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74AUP1T34GM
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Description
Key features include Schmitt-trigger input characteristics, ensuring clean and noise-immune signal transitions, and a low static power consumption. The 74AUP1T34GM is available in various package types, including SOT-23, making it easy to integrate into compact designs. It is often used in applications such as signal buffering, level shifting, and in digital circuits requiring reliable signal management.
Overall, the 74AUP1T34GM is an effective solution for enhancing signal integrity while minimizing energy use in modern electronic designs.
Equivalent
Features
1. Supply Voltage Range: Operates between 0.8V and 3.6V, accommodating various low-power applications.
2. High Noise Immunity: Schmitt-trigger input provides hysteresis, improving signal integrity and reducing susceptibility to noise.
3. Low Power Consumption: Offers low static and dynamic power usage, making it ideal for battery-operated devices.
4. High-Speed Operation: Capable of switching at speeds suitable for high-frequency applications.
5. Single Output: Designed for single input to single output configuration, simplifying circuit design.
6. Compact Packaging: Available in small form factors, such as SOT-23, facilitating integration into tight spaces on PCBs.
7. TTL Compatible: Compatible with TTL levels, allowing easy interfacing with other logic families.
These features make the 74AUP1T34GM suitable for various applications, including consumer electronics, automotive systems, and communication devices.
Pinout
Pin Count: 5 pins.
Pin Functions:
1. A (Input): The data input pin.
2. OE (Output Enable): Active-low output enable pin; when high, the output is in a high-impedance state.
3. Y (Output): The buffered output that reflects the state of input A when OE is low.
4. VCC (Power Supply): Connect to a positive supply voltage (typically 1.0V to 3.6V).
5. GND (Ground): Connect to the ground.
The device is designed for applications requiring low power consumption and is ideal for driving capacitive loads.
Manufacturer
Application
1. Signal Conditioning: Enhances signal integrity by providing clean transitions for noisy inputs.
2. Level Shifting: Converts voltage levels between different logic families (e.g., from 3.3V to 5V).
3. Data Transmission: Improves signal quality in high-speed data lines.
4. Battery-Powered Devices: Low power consumption makes it ideal for portable applications.
5. Consumer Electronics: Used in devices requiring reliable digital signal processing, such as computers and smartphones.
Its versatility allows for use in various digital circuits across multiple industries.