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LVDS
Low Voltage Differential Signaling
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SHC68-C68-D3, 68-Pin, Male VHDCI to 68-Pin, Male VHDCI, 100 Ohm, Double-Shielded LVDS Cable
188143-01
Male VHDCI to Male VHDCI, Shielded LVDS Cable, 1m
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SHB12X-B12X, 73-Pin, Male InfiniBand to 73-Pin, Male InfiniBand, 100 Ohm, Shielded LVDS Cable, 1m
192344-01
The SHB12X-B12X LVDS Cable 1m connects the 12X InfiniBand connector on PXIe-656x LVDS instruments or some NI 658x LVDS Adapter Modules for FlexRIO with other NI accessories such as the SMA-2164 to break out cable signals for direct access. It is a shielded, 100 ohm cable that is offered in various lengths.
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SHB12X-B12X, 73-Pin, Male InfiniBand to 73-Pin, Male InfiniBand, 100 Ohm, Shielded LVDS Cable 2m
192344-02
The SHB12X-B12X LVDS Cable connects the 12X InfiniBand connector on PXIe-656x LVDS instruments or some NI 658x LVDS Adapter Modules for FlexRIO with other NI accessories such as the SMA-2164 to break out cable signals for direct access. It is a shielded, 100 ohm cable that is offered in various lengths.
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Efficiency And Innovation, Squeezed Into One Tiny, Affordable Package
LatticeECP3
*Up to 16 channels at 3.125 Gbps*800 MBps DDR3, 1Gbps LVDS*Up to 586 programmable sysIO buffers with support for PCI Express, Ethernet (GbE, XAUI, & SGMII), HDMI, SMPTE, Serial Rapid I/O, CPRI and JESD204A/B and more*Up to 150 k LUTs and 6.8 Mbits of SRAM*Wide array of packages as small as 10.0 mm x 10.0 mm with power consumption below 0.5 W
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EPIC SBC With AMD G-Series APU, AMD A50M FCH, Dual DisplayPort/VGA/LVDS, Dual LANs And Audio
EP100
The EP100 EPIC board, supporting either the AMD G-Series APU dual core T56N with Radeon™ HD 6320 graphics or AMD G-Series APU single core T40R with Radeon™ HD 6250 graphics, combined with the AMD A50M FCH, is ideal for graphics-intensive applications such as high-end medical imaging, digital signage, kiosks/POI, thin clients, and gaming machines. The onboard SO-DIMM socket supports maximum up to 4 GB of DDR3 1333 memory. Integrated AMD HD graphics with DirectX 11 technology, the small foot print embedded board offers stunning 3D visual effects and dynamic interactivity. The EP100 comes with three display outputs with two combinations: two DisplayPort and one VGA or one DisplayPort plus a VGA and 18/24-bit single/dual channel LVDS. Additionally, it provides dual gigabit LAN ports for high-speed wired communication and two PCI Express Mini card expansion interfaces, one with SIM slot, for seamless wireless communication (WiFi + 3/4G).
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FMC for High Speed Optical Communication Dual QSFP+ FMC
FMC424
Sundance Multiprocessor Technology Ltd.
The FMC424 is a dual QSFP+ FPGA Mezzanine Card. Electrically compliant with the VITA 57.1 standard the FMC424 is compatible with 4DSP FPGA carrier cards offering High Pin Count connectors. It also allows for the option to stack an additional FMC over it. Any of the 4DSP FMC that use LVDS and single ended signaling only can be mounted over the FMC424, thus offering users with the ability to build a complete high speed data acquisition, waveform generation and optical communication solution while using a single FMC site on an FPGA carrier card.
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FPGA Mezzanine Card
FMC432
Sundance Multiprocessor Technology Ltd.
The FMC432 is a dual 10 Gigabit Ethernet (10GBASE-T) FPGA Mezzanine Card with two RJ45 connectors available on the front panel. Compliant with the VITA 57.1 standard the FMC432 is compatible with FPGA carrier cards offering High Pin Count connectors. It also allows for the option to stack an additional FMC over it. Any of the 4DSP FMC that use LVDS and single ended signaling only can be mounted over the FMC432, thus offering users with the ability to build a complete high speed data acquisition, waveform generation and communication solution while using a single FMC site on an FPGA carrier card.
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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 Grabber
R3-DIF
The R3 frame grabber family has been designed to simplify the task of interfacing today's digital cameras to a wide array of imaging applications. The R3-DIF can interface to almost every LVDS camera manufactured (up to 32 bits).
