Manufacturer Part Number
4N25M
Manufacturer
everlight-electronics
Introduction
The 4N25M is a high-performance optoisolator transistor that provides reliable electrical isolation between the input and output circuits. It features a photovoltaic output and a single-channel design, making it suitable for a wide range of applications requiring high isolation voltage and fast switching capabilities.
Product Features and Performance
5000Vrms isolation voltage
20% minimum current transfer ratio at 10mA
3μs typical turn-on and turn-off times
DC input and transistor with base output
80V maximum output voltage
60mA maximum DC forward current
500mV maximum VCE saturation voltage
Operating temperature range of -55°C to 110°C
Through-hole mounting for easy integration
Product Advantages
High isolation voltage for enhanced safety and reliability
Fast switching speed for efficient signal transmission
Wide operating temperature range for versatile applications
Compact 6-DIP package for space-constrained designs
Key Reasons to Choose This Product
Reliable electrical isolation between input and output
Proven performance and durability for long-term use
Easy integration into various electronic systems
Cost-effective solution for optoisolation requirements
Quality and Safety Features
Complies with industry safety standards
Robust construction for reliable operation
Thorough testing and quality control processes
Compatibility
The 4N25M optoisolator transistor is compatible with a wide range of electronic circuits and systems that require high-voltage isolation, fast switching, and reliable performance.
Application Areas
Industrial automation and control systems
Power supplies and converters
Motor drives and servo controls
Data acquisition and instrumentation
Telecommunication and networking equipment
Product Lifecycle
The 4N25M is an active product, and there are no immediate plans for discontinuation. However, as technology evolves, it's always advisable to check with the manufacturer or our website's sales team for the latest product availability and potential alternative models.