The SN74LVC157ANSRG4 is a high-performance, quadruple 2-line to 1-line data selector/multiplexer from Texas Instruments, designed to operate from a 2.7 V to 3.6 V power supply, making it suitable for a wide range of applications, including those that require low-voltage and low-power operation.
Key Features
- Logic Type: 2-line to 1-line data selector/multiplexer
- Operating Voltage: 2.7 V to 3.6 V, with 5 V tolerant inputs
- Logic Family: LVC - Low-Voltage CMOS
- Output Current: ±24 mA
- Propagation Delay Time: 3.4 ns at 3.3 V, 25°C
- Operating Temperature Range: -40°C to 85°C
- Package: 16-SOIC
- RoHS: Compliant
Product Description
The SN74LVC157ANSRG4 is engineered to multiplex electrical signals from two input sources to a single output, allowing for efficient data routing and signal processing. This device features a wide operating voltage range and a low-power consumption profile, which is essential for battery-operated and power-sensitive applications. It also supports 5 V tolerant inputs, which provides design flexibility by allowing the device to interface with higher voltage logic levels without sustaining damage.
With its fast propagation delay and robust output drive, the SN74LVC157ANSRG4 is optimized for high-speed signal processing tasks. Its low on-state resistance ensures minimal signal distortion, making it an ideal choice for data transmission and telecommunication systems. The device's wide operating temperature range enables reliable performance in diverse environmental conditions.
The SN74LVC157ANSRG4 comes in a compact 16-SOIC package, which is suitable for space-constrained applications. Its compliance with RoHS standards signifies Texas Instruments' commitment to environmental sustainability by avoiding the use of hazardous substances in the manufacturing process.
Whether you are designing consumer electronics, communication infrastructure, or complex computing systems, the SN74LVC157ANSRG4 offers a blend of high-speed operation, low power consumption, and reliable data handling capabilities that can meet the demands of your sophisticated digital applications.