Introducing the BZX79-C75,113 Zener Diode from NXP Semiconductors
The BZX79-C75,113 is a highly reliable, precision Zener diode produced by NXP Semiconductors, a leader in the electronic components industry. This small-signal Zener diode is designed for use in voltage regulation applications, providing a stable reference voltage with a nominal Zener voltage of 75 volts. Its compact design and high level of performance make it suitable for a wide range of electronic circuits.
Key Features
- Zener Voltage (Vz): 75V
- Package: Through-hole DO-35
- Power Dissipation: 500 mW
- Tolerance: ±5%
- Operational Temperature Range: -65°C to +175°C
- Non-repetitive Peak Reverse Power: 40W (up to 100ms)
The BZX79-C75,113 Zener diode is designed to maintain a constant voltage across its terminals, making it an essential component for voltage regulation in power supplies, and as a protection device in many types of electronic equipment. With its tight voltage tolerance, it ensures precise voltage clamping in any application it is used.
Applications
- Voltage stabilization
- Surge suppression
- Overvoltage protection
- Reference elements in precision circuits
- Switching power supplies
With its through-hole DO-35 package, the BZX79-C75,113 is easy to implement in a variety of printed circuit boards. Its leaded form factor is ideal for prototyping and for use in commercial and educational settings where ease of handling and soldering is required.
Quality and Reliability
NXP Semiconductors is known for its commitment to quality, and the BZX79-C75,113 Zener diode is no exception. It is manufactured to high standards, ensuring that it meets the rigorous demands of industrial, commercial, and consumer applications. Users can trust this component to deliver consistent performance and durability over time.
Whether you are designing a new power supply, working on a hobby project, or in need of a reliable voltage reference in your circuit, the BZX79-C75,113 from NXP Semiconductors is an excellent choice that combines performance with long-term reliability.