Manufacturer Part Number
74LVX00SJX
Manufacturer
onsemi
Introduction
The 74LVX00SJX is a quad 2-input NAND gate from onsemi's 74LVX series of logic gates and inverters. It is designed to operate at low voltages, making it suitable for use in power-sensitive applications. The 74LVX00SJX provides a simple and reliable way to implement NAND logic functions in electronic circuits.
Product Features and Performance
Quad 2-input NAND gate
Operates on a supply voltage of 2V to 3.6V
Low quiescent current consumption of 2 μA (max)
High output current capability of 4 mA (high and low)
Low input logic level threshold of 0.5V to 0.8V (low)
High input logic level threshold of 1.5V to 2.4V (high)
Maximum propagation delay of 9.7 ns at 3.3V with 50 pF load
Wide operating temperature range of -40°C to 85°C
Product Advantages
Efficient power consumption for battery-powered and portable applications
Reliable NAND gate functionality with high output current drive
Wide operating voltage and temperature range for design flexibility
Small surface-mount package for compact circuit designs
Key Reasons to Choose This Product
Optimized for low-power, battery-powered applications
Provides robust and dependable NAND logic functionality
Compact surface-mount package for space-constrained designs
Wide operating conditions accommodate diverse application requirements
Quality and Safety Features
ESD protection
Latch-up prevention
Overvoltage and overcurrent protection
Compatibility
The 74LVX00SJX is compatible with other 74LVX series logic gates and inverters, allowing for seamless integration in various electronic systems.
Application Areas
Portable electronics
Automotive electronics
Industrial control systems
Embedded systems
Digital logic circuits
Product Lifecycle
The 74LVX00SJX is an obsolete product, meaning it is no longer in active production. However, there are several alternative and equivalent models available from onsemi, such as the 74LVC00, 74HC00, and 74AHC00 series. Customers are advised to contact our website's sales team for more information on these alternative options and their suitability for their specific application requirements.