Interrupters
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Digital I/O Board
CPCI-1500
16 digital inputs, 24 V, including 14 interruptible inputs 16 digital outputs, 24 V, 500 mA/channel Optical isolation 1000 V Input and output filters Watchdog, timer After power-on the outputs are reset to ì0î
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Optical Fiber Identifier
TM301
TM301 Optical Fiber Identifier (Live Fiber Detector) is an essential instrument for the installation and maintenance of optical fiber projects. It can easily detect any spot of SM fiber cables. Through inserting a 1310 or 1550 modulated signal into the fiber, it is used to indicate the direction of the transmitting signals, find and locate the specific fiber without interrupting the normal work during the installation, cabling and maintenance.
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MAX31856 Thermocouple Sensor Arduino Shield
SEN-30007-T
Quad channel thermocouple Arduino shield based on the MAX31856 universal digital thermocouple interface IC. This is an exciting update of the MAX31855, with improvements in resolution (19 vs 14 bits), on-board temperature reference (6 vs 4 bits), and compensation (fully compensated vs nonlinear correction required). The MAX31856 is interfaced via 4-wire SPI with options for interrupt triggering. An LDO and a high-speed level shifter are included on ALL device pins to allow interfacing with to any Arduino - both 3.3V and 5.0V variants - without sacrificing device performance in any operating condition.
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Digital I/O Board, 64 Optically Isolated Digital I/O Channels, 3.3V
APCI-1564-3.3V
*For 3.3V PC systems*32 digital input channels, 3.3V, incl. 16 interruptible*32 digital output channels, 3.3V, 500 mA / channel*Optical isolation 1000V*Input and output filters*Watchdog, timer*After power/ON the outputs are reset to ì0î
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PCI Express Digital I/O Card With Counters And IRQ
PCIe-DIO-24HC
This product is a x1 lane PCIe DIO board with basic DIO, Counter/Timers and interrupt generation capabilities. The card uses an 8255 compatible chip, providing 24 DIO lines. The DIO lines are grouped into three 8-bit ports: A, B, and C. Each 8-bit port is configured via software to function as either inputs or outputs. Port C is further broken into two 4-bit nybbles via software, configured as either inputs or outputs.
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PCI, IEEE 488 GPIB Instrument Control Device for Windows, Low Profile
783007-01
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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Arduino CAN Shield
IFB-10003-INP
CAN (Controller Area Network) communication has become ubiquitous in industry. It is used in automotive applications (part of OBD and many other datalinks), on-highway trucks (J1939), industrial machinery and instrumentation, and equipment applications (factory automation). This shield is designed to provide a CAN 2.0 front-end interface for 5V Arduino modules (Uno, Mega, etc). The module uses SPI to communicate to the Arduino, and requires an aditional chip select pin. An optional interrupt line to the MCP2515 and two LEDS are also provided. The chip select and interupt lines are selected via zero ohm resistors and have several configuration options for flexibility stacking additional shields. A set of stackable headers is included with this board, not installed. An optional on-board voltage regulator may be used to supply 7.5V to the Arduino's 'Vin' pin (which is regulated to 5V by the Arduino's on-board LDO). The CAN shield regulator supports a wide input range of 9V to 32V. This makes it possible to cleanly build a stand-alone CAN node (remote sensor) without the need for a separate Arduino power supply!
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STD Bus Backplane
VECTOR Electronics and Technology, Inc.
Vectorbord® STD Bus industrial backplanes per IEEE 961 microcomputer bus, compact and rugged are fully assembled and tested. Designed for 4.5” X 6.5” plug-in boards, Vector STD Bus backplanes are available in 8 or 16-slots. Speed capability up to 10MHz; 2-layer design. Ample positions for decoupling capacitors; interrupt priority lines.
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PXIe-8510, 6-Port PXI Vehicle Multiprotocol Interface Module
784122-01
2- or 6-Port PXI Vehicle Multiprotocol Interface Module—The PXIe‑8510 is a hardware-selectable controller area network (CAN) and/or local interconnect network (LIN) interface for developing applications with the NI‑XNET driver. The PXIe-8510 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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PCI Three-Axis High Performance Laser Board with External Sampling
N1231B
The Keysight N1231B PCI Three-Axis Laser Board with External Sampling is a register based PCI bus board that implements three axes of laser interferometer measurement for position monitoring and closed-loop servo control. There are four external sample inputs along with four data hold inputs that allow easy synchronization with user systems. Several threshold compare registers, with both hardware outputs and interrupt capability, can be used for travel limit and in window or out of window detection functions. The dual mode hardware position outputs, controlled by the hold inputs, provide either a 32-bits/axis parallel interface or a 36-bit multiplexed interface to the 36-bit axis position data at rates up to 20MHz. The user can programmatically access the externally sampled position and velocity data, as well as software sampled position and velocity data, over the PCI bus at rates up to 100kHz (3 axes of position and velocity) or 200kHz (position or velocity only).
