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Flexible x1 PCI Express to MiniPCI Adapter
SKU-067-0X
Flexible x1 PCI Express to MiniPCI Bus Adapter (Adapter) was designed to convert PCI Express bus into standard MiniPCI bus. It allows connection of a standard 124-pin MiniPCI add-in board to a motherboard PCI Express connector.Adapter includes a MiniPCI Adapter board (downstream), x1 PCI Express host board and flat PCI Express cable.
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Flexible x1 PCI Express to MiniPCI Express Adapter
SKU-056-02
The Flexible x1 PCI Express to MiniPCI Express Adapter (Adapter) was designed to convert the x1 PCI Express bus into the MiniPCI Express bus. It allows you to connect the MiniPCI Express expansion add-in board to the motherboard PCI Express connector.The Adapter includes a MiniPCI Express adapter board (downstream), x1 PCI Express host board and PCI Express flat cable.
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Flexible x1 PCI Express to PCI Adapter
SKU-041-0X
The Flexible x1 PCI Express to PCI Bus Adapter (Adapter) was designed to convert the x1 PCI Express bus into two 32-bit PCI buses. It allows you to connect up to two 32-bit PCI expansion boards to the motherboard x1/x4/x8/x16 PCI Express connector.The adapter includes a PCI adapter, x1 PCI Express host board and a PCI Express flat cable.
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Flexible x4 PCI Express 4-Way Splitter
SKU-042-XX
The Flexible x4 PCI Express 4-Way Splitter was designed to expand your modern motherboard (ATX, mini ATX, etc.) with a limited number of PCI Express connectors. It allows you to connect up to four x1 / x4 / x16 PCI Express boards to your motherboard’s x4/x8/x16 PCI Express connector.The Splitter includes four x1 (or x4, or x16) PCI Express adapter boards with PCI Express flat ”ribbon” cables, and one x4 PCI Express host board.
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Flexible x4 PCI Express to 4 MiniPCI Express Splitter
SKU-072-0X
Flexible x4 PCI Express to 4 MiniPCI Express Splitter (Splitter) was designed to expand modern motherboard (ATX, mini ATX etc.) that have PCI Express interface. It allows connecting up-to four MiniPCI Express add-in expansion boards to the standard motherboard PCI Express connector.Splitter includes 4 MiniPCI Express Adapter boards, x4 PCI Express Host board and 4 Flat PCI Express Cables.
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Flexible x4 PCI Express to 4 MiniPCI Splitter
SKU-071-0X
Flexible x4 PCI Express to 4 MiniPCI Splitter was designed to expand your modern motherboard (ATX, mini ATX etc.) that doesn’t have a MiniPCI interface. It allows your to connect up to four 124-pin MiniPCI add-in boards to the motherboard ‘s standard PCI Express connector.Splitter includes 4 MiniPCI adapter boards, x4 PCI Express host board, and 4 flat PCI Express cables.
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Flight-Certifiable SBC
SBC314C
The SBC314C flight-certifiable single board computer is engineered in accordance with DO-178C and DO-254 and is available with supporting artifacts. It delivers great and proven performance thanks to the Power Architecture T2081 processor, and its diverse I/O set brings high functionality to the small form factor. The integrated XMC site allows even more connectivity, including high-density MIL-STD-1553 and ARINC 429 data bus communications as well as avionics discrete I/O through our RAR15CX flight-certifiable mezzanine.
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FMC Card with DisplayPort Input and Output
TEF0007-02A
Sundance Multiprocessor Technology Ltd.
The Trenz Electronic TEF0007 is a DisplayPort 1.2 compatible FMC card with data rates up to 5.4 Gbps and sink and source DP connector. SN65DP159 is used as DP Retimer and SN75DP130 as DP Redriver to connect sink and source to on board Kintex-7 FPGA.Image stream over FMC can be realized over 4 MGTs (only 1 available on LPC) and 34 differential IOs (LPC compatible).
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FMC Dual ADC 12-bit 2.6 GSPS, Single DAC 16-bit 12 GSPS
FMC250
The FMC250 is an FPGA Mezzanine Card (FMC+) per VITA 57.4 specification. The board has dual ADC and single DAC. The FMC250 utilizes dual AD9625 ADCs providing 12-bit conversion rates of up to 2.6 GSPS and a single DAC (AD9162 or AD9164) providing 16-bit conversion rates of up to 12 GSPS. The analog input, digital output, clock and trigger interfaces of the FMC250 are routed via SSMC connectors. The internal clock frequency is programmable and the clock is capable of locking to an external reference.
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FMC-HPC ADC Board
FMC123
Sundance Multiprocessor Technology Ltd.
The FMC123 provides four 16-bit A/D channels up to 1Gsps. The design is based on Texas Instruments’ ADS54J60 Analog-to-Digital converter. The sample clock can be supplied externally through a coaxial connection or supplied by an internal clock source (optionally locked to an external reference) for multi-channel synchronization. An external trigger input is available for timing synchronization. The FMC123 is mechanically and electrically compliant to the FMC standard (ANSI/VITA 57.1).
