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With a robust 1000V rating, photovoltaic connector is crafted with durable PPO insulation and copper tin-plated conductors, ensuring both reliability and conductivity while resisting corrosion. Operating flawlessly in temperatures ranging from -40β to +95β, and withstanding extreme conditions from -40β to +135β, it adheres to DCII security standards and boasts an IP68 waterproof rating for enhanced durability. The solar module connector's multi-point connection system, embedded self-locking mechanism, and user-friendly features, such as a minimal insertion force of β€50N and a pulling out force of β₯50N, make it a secure and efficient choice. Supporting a rated current of 50A and meeting UL94-VO flame retardant standards.
Utilizing PPO for the housing and employing copper tin-plating for the conductor material.
Boasting dustproof and waterproof features, along with robust resistance to aging and UV exposure, this connector is lightweight, user-friendly, and easy to install, ensuring safety and a prolonged service life.
Achieving secure connections through a combination of compression and clamping methods between connectors and cables.
Featuring a dependable self-locking structure, the male and female connectors are stably fixed, allowing for convenient and unrestricted opening and closing.
Q1. What are the benefits of using the h branch 4 to 1 connector?
Simplified Wiring: The solar connector streamlines the wiring process by allowing four solar modules to be connected in parallel through a single device. This reduces the overall complexity of the wiring system in a solar array.
Improved Efficiency: Parallel connections provided by the connector can enhance the overall efficiency of the photovoltaic system. By combining the power output of multiple solar modules, the system can generate more electricity, especially in conditions where shading or other factors might affect individual panels.
Q2. How durable is the connector in various environmental conditions?
Weather Resistance: The connector should be designed to withstand exposure to a range of weather conditions, including rain, snow, and UV radiation.
Temperature Tolerance: A durable connector should be able to operate efficiently across a broad temperature range. This includes resistance to extreme heat and cold, ensuring reliable performance in diverse climates.
Corrosion Resistance: PV connectors installed outdoors are susceptible to corrosion over time. Durable connectors often incorporate corrosion-resistant materials such as stainless steel or coated alloys to mitigate the impact of environmental corrosion.