STMicroelectronics HCF4034BE Octal D-Type Flip-Flop
The HCF4034BE from STMicroelectronics is a high-quality, octal D-type flip-flop integrated circuit that is designed to provide reliable and efficient performance for a wide range of digital applications. This versatile component is a perfect choice for temporary data storage, data transfer, and buffer storage applications, making it a staple in digital systems design.
Key Features
- Multiple Flip-Flops: The HCF4034BE contains eight edge-triggered D-type flip-flops, allowing for simultaneous storage of 8 bits of data.
- Single Clock Input: All flip-flops are controlled by a common clock input, simplifying the synchronization of data.
- Clear Function: A master reset input is provided to immediately clear all flip-flops, ensuring a quick return to a known state when needed.
- Output Capability: The device offers high-current true and complement outputs, offering flexibility in interfacing with other components.
- Wide Operating Voltage: It operates over a broad voltage range from 3V to 20V, catering to various logic level requirements.
- Medium-Speed Operation: Characterized by medium-speed operation, it is well-suited for applications that require moderate speed without the need for high-frequency performance.
Applications
The HCF4034BE is ideal for use in a variety of digital circuits where temporary storage or data manipulation is required. Common applications include:
- Shift registers
- Storage registers
- Counters and dividers
- Relay drivers
- Control circuits
Quality and Reliability
STMicroelectronics ensures that the HCF4034BE meets strict quality and reliability standards. The device is fabricated using silicon gate C2MOS technology, which provides high immunity to noise and low power consumption. This technology also guarantees stable behavior over the entire voltage range.
Whether you're designing a new system or upgrading an existing one, the HCF4034BE from STMicroelectronics offers a practical and efficient solution for your digital logic needs, combining performance with reliability in a single package.