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mini blade fuse supplier.Chip fuse can meet the highest requirements

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2023-11

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  Traditional fuses have a characteristic: if pulse currents and high temperature fluctuations occur, their properties will change. Every pulse and temperature fluctuation occurs, the performance of the fuse is weakened, and SCHURTER's UAI 1206 is not affected by this due to its special fuse structure. SCHURTER refers to it as "trace in air" technology, and the ability of the UAI to resist current pulses smaller than the melting heat value (I2t) is greatly improved. UAI 1206 does not actually require general derating use. In addition, due to its unique design, the fuse can greatly suppress temperature fluctuations.

  The design of UAI 1206 complies with UL 248-14 standards and was originally developed specifically for automotive applications. There are two versions of this product, with rated currents of 5.3 A and 7.5 A, and a rated voltage of 32 VDC. The rated breaking capacity is 100 A. UAI 1206 meets all requirements of the AEC-Q200 standard. Even in the event of high levels of pulse current, high thermal fluctuations, and high mechanical loads, this product can provide excellent protection. The UAI 1206 fuse uses a sealing agent to prevent leakage of sealing compounds, suitable for applications with high safety requirements, such as equipment in the oil and gas, mining, first aid, lighting, and medical industries that may come into contact with chemicals.

  The heat generated by the limited current with higher resistance will maintain the temperature of the self recovery fuse at a high level, resulting in high resistance. The thermal balance condition will always be maintained until the circuit loses power, the self recovery fuse gradually cools down, and the resistance value decreases. The basic principle of the self recovery function of a self recovery fuse is that an increase in temperature will lead to an increase in resistance, and vice versa. Self recovery fuses achieve self recovery or return to a low resistance state by removing power from the circuit, thereby reducing the temperature of the device. Afterwards, the component can respond to future overloads at any time. If the root cause of the overcurrent problem is eliminated, the resistance will remain low; But when overcurrent occurs again, the device will switch back to a high resistance state. Self recovery fuse

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