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AMC
Advanced Mezzanine Card
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QorIQ P40x0 Processor AMC, PCIe Gen 2
AMC718
The AMC718 is a Processor AMC (PrAMC) in a single module, mid size AdvancedMC™ (AMC) form factor based on the Freescale P4040 and P4080. The module follows the AMC.1 and AMC.2 specifications. The PCIe interface is configurable as Host or Agent mode and it interfaces as x8 or dual x4. The module has option for up to 16GBytes of DDR3 memory with ECC.
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Xeon E3-1125 Processor AMC, PCIe
AMC720
The AMC720 is a flexible processor AMC for general purpose processing. The AMC720 has quad-core Xeon and Linux support, it can act as system host and data processing engine. The dual front-panel GbE ports provide simple network connectivity, so while the unit is designed for embedded processing (i.e. typically without a monitor), it is straightforward to use with a virtual desktop on a remote PC/laptop for development and setup.
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Xeon E3 Processor AMC, 10/40GbE
AMC757
The AMC757 is a Processor AMC (PrAMC) in a single module, mid-sizeAdvancedMC (AMC) form factor based on the Intel® Xeon® Processor E3-1505M v6 (Kaby Lake) with CM238 PCH. The processor base frequency is 3.0 GHz with max turbo frequency of 4.0 GHz. The module follows the AMC.2 and AMC.3 specifications.
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Intel® 5th Generation Xeon Processor, AMC
AMC752
The AMC752 is a Processor AMC in a single module, mid-size based on the Intel® 5th generation Xeon (Broadwell). The efficient SoC design has low power consumption and integrated PCH technology. The module follows the AMC.1, AMC.2 and the AMC.3 specifications.
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Core I7 Processor AMC, 10/40GbE
AMC727
The AMC727 is a Processor AMC (PrAMC) in a single module, mid-size AdvancedMC (AMC) form factor based on the Intel® next generation CoreTM i7 Processor (Haswell) with QM87PCH.
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Tilera GX72 Processor AMC, 72 Core
AMC740
The AMC740 is ideal for packet filtering, intelligent networking, multimedia, video transcoding, cloud and other applications. The device includes 72 identical processor cores (tiles) interconnected with Tilera’s iMesh™ on-chip network. Each tile consists of a full-featured, 64-bit processor core as well as L1 and L2 cache and a non-blocking Terabit/sec switch. The high processing density and high internal bandwidth of the GX72CPU make it ideal for intensive computing tasks.
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Intel® Xeon® Processor E-2176M AMC, PCIe Gen3
AMC760
The AMC760 is a Processor AMC (PrAMC) in a single module, mid-size AdvancedMC (AMC) form factor based on the Intel® Xeon® Processor E-2176M (Coffee Lake) with CM246 PCH. The processor base frequency is 2.7 GHz with max turbo frequency of 4.4 GHz. The module follows AMC.1, AMC.2 and AMC.3 specifications.
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36x36 Cross Bar Switch (CBS)
AMC241
The AMC241 is an AMC form factor with a 36x36 CBS which allows any of the 20 lanes from the backplane to be routed to the front. Since the CBS is agnostic to the protocol, any protocol such as PCIe, SRIO, 40GbE, 10GbE, GbE, Aurora, etc. could be routed between the backplane and the front panel.
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PrAMC Based On QorIQ P5010/5020, SRIO
AMC714
The AMC714 is a Processor AMC (PrAMC) in a single module, mid-size AdvancedMCTM (AMC) form factor based on the Freescale P5010 (single core) and P5020 (dual core) processors. The module follows the AMC.2, AMC.3 and AMC.4 specifications.
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Rugged 3rd Gen MicroTCA Carrier Hub (MCH), 40GbE/PCIe Gen 3
UTC042
The VadaTech UTC042 is a rugged version of the UTC004 (the most feature-rich MCH on the market). The front I/O Dual Ethernet Ports have changed from 10G copper to the 1 Gb copper, all other I/Os match the UTC004. The management software is based on VadaTech’s robust Carrier Manager and Shelf Manager which have been deployed for years with proven results. The MCMC manages the Power Modules, Cooling Units, and up to 12 AMCs within the chassis. It also manages the optional PCIe Gen3, SRIO Gen2, 40GbE/10GbE or Crossbar Fat Pipe switches as well as the standard GbE with 1GbE uplink Base Channel switch.
