Technical Articles

What is BS EN 62305-3: 2018 ?

Title: A Comprehensive Guide to EN 62305-3: 2018 and EN 62386-2: 2019

The advancement of electric vehicles (EVs) has created a growing demand for sustainable and reliable EV charging infrastructure. As the battery technology continues to evolve, it is essential to ensure interoperability between EV charging infrastructure components. Two key European standards that can help achieve this goal are EN 62196-2: 2017 and EN 62386-2: 2019.

BS EN 62196-2: 2017, also known as "Plugs, socket-outlets, vehicle connectors and vehicle inlets – Conductive charging of electric vehicles – Part 2, " is a comprehensive standard that focuses on the dimensional compatibility and interchangeability requirements for alternating current (a.c.) pin and contact-tube accessories used in EV charging systems.

EN 62386-2: 2019, on the other hand, is a technical standard developed by the European Committee for Electrotechnical Standardization (CENELEC) that provides specifications for the control of lighting systems in buildings.

Understanding EN 62196-2: 2017 and EN 62386-2: 2019

BS EN 62196-2: 2017 defines the physical dimensions and tolerances for plugs, socket-outlets, vehicle connectors, and vehicle inlets, ensuring easy and reliable connections between EVs and charging stations.

EN 62386-2: 2019, on the other hand, defines the electrical interface, data format, and communication methods that should be used to achieve interoperability between different manufacturers' lighting products.

The primary objective of EN 62196-2: 2017 is to ensure interoperability between EV charging infrastructure components, regardless of the manufacturer. It enables easy and reliable connections between EVs and charging stations by defining the physical dimensions and tolerances for plugs, socket-outlets, vehicle connectors, and vehicle inlets.

EN 62386-2: 2019, on the other hand, is a technical standard that provides specifications for the control of lighting systems in buildings. It defines the electrical interface, data format, and communication methods that should be used to achieve interoperability between different manufacturers' lighting products.

Conclusion

BS EN 62196-2: 2017 and EN 62386-2: 2019 are two crucial standards that can help ensure the interoperability between EV charging infrastructure components. By establishing a common language and communication protocol between lighting devices and control systems, these standards enable advanced features such as dimming, color changes, and scene setting, as well as addressing, error handling, and feedback mechanisms.

As the EV charging infrastructure continues to evolve, it is essential to ensure that EV charging stations can communicate with EVs and vice versa. EN 62196-2: 2017 and EN 62386-2: 2019 provide the necessary specifications to achieve this goal, ensuring that EVs can be charged safely and efficiently.

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