The BZD27-C100A is a silicon Zener diode manufactured by EIC Discrete Semiconductors. It is designed to provide voltage regulation and overvoltage protection in various electronic circuits. The 'C100A' designation typically indicates a Zener voltage of approximately 100V.
Applications
- Voltage regulation
- Overvoltage protection
- Transient voltage suppression
- Clipping circuits
- Voltage referencing
- Power supply circuits
Features
- Zener voltage of approximately 100V
- High surge current capability
- Low reverse leakage current
- High reliability
- DO-41 package (typical)
- RoHS compliant
Benefits
- Provides stable voltage regulation, ensuring consistent performance of electronic circuits.
- Protects sensitive components from overvoltage conditions, enhancing system reliability.
- Suppresses voltage transients, preventing damage to electronic devices.
- Offers precise voltage referencing for accurate circuit operation.
- Ensures long-term performance and stability.
- Meets environmental standards for safe and responsible use.
Technical Specifications
The BZD27-C100A Zener diode is designed to maintain a voltage of approximately 100V across its terminals when reverse biased. It typically has a high surge current capability, allowing it to withstand transient voltage spikes without damage. The low reverse leakage current minimizes power loss and improves efficiency. This diode is commonly packaged in a DO-41 package, which is a standard through-hole package. It is often used in power supply circuits to regulate voltage, in overvoltage protection circuits to protect sensitive components, and in transient voltage suppression applications to clamp voltage spikes. The RoHS compliance ensures that the product is free from hazardous substances.
The BZD27-C100A's robust design and reliable performance make it a popular choice for various voltage regulation and protection applications. Its high surge current capability and low reverse leakage current contribute to its efficiency and durability. The diode's compliance with environmental standards further enhances its suitability for a wide range of modern electronic devices.