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- Pickering Interfaces Inc.
product
Modular Breakout System 78-Pin D-type Plugin Module for 40-197A
95-197A-001
The 95-197A-001 Plugin Breakout Module is designed to be fitted to a PXI 40-197A Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Panel-mounted Power Amplifier(Hardware In The Loop Simulation)
PA30Bi
PA30Bi is the panel-mounted type real time simulation amplifier with three-phase current and four-phase voltage.
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Electric Servomotor Steering HILS Tester
This device is a complex simulation test device completed by the operation of the steering system performance / durability test machine and the hardware in the loop systems (HILS) system.
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DAQStream - Integrated Rack Systems
DAQStream rack systems deliver unmatched high-density, scalable, processing intensive solutions for the aerospace and defense industry. Supported applications include: scene generation, digital simulation, and hardware in the loop testing.
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Modular Breakout System 8-Pin Power D-type Plugin Module for 40-193
95-193-001
The 95-193-001 Plugin Breakout Module is designed to be fitted to a PXI 40-193 Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 78-Pin D-type Plugin Module
95-200-001
The 95-200-001 Plugin Breakout Module is designed to be fitted to a PXI 40-200 Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 8-Pin Power D-type Plugin Module
95-191-002
The 95-191-002 Plugin Breakout Module is designed to be fitted to a PXI 40-191 Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 160-Pin Plugin Module
95-190B-003
The 95-190B-003 Plugin Breakout Module is designed to be fitted to a PXI 40-190B Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 3-Pin & 20-Pin Plugin Module
95-199-004
The 95-199-004 Plugin Breakout Module is designed to be fitted to a PXI 40-199 Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 37-Pin Plugin Module
95-294-001
The 95-294-001 Plugin Breakout Module is designed to be fitted to a PXI 40-294 Programmable Resistor Module as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 37-Pin D-type Plugin Module for 40-293
95-293-001
The 95-293-001 Plugin Breakout Module is designed to be fitted to a PXI 40-293 Programmable Resistor Module as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 50-Pin D-type Plugin Module for 40-198
95-198-001
The 95-198-001 Plugin Breakout Module is designed to be fitted to a PXI 40-198 Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 50-Pin D-type Plugin Module for 40-196
95-196-001
The 95-196-001 Plugin Breakout Module is designed to be fitted to a PXI 40-196 Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 37-Pin D-type Plugin Module for 40-295
95-295-001
The 95-295-001 Plugin Breakout Module is designed to be fitted to a PXI 40-295 Programmable Resistor Module as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 8-Pin Power D-type Plugin Module for 40-194
95-194-001
The 95-194-001 Plugin Breakout Module is designed to be fitted to a PXI 40-194 Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 8-Pin Power D-type Plugin Module for 40-192
95-192-001
The 95-192-001 Plugin Breakout Module is designed to be fitted to a PXI 40-192 Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 37-Pin D-type Plugin Module for 40-296
95-296-001
The 95-296-001 Plugin Breakout Module is designed to be fitted to a PXI 40-296 Programmable Resistor Module as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 78-Pin D-type Plugin Module for 40-201
95-201-001
The 95-201-001 Plugin Breakout Module is designed to be fitted to a PXI 40-201 Fault Insertion Switch as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Modular Breakout System 78-Pin D-type Plugin Module for 40-525A
95-525A-001
The 95-525A-001 Plugin Breakout Module is designed to be fitted to a PXI 40-525A Signal Insertion & Monitor Matrix Module as part of the Pickering MBoS. The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications.
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Bloomy Simulation Reference System
The Bloomy Simulation Reference System provides a hardware in-the-loop (HIL) test environment for dynamic, closed-loop testing of many aerospace and transportation control systems. The reference system integrates the computing, I/O, and software components needed for standalone use or to form the basis of a more complex test system.
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Test Hardware
TTPSimulate XMC/PCIe
TTPSimulate is a high-performance test system which enables the simulation of a networked TTP system in real-time. It allows full hardware in the loop verification of a TTP unit. There are two form factors available for this product – PCIe and XMC card format. Both cards can act as four independent TTP nodes and have an IRIG-B interface for time-stamping.
