The SN74AUP1G79DBVT has a total of five pins:
Advantages: - High-speed operation enables efficient data processing - Wide voltage range allows for compatibility with various systems - Low power consumption reduces energy usage - Reliable latch-up performance ensures stable operation - Noise immunity provided by the Schmitt-trigger input enhances signal integrity
Disadvantages: - Limited number of flip-flops in a single package - Sensitive to electrostatic discharge (ESD), requiring proper handling precautions
The SN74AUP1G79DBVT is a single positive-edge-triggered D-type flip-flop. It stores and transfers data based on the rising edge of the clock signal. The input data (D) is latched and stored in the flip-flop when the clock signal transitions from low to high. The stored data can then be accessed at the output pin (Q). The flip-flop operates using high-speed CMOS technology, providing fast and reliable data processing.
The SN74AUP1G79DBVT is commonly used in various digital systems and applications, including:
Its versatility and compatibility with different voltage levels make it suitable for a wide range of applications.
These alternative models offer similar functionality and performance, allowing users to choose the most suitable option for their specific requirements.
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Sure! Here are 10 common questions and answers related to the application of SN74AUP1G79DBVT in technical solutions:
Q1: What is SN74AUP1G79DBVT? A1: SN74AUP1G79DBVT is a single positive-edge-triggered D-type flip-flop with clear, designed for 1.8-V to 3.6-V VCC operation.
Q2: What is the typical operating voltage range for SN74AUP1G79DBVT? A2: The typical operating voltage range for SN74AUP1G79DBVT is 1.8V to 3.6V.
Q3: What is the maximum clock frequency supported by SN74AUP1G79DBVT? A3: The maximum clock frequency supported by SN74AUP1G79DBVT is typically 200 MHz.
Q4: Can SN74AUP1G79DBVT be used in battery-powered applications? A4: Yes, SN74AUP1G79DBVT can be used in battery-powered applications as it operates within a low voltage range (1.8V to 3.6V).
Q5: What is the power consumption of SN74AUP1G79DBVT? A5: The power consumption of SN74AUP1G79DBVT is typically low due to its low voltage operation.
Q6: Does SN74AUP1G79DBVT have any built-in protection features? A6: No, SN74AUP1G79DBVT does not have any built-in protection features. Additional external protection may be required depending on the application.
Q7: Can SN74AUP1G79DBVT be used in high-speed data transmission applications? A7: Yes, SN74AUP1G79DBVT can be used in high-speed data transmission applications as it supports clock frequencies up to 200 MHz.
Q8: What is the package type for SN74AUP1G79DBVT? A8: SN74AUP1G79DBVT is available in a SOT-23-6 package.
Q9: Can SN74AUP1G79DBVT be used in automotive applications? A9: Yes, SN74AUP1G79DBVT can be used in automotive applications as it operates within the typical automotive voltage range (1.8V to 3.6V).
Q10: Are there any application notes or reference designs available for SN74AUP1G79DBVT? A10: Yes, Texas Instruments provides application notes and reference designs for SN74AUP1G79DBVT on their website, which can help with the implementation of this device in various technical solutions.
Please note that these answers are general and may vary depending on specific requirements and use cases. It's always recommended to refer to the datasheet and consult with the manufacturer for detailed information.