Interrupters
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PXI-8511, 1‑ or 2-Port, Low-Speed/Fault Tolerant PXI CAN Interface Module
780686-02
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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256 Channel Digital Input / Interrupt Output Module
DP-VXI-3099
DP-VXI-3099 is a high density module that provides 256 channels of digital input/interrupt and/or output for large scale digital input monitoring and control.
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6U, CompactPCI/PXI module
CP213
The CP213 is a single-width, 6U, CompactPCI/PXI module with either 32 or 64 differential analog input channels that can alternately be configured under software control as 64 or 128 single-ended analog input channels. A 16-bit ADC scans each channel at a scan rate chosen by the user. The number of channels scanned and scan rate are software selectable. Scans may be triggered from either the internal clock, one of eight PXI backplane triggers, the PXI star trigger bus or an external SMB connector on the module front panel. Single and continuous scan operations are supported. If single scan operation is chosen, an interrupt may be generated at the end of the scan.
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Vehicle Multiprotocol Interface Module
C Series
C Series Vehicle Multiprotocol Interface Modules use hardware-selectable NI-XNET Transceiver Cables (TRC) to communicate High-Speed/Flexible Data‑Rate CAN, Low-Speed/Fault Tolerant CAN, and/or LIN. Using the NI-XNET driver, you can create applications that require real-time, high-speed manipulation of hundreds of CAN and/or LIN frames and signals. The NI-XNET device-driven DMA engine enables the onboard processor to move frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time. C Series Vehicle Multiprotocol Interface Modules work well in applications such as hardware-in-the-loop (HIL) simulation, rapid control prototyping, bus monitoring, and automation control.
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PXIe-SMN Interface Card
Avionics Interface Technologies
2.125 Gbps Optical loop networkSingle-mode and Multi-mode optical interfaces supportedUp to 256 Shared Memory Network nodes supportedUp to 200 MByte/sec sustained data ratesMaximum 500 nS latency between nodesNetwork interrupts supportedSoftware Drivers available for Windows (7/8), Linux, LabVIEW Real-Time, and VxWorks
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Lacquered Digital I/O Board, 64 Optically Isolated I/O Channels, 24V
APCI-1564-LAC
*32 digital input channels, 24V, incl. 16 interruptible*32 digital output channels, 24V, 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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Fiber Identifier
Fiber identifier is an essential installation and maintenance instrument which can identify the optical fiber by detecting the optical signals transmitted through them,during this process the fiber optic identifier generate no harm or damage to the fiber cable and it do not need opening the fiber at the splice point for identification or interrupting the service.This fiber identifier detects frequency tones at 270Hz, 1KHZ, 2KHZ, when traffic is present on the fiber under test, an audible tone can be heard. In the meantime, it can identify the traffic direction that indicated by LED with illumination.
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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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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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PCIe Digital I/O Board, 64 Optically Isolated I/O Channels, 5V-HS
APCIE-1564-5V-HS
32 digital inputs, 5 V, isolated16 interruptible inputs32 digital outputs, 5 V, isolated, 10 to 36 V, 500 mA/channelOptical isolation 1000 VWatchdog for resetting the outputs to "0" (when Power-On)Protection against fast transients, overvoltage, electrostatic discharge and high-frequency EMIInputs: voltage reversal, input filtersOutputs protected against short circuitOvertemperature and overvoltage protectionDiagnostic report in case of short circuits, overtemperature, voltage drop ...24 V power outputs with protection diodesShutdown logic when the external supply voltage drops below 5 V
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Arduino CAN Shield
IFB-10003-AWP
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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Switch Module
STCS
The external module STCS allows performing automatically the following PT tests: ratio per tap; winding resistance; OLTC dynamic test. The connection to the transformer under test, to STS and to the measurement taps is performed just once; then, all transformer tests are performed without interruptions.
