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Product
Linux-based Development Platform For The GridARM™ ΜController
PEAK gridARM Evaluation Board
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The ARM7 microcontroller gridARM™ was developed by Grid Connect® as a system on a chip solution (SoC) for the implementation of embedded applications with a focus on industrial communication. The Evaluation Board PEAK-gridARM is a Linux-based development platform for the gridARM™ microcontroller. It has connections for Gigabit Ethernet, high-speed CAN, USB 2.0, RS-232, SPI and I²C. The digital and analog inputs of the evaluation board can be manipulated with buttons and potentiometers. The states of the microcontroller, the supply and the message traffic are displayed via LEDs. A board support package for Linux enables access to the hardware resources of the PEAK-gridARM evaluation board.
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Product
Ignition Driver Units
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A compact inductive ignition drive unit which drives two banks of five ignition coils. The drivers are controlled via direct logic signals from a host ECU and provide fire-by-fire diagnostics back to that unit via CAN. The coils can be run at voltages up to 30V with this unit in order to minimize dwell times for optimum response.
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Product
PXI Vehicle Multiprotocol Interface Module
Interface
PXI 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. PXI 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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Product
CAN/FlexRay/Differential Bus PXI Fault Insertion Switch - 4 Channel
40-200-004
CAN Interface
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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Product
Instrumentation System
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Reach Technologies has leveraged the success of its automotive instrumentation, and applied it to other industries. The availability of established CAN products, coupled with its robustness, makes CAN a cost effective instrumentation solution. The software back-end of our instrumentation system is comprised of a server to interface to the data loggers, a database server to manage the data, and a web server for control and data visualization.
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Product
(4×30)-Ch 3A-250VAC 24VDC Matrix
YAV90120
Matrix Switch Module
120 relays SPST matrix 4×30 3Amps 1wire Max switching up to 62,5VA CAN Control (or Ethernet with Ethernet to CAN Gateway) Drivers dll & VIs available
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Product
Expandable Industrial IoT Gateway With TI AM6734 Quad Cortex A53
ECU-1270
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TI AM6734 Quad-core Cortex A53 CPU up to 1.4GHzLPDDR4 2/4GB up to 8GB, eMMC 32GB for system storage2x isolated serial ports, configurable for RS232/4852x 10/100/1000 Ethernet portsAdd-on modules available for CAN FD/serial/digital I/O expansionSlim, robust, and fanlessSupports SD cards and OTA firmware updates
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Product
SMARC V1.0 SoM With IMX6 Quad/DualLite 800 MHz (Industrial) SoC, 1GB RAM, 4GB EMMC, GbE LAN, Audio, CAN, MIPI And PCAM
SCM120
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*SMARC 1.0 (82 x 50 mm)*Ultra low power consumption Cortex™-A9*2 CAN 2.0B*24-bit TTL signal*LVDS/HDMI 1080P*10/100/1000 Mbps Ethernet*Linux3.0.35/Android 4.3*Audio
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Product
Control Module
ZET 7160-S
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ZET 7160-S is a step engine control digital unit with CAN 2.0 interface. A step control signal is fed from the digital port. It determines the number of steps the step engine must be turned by, and the speed the step engine is to move with.
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Product
PCIe-Mini -IO Controller
PCie-Mini-CAN-USB
Controller
The PCIe-Mini -CAN board is engineered around the NXP LPC2387 microcontroller.This highly integrated 32 bits microcontroller based on the ARM7TDMI-S processor, has a very low power consumption and features 512 kB of on-chip high-speed flash memory.
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Product
Testing of Rear Axle Steering
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*2 high-precision servo axes for linear load simulation*Communication via CAN / Flexray*Function and noise measurements (NVH)*Supply and discharge of the test specimens via WTs on double belt conveyors*Connection to the production control
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Product
CAN-BUS Shield
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The CAN-BUS Shield provides your Arduino or Redboard with CAN-BUS capabilities and allows you to hack your vehicle. This shield allows you to poll the ECU for information including coolant temperature, throttle position, vehicle speed, and engine rpms. You can also store this data or output it to a screen to make an in-dash project.
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Product
Automotive Ethernet Rx Compliance Software
AE6910R
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Unlike CAN, LIN, or MOST, the IEEE standard for automotive Ethernet demands rigorous compliance verification using specific test cases. The test requirements include complex measurements: vector network analysis with S-parameters, bit error rate (BER) test, and protocol analysis of high-speed digital signals.
