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Z8F1621AN020EC Description
Littelfuse's Z8F1621AN020EC is a high-performance TVS (Transient Voltage Suppressor) diode designed to provide robust protection against voltage transients and electrostatic discharge (ESD) events in electronic circuits. This device is a crucial component for safeguarding sensitive electronics from damage caused by voltage spikes and other electrical disturbances.
Description:
The Z8F1621AN020EC is a uni-directional TVS diode with a low capacitance of 2.0 pF (@100 MHz), making it suitable for high-speed data lines and other high-frequency applications. It features a bidirectional clamping voltage of 20.8 V max at 1 mA and a very fast response time of less than 1 ns, ensuring reliable protection against transient voltages.
Features:
- Low capacitance of 2.0 pF (@100 MHz) for high-speed data line protection
- Bidirectional clamping voltage of 20.8 V max at 1 mA
- Ultra-fast response time of less than 1 ns
- Highcurrent handling capability (up to 1000 A, 8/20 µs pulse width)
- Low leakage current
- AEC-Q101 qualified, making it suitable for automotive applications
- RoHS compliant, environmentally friendly
Applications:
- Automotive electronics: infotainment systems, sensor protection, and control modules
- Telecommunications: high-speed data lines, signal lines, and I/O protection
- Industrial control systems: motor drives, programmable logic controllers (PLCs), and sensor protection
- Consumer electronics: USB ports, HDMI interfaces, and power supply protection
- Medical devices: diagnostic equipment, imaging systems, and patient monitoring devices
- Networking equipment: Ethernet ports, signal lines, and I/O protection
The Littelfuse Z8F1621AN020EC is a versatile and reliable TVS diode that offers excellent protection for a wide range of electronic applications, particularly in automotive, telecommunications, and industrial environments. Its low capacitance, fast response time, and robust current handling capability make it an ideal choice for safeguarding sensitive electronic circuits from voltage transients and ESD events.



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