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Bus Interfaces
Enable bus interoperability.
See Also: Interfaces, Serial Interfaces, Parallel Interface, UI, MIPI, Interface Adapters, Bus
- TEAM SOLUTIONS, INC.
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4-port Serial Interface, Modular, With/without Optical Isolation, 3.3V/5V, With 9-pin Connectors
APCI-7500-3/4C
*This model has 4x 9-pin D-Sub male connectors on 2 brackets*RS232, RS422, RS485, 20 mA Current Loop*Modular structure through SI modules*With or without optical isolation*Mode configuration free for each port*128-byte FIFO-buffer, common interrupt*Transfer rate programmable up to 115,200 Baud*Option: up to 1 MBaud for RS485 and RS422*Automatic direction recognition for RS48*Mode: configurable RS232, RS422, RS485, 20 mA Current Loop (active, passive) with or without isolation (SI modules)
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PCI-8511, 1‑Port, Low‑Speed/Fault-Tolerant CAN Interface Device
780682-01
1‑ or 2-Port, Low‑Speed/Fault-Tolerant CAN Interface Device—The PCI‑8511 is a fault-tolerant controller area network (CAN) interface for developing applications with the NI‑XNET driver. The PCI‑8511 excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The NI‑XNET device‑driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time for processing complex models and applications.
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PXI Interface Module, AIT MIL-STD 1553
M3406A
Interface to the LRU in avionics test solution Up to four channel MIL-STD-1553 bus interface with full error injection and detection Concurrent Bus Controller, multiple Remote Terminals (31), and Bus Monitor operation capabilities Data capture filtering, 100% bus recording, and physical bus replay Variable output voltage signal and software selectable bus coupling modes 10 high voltage (up to 30 V) programmable DIO lines PXI trigger generation on 1553 bus events
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ARINC 429 PMC Interface Module
PMC-429
Avionics Interface Technologies
4, 8, 16, or 32 Software Programmable Tx/Rx ChannelsProgrammable High/Low Speed Operation - Concurrent operation of all Tx/Rx Channels at high data rates - Conduction-cooling and/or conformal coating available - Designed for extended temperature operations - Rate-oriented Label Transmission - Label Selective Trigger for Capture/Filtering - IRIG-B Time Code Encoder/Decoder for Data Correlation - ANSI Application Interface supporting C++, C#, and .net DevelopmentDevice Driver Support: Windows, Linux, VxWorks, and other operating system - Compatible with AIT’s Flight Simulyzer GUI Bus Analyzer Software
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PCI, IEEE 488 GPIB Instrument Control Device for Linux
778686-01
The PCI‑GPIB is a plug‑and‑play IEEE 488 interface for PCs and workstations with PCI expansion slots. The PCI‑GPIB can sustain data transfer rates of more than 1.5 MB/s using the IEEE 488.1 three‑wire interlocked handshake. It also implements the high-speed IEEE 488.1 noninterlocked handshake (HS488) for benchmarked data transfers at more than 7.7 MB/s. The onboard bus master DMA controller means that there are no microprocessor interruptions in data transfer.
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3-Ch 200 MHz A/D with DDC & 2-Ch 800 MHz D/A with DUC, Virtex-7 FPGA - 3U VPX
Model 52721
- Supports Xilinx Virtex-7 VXT FPGAs- GateXpress supports dynamic FPGA reconfiguration across PCIe- Three 200 MHz 16-bit A/Ds- Three multiband DDCs- Two 800 MHz 16-bit D/As- One DUC (digital upconverter)- Multiboard programmable beamformer- 4 GB of DDR3 SDRAM- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multiboard synchronization- PCI Express (Gen. 1, 2 & 3) interface up to x4- Optional LVDS connections to the Virtex-7 FPGA for custom I/O- 3U VPX form factor provides a compact, rugged platform- Compatible with several VITA standards including: VITA-46, VITA-48 and VITA-65 (OpenVPX™ System Specification)- Ruggedized and conduction-cooled versions available- Supports GateXpress® FPGA-PCIe Configuration Manager- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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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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1553 Avionics Interface 3U CPCI Card
QCP-1553 Series
The QCP-1553 module is a rugged, reliable, full featured, Compact PCI module designed to provide a stand-alone, MIL-STD-1553A/B interface for avionics applications. Up to four independent dual redundant MIL-STD-1553 databus streams are supported by the 3U QCP-1553 module. Additionally, the module offers full functional test, simulation, monitoring and databus analyzer functions for MILSTD-1553A/B applications. An onboard IRIG-B time code decoder and generator allows users to accurately synchronize single or multiple QCP-1553 modules to a common time source. The QCP-1553 module is available in dual or full function (RT simulation, monitoring, and bus controller) configurations.
