Manufacturer Part Number
MM74C902N
Manufacturer
onsemi
Introduction
The MM74C902N is a 6-bit non-inverting buffer/line driver featuring 3-state outputs. It is part of onsemi's 74C series of CMOS logic devices, designed to provide high-performance signal driving capabilities while operating on a wide range of supply voltages from 3V to 15V.
Product Features and Performance
6-bit non-inverting buffer with 3-state outputs
Capable of driving up to 5mA in the high output state and 9mA in the low output state
Wide supply voltage range of 3V to 15V
Operates over an extended temperature range of -40°C to +85°C
Manufactured using onsemi's advanced CMOS process technology for high reliability and performance
Product Advantages
Versatile 3-state buffer for a wide range of applications
Ability to operate on low power supply voltages down to 3V
Excellent driving capability for various logic and signal interfacing needs
Robust performance across extended temperature ranges
Key Reasons to Choose This Product
Proven reliability and performance of onsemi's 74C series CMOS logic devices
Flexible supply voltage operation from 3V to 15V
Capable of driving high current loads with 3-state outputs
Suitable for a wide range of applications in digital electronics and system design
Quality and Safety Features
Manufactured using onsemi's strict quality control processes
Designed to meet industry safety and reliability standards
Compatibility
Compatible with various 74-series logic families and CMOS/TTL logic devices
Application Areas
Signal buffering and line driving in digital electronics
Interface circuits between logic blocks and high-current loads
General-purpose logic signal conditioning and distribution
Product Lifecycle
The MM74C902N is an obsolete product, and onsemi no longer manufactures this specific model. However, there are several equivalent and alternative CMOS buffer and line driver products available from onsemi that can serve as replacement options. Customers are advised to contact our website's sales team for more information on suitable alternative products.