
SAP Cloud ERP is an enterprise-grade ERP platform designed for organizations that need real-time control, predictable operations, and a modern cloud foundation without the cost and complexity of traditional systems. Built on SAP HANA’s in-memory architecture, it delivers instant visibility across finance, supply chain, manufacturing, and procurement, enabling teams to make accurate, data-driven decisions at speed.
This solution provides continuous, automated updates and built-in best practices so companies can adopt new capabilities without disruptive upgrade cycles. Embedded AI, machine learning, and advanced analytics support intelligent automation, scenario planning, and risk reduction across every operational process. Native integration with SAP Business Technology Platform and a broad ecosystem of enterprise applications ensures extensibility without customization-heavy technical debt.
SAP Cloud ERP (SAP S/4HANA Cloud Public Edition) is engineered for organizations seeking the benefits of standardization, faster time-to-value, and global scalability. Its secure, multi-tenant cloud architecture ensures consistent performance, regulatory compliance, and lower total cost of ownership. With strong support for manufacturing, distribution, and service-centric operations, it equips IT and business leaders with a reliable platform to simplify their landscape, eliminate legacy bottlenecks, and power sustainable long-term growth.
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Jama Connect®, a product development platform, uniquely creates Living Requirements™. This digital thread is created through siloed, test, and risk activities to provide end to end compliance, risk mitigation, process improvement, and compliance. Companies creating complex products, systems, and software can now define, align, and execute on what they need. This reduces the time and effort required to prove compliance and saves on rework. You can be sure of success by choosing a solution that is easy-to-use, flexible, and offers support and services that are adoption-oriented.
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Gemini Robotics 2
Gemini Robotics 2 represents the intelligent framework developed by Google DeepMind for robots that can adapt and learn, featuring comprehensive body control, sophisticated dexterity, embodied reasoning, and the ability for multiple robots to collaborate effectively in the realm of physical AI. It encompasses three distinct models. The core of Gemini Robotics 2 is a vision-language-action model that transforms visual and linguistic inputs into precise motor actions, empowering humanoid and bi-arm robots to perform actions that range from walking to intricate fingertip movements. This system can seamlessly manage various activities such as walking, crouching, reaching, balancing, and manipulating objects, utilizing five-fingered hands or conventional grippers suited for delicate tasks. Additionally, the Gemini Robotics ER 2 functions as the central cognitive system, enabling interaction with humans, interpreting its environment, planning complex tasks that can unfold over several minutes, and coordinating with the VLA to track its progress, rectify mistakes, and facilitate collaboration among different robots. Ultimately, this innovation aims to enhance the capabilities of robots, making them more versatile and responsive to dynamic situations.
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MaestroAR
MaestroAR® offers specialized learning experiences in 3D augmented reality through its dV-Trainer® and FlexVR™ robotic surgery simulators. By utilizing recordings of actual surgical procedures, MaestroAR® enables learners to engage deeply in the surgical experience, operating virtual robotic tools to manipulate anatomical structures within an enhanced 3D video environment. This innovative platform not only fosters a deeper understanding of procedures but also cultivates critical decision-making abilities. Guided by esteemed robotic surgery educators, trainees receive comprehensive, step-by-step instruction throughout a complete robot-assisted surgical process. As they navigate the simulation, learners manipulate lifelike 3D robotic instruments to respond to procedural inquiries, recognize and engage with various anatomical areas, and practice essential skills in a virtual reality setting. This immersive approach enhances both knowledge retention and practical application in the field of robotic surgery.
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