NXP PDZ10B Zener Diode
The NXP PDZ10B is a high-precision Zener diode designed for voltage regulation and voltage reference applications. This robust semiconductor device is a critical component for electronic circuits requiring a stable and accurate voltage source. The PDZ10B is characterized by its low dynamic resistance and a Zener voltage of 10V, making it an ideal choice for providing a regulated output under varying load conditions.
Key Features:
- Zener Voltage: The PDZ10B offers a nominal Zener voltage of 10V, which is maintained with precision, ensuring consistent performance across the device's operational range.
- Power Dissipation: With a power dissipation rating of 400 mW, this Zener diode can handle a moderate amount of power, making it suitable for a variety of electronic applications.
- Tolerance: The voltage tolerance is specified at ±2%, which provides a tight control over the output voltage, contributing to the overall reliability of the circuit.
- Package: It comes in a small, surface-mount SOD323 (SC-76) package, which allows for efficient use of PCB space and is suitable for high-density circuit designs.
- Temperature Stability: The PDZ10B is designed to operate over a wide temperature range, maintaining its Zener voltage stability, which is critical for applications that experience varying environmental conditions.
- Applications: Ideal for use in voltage regulation, surge suppression, and voltage reference applications in consumer electronics, telecommunications, and industrial equipment.
Product Specifications:
| Parameter |
Value |
| Zener Voltage (VZ) |
10V |
| Dynamic Resistance (RZ) |
Typically low |
| Power Dissipation (PD) |
400 mW |
| Operational Temperature Range |
-55°C to +150°C |
| Package Type |
SOD323 (SC-76) |
| Tolerance |
±2% |
The NXP PDZ10B Zener diode is a reliable and precise component that offers excellent performance for a wide array of electronic designs. Its small footprint and stable operation make it a preferred choice for designers looking for a voltage regulation solution.