74HCT377N,652 NXP USA Inc. IC FF D-TYPE SNGL 8BIT 20DIP
Интегральные схемы (ИС)
Номер производителя:
74HCT377N,652
Производитель:
Категория продукции:
Описание:
IC FF D-TYPE SNGL 8BIT 20DIP
Состояние RoHs:
Без свинца / в соответствии с RoHS
Таблицы данных:
Clock Frequency :
Current - Output High, Low :
Current - Quiescent (Iq) :
Function :
Input Capacitance :
Max Propagation Delay @ V, Max CL :
Mounting Type :
Number of Bits per Element :
Number of Elements :
Operating Temperature :
Output Type :
Package / Case :
Packaging :
Part Status :
Series :
Trigger Type :
Type :
Voltage - Supply :
в наличии
30,988
Unit Price:
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Предложение
74HCT377N,652 Конкурентные цены
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74HCT377N,652 Особенности
74HCT377N,652 is produced by NXP USA Inc., belongs to Логика - Flip Flops.
74HCT377N,652 Подробная информация о продукции
:
74HCT377N,652 — это Логика - Flip Flops, буферные усилители, разработанные и
произведенные
NXP USA Inc..
74HCT377N,652 производства NXP USA Inc. можно приобрести на сайте CHIPMLCC.
Здесь вы можете найти различные виды электронных деталей от ведущих производителей мира.
74HCT377N,652 компании CHIPMLCC прошел строгий контроль качества и соответствует всем требованиям.
Статус запасов, отмеченный на CHIPMLCC, предназначен только для справки.
Если вы не нашли запчасть, которую ищете, вы можете связаться с нами для получения дополнительной информации, такой как количество запасов в таблице данных 74HCT377N,652 (PDF), цена 74HCT377N,652, Распиновка 74HCT377N,652, руководство 74HCT377N,652 и решение на замену 74HCT377N,652.
74HCT377N,652 производства NXP USA Inc. можно приобрести на сайте CHIPMLCC.
Здесь вы можете найти различные виды электронных деталей от ведущих производителей мира.
74HCT377N,652 компании CHIPMLCC прошел строгий контроль качества и соответствует всем требованиям.
Статус запасов, отмеченный на CHIPMLCC, предназначен только для справки.
Если вы не нашли запчасть, которую ищете, вы можете связаться с нами для получения дополнительной информации, такой как количество запасов в таблице данных 74HCT377N,652 (PDF), цена 74HCT377N,652, Распиновка 74HCT377N,652, руководство 74HCT377N,652 и решение на замену 74HCT377N,652.
74HCT377N,652 FAQ
:
1. What is the function of the 74HCT377N,652 semiconductor?
The 74HCT377N,652 is a D-type flip-flop with a transparent latch and 3-state outputs. It is commonly used for storage and transfer of data in digital systems.
2. What are the key features of the 74HCT377N,652 semiconductor?
The 74HCT377N,652 features high-speed CMOS technology, low power consumption, and 3-state outputs for bus-oriented applications.
3. What is the operating voltage range of the 74HCT377N,652 semiconductor?
The 74HCT377N,652 operates within a voltage range of 4.5V to 5.5V, making it suitable for various digital applications.
4. Can the 74HCT377N,652 be used in automotive applications?
Yes, the 74HCT377N,652 is qualified for automotive applications according to the AEC-Q100 standard, making it suitable for use in automotive electronics.
5. What is the maximum clock frequency supported by the 74HCT377N,652 semiconductor?
The 74HCT377N,652 supports a maximum clock frequency of 80 MHz, enabling high-speed operation in digital systems.
6. Does the 74HCT377N,652 have built-in protection features?
Yes, the 74HCT377N,652 includes built-in diode protection to prevent damage from electrostatic discharge (ESD) and transient voltage events.
7. What is the typical propagation delay of the 74HCT377N,652 semiconductor?
The typical propagation delay of the 74HCT377N,652 is 13 ns, ensuring efficient data transfer in digital circuits.
8. Can the 74HCT377N,652 be cascaded for larger storage applications?
Yes, multiple 74HCT377N,652 devices can be cascaded to create larger storage applications, providing scalability for diverse system requirements.
9. What is the recommended operating temperature range for the 74HCT377N,652 semiconductor?
The 74HCT377N,652 is designed to operate within a temperature range of -40°C to 125°C, making it suitable for a wide range of environmental conditions.
10. Are there any specific layout considerations for using the 74HCT377N,652 in PCB designs?
Proper decoupling capacitors and signal integrity practices should be followed to ensure optimal performance when integrating the 74HCT377N,652 into PCB designs.
The 74HCT377N,652 is a D-type flip-flop with a transparent latch and 3-state outputs. It is commonly used for storage and transfer of data in digital systems.
2. What are the key features of the 74HCT377N,652 semiconductor?
The 74HCT377N,652 features high-speed CMOS technology, low power consumption, and 3-state outputs for bus-oriented applications.
3. What is the operating voltage range of the 74HCT377N,652 semiconductor?
The 74HCT377N,652 operates within a voltage range of 4.5V to 5.5V, making it suitable for various digital applications.
4. Can the 74HCT377N,652 be used in automotive applications?
Yes, the 74HCT377N,652 is qualified for automotive applications according to the AEC-Q100 standard, making it suitable for use in automotive electronics.
5. What is the maximum clock frequency supported by the 74HCT377N,652 semiconductor?
The 74HCT377N,652 supports a maximum clock frequency of 80 MHz, enabling high-speed operation in digital systems.
6. Does the 74HCT377N,652 have built-in protection features?
Yes, the 74HCT377N,652 includes built-in diode protection to prevent damage from electrostatic discharge (ESD) and transient voltage events.
7. What is the typical propagation delay of the 74HCT377N,652 semiconductor?
The typical propagation delay of the 74HCT377N,652 is 13 ns, ensuring efficient data transfer in digital circuits.
8. Can the 74HCT377N,652 be cascaded for larger storage applications?
Yes, multiple 74HCT377N,652 devices can be cascaded to create larger storage applications, providing scalability for diverse system requirements.
9. What is the recommended operating temperature range for the 74HCT377N,652 semiconductor?
The 74HCT377N,652 is designed to operate within a temperature range of -40°C to 125°C, making it suitable for a wide range of environmental conditions.
10. Are there any specific layout considerations for using the 74HCT377N,652 in PCB designs?
Proper decoupling capacitors and signal integrity practices should be followed to ensure optimal performance when integrating the 74HCT377N,652 into PCB designs.
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