Whenever your system needs to communicate COMMUNICATE WITH N.A.T. FMC. backplane-viewer. SRIO Gen 2 SFP+ test. redundancy ADSP-8/16.
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1 - innovation in communication Whenever your system needs to communicate COMMUNICATE WITH N.A.T. MicroTCA research JTAG FPGA deep packet inspection ARRIA10 MPC8569 extender NATIVE-Starter STM1 Starter-kits ISO9001:2015 packet processing hot-swap QorIQ-P4080 5G Massive MIMO remote SDR SRIO Gen 2 NATIVE high-speed 32Gb/s PCIe Gen3 SRIO Gen 2 Ultrascale MTCA energy transportation MicroTCA Chassis management software 8-core PPC SDH system management measurement failure detection and isolation cooling management NAMC-ODSP-M TDM Germany NAT-InnoVationEnabler E3 ATM-IP communication IPMI Bonn ISDN MTP2 ATCA MTP3 DS3 8E1/T1 P5020 OC-12 IP XAUI 512 HDLC TCP/IP PICMG system integration OC-3 medical turn-key solutions ZYNQ AMC SS7 backplane-viewer redundancy ADSP-8/16 defense P2020 FMC test NATview chassis SFP+ STM4 QorIQ-P5020 P1020 NAMC-8569-Family Advanced Mezzanine Card EtherCAT systems digital living PowerQuiccIII P3041 NAMC-QorIQ-Family Serial RapidIO switch aerospace PCI Express i-tdm power budgeting NAT-MCH industrial automation ruggedized scalability P4080 PCI Express Gen 3 xtca industrial controls board-level products Made in Germany NAMC-ODSP-W JSM nateurope.com The MicroTCA Concept VII by N.A.T. The expert of high performance connectivity products for data and telecommunication solutions.
2 ProcessorAMCs NAMC-8569-CPU Multi-service, low cost, low power, general purpose PrAMC, addressing highperformance broadband access equipment including 3G/WiMAX/LTE base stations, radio network controllers and gateways in mid- form factor. GbE, RS232, USB 2x GbE and either of the following combinations: SRIO x4, PCIe x4, 2x SRIO x1, PCIe x1 and SRIO x1 PowerQUICC III MPC8569 (1,3 GHz) Lattice FPGA NAMC-QorIQ-P204x Powerful packet processing engine with four cores, built on Power Architecture technology. The NAMC-QorIQ-P2040 operating at up to 1.2 GHz and the NAMC-QorIQ-P2041 at up to 1.5 GHz in mid- form factor designated for today s packet oriented network applications. fat pipe: PCIe, SRIO or XAUI (P2041 only) QorIQ P2040 QorIQ P2041 Lattice ECP3 NAMC-QorIQ-P3041 Powerful packet processing engine with four cores, built on Power Architecture technology, operating at up to 1.5GHz in mid- form factor, designated for today s packet oriented network applications. fat pipe: PCIe, SRIO or XAUI QorIQ P3041 Lattice ECP3 Chassis and Power Modules NATIVE-mini x 43.0 mm set-top, stackable depth: mm 2 single full- emch integrated VAC, 150W output with on-off-switch cooling unit 5 integrated fans direct fabric connections except for 1GbE 1GbE to emch (provides uplink at front-panel) NATIVE-C1 1U 19 rack-mounted, depth: mm 6 mid- AMCs 1 full- MCH for fat pipe support VAC, 600W output, front pluggable, front pluggable +24VDC, 300W or 600W output, front pluggable 2 redundant hot-swap fan trays single star base fabric and fat pipe, NATIVE-C2 2U 19 rack-mounted, depth: mm 12 mid- AMCs, horizontally-mounted 2 full- MCHs for fat pipe support 2 power modules VAC, 600W output, front pluggable - 48VDC, 420W or 840W output, front pluggable +24VDC, 300W or 600W output, front pluggable 2 redundant hot-swap fan trays dual star base fabric and fat pipe, Line Interface Cards NAMC-SDH SDH line interface for STM-1 or STM-4 SDH/ SONET providing add/drop functionality at DS0 and subrate level including TDM crossbar and I-TDM interworking and optional data handling by onboard Kintex-7 FPGA. 4x OC-3 or 2x OC12 (2 nd OC12 for backup) 2 x GbE (base fabric), 2 x GbE or 1 x XAUI (fat pipe) add/drop multiplexer TDM cross bar TDM-to-iTDM interworking Xilinx Kintex-7 for data processing optional up to 8000 HDLC controller NAMC-8569-xE1/T1 Signalling processing engine providing 8 or 16 E1/T1 line interfaces including TDM cross connect and I-TDM interworking in mid- or full- form factor. 8 E1/T1 (mid-) or 16 E1/T1 (full-) 2x GbE and either of the following combinations: SRIO x4, PCIe x4, 2x SRIO x1, PCIe x1 and SRIO x1, IPMI TDM cross connection, TDM to I-TDM interworking PowerQUICC III MPC8569 Firmware: ISDN, SS7 NAMC-xE1/T1 Cost efficient AMC providing 8 or 16 E1/T1 line interfaces including TDM cross connect and I-TDM interworking in mid- or full- form factor. 8 E1/T1 (mid-) or 16 E1/T1 (full-) 2x GbE, and optional PCIe TDM cross connection, TDM to I-TDM interworking
