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PXIe-5820, 500 MHz, 1 GHz I/Q Bandwidth, Baseband PXI Vector Signal Transceiver
783967-01
500 MHz, 1 GHz I/Q Bandwidth, Baseband PXI Vector Signal Transceiver—The PXIe‑5820 is the baseband model of the second-generation vector signal transceiver (VST) with 1 GHz of complex I/Q bandwidth. It combines a wideband I/Q digitizer, wideband I/Q arbitrary waveform generator, and high-performance user-programmable FPGA in a single 2-slot PXI Express module. You can use the VST for a variety of applications including baseband I/Q test of wireless and cellular chipsets; envelope tracking of digitally predistorted waveforms for power amplifiers; and the generation and analysis of new wireless standards such as 5G, 802.11ax, and LTE-Advanced Pro.
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PXIe-5830, 12 GHz, 1 GHz Bandwidth PXI Vector Signal Transceiver
787047-01
12 GHz, 1 GHz Bandwidth PXI Vector Signal Transceiver - The PXIe-5830 supports validation and production test into mmWave frequency bands. This vector signal transceiver incorporates a vector signal generator, vector signal analyzer, and high-speed serial interface with FPGA-based real-time signal processing and control. The PXIe-5830 helps you test a variety of cellular and wireless standards such as Wi-Fi 6. You can expand a test system in the PXI Express form factor to support multiple input, multiple output (MIMO) configurations with phase-coherent synchronization.
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PXIe-5831, 44 GHz, 1 GHz Bandwidth PXI Vector Signal Transceiver
786856-01
44 GHz, 1 GHz Bandwidth PXI Vector Signal Transceiver - The PXIe-5831 supports validation and production test into mmWave frequency bands. The PXIe-5831 incorporates a vector signal generator, vector signal analyzer, and high-speed serial interface with FPGA-based real-time signal processing and control. The PXIe‑5831 combines fast measurement speed and the small form factor of a production test box with the flexibility and high performance of R&D-grade box instruments, making it an ideal solution in both the lab and the production floor. The PXIe-5831 meets the stringent challenges of 5G New Radio, but it is also able to test a variety of cellular and wireless standards such as Wi-Fi 6. In addition, you can easily expand a test system in the PXI Express form factor to support multiple input, multiple output (MIMO) configurations with phase-coherent synchronization.
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PXIe-5831, 44 GHz, 1 GHz Bandwidth PXI Vector Signal Transceiver
786853-01
44 GHz, 1 GHz Bandwidth PXI Vector Signal Transceiver - The PXIe-5831 supports validation and production test into mmWave frequency bands. The PXIe-5831 incorporates a vector signal generator, vector signal analyzer, and high-speed serial interface with FPGA-based real-time signal processing and control. The PXIe‑5831 combines fast measurement speed and the small form factor of a production test box with the flexibility and high performance of R&D-grade box instruments, making it an ideal solution in both the lab and the production floor. The PXIe-5831 meets the stringent challenges of 5G New Radio, but it is also able to test a variety of cellular and wireless standards such as Wi-Fi 6. In addition, you can easily expand a test system in the PXI Express form factor to support multiple input, multiple output (MIMO) configurations with phase-coherent synchronization.
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PXIe-5841, 6 GHz, 1 GHz Bandwidth, RF PXI Vector Signal Transceiver
786982-01
6 GHz, 1 GHz Bandwidth, RF PXI Vector Signal Transceiver - The PXIe-5841 is a vector signal transceiver (VST) with 1 GHz of instantaneous bandwidth. It combines vector signal generator, vector signal analyzer and high-speed serial interface capabilities with FPGA-based real-time signal processing and control. The PXIe-5841 features the flexibility of a software defined radio architecture with RF instrument class performance. This VST delivers the fast measurement speed and small form factor of a production test box with the flexibility and high performance of R&D-grade box instruments. The PXIe-5841 is available with an optional high-performance local oscillator module for improved phase noise, measurement time, and EVM performance. You can use the VST to test a variety of cellular and wireless standards such as Wi-Fi 6 and 5G NR. In addition, you can expand the small, two slot 2U PXI Express form factor to support multiple input, multiple output (MIMO) configurations.
