Product Overview: SN74ALVCH373DWR from Texas Instruments
The SN74ALVCH373DWR is a high-performance, octal transparent D-type latch designed by Texas Instruments, a leader in semiconductor solutions. This device is part of the advanced high-speed CMOS family, which offers a blend of speed and low power consumption, making it an ideal choice for a wide range of applications in modern electronic systems.
Key Features
- Logic Type: Octal Transparent D-Type Latch
- Output Type: 3-State Outputs
- IC Interface Type: CMOS
- Supply Voltage Range: 2.3V to 3.6V
- Operating Temperature Range: -40°C to 85°C
- Packaging: Supplied in a 20-SOIC (Wide Body) package
- Data Flow Direction: Non-Inverting
- Propagation Delay Time: Fast propagation delay times
Performance and Quality
SN74ALVCH373DWR devices are characterized for operation from -40°C to 85°C, ensuring reliable performance across a broad range of environmental conditions. With a supply voltage range from 2.3V to 3.6V, this latch is suitable for interfacing with 3.3V logic levels while maintaining low power consumption. The fast propagation delay times associated with this device ensure quick response times, a critical factor in high-speed data processing and communication systems.
Applications
Due to its robust design and versatility, the SN74ALVCH373DWR is used in various applications such as:
- Data storage and retrieval systems
- Communication interfaces
- Microprocessor or microcontroller bus interfaces
- Buffer memory address registers
- Industrial control systems
Environmental Compliance
The SN74ALVCH373DWR is compliant with RoHS (Restriction of Hazardous Substances) directives, which means it is manufactured with a focus on environmental safety by limiting the use of certain hazardous materials. This commitment to sustainability ensures that the product meets the regulatory requirements for electronic components in many markets worldwide.
With its robust feature set, high-speed performance, and Texas Instruments' commitment to quality, the SN74ALVCH373DWR is an excellent choice for designers looking to implement reliable latching functions in their digital systems.