Jama Connect
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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Windocks
Windocks provides on-demand Oracle, SQL Server, as well as other databases that can be customized for Dev, Test, Reporting, ML, DevOps, and DevOps. Windocks database orchestration allows for code-free end to end automated delivery. This includes masking, synthetic data, Git operations and access controls, as well as secrets management. Databases can be delivered to conventional instances, Kubernetes or Docker containers.
Windocks can be installed on standard Linux or Windows servers in minutes. It can also run on any public cloud infrastructure or on-premise infrastructure. One VM can host up 50 concurrent database environments. When combined with Docker containers, enterprises often see a 5:1 reduction of lower-level database VMs.
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Gemini Robotics
Gemini Robotics integrates Gemini's advanced multimodal reasoning and comprehension of the world into tangible applications, empowering robots of various forms and sizes to undertake a diverse array of real-world activities. Leveraging the capabilities of Gemini 2.0, it enhances sophisticated vision-language-action models by enabling reasoning about physical environments, adapting to unfamiliar scenarios, including novel objects, various instructions, and different settings, while also comprehending and reacting to everyday conversational requests. Furthermore, it exhibits the ability to adjust to abrupt changes in commands or surroundings without requiring additional input. The dexterity module is designed to tackle intricate tasks that demand fine motor skills and accurate manipulation, allowing robots to perform activities like folding origami, packing lunch boxes, and preparing salads. Additionally, it accommodates multiple embodiments, ranging from bi-arm platforms like ALOHA 2 to humanoid robots such as Apptronik’s Apollo, making it versatile across various applications. Optimized for local execution, it includes a software development kit (SDK) that facilitates smooth adaptation to new tasks and environments, ensuring that these robots can evolve alongside emerging challenges. This flexibility positions Gemini Robotics as a pioneering force in the robotics industry.
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NVIDIA Isaac
NVIDIA Isaac is a comprehensive platform designed for the development of AI-driven robots, featuring an array of CUDA-accelerated libraries, application frameworks, and AI models that simplify the process of creating various types of robots, such as autonomous mobile units, robotic arms, and humanoid figures. A key component of this platform is NVIDIA Isaac ROS, which includes a suite of CUDA-accelerated computing tools and AI models that leverage the open-source ROS 2 framework to facilitate the development of sophisticated AI robotics applications. Within this ecosystem, Isaac Manipulator allows for the creation of intelligent robotic arms capable of effectively perceiving, interpreting, and interacting with their surroundings. Additionally, Isaac Perceptor enhances the rapid design of advanced autonomous mobile robots (AMRs) that can navigate unstructured environments, such as warehouses and manufacturing facilities. For those focused on humanoid robotics, NVIDIA Isaac GR00T acts as both a research initiative and a development platform, providing essential resources for general-purpose robot foundation models and efficient data pipelines, ultimately pushing the boundaries of what robots can achieve. Through these diverse capabilities, NVIDIA Isaac empowers developers to innovate and advance the field of robotics significantly.
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