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PXIe-5841, 6 GHz, 1 GHz Bandwidth, RF PXI Vector Signal Transceiver
785832-01
6 GHz, 1 GHz Bandwidth, RF PXI Vector Signal Transceiver - The PXIe-5841 is a vector signal transceiver (VST) with 1 GHz of instantaneous bandwidth. It combines vector signal generator, vector signal analyzer and high-speed serial interface capabilities with FPGA-based real-time signal processing and control. The PXIe-5841 features the flexibility of a software defined radio architecture with RF instrument class performance. This VST delivers the fast measurement speed and small form factor of a production test box with the flexibility and high performance of R&D-grade box instruments. The PXIe-5841 is available with an optional high-performance local oscillator module for improved phase noise, measurement time, and EVM performance. You can use the VST to test a variety of cellular and wireless standards such as Wi-Fi 6 and 5G NR. In addition, you can expand the small, two slot 2U PXI Express form factor to support multiple input, multiple output (MIMO) configurations.
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PXI Vector Transceivers
Get both signal generation and analysis in one PXIe module with real-time field-programmable gate array (FPGA)-accelerated measurements for faster throughput. The PXIe vector transceiver is perfect for manufacturing test of wireless devices, RF power amplifiers, and front-end modules.
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Vector Signal Transceiver-based Radio Solution (VRS)
ATS-3100 VRS
The ATS-3100 VRS, the newest member of the ATS-3100 PXI Integration Platform product family and fifth-generation radio test solution, is a single, consolidated platform for testing legacy, modern, and next-gen, software-defined radios for military, civil, and commercial users. Integrating the PXI Vector Signal Transceiver (VST) from National Instruments (NI), the platform enables faster test time with wider bandwidth (up to 1GHz) than any other radio test solution available today.
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Test Board For QSFP28 Transceiver
EQSFP28
The OPTELLENT EQSFP28 is a cost-effective and convenient test board for testing QSFP28 optical transceivers in R&D and manufacturing environments. The EQSFP28 is equipped with high quality RF connectors for data signals and test points for low frequency control and status signals. The EQSFP28 is equipped with power supplies to enable voltage margining. Key status signals are displayed using LED indicators.
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Test Board For QSFP+ Transceiver
EQSFP10
The OPTELLENT EQSFP10 is a cost-effective and convenient test board for testing QSFP/QSFP+ optical transceivers in R&D and manufacturing environments. The EQSFP10 is equipped with high quality RF connectors for data signals and test points for low frequency control and status signals. The EQSFP10 is equipped with power supplies to enable voltage margining. Key status signals are displayed using LED indicators.
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Test Board For SFP+ / SFP28 Transceiver
ESFP280
The OPTELLENT ESFP280 is a cost-effective and convenient test board for testing SFP/SFP+/SFP28 optical transceivers in R&D and manufacturing environments. The ESFP280 is equipped with high quality RF connectors for data signals and test points for low frequency control and status signals. The ESFP280 is equipped with power supplies to enable voltage margining. Key status signals are displayed using LED indicators.
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Transceiver Driver
S-112
Transceiver Driver slot module of FOTS system is an efficient module for the characterization of SFP type transceiver and the test of optical line or components. This module is a kind of Small Form Factor Pluggable(SFP) host board that can be used to test SFP transceiver modules to define the modules’ performance. The transceiver driver slot has two SFP cage and 20-pin SFP connector sets to mount and control two SFP transceivers simultaneously.
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Transceiver Testing
Family of RF test systems designed for transceiver testing. Designed for radio-to-radio testing in a closed mesh network. Step attenuators allow you to dynamically fade up/down the RF signal between radios. These Ethernet/Serial models run our latest generation 3.x.x firmware that features easy to use ASCII formatted remote commands.
