Brief: Stay tuned as we highlight the most important features and real-use results. In this video, we demonstrate the BR-ISG-100 Isolating Spark Gap surge arrester, showcasing its compact design, customizable OEM/ODM options, and role as a dedicated backup protector in SCB systems. You'll see how it provides reliable surge protection and learn about its installation and application scenarios.
Related Product Features:
Functions as an Isolating Spark Gap to prevent damaging voltage spikes from reaching sensitive electronic equipment.
Offers OEM and ODM design capabilities for high customization and adaptability to specific requirements.
Features customizable printing for logos, designs, or information as per client requests.
Compact dimensions of 112x39x35 mm for easy installation in space-constrained environments.
Backed by a 1-year warranty, ensuring quality, reliability, and customer peace of mind.
Acts as a dedicated SPD backup protector, providing a secondary layer of defense in protection schemes.
Utilizes reliable SCB surge protection technology to safeguard electrical systems effectively.
ISO9001 certified, guaranteeing high-quality manufacturing standards and performance.
FAQs:
What is the primary function of the BR-ISG-100 Isolating Spark Gap?
The BR-ISG-100 functions as an Isolating Spark Gap, designed to prevent damaging voltage spikes and electrical surges from reaching sensitive equipment, thereby enhancing system longevity and reducing downtime.
Can the product be customized to fit specific design requirements?
Yes, the BR-ISG-100 supports both OEM and ODM designs, allowing for high customization to meet unique specifications, including tailored printing for logos or operational information.
What are the warranty and delivery terms for this product?
The product comes with a 1-year warranty and has a delivery time of 15 days after receipt of deposit. The minimum order quantity is 10 pieces, with a supply capacity of 500,000 units per month.
In which applications is the BR-ISG-100 most commonly used?
It is ideal for SCB systems in renewable energy installations, manufacturing plants, power stations, and laboratory environments where reliable surge protection and spark discharge control are critical.