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Shared Memory Network XMC Interface
XMC-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 nodes - Network interrupts supported - Software Drivers available for Windows, Linux, LabVIEW Real-Time, and VxWorks
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USB-8502, 1-Port, High-Speed/FD, USB CAN Interface Device
784661-01
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-Plus And PCI-104 8-Port RS-232 Serial Communication
P104-COM232-8 and 104I-COM232-8
The P104-COM232-8 (PC/104-Plus) and 104I-COM232-8 (PCI-104) are PC/104-based eight channel RS-232 communication peripherals. Based on the XR17D158, the boards have eight enhanced 16550 UARTs, each with a set of modem signals (CTS, RTS, RI, DTR, DSR, CD). A 460Kb/s rate is guaranteed for all channels with up to 3K Ohm 1000pF loads. All interrupts may be monitored at a 32-bit status register. Each UART has both a 64 byte transmit and a 64 byte receive FIFO.
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Voltage Testers
The non-contact voltage tester detects live conductors on cable connections, cable drums, sockets, switches, junction boxes etc. Due to capacitive measurement procedures, no current flow is required and interruptions can be indicated quickly and accurately.
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Power System Multimeter
928A
The Model 928A Power System Multimeter with Floating-Point DSP™ Digital Signal Analysis is an AC Power measurement instrument, providing outstanding performance and flexibility in a small, hand-held package. Not only does the Model 928A measure basic data and power quantities, but it also measures power quality including harmonics, flicker, sags, surges and interruptions. Incorporating a graphic LCD display, serial communications, real time clock and an unprecedented combination of features makes the Model 928A the ideal instrument for the power professional.
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Patented GPS Jamming and Spoofing Detection Embedded in Your Device
BroadShield
PNT systems are designed to provide accurate position and time while in uninterrupted or uncontested environments. However, while in these interrupted or contested environments, most PNT systems are unable to reliably provide position and time data because they are unable to recognized what is causing the disruption. BroadShield is a software library consisting of many patented algorithms designed to detect jamming and spoofing then immediately report the disruption to the PNT system. Leveraging this information enables the PNT system to take action to mitigate and protect from the jamming or spoofing.
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Extension Kits
Ready to use extension packages for special methods e.q. high current interrupt or AC-DC-AC test on laminates.
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DDoS Detection and Mitigation
Increasingly, business is done online. This increases the risk of exposure to costly service interruptions caused by cyberattacks. Distributed Denial of Service (DDoS) attacks have emerged as one of the most common and impactful attack vectors aimed at business networks. Today, DDoS attacks account for 40% of all cybersecurity incidents, with some organisations facing multiple attacks per day. With the average throughput of volumetric attacks rising by over 3X in the last decade, DDoS prevention has become essential for any organisation that relies on its network infrastructure to do business.
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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).
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96/48-CH Opto-22 Compatible PCI Express Digital I/O Cards
PCIe-7248/7296
ADLINK"s PCIe-7248/7296 are high-density parallel digital I/O boards with 96/48 I/O channels. The header connectors are fully compatible with industry Opto-22 standard. Thus, PCIe-7248/7296 can utilize the Opto-22 external devices. The PCIe-7248/7296 devices emulate mode 0 of the industry standard 8255 programmable peripheral interface (PPI) chips. The PCIe-7248/7296 provides 4/2 PPI chips respectively. Each PPI offers three 8-bit ports: Port A, Port B and Port C. The Port C is divided into 2 nibble-wide (4-bit) ports. The PCIe-7248/7296 devices have programmable timer/counters. One 16-bit counter is available for event counting, while the other 32-bit timer is available for timed interrupt generation. The PCIe-7248/7296 devices provide multiple programmable interrupt sources from DIO channels, as well as the output of the timer.
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IP-OCTALPLUS232
IP-OCTALPLUS232 implements eight EIA-232 asynchronous serial ports, each with RXD, TXD, RTS, and CTS signals. In addition, two ports also have DCD, DTR, DSR, and RI signals. The serial ports are implemented with two Exar ST16C654 quad UARTs. Each channel has two 64-character FIFOs to allow longer interrupt servicing latencies.
