BQR
BQRG's software suite offers patented tools for automated electronic design analysis and optimization to enhance your design processes:
SynthelyzerTM ECAD Plugin supercharges PCB design by providing real-time stress analysis, derating, and thermal simulations, all while seamlessly integrating with ECAD systems to ensure optimal component choices and avert costly mistakes.
fiXtress® stands out as a powerful asset in reliability engineering; featuring cutting-edge FMECA, stress, and failure predictions, it helps to prolong product life and reduce downtime significantly. When paired with Synthelyzer™, this combination leads to unmatched design optimization.
CircuitHawk™ helps speed up time-to-market by identifying design issues at an early stage, and its sophisticated verification and stress analysis capabilities lay a solid groundwork for creating dependable products.
apmOptimizer® is designed to enhance asset value and operational efficiency; through LCC analysis and predictive maintenance strategies, it helps lower costs, optimize spare parts inventory, and guarantees seamless operations.
Finally, CARE® prioritizes product safety and ensures adherence to regulatory standards, providing a complete solution for compliance and quality assurance in your designs. This suite collectively transforms the electronic design landscape, making it more efficient and reliable.
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Innoslate
SPEC Innovations offers a premier model-based systems engineering solution aimed at helping your team accelerate time-to-market, lower expenses, and reduce risks, even when dealing with the most intricate systems. This solution is available in both cloud-based and on-premise formats, featuring an easy-to-use graphical interface that can be accessed via any current web browser.
Innoslate provides an extensive range of lifecycle capabilities, which include:
• Management of Requirements
• Document Control
• System Modeling
• Simulation of Discrete Events
• Monte Carlo Analysis
• Creation of DoDAF Models and Views
• Management of Databases
• Test Management equipped with comprehensive reports, status updates, outcomes, and additional features
• Real-Time Collaboration
Additionally, it encompasses numerous other functionalities to enhance workflow efficiency.
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Altair Embed
It offers an extensive selection of pre-designed models across multiple engineering disciplines, combined with a powerful search feature to help locate a model that meets your unique design requirements, as well as substantial support for various targets. The Embed library is rich with different motor models and control strategies suitable for both sensored and sensorless applications, providing a solid groundwork to accelerate embedded motor control projects for any type of electric motor, including AC induction, BLDC, PMSM, brushed DC, and stepper motors. Furthermore, Embed allows users to seamlessly model and simulate entire physical layer data communication systems, enabling them to determine the energy and bit specifications needed for a given bit error rate over a diverse range of modulation, encoding, and channel configurations, which significantly boosts project efficiency. This all-encompassing toolset not only simplifies the design workflow but also encourages creativity in the advancement of sophisticated motor control and communication systems, ultimately leading to groundbreaking developments in these fields. The combination of these features empowers engineers to innovate and refine their projects like never before.
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IBM Engineering Lifecycle Management
IBM Engineering Lifecycle Management (ELM) stands out as a state-of-the-art, comprehensive engineering solution, adeptly steering users through all phases, from gathering requirements to systems design, managing workflows, and overseeing testing, while simultaneously augmenting the functionality of ALM tools to cater to complex systems development. By adopting a comprehensive viewpoint throughout the product lifecycle and creating a solid digital framework for data traceability, organizations can effectively track changes, which helps in minimizing risks and reducing costs.
Addressing the complexities of engineering from initial concepts to final implementation fosters team collaboration through a unified digital thread, encourages the use of modeling and reuse techniques, leverages insights from automated reporting, and enables scalable operations that lay a strong groundwork for ongoing innovation.
The interconnected data within this digital thread will serve as a central source of truth, enabling various engineering fields—functional, software, mechanical, and electrical—to collaborate seamlessly. Such a cohesive methodology not only simplifies processes but also significantly boosts the overall efficiency and effectiveness of the engineering lifecycle, ultimately leading to superior project outcomes.
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