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FMC-HPC ADC Board
FMC121
Sundance Multiprocessor Technology Ltd.
The FMC121 provides two 16-bit A/D channels up to 1Gsps and two 16-bit D/A channels up to 1.4 Gsps data rate with a 2.8 GSPS update rate. The design is based on Texas Instruments’ ADS54J60 Analog-to-Digital converter and Texas Instruments DAC39J84 Digital-to-Analog converter. The sample clock can be supplied externally through a coaxial connection or supplied by an internal clock source (optionally locked to an external reference) for multi-channel synchronization. An external trigger input is available for timing synchronization. The FMC121 is mechanically and electrically compliant to the FMC standard (ANSI/VITA 57.1).
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FMC I/O Module
FM192
Sundance Multiprocessor Technology Ltd.
The FM192-R board is designed to fan out the FMC-LPC connector I/Os to four DB9 connectors and one SEIC connector. The FM912-R provides wireless connectivity via WiFi + BLE and 4G + GNSS/GPS modules. 3x antenna connectors (2x for the 4G + GNSS/GPS and 1x WiFi + BLE) are provided for connecting 3x external antennas. Furthermore, the FM192-R provides an IMU sensor, CAN BUS, humidity and temperature sensor and Audio I/O.
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FMC Mezzanine Module
NES-FMC4ADC
Sundance Multiprocessor Technology Ltd.
By default this card only uses signals from the LPC rows of the HPC connector that is mounted. The gain can be set by software in three steps: +/-50mV, +/-0.5mV, and +/-5V. AN advanced offset circuit is used in the front-end design of the ADC board, and allows a voltage shift in the range og +/-5V that is independent of the chosen gain range.
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FMC Module
SMT-FMC510L
Sundance Multiprocessor Technology Ltd.
The SMT-FMC510L is an FMC module with a low pin count connector (LPC). It is primarily designed to attach to the EMC2-DP FMC PCIe104 carrier board and provide analogue video and serial interfaces. Connectivity is via BNC connectors on the main FMC PCB, BNC connectors on an adaptor PCB, and two 20-way latching DIL pin headers. The adapter PCB is optional and only required if interfaces other than analog video are needed.
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FMC Quad ADC 16-bit @ 1 GSPS and Quad DAC 16-bit @ 2.8 GSPS
FMC231
The FMC231 is an FPGA Mezzanine Carrier (FMC) per VITA 57 specification. The board has quad ADC (the ADC chips are dual channels) and quad DAC (the DAC chip is quad channel). The FMC231 utilizes TI ADS54J60 (option for ADS54J69) providing 16-bit conversion rates of up to 1.0 GSPS and a DAC DAC39J84 providing 16-bit conversion rates of up to 2.8 GSPS.
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FMC Wideband RF Transceiver AD9371 Based
FMC-ZU1RF-A
Sundance Multiprocessor Technology Ltd.
The FMC-ZU1RF-A is a FMC for RF wireless communications applications based on the AD9371 component from Analog Device Inc (ADI).http://www.sundance.technology/wp-content/uploads/2018/01/FMC-ZU1RF-High-Res-Cutout-e1516095831285.jpgThis FMC is fully hardware and software compatible with the ADRV9371 evaluation board from ADI.
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FPGA Card
VP869
The VP869 is a high-performance 6U OpenVPX FPGA processing board featuring two Xilinx® UltraScale+™ FPGAs and a Zynq® 7000 Series multiprocessor system-on-chip (MPSoC). It is designed for the most demanding mission critical military, defense, and industrial applications where extreme FPGA processing and I/O bandwidth capabilities are needed. Applications include electronic warfare, signal intelligence, radar/sonar, and high performance embedded computing.
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FPGA Card
VP868
The VP868 is a high performance 6U OpenVPX (VITA-65) compliant plug-in module with advanced digital signal processing capabilities. At the heart of the VP868 is a Zynq dual Arm-9 device for processing offload and board management.
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FPGA DSP Board
Renice has developed part of the FPGA evaluation board, which can be used as high-speed signal processing board, wireless communication board and image processing board. By default, it’s equipped with Altera FPGA (StratixIV), high-speed ADC/DAC, USB Controller and SODIMM Connector.
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FPGA DSP Board Support Package
Our Board Support Package helps customers get their hardware implementation underway as quickly as possible by providing reference designs, the Stellar IP FPGA development tool, and the 4FM GUI user interface for controlling and monitoring the hardware, as well as other supporting elements. The package comes with three main components: host tools, FPGA tools and diagnostic tools.
