Manufacturer Part Number
SMA6J9.0CA
Manufacturer
Bourns
Introduction
The Bourns SMA6J9.0CA is a high-performance Transient Voltage Suppressor (TVS) diode designed for protection against electrostatic discharge (ESD) and electrical overstress (EOS) events in telecom and other sensitive electronic applications. With its compact surface-mount package and robust electrical characteristics, this TVS diode offers reliable protection against transient voltage spikes.
Product Features and Performance
Bidirectional 1-channel design
Reverse Standoff Voltage (Typ.): 9V
Breakdown Voltage (Min.): 10V
Clamping Voltage (Max. @ Ipp): 15.4V
Peak Pulse Current (10/1000μs): 39A
Peak Pulse Power: 600W
Operating Temperature Range: -55°C to +150°C
Product Advantages
Compact surface-mount package for space-efficient design
High peak pulse current and power handling capability
Wide operating temperature range for versatile applications
Bidirectional design for protection against both positive and negative voltage transients
Key Reasons to Choose This Product
Reliable protection against ESD and EOS events
Robust electrical characteristics for demanding telecom and industrial applications
Space-saving surface-mount package for easy integration
Compliance with international safety and quality standards
Quality and Safety Features
Manufactured using high-quality materials and processes
Designed to meet industry safety and reliability standards
RoHS-compliant for environmental responsibility
Compatibility
The Bourns SMA6J9.0CA TVS diode is compatible with a wide range of electronic devices and systems, particularly those in the telecom and industrial sectors.
Application Areas
Telecom equipment
Industrial automation and control systems
Power supplies
Electronic devices and circuits
Product Lifecycle
The Bourns SMA6J9.0CA is an active product, and there are no plans for discontinuation at this time. Customers should check with our website's sales team or their authorized distributors for the latest information on product availability and potential alternative models.