3 NAMC-QorIQ-P4080 NAMC-QorIQ-P4080-V6 Powerful octal-core packet processing engine built on eight Power Architecture e500mc cores - operating at frequencies up to 1.5 GHz in mid- form factor, designated for applications requiring extensive multiprocessing resources optionally combined with a free programmable data path engine. XAUI (SFP+), 1x GbE, 1x USB, 1x RS232 fat pipe: PCIe, SRIO, or XAUI base fabric: 2x GbE QorIQ P4080 Xilinx Virtex-6 FPGA or Lattice ECP3 NAMC-QorIQ-P5020 NAMC-QorIQ-P5020-V6 Powerful dual-core packet processing engine with the 64-bit, e5500 core built on Power Architecture technology, frequencies scalable to 2.2 GHz designated for today s packet oriented applications like LTE or VoIP, optionally with a high-performance customizable FPGA. backplane Interface fat pipe: PCIe, SRIO, or XAUI QorIQ P5020 Xilinx Virtex-6 FPGA or Lattice ECP3 Extenders NAMC-EXT-RTM/-PS NAMC-EXT/-PS Both extender kits provide a versatile tool to speed up the development process and to troubleshoot AMC cards within an ATCA or MTCA environment. features wire bridge for management and payload power measurements test pads for backplane and RTM signals pads to connect JTAG equipment variants NAMC-EXT-RTM-PS and NAMC-EXT-PS offer an additional 3.3V for standalone operation of AMC Chassis and Power Modules NATIVE-R5 5U table top, depth: mm 7 double AMC + µrtms: 6 mid-, 1 full- 1 full- MCH + RTM VAC, 600W output 4 fans for AMCs and 2 fans for µrtms single star base fabric and fat pipe, p2p connections at AMC ports (MTCA.4) NATIVE-R9 9U 19 rack-mounted, depth: mm 12 single/double width mid- AMCs + µrtms 2 MCH + RTM JTAG switch module (JSM) up to 4 power modules VAC, 600W or 1000W output, or 2 redundant hot-swap fan trays for AMCs + µrtms dual star base fabric and fat pipe, p2p connections at AMC ports (MTCA.4) NATIVE-R2 2U 19 rack-mounted, depth: mm 5 double width mid- AMCs + µrtms 1 double full- AMC 1 double full- MCH+RTM 1 double or single full- PM 1 mid- JTAG switch module (JSM) VAC, 600W output single push base + fat pipe fabric (AMC ports #0+1, #4-7 + #8-11 to MCH) p2p connections at AMC ports (MTCA.4) Carriers NAMC-PMC A single-width, mid- or full- AMC carrier for one PMC module. usage of standard off-the-shelf PMC boards in MTCA environments deployment of a rich variety of available PMC modules extension of PMC product life cycle JTAG NAT-JSM Flexible testing and diagnostic JTAG switch module to accelerate design, prototyping and operation of MicroTCA (MTCA) embedded computing systems. single-width AMC module JTAG Header: Xilinx compatible 14-pin programming header at front panel Mini-USB connector TCP/IP Backplane pin-out adaptable by onboard FPGA power converter +5V to +12V current draw not more than 200mA subsystem processor: Altera Cyclone III FPGA Media Processing NAMC-ODSP-M Multi-purpose media resource board in mid- form factor for video and voice acceleration and transcoding with onboard CPU and 10GbE switch. Status LEDs: 8 DSPs, 2x GbE, 2x XAUI, CPU, 2x user 2x GbE, 2x XAUI, TCLKA-D, IPMI 8 DSP (OCT2224M) 512MB DRAM per DSP Xilinx Kintex-7 incl. MicroBlaze core (Linux) GbE/XAUI switch (VSC7448) Stratum 3 PLL
4 Power Modules NAT-PM-DC420 / DC840 / DC300-LV / DC600-LV High density, high efficiency power modules (PM) for MicroTCA applications. Supplying 840W is the market s most efficient PM to run today s complex communication systems using latest processor generations with large memory capacity and an increased number of Advanced Mezzanine Cards (AMC). MicroTCA low-voltage DC/DC Power Modules providing 300W or 600W to complement the extensive N.A.T. PM-family. full (6 HP), single width 16 channels of 6.6 A max and 180 ma max. optical load indicator redundancy support of N+1 and 2+2, load sharing (DC420 / DC840) N+1 (DC300-LV / DC600-LV) output power: 