Product Overview: 74LVCE1G126W5-7 from Diodes Incorporated
The 74LVCE1G126W5-7 is a high-performance, single bus buffer gate with 3-state output from Diodes Incorporated, designed to operate from a wide voltage range of 1.65V to 5.5V. This versatile component is part of the 74LVC family, which is known for its low-voltage CMOS technology offering robust performance and minimal power consumption.
This particular model features a single line driver with a 3-state output, which is controlled by the output enable (OE) input. When the OE input is low, the output is in a high-impedance state, effectively disconnecting the output from the circuit. This is particularly useful in applications where multiple outputs need to be connected to a common bus without causing contention.
The 74LVCE1G126W5-7 is housed in a compact 5-pin SOT-25 package, making it suitable for space-constrained applications. It is designed to be pin-compatible with other standard logic devices, allowing for easy integration into existing designs or for use in new projects without the need for significant layout changes.
Key features of the 74LVCE1G126W5-7 include:
- Wide operating voltage range: 1.65V to 5.5V
- High noise immunity
- Low power consumption
- 5-pin SOT-25 package for compact designs
- High-speed performance
- 3-state outputs for bus-connected systems
- Compatible with TTL levels
Applications for this buffer gate are diverse, ranging from signal buffering in bus-oriented systems to driving heavy loads, such as memory address registers, clock drivers, and other similar scenarios where a non-permanent connection is required. The 74LVCE1G126W5-7 is also well-suited for power-sensitive applications due to its low power consumption.
Diodes Incorporated ensures that the 74LVCE1G126W5-7 meets stringent quality standards, providing reliability and performance for critical applications. With its combination of features and performance, this buffer gate is an excellent choice for designers looking for a flexible and efficient solution for their digital logic needs.