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Intel 80486 DX2 Processor Board
MS 1500
- PC 104 bus and ISA bus interface- Facilitates design of scalable architectural solution for Embedded System- Back plane eliminated by self-stacking PC 104 bus- Substantial reduction of development time, cost, as well as risk- Helps to Faster time-to-market / timely product productions- Used for LCA Simulation Project- Intel 80486DX2 @ 33MHz- 512Kbytes of STATIC RAM, 2048 Kbytes of FLASH PROMS- 64 Kbytes of DPRAM- External Interrupts- RS232 Serial Interface- Watchdog Timer- External Bus Interface
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*C Series CAN Interface Module
C Series CAN Interface Modules communicate using onboard transceivers for High-Speed/Flexible Data‑Rate or Low-Speed/Fault Tolerant CAN. C Series CAN Interface Modules are either compatible with NI-XNET or the NI-985x driver, depending on model.Using NI-XNET, you can create applications that require real-time, high-speed manipulation of hundreds of CAN frames and signals. 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. C Series CAN Interface Modules work well in applications such as hardware-in-the-loop (HIL) simulation, rapid control prototyping, bus monitoring, and automation control.
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USB-8506, 1-Port, USB LIN Interface Device
784663-01
1- or 2-Port, USB LIN Interface Device—The USB‑8506 is a Local Interconnect Network (LIN) interface for developing applications with the NI‑XNET driver. The USB‑8506 is powered over the USB bus and does not require external power. The USB‑8506 excels in applications requiring logging or manipulation of hundreds of LIN frames and signals, such as in-vehicle data logging, 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. The USB‑8506 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.
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Acquisition Of 8 Displacement Transducers
APCI-3701-8
PCI interface to the 32-bit data bus Acquisition of 16 or 8 inductive displacement transducers (Half Bridge, LVDT) 8 or 16 input channels ± 10 V 16-bit resolution Measuring frequency up to 100 kHz Conversion can be triggered through software End of conversion can be inquired through software Possibility of interrupt through digital input channels (when a data or a time value is exceeded) PCI-DMA access Onboard FIFO buffers Sequence RAM 16 isolated digital I/O, 24 V Software operation Supported inductive transducers for APCI-3701Standard board APCI-3701-8 or APCI-3701-16Transducer type:
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FlowSpec DDoS Mitigation
Large volumetric-based DDoS attacks are increasing in terms of frequency and scale at which they are perpetrated. With hundreds of-gigabits worth of attacks becoming commonplace, organizations not only face service interruptions for customers but the complete implosion of their infrastructure’s operation. In the face of this increasingly challenging threat landscape, BGP FlowSpec DDoS mitigation has emerged as one of the most effective techniques to mitigate DDoS attacks. Combined with an accurate and speedy detection system, it helps manage and synchronize working with firewalls to mitigate these attacks.
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Developers' Toolkits
If you are a hardware developer, using RapidDriver Explorer with just a couple of clicks, you can easily start testing and debugging your USB, ISA, PCI or Parallel Port device. You do not have to perform any additional steps - everything is already done!If you are a software developer, you can write your own application with the help of RapidDriver Developer, TVicHW32 or TVicPort without writing a device driver and being a DDK expert - we have already built-in generic device drivers for you! Our toolkits include many test examples on direct port i/o access, interrupt handling, physical memory access, reading specific hardware registers and USB pipes to help you getting started. We also allow redistribution of drivers and DLL's as part of your software without having to pay royalties.For the software developers, we also offer an option to purchase the drivers and DLL source code. The source code can be directly edited and compiled with MS Visual C/C++ or with the DDK "build" utility.Not sure what product to choose? Compare them by features or contact us.
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PXI-8512, 1‑Port, High-Speed, Flexible Data Rate PXI CAN Interface Module
780687-01
1‑Port, High-Speed, Flexible Data Rate PXI CAN Interface Module—The PXI‑8512 is a high-speed Controller Area Network (CAN) Flexible Data-rate (FD) interface for developing applications with the NI‑XNET driver. The PXI‑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, minimize message latency and freeing host processor time for processing complex models and applications.





























