Product Overview: BZX79-C3V3,113
The BZX79-C3V3,113 is a high-quality, robust zener diode manufactured by NXP Semiconductors, a trusted leader in the electronic components industry. This small signal zener diode is designed to provide a precise voltage reference with a nominal zener voltage of 3.3 volts. It is widely used in voltage regulation applications, providing excellent stability and reliability.
Key Features
- Zener Voltage: The BZX79-C3V3,113 offers a tight voltage regulation with a nominal zener voltage of 3.3V, making it suitable for a variety of precision voltage clamping and reference applications.
- Power Dissipation: With a power dissipation of 500 mW, this zener diode can withstand moderate levels of power while maintaining its functionality and integrity.
- Package: Encased in a DO-35 glass package, the BZX79-C3V3,113 ensures high thermal stability and protection from external environmental factors.
- Tolerance: The zener voltage tolerance is specified at ±5%, providing reliable operation within a specified range of conditions.
- Operating Temperature: This component is designed to operate effectively over a wide temperature range, typically from -65°C to +175°C, allowing for use in various challenging environments.
Applications
The BZX79-C3V3,113 zener diode is versatile and can be utilized in a multitude of electronic circuits. It is commonly used in:
- Voltage regulation circuits to maintain a stable output voltage
- Protection circuits to prevent overvoltage conditions
- Reference elements in precision applications
- Switching operations that require stable voltage references
Quality and Reliability
NXP Semiconductors is committed to delivering products that meet the highest standards of quality and reliability. The BZX79-C3V3,113 zener diode is no exception, undergoing rigorous testing and quality control measures to ensure it performs to specifications under varying conditions. Whether for commercial, industrial, or high-reliability applications, this zener diode stands out for its performance and durability.