石家莊負溫度性質熱敏電阻,歡迎來電咨詢!!
當NTCR熱敏電阻在小電流下工作時(如圖F),由于功率太底,其電阻保持固定而表現線性關系(符合歐姆定律V/R=1)。如果電流增加,NTC熱敏電阻就會產生焦耳效應(P =V×1)而使自己發熱,其電阻值隨即減小表現「電流增加,電壓下降」的狀態。石家莊負溫度性質熱敏電阻When operating low current (see fig.F), due to very low power is unable to make the NTC thermistor self-heated, so its resistance value is thus maintained constant and displayed with a linear curve (in conformity with ohm-law V/R=1).If the current is increased, the NTC thermistor will follow Joule-efficiency(P= V×1) and make itself self-heated that results in a resistace value decreasing and thus displays with a status of voltage descending while current increased.
石家莊負溫度性質熱敏電阻說明NTC元件與環境達成熱平衡所需的時間,主要決定于材料熱容量(G)及散熱系數(δ)。當元件溫度由T1降到T0,則可得到下列平衡式:-HdT=δ(T-T0)dt 其中-HdT=元件熱損失δ(T-T0)dt:元件散熱量積分后可得溫度與時間關系式T-T1= (T0-T1)×e-t/t其中τ=H/δ石家莊負溫度性質熱敏電阻 |
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