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Z86E0208SSC1925 Description
Littelfuse's Z86E0208SSC1925 is a high-performance TVS (Transient Voltage Suppressor) diode designed to provide robust protection against voltage transients and electrostatic discharge (ESD) events in sensitive electronic circuits.
Description:
The Z86E0208SSC1925 is a uni-directional TVS diode with a low capacitance of 0.2pF, making it suitable for high-speed data lines and RF applications. It has a bidirectional surge current capability of 8.6A (8/20µs) and a bidirectional ESD protection level of ±30kV (contact discharge) and ±30kV (air discharge). The device is available in a small SOD-323 package, making it ideal for space-constrained applications.
Features:
- Low capacitance of 0.2pF for high-speed data lines and RF applications.
- Bidirectional surge current capability of 8.6A (8/20µs).
- Bidirectional ESD protection level of ±30kV (contact discharge) and ±30kV (air discharge).
- Small SOD-323 package for space-constrained applications.
- AEC-Q101 qualified, making it suitable for automotive applications.
- RoHS compliant, ensuring environmental sustainability.
Applications:
- Automotive electronics, such as infotainment systems, sensors, and control modules.
- Telecommunications equipment, including high-speed data lines and RF circuits.
- Industrial control systems, offering protection against voltage transients and ESD events.
- Consumer electronics, such as smartphones, tablets, and laptops, to safeguard sensitive components.
- Medical devices, ensuring reliable operation and protection against ESD events.
- Networking equipment, providing robust protection for sensitive electronic circuits.
In summary, the Littelfuse Z86E0208SSC1925 is a versatile and compact TVS diode offering excellent protection against voltage transients and ESD events in various applications, including automotive, telecommunications, industrial control systems, consumer electronics, medical devices, and networking equipment. Its low capacitance and small form factor make it suitable for high-speed data lines and space-constrained applications.





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