Our skilled engineers are committed to delivering complete onsite integration services, guaranteeing accuracy and efficiency throughout the entire process. From the early planning stages to final execution, we collaborate closely with you to integrate your systems smoothly, enhancing performance while minimizing downtime. With a focus on excellence and careful attention to detail, we ensure your systems are fine-tuned for optimal performance, consistently delivering outstanding results.
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In the context of Site Reliability Engineering (SRE) and Platform Engineering SLA, SLI, and SLO are key concepts for defining and maintaining service reliability: 1. SLA (Service Level Agreement): A formal contract between a service provider and customers that defines the expected level of service (e.g., 99.9% uptime). 2. SLI (Service Level Indicator): A specific, measurable metric that reflects the performance of a service (e.g., latency, error rate). 3. SLO (Service Level Objective): A target for a given SLI, specifying acceptable performance levels (e.g., 95% of requests should have <100ms latency). SREs use these to manage service reliability and customer expectations.
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Heavy equipment development under pressure? Integration issues eating your time and budget? Orchestrate your program across domains and suppliers, minimize errors, and deliver faster. Find out how model-based systems engineering (MBSE) can help. https://sie.ag/i3WQA
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This month we share our tailored, Engineering IT services page, addressing several key challenges including: productivity, system reliability.......
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Understanding the why is crucial for Site Reliability Engineers (SREs) as it enables them to align system reliability with business priorities, make informed decisions, and proactively prevent incidents. By knowing the reasons behind design choices, processes, and system behaviors, SREs can target their efforts more effectively, resolve issues faster, and implement long-term solutions that prevent recurring problems. This deeper insight ensures that SREs build scalable, reliable systems while balancing operational needs with business goals. Simply put, the why drives smarter, more intentional engineering.
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As we take the first steps in designing reliability, we must begin by defining the requirements, which usually begin with needs and wants. This stage is not the only one, but it is very important because it achieves one of the basic objective of the acquisition causes of the asset and the extent of reliability that must be designed on. In your opinion, what is needs and wants with reliability view ?
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Let’s Talk Commissioning Strategies: 🔧 How do you validate system performance during commissioning to prevent operational downtime? Engage with us in the comments section👇and let’s collaborate on optimizing your commissioning process. Your insights and experiences are crucial for driving industry excellence!
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A single outage can cripple operations, hurt your bottom line, and damage your reputation. In his latest blog Bhooshan Thakar, Engineering VP, dives into the true costs of downtime and offers proactive strategies to enhance operational resilience. Learn more: https://vrt.as/3NlQXYg
The True Threat of Business Downtime
linkedin.com
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We design systems with an idea of providing robustness, performance, and ease of use and other technical factors. What is also importent is to give focus on obsolescence management !! Ex : If an Intel board is going for obsolesce on your HMI device, How flexible is your Software platform to accommodate an upgrade of boards. Here is a good article from ALSTOM, how a complex system like train manages obsolescence.
Obsolescence management: Alstom’s proactive approach to keeping trains on track
alstom.com
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Efficient fault finding and maintenance activities are essential for keeping operations running smoothly while minimizing downtime. TeamSolve’s Knowledge Twin reduces on-site time by 20%, enabling technicians to quickly diagnose and resolve issues with the support of real-time insights and predictive diagnostics. By providing instant access to historical data, troubleshooting guides, and actionable recommendations, the Knowledge Twin helps your team address problems faster and more effectively. This streamlined approach not only saves time but also reduces operational costs by eliminating unnecessary site visits and enabling proactive maintenance. With fewer disruptions and more efficient processes, organizations can focus on delivering consistent, reliable services while maximizing asset performance. Discover how TeamSolve’s Knowledge Twin is transforming maintenance activities and operational efficiency. Learn more at www.teamsolve.com.
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Explore key takeaways from the INCOSE Systems Engineering Handbook (5E) Edition in this article: https://lnkd.in/g3pgmyaW It includes insights on optimizing SE efforts, applying the tailoring process, and leveraging interdisciplinary approaches to deliver better systems and project outcomes.
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