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Get Flexible, Get FlexiFLASH
LatticeXP2
*Up to 885 Kbits sysMEM™ embedded block RAM and up to 83 Kbits distributed RAM*sysCLOCK™ PLLs up to four analog PLLs per device that enable clock multiply, divide and phase shifting*Three to eight sysDSP blocks for high performance multiply and accumulate.*Pre-engineered source synchronous IOs for DDR/DDR2 up to 200 MHz and 7:1 LVDS interface support up to 600 Mbps*Available in csBGA, TQFP, PQFP and BGA packaging
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Interface conversion adaptor
IA-Series
"IA-series" is an adapter BOX for converting LVDS, PANELLINK output from a video generator to either LVDS, PANELLINK or analog signals. There are five types of adapters. Conversion adapter ON/OFF power function allows connecting or disconnecting hot line without turning PC power off when using a type VG PCI board.
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Interface & Level Converters
Advanced Science and Novel Technology, Co., Inc.
2-channel LVDS-to-CMOS converter (Receiver) and 2-channel CMOS-to-LVDS converter (Transmitter)Optional signal splitter function with selectable inversionOptional DS (Data/Strobe) encoding/decoding for compatibility with Space Wire StandardProgrammable LVDS/CML/ECL Receiver input interfaceTrue LVDS Transmitter output interfaceFlexible selection of enabling and operational modes of the channelsHigh-impedance states of disabled CMOS outputsSingle +3.3V power supplyIndustrial temperature range
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Interface Module
MC
The MC mezzanine module is designed to receive external commands and issue synchronization pulses on the TTLTRG line (for VXI and other devices) and the LVDS line (for LXI devices).
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IP-Reflective Memory
Each IP-ReflectiveMemory can be used as a standard node or as the Master Node. Clearly labled "DIP Switches" are provided to make the selection of Master or Standard Node, and the Node Address. The Network is based on using LVDS signaling over Ethernet cabling. Nodes automatically come up for pass through operation.
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Low Power FPGA Featuring Hardened MIPI D-PHY, LVDS, SLVS, SubLVDS, & Open LDI Bridging
CrossLink
*Two 4-lane MIPI D-PHY transceivers at 6 Gbps per PHY*15 programmable source synchronous I/O pairs for camera and display interfacing*Available in amazingly small 2.46 mm x 2.46 mm WLCSP packages and BGA packages with 0.4 mm, 0.5 mm and 0.65 mm pitch
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LVDS Board
MSXB 045
The MSXB 045 LVDS board works with multiple iDSC 1816 boards to provide synchronization for many channels of data. An MSXB 045 board in each of two or more networked PCs, that each contain one or more iDSC 1816 boards, allows the whole networked system to work as a single synchronized system with possibly hundreds of conditioned channels.
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LVDS I/O Module
LVDS-MOD3
Curtiss-Wright Defense Solutions
The LVDS-MOD3 is a front panel mezzanine module designed to provide LVDS I/O functionality to Curtiss-Wright's FPGA-based processing PMC modules. This LVDS I/O module provides 32 differential pairs to the front panel. The LVDS-MOD3 LVDS I/O module is aimed at embedded application development.
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LVDS To DVI-D Converter Board
AX93221
*Input supports 18/36/24/48-bit LVDS through 40-pin LVDS connector*Output supports DVI-D connector*Size: 60 x 50 mm*Applied for PICO821 and PICO822
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Multi I/O FMC Module
FMC155
The FMC155 is an FPGA Mezzanine Card (FMC) per VITA 57.1 standard, offering a small footprint and allowing for general-purpose I/O expansion. The FMC155 provides sixteen LVDS input/outputs, eight RS-485/422 RX plus eight RS-485/422 TX, and sixteen single-ended +3.3 V input/outputs.
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Nano-ITX SBC With Intel® Atom™ Processor E3845/E3827, LVDS/ VGA/HDMI, Dual LANs And Audio
NANO840
The NANO840 NanoITX board supports Intel® Atom™ processor E3845 or E3827 with one DDR3L 1066/1333 up to 8 GB memory. The NANO840 is capable of operating under wide temperatures from -40°C to +80°C in fanless operation which is designed for working in harsh environments. It comes with multiple display outputs: HDMI, LVDS and VGA with visual experiences enhanced for dual-view supported. Moreover, this small form factor embedded board requires +12V DC power input. The NANO840 is ideal for applications requiring a power-optimized and rich-I/O platform, such as high-end medical imaging, digital signage, kiosks/POI, thin clients, and gaming machines.