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48 Channel Isolated Digital Input/Output Module
DP-VME-3078
DP-VME-3078 is a 48 Channel Isolated Digital Input Output Module. This module provides 48 input / interrupt channels and 48 digital output channels with isolation. The 48 channel inputs are divided into 12 groups, each group consisting of 4 channels and 1 common GND .The 48 output channels are divided into 6 groups, each group consisting of 8 channels and a common GND.
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USB-8502, 2-Port, High-Speed/FD, USB CAN Interface Device
784662-01
1- or 2-Port, High-Speed/FD, USB CAN Interface Device—The USB-8502 is a high-speed controller area network (CAN) interface for developing applications with the NI‑XNET driver. The USB‑8502 is powered over the USB bus and does not require external power. It excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals such as 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 applications. The USB‑8502 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.
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PC/104 Input/Output Module providing 96 lines of digital I/O
PCM-UIO96C-16
The PCM-UIO96C-16 is a highly versatile PC/104 input/output module providing 96 lines of digital I/O. One important feature of this card is its ability to monitor 48 of the 96 lines for both rising and falling digital edge transitions, latch them, and then interrupt the host processor notifying that a change-of-input status has occurred. This is an efficient way of signaling the CPU of real-time events without the burden of polling the digital I/O.
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PCI-8512, 2-Port, High‑Speed/FD CAN Interface Device
780683-02
The PCI‑8512 is a high-speed controller area network (CAN) flexible data-rate (FD) interface for developing applications with the NI‑XNET driver. The PCI‑8512 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-8516, 2-Port PXI LIN Interface Module
781366-01
2-Port PXI LIN Interface Module—The PXI‑8516 is a Local Interconnect Network (LIN) interface for developing applications with the NI‑XNET driver.The PXI‑8516 excels in applications requiring real-time, high-speed manipulation of hundreds of LIN 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 LIN frames and signals between the interface and the user program without CPU interrupts, minimize message latency, and free host processor time for processing complex models and applications.
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Test Engines
Verified Systems International GMBH
The test system cluster architecture is based on dual CPU or 4-CPU PCs acting as cluster nodes. The nodes communicate and synchronise over a high-speed network (Myrinet or InfiniBand). A modification of the Linux operating system allows to run the test execution and evaluation algorithms in hard real-time on reserved CPUs, where scheduling is non-preemptive and controlled by the test system itself. The interrupts caused by interfaces to the system under test may be relayed to CPUs designated explicitly for their handling. This approach offers the opportunity to utilise high-performance standard hardware and the services provided by the widely accepted Linux operating system in combination with all mechanisms required for hard real-time computing. The cluster architecture presents an opportunity to distribute interfaces with high data throughput on different nodes, so that PCI bus overload can be avoided. In addition, the CPU load can be balanced by allocating test data generators, environment simulations and checkers for the behaviour of the system under test ("test oracles") on dedicated CPUs.
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Analog I/O Board
VME-3128A
The VME-3128A scans 16, 32, 48 or 64 channels, continually digitizes all of them and stores the results. Choose from 64 differential or single-ended inputs and program VMEbus interrupts and interval timer to meet the unique requirements of your mission.
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VME Power Supply
VME is a high speed and high performance bus system with powerful interrupt management and multiprocessor capability. It was created by combining VERSA-bus electrical specifications (1979) with the Euro card format resulting in the VME-bus Revision A - 1981 specification. The VME-bus specification has since then been refined through revisions B (1982), C, C.1, IEC 821 & IEC297 and IEEE 1014-1987. VME represents one of today's most used industry bus .
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RS232 I2C Adapter
12C Master
*I2C frequency adjustable up to 400kHz*I2C level shifter, I2C level from 2V to 15V*Interrupt input for external events*Simple software interface (ASCII commands)
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10-CH General Purpose Timer/Counter & 8-CH DIO Module
cPCI-8554
- PICMG 2.0 Rev 3.0- Four 82C54 programmable timer/counter chips- Up to 12-CH 16-bit timer/counter- 1-CH 32-bit cascaded timer based on 8 MHz clock source- Four programmable clock sources for each timer/counter- Programmable de-bounce filters for external clock & external interrupt inputs- 8-CH TTL digital inputs & 8-CH TTL digital outputs- +12 V and +5 V power available on the connector
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Multifunctional Meter
AEM-DR
Provide high accuracy measurement, display and remote communication of single phase & three phase parameters (V, A, P, Q, S, PF, Hz, Kwh). Multicircuit design and relay output modular expansion design decrease the overall cost and make the functionality more flexible. All monitored data is available via a RS485 serial , for the needs in energy management, alarming, and remote controlling. Embedded flash memory for Data-Logging can avoid any data missing once the communication is interrupted. Moreover, its ultra compact size DIN-rail mounting makes itself mountable in virtually any panel, enclosure or indoor Cabinet.
