Schneider Electric's Charge Pro: A New Solution for Accelerating EV Adoption

Schneider Electric's Charge Pro: A New Solution for Accelerating EV Adoption

Schneider Electric Introduces Charge Pro Charging Solution to Europe

Schneider Electric, the leader in energy management and automation, announced that its Schneider Charge Pro charging station has launched in Europe.

What is the Schneider Charge Pro?

Schneider Electric Charge Pro is an energy-efficient electric vehicle charging solution to accelerate EV adoption among commercial fleet and multifamily residence owners. It is part of a turnkey system designed for charge point operators and building owners that is easy to install or retrofit.

Key Features of the Schneider Charge Pro

  • Remote monitoring through an easy-to-use, cloud-based mobile app
  • Minimizes power disruption to homes and apartments
  • Charging multiple EVs with ease
  • Compulsory meeting of EU Energy Performance of Buildings Directive
  • Aggressive and efficient

Schneider Charge Pro Benefit

  • Easy adaptation of EVS for fleet operator, building owners, electrician, and multifamily housing
  • Offering business customers a way to fast-track in power of Electrification
  • Accelerate in switch to green energy

Dedication at Schneider Electric To E-Mobility

Schneider Electric is committed to supporting its customers in switching to electric vehicles. It offers a wide variety of e-mobility solutions, from charging stations and energy management systems to software.

Future of E-Mobility

The future of e-mobility is bright. With continuously growing availability of charging infrastructure and further decreases in the cost of electric vehicles, more and more people will be switching to electric cars.

Show All
Blog posts
Show All
Software-Defined Manufacturing: A New Era of Industrial Automation

Software-Defined Manufacturing: A New Era of Industrial Automation

In the aerospace sector, SDM has proven invaluable for improving production efficiency and reducing costs. One manufacturer implemented an SDM solution to optimize the production of aircraft components. By integrating AI and machine learning into their manufacturing systems, the company could adjust production schedules and allocate resources based on real-time demand, minimizing waste and delays. As a result, the manufacturer was able to reduce lead times, lower costs, and increase production flexibility, allowing them to meet customer demands with greater efficiency.

Rockwell Automation: Advancing Towards Autonomous Operations with AI and Industrial Data Integration
plcdcspro

Rockwell Automation: Advancing Towards Autonomous Operations with AI and Industrial Data Integration

In practice, predictive maintenance has revolutionized manufacturing operations. For example, a large automotive manufacturer implemented AI-powered predictive maintenance across its global production lines. By analyzing real-time sensor data, the system predicted when machines were likely to fail, allowing maintenance teams to intervene before breakdowns occurred. This proactive strategy significantly reduced downtime and saved the company millions in repair costs, while also extending the operational life of the machines. The success of this program highlighted the potential for AI and automation to transform maintenance practices across industries.

ABB Strengthens Grid Automation with Netcontrol Acquisition to Meet Growing Demand for Digitalized Power Grids
plcdcspro

ABB Strengthens Grid Automation with Netcontrol Acquisition to Meet Growing Demand for Digitalized Power Grids

In real-world applications, ABB's grid automation solutions, combined with Netcontrol's technologies, can significantly improve the management of complex power grids. For instance, utilities facing the challenge of integrating increasing amounts of renewable energy can utilize predictive analytics to better forecast demand and optimize power flow. In regions prone to extreme weather, such as hurricanes or heatwaves, automation can enhance grid resilience by enabling rapid recovery and minimizing downtime during disruptions.