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FMC Module
FMC1831
Sundance Multiprocessor Technology Ltd.
The FMC1831 is an FMC module designed to be compatible with AMC, VPX, PCI, PCIe, CompactPCI and PC/104 carriers. The module has two dual channel AD9361 transceivers with a maximum sampling frequency of 122.8 MHz over a bandwidth of 200 KHz to 56 MHz. A reference clock can be either externally supplied or be generated from an internal PLL. All input and output signals are connected via SSMC connectors for secure connectivity and signal integrity.
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Intel Xeon E3 Processor AMC, SRIO Gen2
AMC759
The AMC759 is a Processor AMC (PrAMC) in a single module, mid-size AdvancedMC (AMC) form factor based on the Intel® Xeon® Processor E3-1505M v6 (Kaby Lake) with CM238 PCH. The processor base frequency is 3.0 GHz with max turbo frequency of 4.0 GHz. The module follows the AMC.2, AMC.3 and AMC.4 specifications.
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QorIQ P2020 Processor AMC
AMC717
The AMC717 is a Processor AMC (PrAMC) in a single module, mid size AdvancedMC™ (AMC) form factor based on the Freescale P2020. The module follows the AMC.1, AMC.2 and the AMC.4 specifications. The module is ideal for data flow management within a chassis. The PCIe/SRIO interface is configurable as Host or Agent mode. The PCIe option runs as x4 while the SRIO can run as x4 or dual x1. The module has option for up to 4GBytes of DDR3 memory with ECC. It provides Dual GbE to the rear per AMC.2 specification and a single GbE to the front.
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2 or 4 channel BC/RT/MT FMC Module.
NES-FMC1553-4
Sundance Multiprocessor Technology Ltd.
The FMC specification was developed to enable FMC’s to be supported on a wide range of existing form factor including but not limited to: PCle, VME, CompactPCI, VXS, VPX, VPX-REDI, AdvanceTCA and AMC. Up to three FMC’s can be fitted on a 6U VPX carrier.
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QorIQ P5010/5020 Processor AMC, PCIe
AMC713
The AMC713 is a Processor AMC (PrAMC) in a single module, mid-size AdvancedMC (AMC) form factor based on the NXP P5010 (single core) or P5020 (dual core) processors. The unit provides dual x4 PCIe on Ports 4-7 and 8-11 per AMC.1 and the PCIe interface can be configured in Host or Agent mode.
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Cavium CN6880 Processor AMC
AMC738
The AMC738 utilizes the 32 Core Cavium Octeon II Processor that combines with a Xilinx V7 (XC7VX690T) FPGA to provide 100GbE via the CFP2 module. The CFP2 module could utilize 4 x 25 Gbps lanes or 10 x 10 Gbps lanes. The module follows the AMC.1, AMC.2 and AMC.4 specification. The FPGA has a single bank of 64-bit wide DDR3 memory.
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Graphics
Designed to meet the high performance and real-world graphics needs of military, industrial and telecom equipment manufacturers, VadaTech’s AdvancedMC (AMC) graphics modules feature specialized processors from ATI or Silicon Motion and offer DVI, VGA and HDMI options. Our portfolio ranges from very simple and cost-effective graphic interface modules to one of the fastest and most advanced, high-performance 2D and 3D graphics processors available for the AMC embedded market, as well as video driver modules.
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CN67XX Packet Processor, PrAMC Based
AMC735
The AMC735 is a 10-Gigabit Ethernet (10GbE) AdvancedMCTM (AMC) module which includes an on-board line rate multi-core packet processor based on Cavium CN67XX CPU. VadaTech offers this product in a mid size (full size optional) form factor compliant to the AMC.1 and AMC.2 specification, the AMC735 is based around the Cavium OCTEON CN67xx processor which has been specifically designed to intelligently process Ethernet packets at line-rate. The number of processor cores, speed grade, and amount of DDR3 memory is customizable based on customer needs.
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1 Channel, MIL-STD-1553, Dual Redundant, Transformer Coupled, Assisted Mode Capable (AMC)
FTA
MIL-STD-1553 is a military standard published by the United States Department of Defense that defines the mechanical, electrical, and functional characteristics of a serial data bus. It was originally designed for use with military avionics, but has also become commonly used in spacecraft On-Board-Data-Handling (OBDH) subsystems, both military and civil. It features a dual, redundant, balanced-line, physical layer; a (differential) network interface; time division multiplexing; half-duplex command/response protocol; and up to 31 remote terminals (devices).
