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EDZTE6116B
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EDZTE6116B Description
EDZTE6116B Description
The EDZTE6116B is a high-performance single Zener diode from ROHM Semiconductor, designed to meet the stringent requirements of modern electronic systems. This device offers a nominal Zener voltage of 16V and can handle a maximum power dissipation of 150mW, making it suitable for a wide range of applications. With a surface mount packaging and a compact EMD2 package, the EDZTE6116B is designed for easy integration into various circuit designs.
EDZTE6116B Features
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Technical Specifications:
- Nominal Zener Voltage (Vz): 16V
- Maximum Power Dissipation: 150mW
- Reverse Leakage Current: 100nA @ 12V
- Maximum Impedance (Zzt): 50 Ohms
- Tolerance: ±2%
- Moisture Sensitivity Level (MSL): 1 (Unlimited)
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Performance Benefits:
- ROHS3 Compliance ensures environmental sustainability
- REACH Unaffected status for regulatory compliance
- EAR99 ECCN for global trade facilitation
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Unique Features and Advantages:
- Surface Mount technology for space-saving and efficient PCB design
- Tape & Reel (TR) packaging for automated assembly processes
- Obsolete product status, indicating a mature and reliable technology
EDZTE6116B Applications
The EDZTE6116B is ideal for applications where stable voltage reference and voltage regulation are critical. Some specific use cases include:
- Power Supply Circuits: For voltage regulation and stabilization in power supply designs.
- Signal Conditioning: To provide a stable reference voltage in analog signal processing circuits.
- Voltage Clamping: To protect sensitive components from voltage spikes in various electronic devices.
Conclusion of EDZTE6116B
The EDZTE6116B from ROHM Semiconductor is a reliable and efficient single Zener diode, offering a combination of high performance and compliance with environmental and regulatory standards. Its unique features, such as surface mount technology and compact packaging, make it suitable for a wide range of applications in power supply, signal conditioning, and voltage clamping. Although the product is now obsolete, it remains a solid choice for legacy systems and applications where its specific characteristics are required.



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