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Product
(8×32)-Ch 0,5A-200VAC Matrix
YAV90062
Matrix Switch Module
256 relays SPST matrix (4×64 1 pole) or (4×32 2 poles). Max switching 10W CAN Control (or Ethernet with Ethernet to CAN Gateway) Drivers dll & VIs available
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Product
Data Acquisition System - 3U 1-Slot
DAQ-31CP0G
Data Acquisition Module
The DAQ-31CP0G is a preconfigured rugged system with a high-performance, low power ARM® Cortex®-A9 processor. It is ideally suited to support a multitude of data acquisition applications that require high-density, multichannel, programmable communications consisting of: ARINC 429/575; Dual-Redundant, Quad Channel MIL-STD-1553B; CANBus (CAN 2.0 A&B or J1939) and Dual-Port Gig-E Ethernet.
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Product
Communication Data Logger
LE-270A
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LE-270A is a Communication Data Logger, which records CAN/LIN communication logs in the SD/SDHC card for long hours. Using with a PC, it performs as a CAN/LIN protocol analyzer, and monitors data on the PC at real time (Line Monitor). Using without a PC, it performs as the CAN/LIN data logger, and saves data in the SD/SDHC card. It has two High-speed CAN transceivers, two Low-speed CAN transceivers and two LIN (TJA1020) transceivers. It monitors two channels of CAN or LIN, or one CAN and one LIN transceivers. In addition, four channels of Analog/Digital signals can be recorded.
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Product
CAN Cable (CAN And LIN Cable)
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The CAN Cable connects C Series CAN Interface Modules, C Series LIN Interface Modules, or C Series Multiprotocol Interface Modules to devices, breakout boxes, and accessories. This cable is sometimes referred to as CAN Cable (single termination or no termination). Additionally, the DB9F-DB9F CAN Cable is compatible with high-speed, flexible data-rate, and low-speed/fault tolerant CAN signals. The cable is also available with or without termination, and in different lengths.
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Product
ARINC825 Cards
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AIM’s ARINC825 cards can work either with full functionality as an active CAN node for testing and simulating or in listening only mode for monitoring and recording purposes of Avionic CAN bus (ARINC825) applications on up to 4 electrically isolated CAN bus nodes concurrently. All nodes are in conformance with the ISO11898-1/-2 standard. They are accessible by software separately and can be used as 4 independent CAN bus nodes. An onboard IRIG-B time decoder allows users to accurately synchronize single or multiple modules to a common time source. All supported signals are available through front I/O and rear I/O interface. ARINC825 cards consist of FPGA based CAN interface controllers as well as a FPGA based 32-bit microcontroller core and a separate processor for IRIG-B synchronization with high resolution time stamping. All nodes are operating concurrently at CAN bus high speed bit rate of up to 1Mbit/s with the intelligence to process scheduling of CAN frames in real time onboard to significantly off-load the host processor.For embedded applications the AMC825-4 PMC module is available in a conduction cooled version. Using AIM’s family of PCI, CPCI (3U and 6U) and VMEbus carrier cards for PMC our clients have off the shelf solutions in a broad range of card formats. ARINC825 (CAN bus) modules are delivered with an Application Programming Interface (API) and Driver Software compatible with Windows, Linux and VxWorks.An ARINC825 Resource Component is available for AIM’s PBA.pro™ databus test and analysis tool including Tx and Rx simulation capabilities, a Chronological Bus Monitor and support for decoding of payload data within CAN messages. This allows to implement a powerful ARINC825 (CAN bus) analyzer or a complete test system in conjunction with other AIM avionics databus interfaces and PBA.pro™ supported 3rd party hardware.
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Product
Switched Power Distribution Module, CAN Control
H730008BS
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The intelligent Power Distribution Unit (PDU) H7300.08xx has two main functions:• Distributing the power to each device in a system• Switching on the devices sequentially, in order to minimize the inrush current from the switched power supplies, that might affect the contactors.The PDU has electrical monitoring of the load status in order to ease troubleshooting and maintenance tasks:• There are two light indicators per socket, to inform the user about:– Whether the plugged devices main switch is turned ON. This is helping to identify plugged devices with their main switch OFF, that therefore cannot be controlled by the PDU– Whether the power for the socket is ON. Therefore, (P ON) indicates that the PDU is giving power to the device.All the relays are CAN bus controlled.The unit has an extra power terminal block in order to extend to other units (connect more PDUs).
