In an era where the digital economy is anchored by the relentless expansion of data centers, the complexity of electrical infrastructure has reached unprecedented levels. To address the critical need for highly available and efficient power distribution, Siemens has announced a comprehensive three-day, in-person training program scheduled for October 12–14, 2026, in Nuremberg, Germany. This intensive seminar is specifically designed to equip electrical engineers, planners, and technical facility managers with the expertise required to navigate the challenges of modern, mission-critical power systems using the advanced SIMARIS planning tool suite. Main Facts: A Deep Dive into Mission-Critical Power The upcoming training program is not merely a software tutorial; it is a holistic deep dive into the architecture of modern data center power distribution. The curriculum is meticulously structured to cover the entire electrical chain, from the initial point of utility grid connection through medium-voltage and low-voltage distribution, all the way to the final delivery of power to IT loads. Participants will engage in a series of practical workshops focusing on the following core competencies: Grid Calculations: Performing rigorous simulations to ensure stability and reliability under various load scenarios. Dimensioning and Selection: Utilizing SIMARIS to specify circuit breakers, transformers, and switchgear, ensuring that all components are sized for peak efficiency and safety. High-Availability Concepts: Designing redundant systems that guarantee 99.999% uptime, even in the event of component failure or maintenance. Digital Integration: Exploring the integration of energy management systems (EPMS) and sophisticated automation solutions that form the backbone of modern "Smart" data centers. The event, hosted under the umbrella of Siemens’ "Totally Integrated Power" (TIP) initiative, is designed for professionals who already possess a solid foundation in electrical engineering. By bridging the gap between theoretical standards and real-world application, the training provides a unique opportunity for industry experts to sharpen their skills in a collaborative, peer-to-peer environment. Chronology of the Training Program The training is structured as a three-day intensive immersion. While specific daily agendas are subject to refinement, the logical progression of the curriculum is as follows: Day 1: Foundation and Grid Infrastructure: The focus begins with the upstream environment. Participants will work on modeling grid connections, defining medium-voltage requirements, and setting the stage for robust, fault-tolerant distribution architectures. Day 2: Low-Voltage Distribution and Load Management: This day is dedicated to the "heart" of the data center. Attendees will utilize SIMARIS to calculate power flows, dimension low-voltage distribution boards, and integrate critical protection strategies. Group exercises will focus on solving complex, real-world problems based on actual case studies. Day 3: Advanced Topics and Future-Proofing: The final day addresses the integration of EPMS, monitoring solutions, and the shift toward sustainability. The session concludes with a look at emerging trends—such as the power demands of AI-driven data centers—and a final certification ceremony where attendees receive official recognition of their participation. Supporting Data: Why Specialized Training Matters The necessity for this training is underscored by the current industry landscape. Data centers are evolving into the most energy-intensive facilities on the planet. As power densities per rack continue to rise, the margin for error in electrical design vanishes. The Role of Digital Twin Planning SIMARIS, the core software platform for this training, acts as a digital twin tool for electrical planning. Unlike traditional manual calculations, these tools allow engineers to visualize the impact of every component choice on the overall system. By simulating faults and peak-load scenarios before a single cable is laid, planners can significantly reduce CAPEX and OPEX, while simultaneously enhancing safety and compliance. Technical Requirements and Prerequisites Siemens maintains a high bar for this training to ensure that the cohort can engage at a professional level. Required prerequisites include: Academic/Professional Background: A formal degree or equivalent experience in electrical engineering or TGA (Technical Building Services) planning. Practical Experience: Candidates must have a working knowledge of electrical energy supply systems. Software Familiarity: While not strictly mandatory, prior exposure to the SIMARIS Suite is highly recommended. To ensure all participants start from a baseline of competence, Siemens provides an extensive library of online video tutorials and preparatory material at www.siemens.de/simaris/support. Official Perspectives and Industry Implications The importance of this training extends beyond the classroom. Industry analysts note that the biggest bottleneck in the data center industry is no longer just the hardware itself, but the intelligence required to plan and operate it. Sustainability and the "Green" Mandate A key component of the 2026 program is the focus on sustainability. As ESG (Environmental, Social, and Governance) reporting becomes mandatory for large corporations, data center operators are under pressure to prove that their facilities are as energy-efficient as possible. The SIMARIS training explicitly covers "future-proof infrastructure," teaching engineers how to design systems that minimize carbon footprints and waste, even as the capacity for high-performance computing increases. Building Information Modeling (BIM) Integration The curriculum also offers an introduction to BIM-based planning. By aligning electrical design with the broader BIM workflow, participants will learn how to reduce coordination errors between trades. This integration is vital for the modern construction industry, where the "siloed" approach to design is rapidly becoming a liability. Implications for the Future of Data Centers The shift toward AI-heavy workloads is fundamentally changing how power is distributed in modern server farms. These facilities require higher power densities and more dynamic response times than ever before. The AI-Driven Infrastructure Shift During the seminar, attendees will discuss how to prepare for the surge in power requirements driven by artificial intelligence. Traditional cooling and power architectures are often insufficient for the extreme heat and energy loads of modern AI chips. The training will provide insights into how to build flexible, modular systems that can scale alongside the rapid advancement of computational technology. Professional Networking and Collaboration Beyond the technical lectures, the program includes two dedicated evening events. These sessions serve as a vital venue for professional networking. In a field as specialized as high-availability electrical design, the ability to exchange experiences with peers from across Europe is considered a major value-add. These interactions often lead to the sharing of "best practices" that aren’t found in any manual or standard. Logistics and Registration Details The training is priced at 2,500 Euros (plus VAT). This fee includes the three-day seminar, educational materials, and access to the networking events. Location: Nuremberg, Germany. Duration: October 12–14, 2026. Certification: Attendees will receive an official Siemens certificate upon successful completion, which serves as a testament to their proficiency in high-end data center planning. Prospective attendees are encouraged to visit the SITRAIN portal to secure their place. Given the highly technical nature of the workshop and the industry’s increasing demand for qualified personnel, enrollment is expected to be competitive. Conclusion: Shaping the Next Generation of Power As the world becomes increasingly reliant on the cloud, the professionals responsible for the physical infrastructure—the "unsung heroes" of the digital age—must have access to the highest level of training. Siemens’ initiative in Nuremberg represents a commitment to maintaining the reliability, efficiency, and sustainability of the power grids that underpin the modern economy. By mastering the SIMARIS toolset, participants will not only improve their current projects but will also position themselves at the forefront of the electrical engineering profession for years to come. For those eager to stay informed about developments in the field, subscribing to the weekly industry newsletter is recommended. It provides timely updates on electrical infrastructure, technological breakthroughs, and future training opportunities, ensuring that professionals remain competitive in an ever-evolving technical landscape. Post navigation Empowering the Future of Electrical Engineering: Legrand Launches New Digital Learning Ecosystem