M74HCT574B1R belongs to the category of integrated circuits (ICs).
This IC is commonly used in digital electronics for data storage and transfer applications.
The M74HCT574B1R is available in a standard 20-pin plastic dual in-line package (DIP).
The essence of the M74HCT574B1R lies in its ability to store and transfer digital data reliably and efficiently.
This IC is typically packaged in reels or tubes, containing a quantity of 250 units per package.
The M74HCT574B1R has a total of 20 pins. The pin configuration is as follows:
The M74HCT574B1R operates based on the principles of digital logic circuits. It utilizes flip-flops to store binary data and transfers it to the output pins upon receiving a clock pulse. The output enable control allows the user to enable or disable the output as needed. The master reset function resets all flip-flops to their initial state when activated.
The M74HCT574B1R finds application in various fields, including but not limited to: - Microcontrollers - Data communication systems - Memory modules - Industrial automation - Consumer electronics
Some alternative models that offer similar functionality to the M74HCT574B1R include: - 74HC574 - CD74HCT574 - SN74HCT574
These alternatives can be considered based on specific requirements, availability, and compatibility with existing systems.
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Sure! Here are 10 common questions and answers related to the application of M74HCT574B1R in technical solutions:
1. What is the M74HCT574B1R? - The M74HCT574B1R is a high-speed octal D-type flip-flop with 3-state outputs, commonly used in digital circuits.
2. What is the operating voltage range for the M74HCT574B1R? - The operating voltage range for the M74HCT574B1R is typically between 4.5V and 5.5V.
3. How many flip-flops are there in the M74HCT574B1R? - The M74HCT574B1R consists of 8 flip-flops, making it an octal (8-bit) flip-flop.
4. What is the maximum clock frequency supported by the M74HCT574B1R? - The maximum clock frequency supported by the M74HCT574B1R is typically around 25 MHz.
5. Can the M74HCT574B1R be used for both synchronous and asynchronous applications? - Yes, the M74HCT574B1R can be used for both synchronous and asynchronous applications.
6. What is the purpose of the 3-state outputs in the M74HCT574B1R? - The 3-state outputs allow multiple devices to share a common bus without interfering with each other's signals.
7. What is the power consumption of the M74HCT574B1R? - The power consumption of the M74HCT574B1R is relatively low, making it suitable for battery-powered applications.
8. Can the M74HCT574B1R handle both rising and falling edge-triggered clock signals? - Yes, the M74HCT574B1R can handle both rising and falling edge-triggered clock signals.
9. What is the typical propagation delay of the M74HCT574B1R? - The typical propagation delay of the M74HCT574B1R is around 10 ns.
10. Can the M74HCT574B1R be cascaded to increase the number of flip-flops? - Yes, multiple M74HCT574B1R devices can be cascaded together to increase the number of flip-flops in a circuit.
Please note that the answers provided here are general and may vary depending on specific datasheet specifications or application requirements.