The DZ23C6V2-G3-18 is a semiconductor product belonging to the category of diodes. This entry provides an overview of the basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models of the DZ23C6V2-G3-18.
The DZ23C6V2-G3-18 typically has three pins: anode, cathode, and no connection (NC). The anode is connected to the positive terminal of the circuit, the cathode is connected to the negative terminal, and the NC pin is left unconnected.
The DZ23C6V2-G3-18 operates based on the principle of the Zener effect, where it allows current to flow in the reverse direction when the applied voltage reaches the breakdown voltage. This characteristic enables it to regulate voltage and protect circuits from overvoltage conditions.
The DZ23C6V2-G3-18 finds extensive use in various applications, including: - Voltage regulation in power supplies - Signal demodulation in communication systems - Overvoltage protection in electronic circuits - Power management in portable devices
Some alternative models to the DZ23C6V2-G3-18 include: - BZX84C6V2LT1G - MMBZ5230BLT1G - P6SMB6.2AT3G - 1N4738ATR
In conclusion, the DZ23C6V2-G3-18 is a versatile diode with applications in diverse electronic systems, offering reliable voltage regulation and signal processing capabilities.
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What is the maximum reverse voltage of DZ23C6V2-G3-18?
What is the typical forward voltage drop of DZ23C6V2-G3-18?
What is the power dissipation of DZ23C6V2-G3-18?
What is the maximum junction temperature of DZ23C6V2-G3-18?
What are the typical applications of DZ23C6V2-G3-18?
What is the package type of DZ23C6V2-G3-18?
What is the storage temperature range for DZ23C6V2-G3-18?
What is the maximum reverse leakage current of DZ23C6V2-G3-18?
Can DZ23C6V2-G3-18 be used for overvoltage protection in automotive electronics?
Is DZ23C6V2-G3-18 RoHS compliant?