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Digital Wideband Transceiver Analysis
S94610B
Digital Wideband Transceiver Analysis is an add-on software to Device Measurement eXpert (DMX) that adds cross-domain stimulus response measurements for digital/RF mixed-signal device characterization. Included Waveform Creator helps define digital IQ test stimulus waveforms that are used in the RF signal generators for receiver tests or downloaded to the digital-to-analog converters for transmitter tests. The DUT control is customizable to accommodate various data converters and transceiver types by defining device operation settings, transmit/receive switching, reading and writing digital IQ waveform from and to DUTs. Acquired RF or digital data is processed in the VNA’s applications for faster, accurate measurements and analysis.
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PXI Vector Signal Transceiver
The PXI Vector Signal Transceiver (VST) combines the flexibility of a software defined radio architecture and RF instrument class performance. You can use the VST to test a variety of cellular and wireless standards, and you can easily expand the VST's three-slot, 3U PXI Express form factor to support multiple input, multiple output (MIMO) configurations. The VST software is built on LabVIEW FPGA, and features several starting points for your application including application IP, reference designs, examples, and LabVIEW sample projects.
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Quickly & Accurately Validate Any Pluggable Transceiver from 10M to 100G
iOptics
iOptics offers a complete, powerful and easy-to-use tool for CFP and QSFP qualification and can validate the full range of low- to high-rate transceivers including SFP, SFP+, XFP, CFP, CFP2, CFP4, QSFP+ and QSFP28. iOptics offers a faster, streamlined and automated test sequence aimed at quickly and simply validating any type of 10M to 100G interface. It is the ideal solution for multirate field commissioning with a simple one-button pass/fail. It offers automated stress testing for lab qualification and is also ideally suited for data center and data center interconnect (DCI) testing.
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Test Solution
Eye-BERT MicroX
The Eye-BERT MicroX is a compact, easy to use test solution offering high performance bit error rate testing at a fraction of the cost of competing solutions. The unit is offered in two speed grades including the X10 which operates up to 14.5Gbps, and the X30 which extends the data rate to 29Gbps. Its broad data rate capabilities and long test patterns make this unit suitable for testing nearly all optical SFP, SFP+, and SFP28 transceivers in production with just one unit. The real-time eye opening monitor and eye scanning capability can aid in troubleshooting by providing the operator with additional link quality information. Other features include Autonomous pattern detection, SFP diagnostic tools, and wavelength tuning (per transceiver capability). With a click of a button the Eye-BERT MicroX will automatically test an SFP module based on its advertised capabilities and generate a detailed test report complete with manufacturer, part number, serial number, date code, fiber type, link length, speed, and test results. The Unit is supplied with anti-skid bumpers and is small enough to be integrated into larger systems for dedicated link verification.
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PXIe-5646, 6 GHz, 200 MHz Bandwidth, RF PXI Vector Signal Transceiver
782952-01
6 GHz, 200 MHz Bandwidth, RF PXI Vector Signal Transceiver—The PXIe‑5646 combines a vector signal generator and vector signal analyzer with FPGA-based real-time signal processing and control into a single device, also known as a VST. Because of this software-designed approach, the PXIe‑5646 features the flexibility of a software defined radio architecture with RF instrument class performance. The additional bandwidth of the PXIe‑5646 enables you to test wireless and cellular standards such as 802.11ac 160 MHz and LTE‑A carrier aggregation while leveraging the latest performance-enhancing processing techniques such as digital predistortion.
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Electrical Signal Test
High-density, multi-channel pulse pattern generators and bit error detectors for the design, characterization and production test of optical transceivers and opto-electrical components.
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Portable Test Platform
FTB-4 Pro
The FTB-4 Pro is the latest addition to EXFO’s test orchestration portfolio which transforms business as usual into smarter, scalable network testing that significantly increases operational efficiency and provides vital insights into field operations, network performance and service delivery. The 4 slot modular FTB-4 Pro platform enables a unique combination for 100G commissioning, turn-up and troubleshooting which includes the FTBx-88200NGE 100G Multiservice tester (with iOptics transceiver validation software) and the FTB-5240S-P optical spectrum analyzer. There is no need to carry additional platforms or swap modules for unmatched transport and spectral testing on a single platform that no one in the industry can offer. The versatile FTB-4 Pro platform supports a wide range of modules for field testing, data center interconnect, submarine testing, and lab applications for maximum flexibility and ROI across all phases of the service delivery chain: development, deployment, maintenance and troubleshooting. Module combinations on the FTB-4 Pro can also include iOLM/OTDRs, market leading OLTS for fiber characterization, dispersion solutions and other transport modules all with compatibility with EXFO’s market leading fiber inspection probes.