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Modular Breakout System Chassis Mounting Frame
95-901-001
The Modular Breakout System is designed to Simplify HILS (Hardware In the Loop Simulation) Applications. This low-cost system combines a BoB (Breakout Box) feature set with the added flexibility of an FIU (Fault Insertion Unit). By mating the FIU chassis directly to the BoB, cabling is minimized, creating a more compact reliable design and improving signal integrity.
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Simulation Systems
Bloomy offers Simulation Systems for Hardware in-the-Loop (HIL) and open loop test of electronic controls and mechanical actuators for all types of transportation and defense systems including aircraft, rail, automobiles and ships. These systems, now deployed at major aerospace, locomotive and military manufacturers and research facilities worldwide, provide world-class, high-fidelity simulated environments for use in both closed-loop and open-loop testing. Because Bloomy’s Simulation Systems are largely constructed from COTS components, time to first test can be reduced significantly, and their highly-customizable nature allows your test system experts to provide your unique IP to differentiate your product from your competitors.
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NI-9866, 1-Port C Series LIN Interface Module
781963-01
1-Port C Series LIN Interface Module—The NI‑9866 is a Local Interconnect Network (LIN) interface for developing applications with the NI‑XNET driver. The NI‑9866 excels in applications requiring real-time, high-speed manipulation of hundreds of LIN frames and signals such as hardware‑in‑the‑loop (HIL) simulation, rapid control prototyping, bus monitoring, automation control, and more. You can perform this manipulation while taking other DAQ measurements in the same CompactDAQ hardware platform or while performing low-level FPGA control and embedded monitoring in the same CompactRIO Chassis.
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Flight Control System Test Platform
The Flight Control System Test Platform provides a hardware in-the-loop (HIL) closed-loop test environment for dynamic and maintenance testing of Flight Control Systems (FCS) of both commercial and military aircraft. The system simulates control surface activities from multiple combinations of rudder, flaps, elevator, aileron, and engine controls to the FCS. The system delivers repeatable, cost-effective testing in a fraction of the time needed with typical in-house simulation test systems.
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sbRIO-9866, Non-Enclosed, 1-Port C Series LIN Interface Module
785965-01
Non-Enclosed, 1-Port C Series LIN Interface Module—The sbRIO‑9866 is a Local Interconnect Network (LIN) interface for developing applications with the NI‑XNET driver. The sbRIO‑9866 excels in applications requiring real-time, high-speed manipulation of hundreds of LIN frames and signals such as hardware‑in‑the‑loop (HIL) simulation, rapid control prototyping, bus monitoring, automation control, and more. You can perform this manipulation while taking other DAQ measurements in the same CompactDAQ hardware platform or while performing low-level FPGA control and embedded monitoring in the same CompactRIO Chassis. Non-enclosed modules are designed for OEM applications.
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NI-9861, 1-Port, Low-Speed/Fault Tolerant C Series CAN Interface Module
781962-01
1-Port, Low-Speed/Fault Tolerant C Series CAN Interface Module—The NI‑9861 is a fault-tolerant Controller Area Network (CAN) interface for developing applications with the NI‑XNET driver. The NI‑9861 is ideal for 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. You can perform this manipulation while taking other data acquisition measurements in the same NI CompactDAQ hardware platform or while performing low-level FPGA control and embedded monitoring in the same NI CompactRIO chassis.
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PCIe-7842, Virtex-5 LX50 FPGA, 200 kS/s Multifunction Reconfigurable I/O Device
781101-01
Virtex-5 LX50 FPGA, 200 kS/s Multifunction Reconfigurable I/O Device - The PCIe‑7842 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PCIe‑7842 features a dedicated A/D converter per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical DAQ hardware.
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PCIe-7841, Virtex-5 LX30 FPGA, 200 kS/s Multifunction Reconfigurable I/O Device
781100-01
Virtex-5 LX30 FPGA, 200 kS/s Multifunction Reconfigurable I/O Device - The PCIe‑7841 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PCIe‑7841 features a dedicated A/D converter per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical DAQ hardware.
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USB-7855, Kintex-7 70T FPGA, 1 MS/s Multifunction Reconfigurable I/O Device
782915-01
Kintex-7 70T FPGA, 1 MS/s Multifunction Reconfigurable I/O Device - The USB‑7855 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The USB‑7855 features a dedicated A/D converter per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical DAQ hardware.