The STMicroelectronics 74ACT32B is a high-speed CMOS Quad 2-Input OR Gate IC designed to operate from 4.5V to 5.5V, making it ideal for a wide range of applications in modern electronics. This product offers a perfect balance of speed and power consumption, which is a hallmark of the Advanced CMOS technology used in its design.
Key Features
- High Speed: The 74ACT32B boasts a typical propagation delay of just 8ns, ensuring rapid response times for critical applications.
- Low Power Consumption: This IC is optimized for low power consumption, with an ICC of only 4µA maximum when disabled, making it suitable for power-sensitive designs.
- High Noise Immunity: Characterized by a high noise immunity of VNIH = VNIL = 28% VCC (minimum), the 74ACT32B is robust in electrically noisy environments.
- Output Drive Capability: The IC can drive up to 24mA at the output, allowing it to control a variety of peripheral devices.
- Guaranteed Operating Range: The device is guaranteed to operate over the full supply voltage range of 4.5V to 5.5V, accommodating common variations in power supply levels.
Applications
The 74ACT32B is versatile and can be used in numerous applications including:
- Logic level conversion and signal gating
- Function generation
- Arithmetic operations
- Computer and microprocessor systems
- Control systems and data processing
Quality and Reliability
STMicroelectronics is committed to providing products that meet the highest standards of quality and reliability. The 74ACT32B has been rigorously tested to ensure performance and durability across a range of conditions. Its robust design is complemented by the company's commitment to environmental sustainability, with compliance to international standards such as RoHS.
Ordering Information
The 74ACT32B is available in a variety of packages including DIP, SOP, and TSSOP, providing flexibility for different PCB layouts and assembly techniques. For detailed ordering and shipping information, please refer to the STMicroelectronics website or contact their sales team directly.