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CAN/FlexRay/Differential Bus PXI Fault Insertion Switch - 4 Channel
40-200-004
Each channel can support up to 0.3A and is rated to handle up to 100V between the wire pairs. The wire pairs have controlled transmission line impedance suited to most differential pair signaling systems, including fast CAN Bus interfaces and RS232. Each fault bus is capable of carrying 2A allowing multiple channels to be connected to the same fault condition. Additionally, each fault bus features a changeover relay to allow the user to connect alternative fault conditions to the fault buses.
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COM Express Type 2 Basic Module With Intel® Celeron® Processor J1900/N2807
CEM841
The CEM841 computer on module is based on the ultra-low power Intel® Celeron® processor J1900/N2807 which provides impressive CPU and graphics performance improvements. The CEM841 is equipped with double deck DDR3L SO-DIMM sockets supporting system memory maximum up to 8 GB. Coming with 8 PCI Express lanes, the power efficient system module is designed with all necessary components and offers the most updated bus interfaces targeting at POS and kiosk systems, gaming, medical PCs and HMI and industrial automation controllers.
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PXI-8511, 1‑ or 2-Port, Low-Speed/Fault Tolerant PXI CAN Interface Module
780686-01
1‑ or 2-Port, Low-Speed/Fault Tolerant PXI CAN Interface Module—The PXI‑8511 is a fault-tolerant Controller Area Network (CAN) interface for developing applications with the NI‑XNET driver. The PXI‑8511 excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimize message latency and freeing host processor time for processing complex models and applications.
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MIL-STD-1553 Test & Simulation Interface for VME
VME-1553
Avionics Interface Technologies
Dual redundant, single, dual, or quad stream configurationsTransformer & Direct Bus Coupling - Concurrent Bus Controller, 31 Remote Terminals, & Bus Monitor operation - Full error injection and detection - Multi-level trigger for capture and filtering - IRIG-B time code encoder/decoder - Ten high voltage (up to 30V) programmable DIO lines - Real-Time recording and physical bus replay - ANSI Application interface supporting C, C++, C#, and .NET development - Device driver support: Windows, Linux, & VxWorks (others on request) - Designed for extended temperature operations - 64-bit VME Interface (VME master & slave capability) - Front Panel and Rear I/O (P2) Available
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Professional Software USB Protocol Analyzer
USBlyzer
USBlyzer is an easy to use Professional Software USB Protocol Analyzer for Windows.Universal Serial Bus (USB) protocol is very complex. So the USB support software present in Microsoft® Windows® operating system family is also complex and provides a layered architecture where the system-supplied and vendor-supplied user- and kernel-mode components can be involved in communications over USB. Transactions performed over the USB are initiated by the user applications which communicate with the operating system by calling Windows API functions which in turn interact with appropriate device drivers providing access to a USB device through standard and vendor-specific interfaces.What do you do when you want to know what is going on inside the Windows USB subsystem? What USB drivers are used to connect various peripheral USB devices to a computer? What I/O requests, support routines, structures, and interfaces the core components of the Windows USB architecture use to communicate with the USB devices? What you need is a Software USB Protocol Analyzer.Analyze and Realize USB Protocol:USBlyzer is an easy to use Professional Software USB Protocol Analyzer for Windows, which provides a complete yet simple to understand view for monitoring and analyzing USB Host Controllers, USB Hubs and USB Devices activity.
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TRC-8546 , LIN Transceiver Cable
783702-03
The TRC-8546 is designed to provide flexibility in connecting a LIN bus to the NI-9860, PXIe-8510, and/or the native NI-XNET port on a cDAQ-9134 or cDAQ-9135 controller. You can connect the TRC-8546 to the port to support a LIN interface. The TRC-8546 is an … isolated cable that includes the necessary transceiver for the bus type.