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Avionics Interfaces & Test Instruments
ARINC 664
Avionics Interface Technologies
AIT’s ARINC 664 test instruments can be used in test and simulation applications that are required to transmit and receive data over the ARINC 664 avionics databus. AIT’s instruments use small form-factor pluggable transceivers (SFP) and support copper or fiber optic physical network interfaces.Using an FPGA based architecture, with multiple embedded processors, the ARINC 664 instruments provide onboard support for upper layer protocol processing (A653, UDP, IP) and utilize DMA to provide optimal data throughput. All ARINC 664 protocol operations, including VL traffic shaping, redundancy management, and IP fragmentation and reassembly, are handled onboard.
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Fiber Optic Test Solution
Eye-BERT Micro 10G
The Eye-BERT Micro 10G is a low cost, easy to use, all-in-one XFP based fiber optic test solution offering high performance bit error rate testing at a fraction of the cost while providing a rich set of features not found in other bit error rate testers. Features include: variable bit rate, user programmable patterns, diagnostic monitoring, and wavelength tuning (per XFP capability). Additionally, with a click of a button, the Eye-BERT Micro 10G will automatically test an XFP module based on the information it reads from the transceiver and generate a detailed test report complete with manufacturer, part number, serial number, date code, fiber type, link length, speed, and test results. The Unit is supplied with anti-skid bumpers and is small enough to be integrated into larger systems for dedicated link verification.
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FMC Loopback Test Board
The FMC loopback tester board enables developers and assembly factories to test and characterize the FMC carrier board interfaces. The board features full differential loopbacks on all the FMC high pin count (HPC) connector interfaces including LA, HA, HB, DP and CLK. It also provides a 125MHz transceiver LVDS reference clocks on GBTCLK signals. The FMC loopback board is based on VITA 57 standard with ruggedized conduction or air cooling.
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Test FMC Mezzanine Module
TFMC900
The TFMC900 is an FMC (FPGA Mezzanine Card) Mezzanine Module designed to test ANSI/VITA 57.1 FMC Carriers during development or series production. Additionally, it offers the possibility to realise various I/O solutions for connected FMC Carriers. Interconnection of the High Pin Count FMC Connector signals can be verified by JTAG and by functional tests. A loop-back of the 10 multi-gigabit transceiver interfaces allows interconnection checks for the high-speed serial interfaces.
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Fibre Channel PXI Express Test & Simulation Instrument
PXIe-FC4
Avionics Interface Technologies
3U PXIe form factor will fit into any PXIe or hybrid slot - Supports Point-to-Point, Switched Fabric, and Arbitrated Loop topologies - Two independent Fibre Channel ports - Two SFP sockets accept fiber or copper transceivers - Each port supports 1, 2, and 4 Gbps speeds - Comprehensive decoding of FC-1, FC-2, and Upper Layer Protocol (ULP) frames - Triggering and Filtering - Error Injection on any Header or Payload Parameter - Data Capture to on-board memory or disk file - Live Capture and Current Value Monitoring - IRIG-B Time Code Encoder/Decoder for Data Correlation - In-line Port Configuration for Transparent Analyzer - Supports multiple ULPs including FC-AE-ASM, FC-AE-RDMA, FC-AE-1553, and FC-AV - Supports HS-1760E applications, including AS5653, AS5625, and AS5627fcXplorer Windows-based FC Simulator and Analyzer Test Software
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Multiprotocol P104Plus Interface Board for Embedded Applications or Avionics Test & Simulation Applications
EXC-4000P104plus
