 GbE PHY which mates to the host via the zone 3 connector and provides dual SFP+ to the rear.
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AdvancedTCA, Type 11A, 3U 19" Horizontal, AC
11A02FJB38Y4HGBX
Elma's ATCA, AC, 3U horizontal enclosure with backplane, and shelf mgmt. options. Pluggable and redundant fan trays, PEMs and shelf managers for availability (99.999%). Optimized via backplane signal integrity studies and chassis thermal simulation.
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AdvancedTCA, Type 11A, 5U 19" Horizontal, DC
11A06FJB58Y4HMXX
Elma's ATCA, DC, 5U horizontal enclosure with backplane, and shelf mgmt. options. Pluggable and redundant fan trays, PEMs and shelf managers for availability (99.999%). Optimized via backplane signal integrity studies and chassis thermal simulation.
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ATCA CO5 AC 5 Slot 5U
The AdvancedTCA® CO5, 5-slot chassis, AC version combines a compact design with high power and high data throughput.
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Dual Intel® Xeon® E5-2600 v3 Family 40G Ethernet AdvancedTCA® Processor Blade
aTCA-9710
- Two Intel® Xeon® processor E5-2600 v3 family (12C/24T)- 16 memory sockets support DDR4-2133 REG/ECC VLP RDIMM up to 256 GB- Intel® C612 PCH- Dual Intel® XL710-AM2 40GBASE-KR4 Fabric Interface channels- Support Intel® DPDK and Node Manager 3.0
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Rugged Blade Processor W/ Dual Xeon E5
ATC126
The ATC126 is a high performance ATCA processor blade featuring dual 14-core Intel® Xeon® processor (E5-2658 v4, E5-2680 v4, E5-2648L, 2618L, 2620 or 2630 v4), with up to eight banks of 256 GB DDR4 memory with ECC. Versatile connectivity includes two 10/40GbE Fabric Interfaces, dual GbE Base Interfaces, dual front panel GbE egress Ports, front panel dual RS-232 and USB 3.0/2.0 Ports and front panel DVI-I connector.
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14-Slot Custom Orthogonal System
ATCA System Orthogonal
14 slot custom system is utilizing an orthogonal architecture to deliver an unprecedented switching capacity for a data center application.
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AdvancedTCA® Carrier Blade with 4x Intel® Xeon® Processor E3-1515M v5 COM Express Modules and FM10420 Multi-Host Controller
aTCA-9400
- 4x COM Express Type 6 module slots supporting ADLINK Express-SL/SLE with Xeon® Processor E3-1515M v5 (45W)- Integrated Intel® GT4e GPU providing high-performance H.264/H.265 transcoding- COMe modules connected by Intel® Ethernet Multi-host Controller FM10420, supporting up to 25Gbps Ethernet bandwidth between CPUs- 2x 10G SFP+, 4x 1G RJ-45 Ethernet on front panel- 2x 10G to Fabric channels, 2x1G to Base channels
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Embedded Boards
Elma offers embedded computing board level products, including single board computers, mass storage, Ethernet and PCIe switches, FPGAs and custom I/O solutions. Our focus is to provide proven technology based on standard architectures like VME, VPX, CPCI, ATCA, and COM-Express as well as other standard and custom small form factors. We partner with leading board manufacturers.
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MTCA.4 Power Supply
To match the requirements of the next generation of “carrier grade” communication equipment the PCI Industrial Computer Manufacturers Group PICMG created in 2002 a new standard AdvancedTCA / ATCA. The ATCA crate backplanes are based mainly on 48V industrial power supplies. From this form factor evolve the Advanced Mezzanine Module carrier card AMC form factors defined in AMC.3 in types of single or double width.
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Serial Bus Buffers, Extenders, and Accelerators
The Analog Devices family of I2C solutions support hot swappable, 2-wire bidirectional bus buffers to allow I/O card insertion into a live backplane without corruption of the data and clock busses. Additional supported 2-wire buses include SMBus, PMBus, the ATCA intelligent platform management bus (IPMB), and the HDMI DDC bus. I2C/SMBus Accelerators improve bus transitions to allows multiple device connections or a longer, more capacitive interconnect, without compromising slew rates or bus performance. ADI's software-programmable and pin-selectable I2C multiplexers help resolve I2C address limitations, increase fan-in or fan-out, and integrate bus buffers and rise time accelerators for an all-in-one solution. Resistor configurable I2C address translators can be configured with over 100 unique slave addresses to allow multiple slave devices with the same address to coexist on the same bus.
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Digital and Serial I/O
VadaTech’s wide range of ATCA Rear Transition Modules (RTMs) and MicroTCA I/O AMCs make it easier to integrate these standards-based building block systems into your network or application.
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10 Gigabit Ethernet AdvancedTCA® Fabric Interface Switch Blade
aTCA-3430
The aTCA-3430 is a high performance 10G Fabric switch blade for AdvancedTCAR platforms. This product is ideal for bandwidth intensive telecom applications such as wireless access controllers, DPI/security network, IPTV, IP multimedia subsystems, RNC/BSC, broadband access/bearer networks, data centers, and LTE/4G network applications. The aTCA-3430 provides 10GbE hub-to-node connectivity and integrated switch silicon that supports load balancing, priority queues, packet classification, and flow control to enable strict bandwidth management for implemented applications.
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ATCA 5U 16 Slot Mesh
1900001495-0000
The 5U 16-slot ATCA backplane is a Mesh, compliant to the PICMG 3.0 Rev 3.0 specification. Elma Bustronic’s ATCA backplanes have been simulated and characterized by our signal integrity lab to optimize performance.
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System Architectures
Tracewell has extensive experience designing and manufacturing systems based on standard architectures including VPX, VXS, VME, VME64x, VXI, ATCA, MicroTCA, and CPCI. The Tracewell System Architecture (SA) products, based on standard, commercial technologies can be used in a wide variety of commercial and military applications including: battlefield command & control systems, ground and flight sensor control systems, vehicle navigation controls, and medical imaging devices.
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ThermalBlade
This ATCA compatible design offers the flexibility to verify the power and thermal characteristics of your Advanced TCA chassis, logic cards and backplane designs. Emulating typical application component heights and features, airflow resistance and enclosure power dissipation can be evaluated and analyzed. A variety of power conditions can be selected and controlled independently to meet your design needs. Maximum sustainable watts are 450 with three switches turned on. Watts are dissipated throughout the entire ThermalBlade equally.
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40 Gigabit Ethernet AdvancedTCA® Fabric Interface Switch Blade
aTCA-3710
The aTCA-3710 is a high performance, high bandwidth, 40G Fabric switch blade for AdvancedTCA® platforms. This product is ideal for bandwidth intensive telecom applications such as wireless access controller, DPI/security network, IPTV, IP multimedia subsystem, RNC/BSC, broadband access/bearer network, data center, and LTE/4G network applications. The aTCA-3710 provides 40GbE hub-to-node connectivity and integrated switch silicon that supports load balancing, priority queues, packet classification, and flow control to enable strict bandwidth management for implemented applications.



















