The Voltage Regulator Diode BZX84C5V6 Features A Maximum Power Dissipation of 300mW and A Stable Voltage Value of 5.6V
The SLKOR Voltage Regulator Diode BZX84C5V6 features a maximum power dissipation of 300mW and a stable voltage value of 5.6V. The device operates within a voltage stability range of 5.2V to 6V, with a reverse leakage current of 1μA. This voltage regulator diode boasts stable reverse breakdown voltage characteristics, making it an ideal component for voltage reference circuits. It offers circuits high stability and accuracy, ensuring precise performance.
Slkor Voltage Regulator Diode BZX84C5V6 product photo
Slkor Voltage Regulator Diode BZX84C5V6 specification
The Slkor Voltage Regulator Diode BZX84C5V6 employs a flat mold structure, facilitating high-precision manufacturing and consistency. This design also enhances the flexibility of layout and routing on printed circuit boards (PCBs), aiding in size reduction and increasing integration. Furthermore, with a maximum power dissipation of 300mW, the diode can withstand significant power loads under normal operating conditions, making it suitable for circuits requiring the handling of higher currents. Additionally, its ultra-compact surface-mount package further minimizes its physical footprint, making it highly suitable for use in highly integrated electronic systems. This not only reduces component space requirements but also helps improve assembly density on the circuit board, thereby optimizing the overall system performance.
Parameters of Slkor Voltage Regulator Diode BZX84C5V6
The application of Slkor Voltage Regulator Diode BZX84C5V6 in voltage reference circuits encompasses several aspects. Firstly, it provides a stable reference voltage. Its voltage across the terminals remains highly stable in reverse breakdown, thus serving as one or more stable reference voltages for the entire circuit system. Secondly, it simplifies circuit design. Compared to traditional complex circuit designs, voltage reference circuits using voltage regulator diodes are more concise and reliable. Lastly, it features low-power design. Its power consumption in reverse breakdown is relatively low, endowing voltage reference circuits based on it with a natural advantage in power consumption, particularly suitable for low-power electronic systems.
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