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FR-4 PCBs
Monthy Capability: 1200 Sq M/MonthLayer: 4 LayersMaterial: FR4 TG140Dimension: 335.14mm*245.65mmFinished board thickness: 1.6mm+/-0.13mmFinished copper thickness: 2ozMin Trace Width/Space: 8/8milMin hole size: 0.3mmMin hole wall copper: ≥25UMSoldermask Color: YellowSurface finishing: HALApplication field: Consumer electronics
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Framegrabber
FastX-UXGA
The FastX-UXGA frame grabber series is for users who anticipate a demand for extreme I/O requirements or higher bandwidth, complex image processing and real-time fast storage in a cost effective platform. The base Fast-UXGA, is a raw-length PCI board with two (four-muxed) UXGA analog conversion channels using Analog Device's AD9888. The front end data is formatted and preprocessed by a FPGA before being sent to the memory subsection, from zero to four PNX1702 processors before output. Finally, the Fast-UXGA interfaces to the host computer through a 4x PCIe interface for state-of-the-art data acquisition.
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Framegrabber
FastXe2
The FastXe2 framegrabber series is for users who anticipate a demand for extreme I/O requirements and/or higher bandwidth, complex image processing and real-time high-speed storage in a cost effective platform. The base FastXe, is a one half length raw form factor PCIe (X4) Gen2 board with either six basic 85 MHz Camera Link Channels up to two extended full Camera Link camera interfaces. An auxilliary I/O connector provides a header for adaptation of other high speed interfaces such as GigEx4, high speed analog formats such as UXGA or DVI, or CoaXPress. The front-end data is formatted and preprocessed by a Kintex 7 FPGA before being sent to the PCIe (X4) Gen 2 bus
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Framegrabber
FastX-APU
The FastX-APU framegrabber series is for users who anticipate a demand for extreme I/O requirements and/or higher bandwidth, complex image processing and real-time high-speed storage in a cost effective platform. The base FastX-APU, is a two thirds length raw form factor PCIe (X4) Gen2 board with either six basic 85 MHz Camera Link Channels up to two extended full Camera Link camera interfaces. An auxilliary I/O connector provides a header for adaptation of other high speed interfaces such as GigEx4, high speed analog formats such as UXGA or DVI, or CoaXPress. The front-end data is formatted and preprocessed by a Kintex FPGA before being sent to the PCIe (X4) Gen 2 switch to the host or the AMD APU.
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Framegrabber
FastX1703
The FastX1703 framegrabber series is for users who anticipate a demand for extreme I/O requirements and/or higher bandwidth, complex image processing and real-time high-speed storage in a cost effective platform. The base FastX1703, is a two thirds length raw form factor PCI board six basic 85 MHz Camera Link Channels or an extended Camera Link camera interface. An auxilliary I/O connector provides a header for adaptation of other high speed interfaces such as LVDS or high speed analog formats such as UXGA or DVI. The front-end data is formatted and preprocessed by a FPGA before being sent to the memory subsection, up to four PNX1702 500 MHz processors with 256MB memory each. Finally, the FastX1703 interfaces to the host computer through a 4xPCIe interface for state-of-the-art data acquisition.
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Framegrabber
FastX3
The FastX3 frame grabber series is for users who anticipate a demand for extreme I/O requirements and/or higher bandwidth, complex image processing and real-time high-speed storage in a cost effective platform. The base FastX3, is a one half-length raw form factor PCIe (X4) Gen2 board with either six basic 85 MHz Camera Link Channels up to two extended full Camera Link camera interfaces. The front-end data is formatted and preprocessed by an Artix FPGA beforie being sent to the PCIe (X4) Gen 2 interface. It also is POCL and has isolated inputs including three LVDS I/Os.
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Frame Grabbers
microEnable 5 marathon Series
Silicon Software develops with its marathon frame grabbers a product series of performance image acquisition and image processing boards for the most important digital interfaces in Machine Vision. marathon frame grabbers are characterized by its wide range of operation in major industries and applications, moreover offer one of the most attractive price-/performance ratio.
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FRAMOS Cameras With Intel® RealSense™ Technology
FAMOS D400e
The D400e products from FRAMOS bring state of the art Intel® RealSense™ stereo depth sensing technology into the industrial environment. The series offers full bodied IP66 rated cameras, and board level modules for easy and flexible integration into your design.
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FRAMOS SLVS-EC RX IP CORE
Sony’s SLVS-EC interface standard has emerged as the best high speed interface to Sony’s best image sensors, enabling higher throughput, greater signal integrity, and simpler designs. Engineers developing solutions using Xilinx FPGAs and SoCs can take advantage of FRAMOS’s SLVS-EC RX IP Core, Evaluation Board and tested source code examples. Device builders and camera vendors can de-risk the design while reaping the benefits of Sony’s latest high-speed interface.
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Free Feature-Limited Version of Sonnet''s Professional Sonnet Suite
Sonnet Lite™
Sonnet Lite™ is a free feature-limited version of Sonnet''s professional Sonnet Suites, which provides EM analysis to thousands of companies across the globe. Many major manufacturers of high-frequency components and boards depend on Sonnet to analyze their predominantly planar high-frequency designs from 1 MHz through several THz.