The SN74F373N is typically packaged in tubes or trays. Each tube contains 25 ICs, while each tray holds 100 ICs.
The SN74F373N has a total of 20 pins arranged as follows:
The SN74F373N is designed to latch and store data in an 8-bit format. It features a clock input (CP) that controls the latching operation. When the clock signal transitions from low to high, the data inputs (D0-D7) are captured and stored in the corresponding output registers (Q0-Q7). The outputs can be enabled or disabled using the output enable input (OE).
The SN74F373N operates based on the principle of latching. When the clock input (CP) transitions from low to high, the data inputs (D0-D7) are captured and stored in the output registers (Q0-Q7). The stored data remains unchanged until the next clock transition occurs. The output enable input (OE) controls whether the outputs are active or in a high-impedance state.
The SN74F373N is widely used in various digital systems that require temporary storage of data. Some common application fields include:
These alternative models offer similar functionality to the SN74F373N and can be used
Sure! Here are 10 common questions and answers related to the application of SN74F373N:
Question: What is SN74F373N?
Answer: SN74F373N is a type of octal transparent latch with 3-state outputs, commonly used in digital systems.
Question: What is the purpose of SN74F373N?
Answer: SN74F373N is used to store and control the flow of data in digital circuits.
Question: How many bits can SN74F373N store?
Answer: SN74F373N can store 8 bits of data.
Question: What is the maximum voltage that SN74F373N can handle?
Answer: SN74F373N can handle a maximum voltage of 5.5V.
Question: Can SN74F373N be used for bidirectional data transfer?
Answer: No, SN74F373N is unidirectional and can only transfer data in one direction.
Question: What is the power supply range for SN74F373N?
Answer: The power supply range for SN74F373N is typically between 4.5V and 5.5V.
Question: Does SN74F373N have any built-in protection features?
Answer: Yes, SN74F373N has built-in diode clamps to protect against electrostatic discharge (ESD).
Question: Can SN74F373N be cascaded to increase the number of stored bits?
Answer: Yes, multiple SN74F373N latches can be cascaded together to increase the number of stored bits.
Question: What is the propagation delay of SN74F373N?
Answer: The propagation delay of SN74F373N is typically around 10-15 nanoseconds.
Question: Can SN74F373N drive LEDs or other low-power devices directly?
Answer: Yes, SN74F373N can drive low-power devices directly as long as the current requirements are within its specifications.
Please note that these answers are general and may vary depending on specific datasheet information and application requirements.