420W (single brick) or 840W (dual brick) / 300W / 600W input power: dual -48VDC (DC420/DC840) / dual +24V (DC300-LV/DC600-LV) supports field upgrades through HPM (DC420 / DC840) Intelligent Security System output overvoltage protection input undervoltage shutdown over temperature protection output short circuit protection built according to IEC/EN/UL safety standard programmable current limiting threshold per output channel (DC420 / DC840) NAMC-ARRIA10-FMC ARM/FPGA board with FMC-HPC slot enables you to create a wide variety of single-slot solutions for computing, data acquisition, SDR, image processing and much more. HPC FMC slot USB-to-JTAG interface 2x GbE, SATA and SAS and either of the following combinations: x8 PCIe Gen3, dual x4 PCIe Gen3 or dual x4 SRIO Gen2 2 x 4 LVDS, 8x MLVDS trigger lines any combinations of PCIe, SRIO and XAUI on request Intel ARRIA 10 GX or SX FPGA Dual-core ARM Cortex A9 processor, up to 1.5 GHz NAT-PM-AC600 / AC600D / AC1000 N.A.T. power modules offer power conversion from a single VAC input source to 16 independent 12V channels for payload power and 3.3V for management power. full (6 HP), single or double width output power: 600W (AC) / 1000W (AC) optical load indicator redundancy support of N+1 and channels of max. 6.6 A / 180 ma max. support of 12 AMCs, 2 CUs, 2 MCHs with individual control of management and payload power input power: single VAC supports field upgrades through HPM Shared Management Power (SMP) Intelligent Security System output overvoltage and -temperature protection input undervoltage shutdown output short circuit protection IEC/EN/UL safety standard compliant programmable current limiting threshold per output channel NAMC-Xilinx-FMC AMC module featuring a Xilinx ZYNQ or Xilinx Ultrascale/+ FPGA and an FPGA mezzanine card (FMC) slot. It is designed for data acquisition, processing applications and computing nodes. The ZYNQ-7000 or ZYNQ-Ultrascale/+ FPGA provides the software programmability of an ARM -based processor with the hardware programmability of an FPGA, enabling key analytics and hardware acceleration while integrating CPU, DSP, ASSP, and mixed signal functionality on a single device. mid-, single width dual UART-USB to ARM core and MMC/USB-JTAG other connection depend on FMC module used full AMC TCLKA-D and FCLKA connectivity dual 1GbE connect to Port 0 and Port 1 dual x4 (x8 for PCIe) to Fat-Pipe-Region Ports 4-7 and Ports 8-11 any combination of PCIe, SRIO, XAUI (on request) extended: Ports routed to FPGA (2 x 4 LVDS) Xilinx ZYNQ-7000 XC7Z045/7Z100 FPGA with dual banks of DDR3 memory (1 GB 64-bit, 512 MB 32-bit) 256 MB NOR quad SPI flash memory or ZU11EG/ZU17EG/ZU19EG with 8GB DDR4 PS, 8GB DDR4 FPGA, 4GB DDR4 FPGA (x32), 144Mb QDR IV SRAM, 2x File Flash: FPGA /PS high pin-count FMC slot complies with VITA 57.1 MicroSD card slot AMC.1, AMC.2, AMC.3 and IPMI 2.0 compliant JTAG access over backplane (Zynq and Ultra scale/+) and over USB interface at front panel (only Ultrascale/+) SDR Baseband Processing 5G, LTE, UMTS, SDR NAMC-ODSP-W Extremely high integrated AMC for SDR (Software Defined Radio), including RF frontend, baseband-processing and network layer processing resources. AMC mid-, single width form factor 4x antenna Rx / 4x antenna Tx front GPS antenna input to internal GPS module alternative Dual SFP Connector on Faceplate for CPRI Link to external RF backplane port 2/3 for CPRI link to external RF backplane port 4-7 for RF data exchange via 10G Ethernet or CPRI 4x DSP Octasic OCT2224W 4x RF-SoC Analog Devices AD936x on separate PCB alternative RF Interface FPGA Xilinx Kintex Ultrascale (KU035-KU095) or Ultrascale+ (KU11P/KU15P) 2x NXP LS1043 for L2/L3 processing GbE Switch Flexible Clock Subsystem IPMI based board supervision NAMC-SDR Software defined radio (SDR) platform for developing, prototyping and testing 5G MIMO base station transceiver (BTS) systems and proprietary or standard implementations of UMTS, LTE / LTE-Advanced systems, as well as a variety of applications ranging from cognitive radios to resilient security networks. single full- AMC 4x 10 Gbps optical baseband interface with QSFP connector up to 8 antenna interfaces 2x CLK 1x 1Gb Ethernet interface status LED 2 x GbE, 1 x XAUI, TCLK A-D, IPMI stacked digital interface card and radio frequency front-end 2, 4, 6 or 8 transceivers for Massive MIMO CPRI compression technology enables up to 3x effective bandwidth up to 4x AD9361 ZYNQ XC7 Z045 DDR3 SDRAM Flash SD card
