STMicroelectronics HCF4027M013TR
The HCF4027M013TR is a high-performance integrated circuit manufactured by STMicroelectronics, a leader in the semiconductor industry. This particular device is part of the HCF series, which is known for its robustness and versatility in various electronic applications.
This product is a CMOS Dual J-K Master-Slave Flip-Flop, which is a fundamental component used in digital electronics. A flip-flop is a type of bistable multivibrator, an electronic circuit that has two stable states and can be used to store binary data. The dual J-K flip-flop design means that there are two flip-flops in one package, each with its own set of J, K, and clock inputs along with Q and Q-bar outputs.
The 'Master-Slave' configuration of the HCF4027M013TR ensures that the state of the flip-flop only changes on specific edges of the clock signal, providing greater control over the timing of the data storage. This characteristic is vital for synchronous circuits where the precise timing of data storage is crucial.
With its wide operating voltage range from -0.5V to +18V, the HCF4027M013TR is highly adaptable and can be used in various applications, from low-power portable devices to high-voltage industrial equipment. Its low power consumption and high noise immunity are due to the MOS technology used in its construction.
The HCF4027M013TR comes in a surface-mount SO-16 package, which is suitable for automated assembly processes and is designed to minimize space on printed circuit boards (PCBs). The 'TR' suffix indicates that the product is provided in tape and reel packaging, which is ideal for high-volume production environments.
STMicroelectronics ensures that this product meets the highest quality and reliability standards, which makes the HCF4027M013TR a preferred choice for designers and engineers looking for a reliable flip-flop solution. Whether used in counters, shift registers, control circuits, or memory devices, the HCF4027M013TR provides a flexible and dependable option for your digital circuit needs.