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Product
4x (1 to 4) + 1x (4 to 1) 50 Ohm 2.5GHz Mux
YAV91500
Multiplexer Module
5x (1×4) Mux + 2x Pass trough30Vac/dc, 10W MaxMax current 500mACAN Control (or Ethernet with Ethernet to CAN Gateway)Drivers dll & VIs availableReflective
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Product
(2×32)-Ch 1A-1500VDC 24VAC Matrix
YAV90097
Matrix Switch Module
32-Lines selectable High-Open-Low connection 3kV 1,0A Relays (Cool connection) Hipot test capabilities CAN Control (or Ethernet with Ethernet to CAN Gateway) Drivers dll & VIs available
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Product
1Gsps, 9 Channel, Logic Analyzer with Protocol Analyzer plugins and Hardware Compression
DigiView™ DV509
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- Physical Channels: 9- Sample rate: 4ch@1 Gsps or 9ch@500Msps (4 ch. are sampled every 1ns or 9 ch. are sampled every 2ns)- Typical capture: 100M transitions (> 1B samples)- Hardware based triggers with 8 universal match circuits, and partitionable 16 stage sequencer- Adjustable Threshold (± 4V)- Real-time, Hardware-based, Adaptive Compression- Channels protected to ± 20V- Ground leads protected to ± 12V- High-quality test leads: 66 strand soft copper wires, flexible insulation, and gold plated connectors. Fit .025 square posts as well as the included clips.- Extra ESD protection- Streaming storage with auto fall-back to Store & Forward mode ensures large storage and reliability.- USB 3.0 (SS) or USB 2.0 (High Speed)- USB powered- Each DigiVIew includes all avialable Protocol Analyzer plugins (including: I2C, SPI, CAN, Async, Sync, 1-wire, I2S, TDM)- Free Plugin Developers' Kit- Requires Windows 7 or greater OS (32bit or 64bit)- Free Lifetime sofware updates.- 1 year warranty
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Product
High Speed LAN Router
ICR-4401
Router
ICR-4400, GLOBAL, 5x Ethernet, 1x RS232, 1x RS485, CAN, SFP, USB, SD, Without Accessories. Quad-core CPU with 1 GB RAM. 5× Gigabit Ethernet, SFP Connector for SFP modules up to 10 Gbp.
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Product
OBD-II Breakout Box
PPECB
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The Power Probe OBD-II Breakout Box is a CAN Bus circuit tester compatible with 12 and 24 Volt systems. The tool connects directly into the Vehicle’s Data Link Connector (DLC) testing for any abnormalities such as shorting and reverse polarity at the pins. If shorting or reverse polarity is present, connecting the PPECB first will prevent harm before connecting a Diagnostic Scan Tool. The Breakout Box provides a live display of present communicating signals without having to use a Digital Multimeter. Additionally, you can quickly test the voltages at all 16 pins.
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Product
PMC Module With 2 Or 4 CAN Bus Nodes ARINC825 Compliant For Testing & Simulation Of Avionic CAN Bus Systems
AMC825-x
PMC Module
ARINC825 (CAN bus) Test & Simulation module for PMC with 2 or 4 electrically isolated CAN bus nodes operating concurrently at CAN bus high speed bit rate of up to 1Mbit/s. The AMC825-x PCI Mezzanine Card (PMC) can work either with full functionality as an active CAN node for testing and simulating or in Listening Only mode for monitoring and recording purposes.
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Product
CAN Sensoy/ Interface
Strain
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Reach Technologies' CAN Strain Sensor Interface sources, conditions and digitizes 8 strain sensor inputs for collection via CAN. The module is ideal for conveniently adding strain data to a distributed CAN network. The CAN Strain Sensor Interface is configurable via a CANopen stack.
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Product
5G Router
ICR-4461W3
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ICR-4400, GLOBAL, NAM, 5x Ethernet, 1x RS232, 1x RS485, CAN, Wi-Fi, SFP, USB, SD, Without Accessories. 5G NR Cellular Connectivity, Sub-6GHz. 3GPP Release 16, Support both NSA and SA modes. Quad-core CPU with 1 GB RAM.
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Product
PXIe-8510, 2-Port PXI Vehicle Multiprotocol Interface Module
784121-01
Interface
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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Product
PCIe-8510, 2- or 4-Port, PCIe Vehicle Multi-Protocol Interface Device
785325-01
Interface
2- or 4-Port, PCIe Vehicle Multi-Protocol Interface Device—The PCIe‑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 PCIe‑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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Product
Arduino CAN Shield
IFB-10003-ANP
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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!





