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Digital I/O Board, 32 Isolated I/O Channels, 24V
APCIE-1500
The PCI-Express 32 digital I/O board APCIe-1500 has 32 digital inputs/outputs (24 V or 12 V), 14 inputs are interruptible. The 16 digital power outputs are equipped with protection diodes and filters. The board is fully compatible to the PCI board APCI-1500. It is especially suited for applications like industrial I/O control, signal switching, ON/OFF monitoring of motors, lights etc. in the harsh industrial environment. The APCIe-1500 has interruptible inputs. They supersede continuous cyclical query processes (polling) for routine monitoring and evaluation tasks. This takes load off the processor and the software. At a change of state of the digital inputs the APCIe-1500 generates an interrupt, so that the system reacts on the event through the interrupt routine and herewith fulfils real-time criteria.
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Shared Memory Network PCI Express Interface
PCIe-SMN
Avionics Interface Technologies
2.125 Gbps Optical loop network - Single-mode and Multi-mode optical interfaces supported - Up to 256 Shared Memory Network nodes supported - Up to 200 MByte/sec sustained data rates - Maximum 500 nS latency between nodesNetwork interrupts supported - PCIe 2.0 (x4) CompliantSoftware Drivers available for Windows, Linux, LabVIEW Real-Time, and VxWorks
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RTD Measurement for PCI
PCI390
The PCI390 features six 2-, 3-, or 4-wire high-accuracy RTD measurement channels. Each channel has programmable alarm limits on which an interrupt can be issued. The local DSP (TMS320C203) performs linearization, auto-calibration and alarm-limit checking. Sensor-data is available in °C, °F, K and Ohms. All inputs are optically isolated from the system.
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PXI Signal Insertion Switch Module
PXI Signal Insertion Switch Modules, also known as fault insertion units (FIUs), provide a set of feedthrough channels, which make the switch transparent to the system when closed. You can open or short these channels to one of two fault buses, allowing you to simulate open or interrupted connections as well as shorts between pins, shorts to battery voltages, and shorts to ground on a per-channel basis. When controlled with the LabVIEW Real-Time Module, the PXI Signal Insertion Switch Module can validate the integrity of control systems including engine control units (ECUs) and full authority digital engine controls (FADECs). You can also use the FIU models for hardware-in-the-loop (HIL) applications and electronic reliability tests.
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ICT/FCT Probes
During in-circuit testing (ICT), each component of an electronic assembly is checked for faults. Short circuits, interruptions, soldering or component faults are detected and assemblies are rejected according to a go/no-go test.During functional testing (FCT), the assemblies are tested completely or in partial areas for the intended operation. The function test of the modules is carried out in the end application or in an environment that simulates the end application.
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1553Guard
MIL-STD-1553 bus architecture is a threat that adversaries can leverage to compromise your equipment and spread malicious software through your Serial Data Bus (SDB) system. You need a solution that can not only identify current and future cyberattacks in real-time but also instantly eliminate those threats before they wreak havoc and interrupt the mission.
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An IEC 61000-4-11 Full Compliance Voltage Dip SimulatorModel: VDS-2002
VDS-2002
NoiseKen's new VDS-2002 offers easy and accurate test and following features: Dip, swell, interruption and variation tests up to 16A 240V single-phase AC, interruption test up to 125V DC, preset levels 0%/40%/70%/120%, open and short mode selection for interruption and optional Windows software.
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ARINC 429 Test And Simulation PXI Module
PXI-C429
*4, 8, 16 or 32 software programmable TX / RX channels*Programmable high / low speed operation*Simultaneous operation of all TX / RX channels*PXI interrupts, star trigger, and PXI clock*Error entry and detection*128 MB RAM*Label selective triggering for recording / filtering*IRIG-B timecode encoder / decoder for data correlation*Real-time recording and later analysis of multiple channels*Supports: C, C ++, C # and .net*Driver support: Windows, Linux, VxWorks and other systems
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PXIe-2514, 7-Channel, 40 A PXI Signal Insertion Switch Module
780587-14
PXIe, 7-Channel, 40 A PXI Signal Insertion Switch Module—The PXIe‑2514 fault insertion unit (FIU) is designed for hardware‑in‑the‑loop (HIL) applications and electronic reliability tests. Each module has a set of feedthrough channels that you can open or short to one or more fault buses. You can use this architecture to simulate open or interrupted connections as well as shorts between pins, shorts to battery voltages, and shorts to ground on a per-channel basis. When controlled with the LabVIEW Real-Time Module, the PXIe‑2514 is ideal for validating the integrity of control systems including engine control units (ECUs) and full authority digital engine controls (FADECs).





























