

PVSOL is a dynamic simulation software designed for the planning, design, and optimization of photovoltaic (PV) systems. It caters to a wide range of projects, from small residential installations to large commercial and utility-scale systems. The software enables users to model various PV configurations, including grid-connected and off-grid systems, with or without battery storage and electric vehicle integration. By providing detailed performance analyses and financial assessments, PVSOL assists professionals in creating efficient and cost-effective solar energy solutions. Key Features and Functionality: - Versatile System Design: Supports the design of PV systems for single-family homes, commercial rooftops, and ground-mounted installations, accommodating up to 100,000 modules. - 3D Visualization and Shading Analysis: Offers 3D modeling capabilities to visualize installations and perform detailed shading analyses, ensuring accurate yield predictions. - Comprehensive Component Database: Includes an extensive database with over 21,000 PV modules, 5,100 inverters, 1,900 battery systems, and various other components, regularly updated by manufacturers. - Accurate Self-Consumption Calculation: Simulates self-consumption scenarios by integrating battery storage systems and electric vehicles, providing realistic consumption profiles. - Financial Analysis Tools: Delivers reliable yield forecasts and detailed profitability metrics, aiding in the economic evaluation of PV projects. - Professional Reporting: Generates customizable project reports with circuit diagrams and safety components, available in multiple languages for client presentations. Primary Value and User Solutions: PVSOL empowers engineers, system designers, architects, and installers to efficiently plan and simulate PV systems tailored to specific site conditions and client requirements. By providing accurate performance simulations and financial analyses, the software enables users to optimize system configurations, maximize energy yields, and ensure economic viability. Its comprehensive component database and advanced 3D visualization tools facilitate precise system design, while the professional reporting features enhance client communication and project documentation. Ultimately, PVSOL streamlines the PV system design process, reducing planning time and improving project outcomes.

Valentin Software is the largest, most comprehensive and oldest developer of solar PV and thermal design, simulation, modeling and financial analysis software. Headquartered in Berlin Germany, Valentin Software has customers in over 70 countries. Our tools have been used to design hundreds of thousands of PV and thermal systems, ranging from small residential systems to large utility-scale PV and district-wide solar thermal plants. Valentin Software Products: PV*SOL premium PV*SOL PV*SOL online T*SOL T*SOL online GeoT*SOL GeoT*SOL online

Valentin Software is the largest, most comprehensive and oldest developer of solar PV and thermal design, simulation, modeling and financial analysis software. Headquartered in Berlin Germany, Valentin Software has customers in over 70 countries. Our tools have been used to design hundreds of thousands of PV and thermal systems, ranging from small residential systems to large utility-scale PV and district-wide solar thermal plants. Valentin Software Products: PV*SOL premium PV*SOL PV*SOL online T*SOL T*SOL online GeoT*SOL GeoT*SOL online
Valentin Software GmbH is one of the leading providers of innovative design software for sustainable energy supply. Founded in 1988, Valentin Software can look back on more than 30 years of company history. With the brands PV*SOL, T*SOL and GeoT*SOL, the Berlin-based company develops powerful, manufacturer-independent software solutions for the design, dynamic simulation and yield forecasting of photovoltaic, solar thermal and heat pump systems. Its customers include engineers, system designers, installers and architects as well as manufacturing companies from the electrical, heating and building technology sectors.