Manufacturer Part Number
SMBJ85CD-M3/H
Manufacturer
Vishay Semiconductor Diodes Division
Introduction
The SMBJ85CD-M3/H is a Transient Voltage Suppressor (TVS) Diode from Vishay Semiconductor Diodes Division. It is designed for circuit protection against voltage transients and electrostatic discharge (ESD) events. The device features a low clamping voltage, fast response time, and high peak pulse power handling capability, making it suitable for a wide range of applications.
Product Features and Performance
Bidirectional 1-channel TVS Diode
Reverse Standoff Voltage (Typ.): 85V
Breakdown Voltage (Min.): 95.7V
Clamping Voltage (Max. @ Ipp): 135V
Peak Pulse Current (10/1000µs): 4.46A
Peak Pulse Power: 600W
Operating Temperature Range: -55°C to 150°C
Product Advantages
Provides effective protection against voltage transients and ESD events
Low clamping voltage ensures better protection for sensitive electronic components
Fast response time helps to suppress voltage spikes quickly
High peak pulse power handling capability
Key Reasons to Choose This Product
Robust circuit protection for a wide range of applications
Reliable and long-lasting performance
Cost-effective solution for voltage transient and ESD protection
Compact surface mount package saves valuable PCB space
Quality and Safety Features
Compliant with RoHS and REACH directives
Tested and certified to meet industry safety standards
Compatibility
This TVS Diode is compatible with a variety of electronic devices and systems that require protection against voltage transients and ESD events.
Application Areas
General purpose circuit protection
Power supplies
Telecommunications equipment
Industrial automation and control systems
Consumer electronics
Product Lifecycle
The SMBJ85CD-M3/H is an active product, currently in production. There are no immediate plans for discontinuation. However, customers are advised to check with Vishay Semiconductor Diodes Division or our website's sales team for the latest product availability and lifecycle information, as well as potential alternative or equivalent models.