Actualmente, various types of low-voltage distribution cabinets are developing towards miniaturization and compactness. Due to the relatively enclosed cabinet and narrow internal space, electrical equipment operates at full load for a long time, resulting in heat accumulation and temperature rise. Además, the temperature of the heating parts of these equipment cannot be monitored in real-time manually. Por lo tanto, long-term high-temperature operation can easily damage the insulation performance of electrical equipment, affect the normal operation of the system, and cause economic losses.
The existing switchgear temperature is manually monitored, which is labor-intensive, inaccurate, and cannot be continuously monitored at multiple points. The existing high-voltage cabinets do not have an automatic monitoring system. Sin embargo, during long-term operation, the power cables of the high-voltage cabinets age, and the contacts of the switches heat up due to aging or excessive contact resistance. Long term high current, cables and switches operate under high load, which can easily cause contact erosion or high-temperature deformation and carbonization of the insulation isolation cover, conduciendo a accidentes. FJINNO provides an intelligent temperature measurement and monitoring system for low-voltage switchgear.
Copper busbar trunking has increasingly replaced wires and cables in indoor low-voltage power transmission trunk projects, and has become an important branch of distribution equipment, widely used in various industries. Sin embargo, in the practical application of copper bars entering wire ducts, debido al funcionamiento prolongado en el aire y a la influencia de la temperatura ambiente y la humedad, expansión y contracción térmica, escalado de superficie, Puede producirse oxidación o corrosión., lo que resulta en contactos flojos y un contacto deficiente. La barra de cobre que ingresa a las uniones de cables durante la operación puede experimentar un sobrecalentamiento anormal de la temperatura., lo que puede provocar incendios o accidentes graves de seguridad.. Durante la operación, la barra colectora de cobre que ingresa al conducto de alambre está en un estado completamente cerrado, por lo que es necesario monitorear la temperatura de la barra colectora de cobre que ingresa a la junta del conducto de alambre para mejorar la confiabilidad del funcionamiento de la barra colectora de cobre que ingresa al conducto de alambre.
Fiber optic temperature measurement system for incoming cabinet
1. El Medición de temperatura de fibra óptica fluorescente device can measure the temperature of the incoming and outgoing lines, barras colectoras, contactos, and other positions of the switchgear;
2. Medición de temperatura de fibra óptica, multi-channel and multi-channel temperature measurement, capaz de three, seis, nine temperature measurements, etc;
3. Resistencia de alto voltaje, Anti-interferencia, aislamiento, and stable medición de temperatura. The products provided by FJINNO comply with international technical standards.
4. The manufacturer provides attentive service, independently develops and produces, and provides after-sales support.
Sensor de temperatura de fibra óptica, Sistema de monitoreo inteligente, Fabricante de fibra óptica distribuida en China
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Sensores de temperatura de fibra óptica INNO ,Sistemas de control de temperatura.



