Product Overview: SN74ALS373ANS from Texas Instruments
The SN74ALS373ANS is a high-performance octal transparent D-type latch designed and manufactured by Texas Instruments, a global leader in semiconductor solutions. This integrated circuit is part of the Advanced Low-Power Schottky (ALS) family, which offers a balance between speed and power consumption, making it suitable for a wide range of applications in the electronics industry.
The device features eight latches with three-state outputs for bus-oriented applications. Each latch is D-type, meaning it captures the state of the data input when the latch-enable (LE) input is high and retains that state when LE is low. The eight latches are transparent, which means that while the LE is high, the outputs will change state as the data inputs change.
Key Features:
- Logic Type: Octal D-Type Transparent Latches
- Bus Hold: No Bus Hold feature, ensuring clean output signals
- Output Type: 3-State Outputs, enabling connection to a common bus without interference
- Package: The SN74ALS373ANS comes in a 20-pin SOP (Small Outline Package), suitable for surface mount technology (SMT)
- Operating Temperature: A wide operating temperature range from 0°C to 70°C
The SN74ALS373ANS is designed to be used as temporary storage for binary information between data processing units and input/output or indicator units. The device operates at a voltage range of 4.5V to 5.5V, which is typical for 5V logic systems. Its low power consumption and fast switching speeds make it an excellent choice for interfacing with high-speed microprocessors without the need for speed-matching components.
Furthermore, the three-state outputs can drive bus lines or buffer memory address registers, which significantly enhances the flexibility and utility of the device in complex digital systems. The SN74ALS373ANS's ability to directly interface with the TTL family makes it a versatile component for designers working on mixed-technology projects.
Overall, the SN74ALS373ANS from Texas Instruments is a reliable and efficient solution for data storage and transfer applications, offering high-speed performance with minimal power draw, making it a popular choice for designers and engineers in the electronics industry.