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1 GHz A/D and D/A with Virtex-6 FPGA - 6U VPX
Model 57630
- Complete radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- One 1 GHz 12-bit A/D- One 1 GHz 16-bit D/A- Up to 2 GB of DDR3 SDRAM; or: 32 MB of QDRII+ SRAM- PCI Express (Gen. 1 & 2) interface up to x8- Sample clock synchronization to an external system reference- Dual-µSync clock/sync bus for multiboard synchronization- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- Ruggedized and conduction-cooled versions available- Synchronize up to twelve modules with Model 9192 System Synchronization and Distribution Amplifier- 1U Rack-mount
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3-Ch 200 MHz A/D with DDC & 2-Ch 800 MHz D/A with DUC, Virtex-7 FPGA - XMC
Model 71721
- Complete radar and software radio interface solution- Supports Xilinx Virtex-7 VXT FPGAs- GateXpress supports dynamic FPGA reconfiguration across PCIe- Three 200 MHz 16-bit A/Ds- Three multiband DDCs (digital downconverters)- Two 800 MHz 16-bit D/As- One DUC (digital upconverter)- Multiboard programmable beamformer- 4 GB of DDR3 SDRAM- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multimodule synchronization- PCI Express (Gen. 1, 2 & 3) interface up to x8- VITA 42.0 XMC compatible with switched fabric interfaces- Optional LVDS connections to the Virtex-7 FPGA for custom I/O- Supports GateXpress® FPGA-PCIe Configuration Manager- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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Isolated Relay I/O Card
mPCIe-IIRO-8
The mPCIe-IIRO-8 consists of a type F1 PCI Express Mini Card (mPCIe) interface board that connects to a Mobile-ITX-sized, DB-37M Isolation Module via an included 9” cable. That module is designed to be easily panel-mounted in any application environment. It uses the high speed PCI Express bus to transfer digital data to and from the card. The digital I/O is compatible with 8255 PPI chips making it easy to program.
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Transceivers
Transceivers implement physical layer protocols for various communications and serial bus interface standards. Maxim’s transceivers integrate a wide array of features to increase reliability and simplify designs while providing the highest levels of protection on the market. Click on the following links for more information about each of our transceiver product lines.
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Electronic DC Load, 80V, 80A, 400W With/without Remote Interfaces
LD400 Series
Versatile solution for testing dc power sourcesConstant current, resistance, conductance, voltage and power modesWide voltage and current range, 0 to 80V and 0 to 80A400 watts continuous dissipation at 28°C (360W at 40°C)600 watts short-term dissipation (up to 60 seconds)Low minimum operating voltage of <1V at 40AHigh resolution and accuracy for level settingBuilt-in transient generator with variable slewCurrent monitor output for waveform viewingVariable drop-out voltage for battery testingHigh resolution backlit graphic LCD with soft key controlAnalogue remote control of levels and TTL control of on/off and transient switchingFront and rear input terminals (front terminals 30A max.)Full bus control via USB, RS232 and LXI compliant LAN interfaces (LD400P)GPIB option (LD400P only)
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3.5" Embedded SBC With AMD LX800, Dual LANs, 4 COM, 4 USB 2.0 And VGA/TTL (-40°C To +85°C)
SBC84620
The SBC84620 supports AMD LX800 500MHz processor and full feature I/Os. It is an ideal entry level PC-based embedded platform and be able to be fanless operation for industrial applications. The new integrated graphic controller, 4 COM, 4 USB 2.0 ports and 1GB DDR memory features empower the system value without extra development cost. In the meanwhile, for the expansion interface, the SBC84620 provides PCI with Mini PCI socket and ISA bus through PC/104 interfaces. Also, SBC84620 gives the best TCO (Total-Cost-of-Ownership) for system design due to DDR memory supported.
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8U 21 Slot VME64/64X Enhanced Crate
VME8100
short circuit protection, Over / Undervoltage protection, Over temperature protection. Remote monitoring and control take place through CAN bus, Ethernet, USB and RS232 interfaces. The crates are also SBC controlled via graphic OLED Display, provides Automatic Daisy Chain and supports Chained Block Transfers (CBLT). User-friendly control software completes the VME 8100 features. The Unit is powered by 92 ÷264 Vac, 50 ÷ 60 Hz, power factor 0.98% (230VAC).
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3-Channel 200 MHz A/D and 2-Channel 800 MHz D/A with Virtex-6 FPGA - XMC
Model 71620
- Complete radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- Three 200 MHz 16-bit A/Ds- One digital upconverter- Two 800 MHz 16-bit D/As- Up to 2 GB of DDR3 SDRAM or 32 MB of QDRII+ SRAM- Sample clock synchronization to an external system reference- Front panel clock/sync bus for multimodule synchronization- PCI Express (Gen. 1 & 2) interface up to x8 wide- Optional user configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- RoHS Compliant Lead-Free Version Available- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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1100-Channel GSM Channelizer wih Quad A/D - XMC
Model 71663
- Complete GSM channelizer with analog IF interface- Four 180 MHz 16-bit A/Ds- Two banks of 375 DDCs for upper GSM band- Two banks of 175 DDCs for lower GSM band- Sample clock synchronization to an external system reference- LVPECL clock/sync bus for multimodule synchronization- PCI Express Gen. 2 x8- RoHS Compliant Lead-Free Version Available- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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Thermostation
VT-96
Thermal station VT-96 is intended for building data collection systems (distributed and remote) from thermocouple temperature sensors. The interfaces allow you to easily and quickly connect the VT-96 to a remote (via ETHERNET) or nearby computer (via USB). The integrated WEB-page provides a convenient way to check the communication with the unit and its functioning, and the standard VXIplug & play drivers reduce the costs of integrating the unit into the system and developing application software. Multiple thermostats easily integrate and synchronize with each other and other VXI instruments via a dedicated Trigger Bus.
