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Hardware-in-the-Loop

a system's simulation test of embedded controls by the electrical emulation of it's motors, sensors and actuators.

See Also: HIL


Showing results: 91 - 105 of 136 items found.

  • ICT Software: Interactive Developmetn Encironment ICT ICE & ICT Sequencer

    ICT IDE and Sequencer - Konrad Technologies GmbH

    The ICT software consists of two parts, the interactive development environment ICT IDE and the ICT sequencer. The IDE provides a graphical user interface for convenient creation and testing of these test sequences and allows:- Convenient management of hardware resources via topology editor- Support of several independent embedded testers for parallel test execution- Editing sequences in a text or table editor- Error highlighting during sequencing- Sequence execution (also single step) directly on a selected DUT- Debugging (single step)- Loop execution via sequences, or single steps- Optimization function with regard to waiting time and integration with Shmoo plot- detailed results output within tables as well as various results diagrams- Pin-Finder function to support adapter wiring- Automatic test program generation is available via Aster Testway

  • PXIe Measurement Accelerator

    M9451A - Keysight Technologies

    The M9451A PXIe Measurement Accelerator combined with Option DPD Digital Pre-Distortion & Envelope Tracking Gateware shows what is possible when you combine state of the art FPGA's with Keysight's trusted measurement expertise and PXIe's high speed data handling. As part of Keysight's RF PA/FEM Characterization & Test, Reference Solution, this combination provides unprecedented performance for demanding envelope tracking and digital pre-distortion measurements required for testing modern power amplifiers (PAs) and front-end modules (FEMs). Hardware acceleration provides better than 20x speed improvement over Keysight's previous host-based Reference Solution, with closed/open loop digital pre-distortion (DPD) and envelope tracking (ET) measurements taking just tens of milliseconds and overall measurement times less than 70 ms.

  • PXI-8513 , 2-Port, Software-Selectable PXI CAN Interface Module

    780688-02 - NI

    2-Port, Software-Selectable PXI CAN Interface Module—The PXI‑8513 is a software-selectable Controller Area Network (CAN) interface for developing applications with the NI‑XNET driver. NI‑XNET Software‑Selectable CAN Interfaces offer the best flexibility for CAN development with onboard transceivers for High-Speed/Flexible Data‑rate, Low-Speed/Fault Tolerant Single Wire CAN as well as any external transceiver. The PXI‑8513 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.

  • PXI-8513, 1‑Port, Software-Selectable PXI CAN Interface Module

    780688-01 - NI

    1‑Port, Software-Selectable PXI CAN Interface Module—The PXI‑8513 is a software-selectable Controller Area Network (CAN) interface for developing applications with the NI‑XNET driver. NI‑XNET Software‑Selectable CAN Interfaces offer the best flexibility for CAN development with onboard transceivers for High-Speed/Flexible Data‑rate, Low-Speed/Fault Tolerant Single Wire CAN as well as any external transceiver. The PXI‑8513 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.

  • PXIe-7820, Kintex 7 160T FPGA, 128 DIO, PXI Digital Reconfigurable I/O Module

    783484-01 - NI

    Kintex 7 160T FPGA, 128 DIO, PXI Digital Reconfigurable I/O Module—The PXIe‑7820 is a reconfigurable I/O (RIO) device that features a user-programmable FPGA for onboard processing and flexible I/O operation. With LabVIEW FPGA, you can individually configure the digital lines as inputs, outputs, counter/timers, PWM, encoder inputs, or specialized communication protocols. You can also program custom onboard decision making that executes with hardware-timed speed and reliability. Each line offers software-selectable logic levels. The PXIe‑7820 supports peer‑to‑peer streaming for direct data transfer between PXI Express modules. The PXIe‑7820 is well-suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware‑in‑the‑loop (HIL) test, bit error rate test, and other applications that require precise timing and control.

  • PXIe-7821, Kintex 7 160T FPGA, 128 DIO, 512 MB DRAM, PXI Digital Reconfigurable I/O Module

    783485-01 - NI

    Kintex 7 160T FPGA, 128 DIO, 512 MB DRAM, PXI Digital Reconfigurable I/O Module—The PXIe‑7821 is a reconfigurable I/O (RIO) device that features a user-programmable FPGA for onboard processing and flexible I/O operation. With LabVIEW FPGA, you can individually configure the digital lines as inputs, outputs, counter/timers, PWM, encoder inputs, or specialized communication protocols. You can also program custom onboard decision making that executes with hardware-timed speed and reliability. Each line offers software-selectable logic levels. The PXIe‑7821 supports peer‑to‑peer streaming for direct data transfer between PXI Express modules. The PXIe‑7821 is well-suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware‑in-‑the‑loop (HIL) test, bit error rate test, and other applications that require precise timing and control.

