Manufacturer Part Number
MC14536BCPG
Manufacturer
onsemi
Introduction
The MC14536BCPG is a Programmable Timer designed for a wide range of clock and timing applications, featuring versatility in time period programming and high frequency operation.
Product Features and Performance
Programmable timing options allowing for flexible time configurations.
Capable of operating at frequencies up to 2MHz.
Designed to work across a wide voltage range from 3V to 18V.
Low current supply requirement of 15 µA ensuring efficient operation.
Capable of withstanding operating temperatures ranging from -55°C to 125°C.
Offered in a 16-DIP package, facilitating easier mounting through-hole on PCBs.
Product Advantages
High frequency operation makes it suitable for precision timing tasks.
Wide voltage and temperature operating ranges enhance its versatility across various environments.
Low power requirement contributes to energy-efficient designs.
Its programmability allows for use in a broad spectrum of timing applications.
Key Technical Parameters
Frequency: 2MHz
Voltage Supply: 3V ~ 18V
Current Supply: 15 µA
Operating Temperature: -55°C ~ 125°C
Package / Case: 16-DIP (0.300", 7.62mm)
Quality and Safety Features
The MC14536BCPG is manufactured to meet high quality and safety standards, ensuring reliable performance in critical timing applications.
Compatibility
Its through-hole mounting type and standardized 16-PDIP package make it compatible with a wide range of circuit boards and designs.
Application Areas
This programmable timer excels in automation, control systems, precision timing mechanisms, and any application necessitating reliable timing sequences.
Product Lifecycle
The MC14536BCPG is marked as Obsolete, signaling no longer in production. Users are encouraged to seek replacements or upgrades for future applications.
Several Key Reasons to Choose This Product
High frequency capacity for precise timing.
Low power consumption aids in designing energy-efficient systems.
Programmable features allow for tailored timing configurations.
Robust against wide temperature and voltage variations, enhancing reliability.
Obsolescence status necessitates considering future-proof alternatives but remains a viable choice for existing designs without the need for the latest technology.