Manufacturer Part Number
SN74LVC1G04DCKR
Manufacturer
Texas Instruments
Introduction
The SN74LVC1G04DCKR is a single inverter gate from Texas Instruments' 74LVC series designed for use in a wide range of logic applications.
Product Features and Performance
Logic Gate Type: Inverter
Single Circuit Configuration
Supply Voltage Range: 1.65V to 5.5V
Low Quiescent Current: 10 µA max
High Output Current Capability: 32mA for both high and low levels
Input Logic Level - Low: 0.58V min to 1.65V max
Input Logic Level - High: 1.07V min to 3.85V max
Fast Propagation Delay: 3.7ns max at 5V with 50pF load
Extended Operating Temperature Range: -40°C to 125°C
Surface Mount Package
Product Advantages
High-Speed Operation in the LVC Family
Supports 5V Tolerant Inputs
Suitable for Down Translation to Lower Voltages
Low Power Consumption
Compatible with Mixed-Voltage Systems
Key Technical Parameters
Number of Circuits: 1
Supply Voltage: 1.65V to 5.5V
Max Quiescent Current: 10 µA
Output Current: 32mA, High and Low
Propagation Delay: 3.7ns at 5V with 50pF load
Quality and Safety Features
Operational Temperature Rated from -40°C to 125°C
Compatibility
Compatible with Down-Voltage Translation Applications
Fits into Systems Requiring Mixed Voltage Levels
SC-70-5 Package Compatible with Standard SMT Assembly
Application Areas
General Logic Systems
Smartphones and Mobile Devices
Consumer Electronics
Embedded Systems
Computing and Data Storage
Automation and Industrial
Product Lifecycle
Status: Active
Not Nearing Discontinuation
Availability of Replacements or Upgrades likely due to Active Status
Several Key Reasons to Choose This Product
Versatile across Multiple Voltage Levels
Designed for Minimal Power Consumption
Texas Instruments' Reputation for Reliability and Quality
Broad Operating Temperature Suitable for Industrial Use
Space-Saving SC-70-5 Package
Suitable for High-Speed Logic Operations
Easily Integrated into Existing and New Designs
Support for High-Level Circuit Integration due to Single Gate Design
Available in Tape & Reel for Efficient Assembly Process
High Output Drive Capability at lower supply voltages
Low Propagation Delay Benefits Timing-Critical Applications