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Processor AMC Based On QorIQ T4240
AMC702
The AMC702 is a Processor AMC (PrAMC) based on the Freescale QorIQ T4240 in a single module, mid-size AdvancedMC (AMC) form factor based on the AMC.2 and the AMC.4 specifications.
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QorIQ P5040 Processor AMC, PCIe
AMC704
The AMC704 is a Processor AMC (PrAMC) in a single module, mid-size AdvancedMC (AMC) form factor based on the NXP P5040 (quad core) processors. The unit provides dual x4 PCIe on Ports 4-7 and 8-11 per AMC.1 and the PCIe interface can be configured in Host or Agent mode.
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8 Port PCI Express
PEX 8509
The ExpressLane™ PEX 8509 8-lane, 8-port switch product offers PCI Express switching capability conforming to the PCI Express Specification r1.1. This device with an equal number of lanes and ports can be used in a wide variety of applications including control planes in the communications and networking markets, embedded systems, multi-function printers, network interface adapters, medical imaging systems, industrial-control systems and AMC cards.
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Cavium CN63xx Packet Processor AMC
AMC730
The AMC730 is a a 10-Gigabit Ethernet (10GbE) AdvancedMCTM(AMC) module which includes an on-board line rate multi-core packet processor based on Cavium CN63XX CPU. VadaTech offers this product in a mid size (full size optional) form factor with the AMC.1, AMC.2 and AMC.4 specifications. The AMC730 is based around the Cavium OCTEON CN63xx processor which has been specifically designed to intelligently process Ethernet packets at line rate.The processor can be loaded via the PCIe/SRIO interface or via an optional flash memory. The number of processor cores, speed grade, and amount of DDR3 memory is customizable based on customer needs. The module has 2GB of HFA for pattern matching for deep packet inspection, etc. The SDK for the processor as well as additional software stacks are available from Cavium or third party.
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2 Channels, MIL-STD-1553, Dual Redundant, Direct Coupled, Assisted Mode Capable (AMC)
FTE
MIL-STD-1553 is a military standard published by the United States Department of Defense that defines the mechanical, electrical, and functional characteristics of a serial data bus. It was originally designed for use with military avionics, but has also become commonly used in spacecraft On-Board-Data-Handling (OBDH) subsystems, both military and civil. It features a dual, redundant, balanced-line, physical layer; a (differential) network interface; time division multiplexing; half-duplex command/response protocol; and up to 31 remote terminals (devices).
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Processor AMC Based On QorIQ T4241, PCIe
AMC703
The AMC703 is a Processor AMC (PrAMC) based on the Freescale QorIQ T4241 in a single-module, mid-size AdvancedMCTM (AMC) form factor based on AMC.1, AMC.2 and AMC.3 specifications.
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Xeon E5 Processor AMC, 40 GbE, PinoutPlus™
AMC751
The AMC751 is a Processor AMC (PrAMC) in a double module, full-size AdvancedMC (AMC) form factor based on the Intel® Xeon E5-2648L v4 which has 14 Cores @ 1.8 GHz. The module follows the AMC.2 and AMC.3 specifications.
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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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MTCA.3 Conduction Cooled MicroTCA Carrier Hub (MCH)
UTC041
The VadaTech UTC041 is the most feature-rich conduction cooled MicroTCA Carrier Hub (MCH) on the market. Its management software is based on VadaTech’s robust Carrier Manager and Shelf Manager which have been deployed for years with proven results. The MCMC manages the Power Modules, Cooling Units, and up to 12 AMCs within the chassis. It also manages PCIe Gen3 or 10GbE XAUI fabric switch as well as the standard GbE with 10GbE uplink Base Channel switch.
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2 Channels, MIL-STD-1553, Dual Redundant, Transformer Coupled, Assisted Mode Capable (AMC)
FTB
MIL-STD-1553 is a military standard published by the United States Department of Defense that defines the mechanical, electrical, and functional characteristics of a serial data bus. It was originally designed for use with military avionics, but has also become commonly used in spacecraft On-Board-Data-Handling (OBDH) subsystems, both military and civil. It features a dual, redundant, balanced-line, physical layer; a (differential) network interface; time division multiplexing; half-duplex command/response protocol; and up to 31 remote terminals (devices).