The Voltage Regulator Diode BZT52C30 Features A Maximum Power Dissipation of 500mW and A Stable Voltage Value of 3.6V
The SLKOR Voltage Regulator Diode BZT52C30 features a maximum power dissipation of 500mW and a stable voltage value of 3.6V. The device operates within a voltage stability range of 3.4V to 3.8V, with a reverse leakage current of 5μA. This voltage regulator diode features a stable reverse breakdown voltage characteristic, making it an ideal component in voltage reference circuits. It provides the circuit with a high level of stability and precision.
Slkor Voltage Regulator Diode BZT52C30 product photo
Slkor Voltage Regulator Diode BZT52C30 specification
The Slkor Voltage Regulator Diode BZT52C30 adopts a flat mold structure, which facilitates high-precision manufacturing and consistency. This structure also allows for greater flexibility in layout and wiring on printed circuit boards (PCBs), aiding in reducing the boards' footprint and increasing integration. With its strong versatility, the BZT52C30 is suitable for various circuit applications. Whether in digital or analog circuits, it can provide stable voltage output. Its moderate current range meets the needs of most circuits without generating excessive heat due to high currents. Standardized dimensions and interface design make it highly suitable for automated assembly processes, reducing the potential for human error and enhancing product quality and reliability.
Parameters of Slkor Voltage Regulator Diode BZT52C30
The application of the Slkor Voltage Regulator Diode BZT52C30 in voltage reference circuits encompasses several aspects. Firstly, it provides a stable reference voltage. Its voltage across the terminals remains highly stable in the reverse breakdown state, thereby offering 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 facilitates low-power design. Its power consumption in the reverse breakdown state is relatively low, giving voltage reference circuits based on it a natural advantage in power consumption, making them particularly suitable for low-power electronic systems.
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