Description
SZMMSZ4694T1G-ON
Product Description
The SZMMSZ4694T1G-ON is a high-performance Zener diode designed for a wide range of applications, including voltage regulation and transient protection. This device is characterized by its high reliability, low leakage current, and high surge capability, making it an ideal choice for systems requiring stable voltage references.
Key Features
- High Surge Capability: The SZMMSZ4694T1G-ON can withstand high surge currents, protecting sensitive electronics from voltage spikes.
- Low Leakage Current: Offers minimal leakage current, which is critical for maintaining the efficiency and accuracy of the circuit.
- High Reliability: Constructed with high-quality materials and manufacturing processes to ensure long-term operation without degradation.
- Stable Voltage Reference: Provides a stable voltage reference, crucial for precision analog circuits and voltage regulation applications.
Technical Specifications
General
- Product Series: SZMMSZ
- Type: Zener Diode
- Package: SOD-123
Electrical Characteristics
- Voltage – Zener (Vz): 9.1 V
- Current – Test: 76 mA
- Power – Max: 250 mW
- Impedance (Max): 45 Ohms
- Voltage – Forward (Vf): 0.9 V
Environmental
- Operating Temperature Range: -65°C to 150°C
- Storage Temperature Range: -65°C to 200°C
Applications
The SZMMSZ4694T1G-ON is suitable for various applications, including:
- Voltage Regulation: Providing stable voltage references for electronic circuits.
- Transient Protection: Protecting sensitive components from voltage transients and spikes.
- Audio Equipment: Stabilizing voltage in audio equipment to maintain sound quality.
- Industrial Control Systems: Ensuring stable operation and protection against voltage fluctuations.
Packaging and Ordering Information
- Package Type: SOD-123
- Packaging: Tape & Reel
- Quantity per Reel: 3000 pieces
For the most current and detailed information, including datasheets, application notes, and availability, please consult the manufacturer’s official website or contact their sales support team.