  • PXIe-7822, PXI Express Digital RIO with Kintex-7 325T FPGA

    783486-01 - NI

    Kintex 7 325T FPGA, 128 DIO, 512 MB DRAM, PXI Digital Reconfigurable I/O Module—The PXIe‑7822 is a reconfigurable I/O (RIO) device that features a user-programmable FPGA for onboard processing and flexible I/O operation. With LabVIEW FPGA, you can individually configure the digital lines as inputs, outputs, counter/timers, PWM, encoder inputs, or specialized communication protocols. You can also program custom onboard decision making that executes with hardware-timed speed and reliability. Each line offers software-selectable logic levels. The PXIe‑7822 supports peer‑to‑peer streaming for direct data transfer between PXI Express modules. The PXIe‑7822 is well-suited for a wide variety of applications, such as high-speed waveform generation, sensor simulation, hardware‑in‑the‑loop (HIL) test, bit error rate test, and other applications that require precise timing and control.

  • 6000 Series Digital I/O Modules

    Pacific Instruments, Inc.

    Series 6000 digital I/O modules record signals from frequency counters, flow meters, encoders, discrete transducers, IRIG time, etc. which are often part of the test environment. These digital signals are time aligned and recorded alongside the system’s analog measurements. High density digital inputs provide an opportunity to easily include facility controls like switches, valve positions, relays, lights, etc. along with the test data. Series 6000 digital I/O modules also provide outputs generated by user command or automatically by Sequence, Alarms or DSP. User generated outputs are accomplished in software while sequencers can be programmed prior to a test and initiated by program or hardware control. Alarm conditions preprogrammed on the analog side can automatically generate digital outputs which are typically connected to facility control systems or PLCs. A DSP adds powerful real-time processing and is appropriate for PID control loops, derived parameter calculations and a variety of other real-time operations.

  • Custom Testing Solutions

    Enable Integration

    Test and MeasurementEnable increases the robustness of your test and measurement solutions, thereby reducing errors and associated costs. Data Acquisition (DAQ)Enable defines and builds custom DAQ systems for automated measurements of any process or manufactured part. Control and AutomationEngineeringEnable ensures that your processes are programmed to be safe, effective and optimized for both speed and quality. Real-Time and Mission CriticalSystemsEnable develops dependable real-time systems and Hardware in the Loop (HIL) simulations for high-speed applications. Motion ControlEnable creates software for synchronized multi-axis robotic control of velocity, position, force and action. Machine VisionEnable implements software and hardware-based solutions for precise image analysis, data extraction and vision-guided machine control. R&D Systems/Product DevelopmentEnable’s team of engineers and scientists works with you to address and solve problems containing technical challenges and uncertainties. Electronic Test SystemsEnable programs and builds software and hardware-based solutions for accurate measurements, from DC to RF. Mobile App DevelopmentEnable enhances your systems by integrating custom iOS and Android apps. Web DevelopmentEnable enhances your systems by integrating desktop and mobile web frameworks using PHP, CSS and HTML5. Database DevelopmentEnable decentralizes your data storage to be online, secure and accessible from anywhere.

  • Satellite Network Simulator

    DataSoft Corp.

    The DataSoft Satellite Network Simulator is a real-time software tool capable of simulating satellite links by operating as a hardware-in-the-loop tool for layer-2 verification and validation, or, as an offline planning tool for capacity and availability analysis for planned deployments.

  • SIMulation Workbench

    Concurrent Real-Time

    A comprehensive framework for developing and executing real-time hardware-in-the-loop and man-in-the-loop simulations.

  • HIL and RCP DFIG Laboratory

    Opal-RT Technologies Inc.

    This laboratory combines the best of both OPAL-RT and Festo solutions to deliver academic researchers and teachers with the ideal Hardware-in-the-Loop (HIL) and Rapid Control Prototyping (RCP) simulation system to conduct experiments and teach in the fields of electrical machinery, power converters and wind energy generation.

  • 3-Axis Motion Simulators

    ACUTRONIC Switzerland Ltd

    When a device under test needs to be stimulated with simultaneous movements around three axes, then a product from the ACUTRONIC three-axis motion simulator range is the right choice. Independent motion simulation in three axes makes them very versatile: they are used as Inertial Guidance Test Systems (IGTS), for HardWare-In-the-Loop (HWIL) testing, for the test of optronic pointing devices, and many more applications.

  • 5-Axis Hardware-In-the-loop Systems

    ACUTRONIC Switzerland Ltd

    Combining a 3-Axis Flight Motion Simulator (FMS) with a 2-Axis Target Motion Simulator (TMS) leads to a 5-Axis motion simulator design. This allows comprehensive HardWare-In-the-Loop tests (HWIL) for testing and development of guided missiles, munitions and other inertial systems. Almost 100% of all HWIL systems worldwide delivered over the last 50 years have been designed and built by ACUTRONIC and CARCO Electronics.

  • 2-Axis Rate and Position Tables

    ACUTRONIC Switzerland Ltd

    When a device under test needs to be stimulated with simultaneous movements around two axes, then a product from the ACUTRONIC two-axis motion simulator range is the right choice. Due to their independent motion simulation in two axes they are very versatile: they are used as Inertial Guidance Test Systems (IGTS), for HardWare-In-the-Loop (HWIL) testing, for the test of optronic pointing devices, and many more applications.

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