Сенсори ҳарорати нахи оптикӣ, Системаи интеллектуалии мониторинг, Истеҳсолкунандаи нахи оптикӣ дар Чин
Why do we need temperature measurement for aging cabinets
Бо рушди интиқоли AC / DC ба шиддати баланд ва иқтидори калон, сетьхои электрикй нисбат ба иктидори хозираи тачхизоти электрикии баландвольт талабхои баландтар ба миён гузоштанд. Истифодабарандагон умедворанд, ки маҳсулоти устуворро истифода баранд, боэътимод, ва иҷрои беҳтари ҳамаҷониба доранд. Таҷҳизоти барқӣ барои ҳарорати кор талаботи қатъӣ дорад, ва бисьёр ходисахои аз хад зиёд гарм шудани тачхизот бо расиши кутох ва дигар сабабхо чой доранд, ки дар станцияхои ёрирасон ба талафоти калон оварда мерасонад. Мониторинги ҳарорати кори таҷҳизоти барқӣ дар вақти воқеӣ, махсусан тачхизоти асосии электрики, барои пешгирй кардани талафот дар натичаи аз хад зиёд гарм шудани тачхизоти электрй махсусан мухим аст.
The reason for the temperature rise in the aging cabinet
When conducting aging tests on electronic product aging cabinets, due to the large number of electronic products installed inside the cabinet, and the fact that the electronic products themselves dissipate heat, the temperature controllability inside the cabinet is poor. It is necessary to monitor the temperature inside the cabinet in real time to avoid high temperatures that can easily cause the failure of the tested product and result in losses. The existing temperature measurement technology for aging cabinets uses traditional thermocouples for temperature measurement, which has low monitoring efficiency and poor accuracy. The high and low temperature aging test of electronic products is a necessary means to eliminate early failures and control product quality. The uniformity of temperature distribution inside the aging cabinet is an important technical indicator of the aging cabinet, which will directly affect the aging results of electronic products placed in different aging cabinet areas.
Traditional temperature measurement technology for electronic aging cabinets
When conducting aging tests on electronic product aging cabinets, due to the large number of electronic products installed inside the cabinet, and the fact that the electronic products themselves dissipate heat, the temperature controllability inside the cabinet is poor. It is necessary to monitor the temperature inside the cabinet in real time to avoid high temperatures that can easily cause the failure of the tested product and result in losses. The existing temperature measurement technology uses traditional thermocouples for inspection, which have low monitoring efficiency and poor accuracy.
Fiber optic sensing technology for aging cabinets
Бо рушди муттасили технологияи ҳассос, талаботи одамон ба технологияи сенсор низ руз то руз меафзояд. Сенсорҳои нахи оптикӣ, ки ба шароити ҳассосияти баланд мувофиқанд, камхарҷ, раванди омодасозии оддӣ, ва устувории хуб каманд. Дар процесси хис кардан ва ошкор кардан, ҳассосият ва устуворӣ омилҳои асосии таъсирбахши техникӣ мебошанд, while the preparation process and cost are important influencing factors in industrial production. Ҳамзамон, fiber optic sensors that combine these advantages are receiving increasing attention and favor.
Aging cabinet fluorescent fiber optic temperature measurement system
The aging cabinet fiber optic temperature measurement system can use fluorescent fiber optic temperature sensors. The cost of fluorescent fiber optic sensors is controllable, and single point multi-point temperature monitoring can comprehensively detect the situation of each point of the monitored object, with a large detection range; Secondly, the fiber optic probe is integrated with the signal channel and transmits optical signals. It is resistant to radio frequency and electromagnetic interference, flame and explosion, зангзанӣ, high voltage and strong electromagnetic fields, and radiation, and can work in various harsh environments.
The fiber optic temperature measurement system of the new aging cabinet can accurately measure the temperature of various hotspots inside the aging cabinet by installing 3-point or 6-point сенсорҳои ҳарорати нахи оптикӣ inside the cabinet. Fiber optic temperature sensors are arranged inside the cabinet to collect real-time temperature information inside the cabinet; The fluorescent fiber optic temperature sensor ultimately transmits temperature information to the fiber optic temperature measurement transmitter for analysis and calculation, and is ultimately centrally controlled by the controller; After real-time monitoring of temperature information, the controller can adopt control methods such as real-time display and alarm to avoid product failures caused by temperature changes inside the cabinet.