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RFID
HF (13.56 MHz)
BIS M uses the high frequency (HF) 13.56 MHz and supports the standard according to DIN ISO 15693 and 14443. Communication modules/gateways are used for the point-to-point or bus linking and are directly connected to a serial interface of a PC/a bus interface. The Subnet16 TM bus architecture supports a subnet of up to sixteen nodes via an RS485 interface.
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16/32 -CH 16-Bit 250/500 KS/s Multi-Function DAQ Cards with Encoder Input
PCI-9222/9223
The ADLINK PCI-9222/PCI-9223 is a 16-bit, 16/32-CH, 250/500 KS/s high performance DAQ card with 8 different input ranges. It also features 2-CH 16-bit analog outputs capable of a 1 MS/s update rate, 2-CH encoder inputs, and programmable function I/O. The software-programmable function I/O supports a variety of applications, including TTL digital I/O, high-speed DIO, general-purpose timer/counter, pulse generation, and PWM output. Analog input, analog output, and function I/O at full speed simultaneously, and multiple cards can be synchronized through the SSI (System Synchronization Interface) bus if users need more channels than a single board can provide. Ideal for mixed-signal tests, laboratory research, and factory automation, PCI-9222/PCI-9223 is the best single-board solution on the market providing the best integration capability of multiple tasks with high performance and an affordable price.
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2-Channel 500 MHz A/D and 2-Channel 800 MHz D/A with Virtex-6 FPGA - XMC
Model 71650
- Complete radar and software radio interface solution- Supports Xilinx Virtex-6 LXT and SXT FPGAs- Two 500 MHz 12-bit A/Ds- One digital upconverter- Two 800 MHz 16-bit D/As- Up to 2 GB of DDR3 SDRAM or 32 MB of QDRII+ SRAM- Sample clock synchronization to an external system reference- Front panel clock/sync bus for multimodule synchronization- PCI Express (Gen. 1 & 2) interface up to x8 wide- VITA 42.0 XMC compatible with switched fabric interfaces- Optional user-configurable gigabit serial interface- Optional LVDS connections to the Virtex-6 FPGA for custom I/O- Synchronize up to eight modules with Model 7893 System Synchronization and Distribution Amplifier - PCIe
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Analog And Digital Sensor Measurement Data For CAN Applications.
K- AN8 KIT
This K-AN8 (8 analog + 4 digital input) kit contains everything needed to get the K-AN8 set up and tested on a work bench.To help with connecting sensors to the analog and digital ports the K-BoB enables easy connection with BNC connectors.Influx K-Cal is easily connected via the Kvaser LeafLight interface and Kvaser T-CANnector. (Using the Kvaser T-CANnector to power up the K-AN8 (at the desk) and terminate the CAN bus).
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GPIB-RS232, GPIB-RS232, Instrument Control Device - North America 240VAC
779732-05
The GPIB‑RS232 is an IEEE 488 controller device for computers with an RS232 port. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS232 serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS232 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488 and RS232 standards, as well as interpret and execute high-level commands from the serial port, including RS232‑to‑GPIB and GPIB‑to‑RS232 protocol conversions. This device is IEEE 488.2 compatible. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.
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AMC GBit link card/VITA 57 FMC carrier
SIS8100
The SIS8100 will be a single width mid height AdancedMC card. It will interface with a single PCI Express lane over a PLX Technology PEX811 PCI Express to local bus bridge chip and have an on board Virtex IV FPGA. The default stuffing option has a Small Form Factor (SFF) optical link medium that can be operated at 1, 2.5 and 4 GBit/s.
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PCI-8517, 2-Port FlexRay Interface Device
780685-02
2-Port FlexRay Interface Device—The PCI‑8517 is designed for developing FlexRay applications. As part of the NI‑XNET platform, the PXI‑8517 works well in applications requiring real-time, high-speed manipulation of hundreds of FlexRay frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The PCI‑8517 contains two fully functional FlexRay interfaces, allowing an individual engine control unit (ECU) to be connected to the interface when other cold-start nodes are not available. You also can use the interfaces individually to connect two separate FlexRay networks while maintaining full performance on each interface.