5 MicroTCA ENERGY MEDICAL COMMUNICATION AUTOMATION INFOTAINMENT TRANSPORTATION SOFTWARE SERVICES DEFENSE& AEROSPACE Let Your Application benefit open standard no single vendor lock-in Telecommunication solutions from simple to complex redundancy low latency optimized for converging networks TDM-Packet interworking Defence & Aerospace longevity ruggedized conduction cooled field replaceable bandwidth from 1Gbps to 30 Gbps Medical low latency multi-cluster multi-graphic Transportation multi-cluster high speed graphics robustness About N.A.T. (Network and Automation Technology) N.A.T. was founded in 1990 with the aim of developing high-performance network solutions. From the beginning the goal has been to base these on an individual combination of hardware and software modules. Constant growth during the last 25 years and substantial knowledge in networking technologies has brought N.A.T. to the forefront of the embedded and (tele-)communications market. Make our expertise your solution - talk to us... we care. INDUSTRIAL CONTROL Carrier Hubs System Manager MicroTCA Carrier Hub Central management and data switch (GbE, XAUI, SRIO, PCIe) with clock distribution and generation in compact- or mid- or full- form factor as well as single or double width base-board central mgmt. for 1-13 AMCs, 2 CUs, 1-4 PMs e-keying, redundancy, load sharing or external carrier and shelf managers layer 2, non-blocking, low latency GbE switch, supporting VLAN, port base rate control and RSTP (Rapid Spanning Tree Protocol) clock mezzanine either Stratum 3/3E type PLL, supporting GPS and telecom frequencies source of clock reference configurable from either PLL or any of the 12 AMC or from an external clock via the front panel connectors White-Rabbit fat pipes switch mezzanine including uplinks SRIO (Gen2) PCIe (Gen3) 1GbE and 10GbE (XAUI) software support configuration via web browser or Command Line Interface (CLI) or scripting Java based visualization, configuration and update tool NATview remote management support comprehensive debug support 2x GbE links supporting port trunking 2 clock connectors (input or output) 2 fat pipe uplinks (CX4, SFP+, optical x16 PCIe) status indicator LEDs for AMCs, CUs, and PMs console interface via USB or RS232 COM Express RTM support ( combined with double width MCH and PCIe hub module) supporting all standard type 6 COM Express modules one 2.5 or two half 1.8 SATA storage devices x16 PCIe connection to PCIe hub module 1x GbE connection to MCH switch, 1x GbE at front panel 2x display port and 4x USB 3.0 interfaces at front panel NATview User friendly graphic tool to view and control the components of the MicroTCA system independent of any operating system. tree structured representation of sensor and actor sensor value history, threshold setting, auto update intelligent alarm monitoring and prioritization logging events, alarms FRU (Field Replaceable Unit) editor backplane connection viewer HPM update manager power manager N.A.T. GmbH I Konrad-Zuse-Platz 9 I Bonn I Germany Fon: I info@nateurope.com N.A.T. MicroTCA Concept 2018 N.A.T. GmbH. All rights reserved. All other brands or names are property of their respective holders. No part of this document may be reproduced, transmitted, transcribed, stored in a retrieval system, or translated into any language or computer language, in any form or by any means (electronic, mechanical, photocopying, recording, or otherwise), without the express written permission of N.A.T. GmbH. All data is for information purposes only and not guaranteed for legal purposes. Information has been carefully checked and is believed to be accurate; however, no responsibility is assumed for inaccuracies. N.A.T. and the N.A.T. logo are registered trademarks of N.A.T. GmbH.
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