Manufacturer Part Number
CD4047BNSR
Manufacturer
Texas Instruments
Introduction
The CD4047BNSR is a highly versatile monostable/astable multivibrator from Texas Instruments’ 4000B series, designed for various waveform generation applications.
Product Features and Performance
Operates as both astable and monostable multivibrator
Suitable for wave-generation with adjustable frequency and duty cycle
Output current capability of 6.8mA (High and Low)
Wide supply voltage range from 3V to 18V
Short propagation delay of 80ns
Monolithic pinout
Product Advantages
High temperature operational range from -55°C to 125°C for diverse environmental conditions
Flexible voltage requirements suitable for a variety of circuits
Compact 14-SOIC package ideal for space-constrained applications
Key Technical Parameters
Logic Type: Astable, Monostable
Propagation Delay: 80 ns
Current Output High, Low: 6.8mA
Voltage Supply: 3V to 18V
Operating Temperature: -55°C to 125°C
Mounting Type: Surface Mount
Quality and Safety Features
Robust operating temperature range ensuring reliability in extreme conditions
Manufactured by a reputable industry leader, ensuring high standards of quality and durability
Compatibility
14-SOIC package compatible with standard surface-mount technology procedures
Versatile supply voltage compatibility for easy integration into existing systems
Application Areas
Timing circuits
Oscillator circuits
Pulse generation
Frequency discrimination
Tone generation
Product Lifecycle
Currently in active production with no announced discontinuation date
Availability of replacements and upgrades supported by Texas Instruments for an extended lifecycle
Several Key Reasons to Choose This Product
Versatility in function, serving as both astable and monostable multivibrator
High thermal and operational reliability for consistent performance
Wide range of acceptable input voltages, making it adaptable to various power supplies
High-quality manufacturing from Texas Instruments ensures longevity and precision in application
Compact and efficient design suitable for space-sensitive electronic designs