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Lead Systems Analyst, Mark Slater walks us through the process of tuning a RedHawk Linux System for optimal real-time performance.
Case Studies | RedHawk Linux NightStar Tools iHawk
Approximately two dozen Concurrent iHawk computers are running RedHawk Linux and utilizing Concurrent NightStar real-time development tools. These solutions provide the simulation platforms needed by...
Case Studies | RedHawk Linux NightStar Tools
Concurrent announces that in June 2007 it shipped $1M in RedHawk Linux and NightStar development tools for shipboard deployment in support of the Navy’s Cruiser...
The U.S. Navy has selected RedHawk Linux as its Open Architecture Operating System for the following programs: ACTUV (Anti-Submarine Warfare Continuous Unmanned Vessel), Aegis Programs...
Data Sheets | Real-Time I/O Universal Exhaust Gas Oxygen Sensor Card
Concurrent Real Time’s UEGO is a 4-channel Universal Exhaust Gas Oxygen Sensor simulator card with a PCI Express interface that is ideal for high-performance hardware-in-the-loop...
This paper provides details for installing and running ROS 2 under the RedHawk™ Linux® real-time kernel and tools available for the NVIDIA® Jetson TX2 and...
Data Sheets | Real-Time I/O Wheel Speed Sensor Output Card
The FPGA-based Wheel Speed Sensor (WSS) Simulation card is ideal for use in high-performance hardware-in-the-loop (HIL) simulation and test applications. The WSS output card is...