The EXC-4000P104plus is a multiprotocol P104plus interface board for embedded applications or avionics test and simulation applications. Each board holds up to five independent modules. Two on-board modules use the MIL-STD-1553 communications protocol (M4K1553Px); another on-board module uses the ARINC-429 communications protocol; two additional detachable modules can be any one of the following types:M4K1553PxS (Single Function - RT validated) This module operates as a Bus Controller, Remote Terminal or a Bus Monitor. This module qualifies for airborne applications.M4K1553Px (Multi Function) This module operates as a Bus Controller, up to 32 Remote Terminals and as a Bus Monitor. Supports an Internal Concurrent Monitor in RT and BC/RT modes.M4K1553Px(S)-1760 Same as M4K1553Px(S) plus MIL-STD-1760 options.M4KMMSI Mini Munitions Store Interface module. Supports RT, BC/Concurrent-RT/Concurrent Monitor and Bus Monitor modes. Up to 8 hub ports EBR-1553 [10 Mbps 1553 protocol using RS-485 transceivers] and 1 monitor output.M4KH009 Based on our H009 family. This module operates as a Central Computer Complex (CCC) and/or up to 16 Peripheral Units (PUs) simultaneously, or as a Bus Monitor. In addition, a Concurrent Bus Monitor enables concurrent monitoring of the bus during CCC and PU simulation.M4K429RTx Based on our ARINC 429RxTx board. This module supports either five or ten ARINC 429 channels each of which can be configured in real time as a receive or transmit channel.M4K708 This module supports two channels of ARINC 708/453, each one selectable as either transmit or receive.M4KSerial This module supports up to 4 independent channels of serial communications, each of which can be selected as RS485, RS422 or RS232.M4KDiscrete This module supports 20 selectable input/open collector output discretes. The module supports TTL (0 to 5 volts) or avionics (0 to 32 volts) voltage levels.M4KCAN This module supports up to 6 independent channels of CAN 2.0B protocol with standard and extended message frames and message identifiers.
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10 Gb/s SFP/SFP+ Evaluation Board
EV-SFP-171
The purpose of this SFP+ evaluation board is to provide the designer with a convenient means for evaluating SFP+ fiber optic transceiver such as 10 Gb/s(up to 16 Gb/s) SFP/SFP+ transceiver compliant with ANSI Fibre Channel FC‐PI‐5 for high speed electrical and optical specifications. This board provides SMA connectors for high speed TX and RX signals. The low speed control signals such as Tx_Fault, Rx_LOS and Rate_Selects can be controlled by using on board switches and test points. A connector for 2 wire serial interface to the module is also provided.
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16 Channel WDM Mux/DeMux
S-106
16CH WDM Mux/DeMux module of FOTS system offers a function of multiplexing or demultiplexing up to 16 channel of WDM signals. This module offers low insertion loss, low crosstalk, and high temperature stability. An internally built-in AWG module functions as 1 X N optical Multi/Demultiplexers. The bi-directional feature of this module is ideal for wide range of applications. In combination with an optionally built-in circulator or C/L-band WDM coupler, this module can be applied to the WDM-PON test. User can easily make his or her test set-ups for FTTX-PON systems, especially for WDM-PON test, by combining this module with other FOTS modules such as SLED Driver, SOA Driver, C+L-FOTS modules such as SLED Driver, SOA Driver, C+L-band ASE source, Wavelingth meter, Transceiver Driver and so on.
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40Gbps Ethernet Packet Generators
Axtrinet (AXTRINET IS A TRADING NAME )
40Gbps QSFP+ & 10Gbps SFP+ ports, Support optical & copper transceivers, Wire-rate performance on all ports, Compact & Portable, Intuitive Graphical Control Interface, Control multiple units from single GUI, Test Automation with TCL interface
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4X14 Gb/s QSFP/QSFP+ Evaluation Board
EV-QSFP-174
The EV‐QSFP‐174 QSFP/QSFP+ Host Test Board comes complete with Windows based software (Windows XP & above) to enable intuitive memory map programming and testing, controlled via a mini B USB port. It is designed to simulate an ideal environment for QSFP/QSFP+ transceiver module testing, characterization and manufacturing test. Its high speed properties make the host board as electrically transparent as possible, allowing for a more accurate assessment of the module’s performance.