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Nano-ITX SBC With Intel® Celeron® Processor J1900/N2807, LVDS/VGA/HDMI, Dual LANs And Audio
NANO842
The NANO842 Nano-ITX motherboard is designed to support the Intel® Celeron® processors quad-core J1900 and dual-core N2807 (code name: Bay Trail). A DDR3L SO-DIMM socket located on the bottom of the board can support up to 8GB of DDR3L memory. It can handle operating temperatures from -20°C to 70°C, and runs on +12V DC input. This 120 x 120 mm industrial embedded board comes with multiple display outputs: HDMI, LVDS and VGA with visual experiences enhanced for dual-view supported. The Axiomtek NANO842 is an ideal solution aimed at embedded, industrial, and IoT applications.
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PCI Card with 8 output channels
PCI_LVDS_8T
The PCI-LVDS-8T PCI card has 8 channels of LVDS output (8T), digital filtering and storage. The PCI-LVDS-8T is compatible with TIA/EIA-644 LVDS standards. The card features "Scatter gather" DMA data transfer into the transmit memories.
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PCI Card with input channels
PCI LVDS 8R
The PCI_LVDS_8R has 8 channels of LVDS input. The channels are grouped two per Filter Xilinx. The input data is filtered, then written to the Input FIFO. There is one Input FIFO per LVDS channel. 1K x 32. One Latch Xilinx handles 4 LVDS channels. The data is read from the Input FIFO by the Latch Xilinx and either written to the SDRAM or the Output FIFO.
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PCI Card with input channels
PCI_LVDS_8R
The PCI_LVDS_8R has 8 channels of LVDS input. The channels are grouped two per Filter Xilinx. The input data is filtered, then written to the Input FIFO. There is one Input FIFO per LVDS channel. 1K x 32. One Latch Xilinx handles 4 LVDS channels. The data is read from the Input FIFO by the Latch Xilinx and either written to the SDRAM or the Output FIFO.
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PCI Direct Digital Synthesizers
SYNTH300 SERIES
These devices provide two synchronized DDS-based RF channels on a single PCI card. With fine frequency and phase control, triggered operation, and the ability to accept an external clock, the Synth300 products enable a number of advanced applications at a fraction of the cost of conventional equipment. In addition to two analog outputs, the product can be ordered with one (or two) LVDS outputs for programmable digital clock applications, and can be configured for control by externally supplied TTL signals for low-latency triggered operation such as PSK, FSK, and triggered sweep operation.Software support for Windows Vista, Windows XP,Linux and Labview source code availableFor detailed specifications, please refer to the Synth300_Manual
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PCI Direct Digital Synthesizers
SYNTH300-TRIG
These devices provide two synchronized DDS-based RF channels on a single PCI card. With fine frequency and phase control, triggered operation, and the ability to accept an external clock, the Synth300 products enable a number of advanced applications at a fraction of the cost of conventional equipment. In addition to two analog outputs, the product can be ordered with one (or two) LVDS outputs for programmable digital clock applications, and can be configured for control by externally supplied TTL signals for low-latency triggered operation such as PSK, FSK, and triggered sweep operation.
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PCI Direct Digital Synthesizers
SYNTH300-TRIG-HS
These devices provide two synchronized DDS-based RF channels on a single PCI card. With fine frequency and phase control, triggered operation, and the ability to accept an external clock, the Synth300 products enable a number of advanced applications at a fraction of the cost of conventional equipment. In addition to two analog outputs, the product can be ordered with one (or two) LVDS outputs for programmable digital clock applications, and can be configured for control by externally supplied TTL signals for low-latency triggered operation such as PSK, FSK, and triggered sweep operation.
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PCI Synthesizer
SYNTH300 Series
These devices provide two synchronized DDS-based RF channels on a single PCI card. With fine frequency and phase control, triggered operation, and the ability to accept an external clock, the Synth300 products enable a number of advanced applications at a fraction of the cost of conventional equipment. In addition to two analog outputs, the product can be ordered with one (or two) LVDS outputs for programmable digital clock applications, and can be configured for control by externally supplied TTL signals for low-latency triggered operation such as PSK, FSK, and triggered sweep operation.
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Phoenix LVDS Frame Grabber (PE1)
AS-PHX-D36-PE1
Phoenix-D36 is a PCI Express board for the acquisition of digital data from a variety of sources, including digital frame capture and line scan cameras. It has 36 bits used for input data, with 4-bits for control. This provides support for a single 12 bit RGB or 32 bit mono data source, including multi-tap cameras. The 4-bit control inputs are dedicated as Frame Enable, Line Enable, Data Enable and Pixel Clock.