DM74S157N ON Semiconductor IC SELECTOR MUX QUAD 2-1 16-DIP
Интегральные схемы (ИС)
Номер производителя:
DM74S157N
Производитель:
Категория продукции:
Описание:
IC SELECTOR MUX QUAD 2-1 16-DIP
Состояние RoHs:
Без свинца / в соответствии с RoHS
Таблицы данных:
Circuit :
Current - Output High, Low :
Independent Circuits :
Mounting Type :
Operating Temperature :
Package / Case :
Packaging :
Part Status :
Series :
Supplier Device Package :
Type :
Voltage - Supply :
Voltage Supply Source :
в наличии
49,294
Unit Price:
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DM74S157N Конкурентные цены
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DM74S157N Особенности
DM74S157N is produced by ON Semiconductor, belongs to Logic - Сигнальные коммутаторы, мультиплексоры, декодеры.
DM74S157N Подробная информация о продукции
:
DM74S157N — это Logic - Сигнальные коммутаторы, мультиплексоры, декодеры, буферные усилители, разработанные и
произведенные
ON Semiconductor.
DM74S157N производства ON Semiconductor можно приобрести на сайте CHIPMLCC.
Здесь вы можете найти различные виды электронных деталей от ведущих производителей мира.
DM74S157N 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 DM74S157N (PDF), цена DM74S157N, Распиновка DM74S157N, руководство DM74S157N и решение на замену DM74S157N.
DM74S157N производства ON Semiconductor можно приобрести на сайте CHIPMLCC.
Здесь вы можете найти различные виды электронных деталей от ведущих производителей мира.
DM74S157N 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 DM74S157N (PDF), цена DM74S157N, Распиновка DM74S157N, руководство DM74S157N и решение на замену DM74S157N.
DM74S157N FAQ
:
1. What is the function of the DM74S157N semiconductor?
The DM74S157N is a quad 2-line to 1-line data selector/multiplexer, which means it can select one of four data inputs and route it to a single output based on the control signals provided.
2. What are the typical operating voltage and current for the DM74S157N?
The DM74S157N typically operates at a voltage range of 4.75V to 5.25V and has a maximum input current of 24mA.
3. What is the maximum frequency at which the DM74S157N can operate?
The DM74S157N can operate at a maximum frequency of 30MHz, making it suitable for high-speed applications.
4. Can the DM74S157N handle both TTL and CMOS logic levels?
Yes, the DM74S157N is designed to be compatible with both TTL and CMOS logic levels, providing versatility in its applications.
5. What is the power dissipation of the DM74S157N at maximum operating conditions?
At maximum operating conditions, the DM74S157N has a power dissipation of 500mW, ensuring efficient energy usage.
6. Does the DM74S157N have built-in protection against electrostatic discharge (ESD)?
Yes, the DM74S157N is equipped with ESD protection, safeguarding it against potential damage from electrostatic discharge events.
7. What is the temperature range within which the DM74S157N can operate reliably?
The DM74S157N is designed to operate reliably within a temperature range of -55°C to 125°C, making it suitable for a wide range of environments.
8. Can the DM74S157N be used in automotive applications?
Yes, the DM74S157N is qualified for automotive applications, meeting the stringent requirements for reliability and performance in automotive electronics.
9. What are the package options available for the DM74S157N?
The DM74S157N is available in 16-pin dual in-line package (DIP) and 16-pin small outline integrated circuit (SOIC) package options, offering flexibility in board design.
10. Is there a recommended layout for PCB design when using the DM74S157N?
Yes, the datasheet for the DM74S157N provides a recommended PCB layout to ensure optimal performance and signal integrity in the application circuit.
The DM74S157N is a quad 2-line to 1-line data selector/multiplexer, which means it can select one of four data inputs and route it to a single output based on the control signals provided.
2. What are the typical operating voltage and current for the DM74S157N?
The DM74S157N typically operates at a voltage range of 4.75V to 5.25V and has a maximum input current of 24mA.
3. What is the maximum frequency at which the DM74S157N can operate?
The DM74S157N can operate at a maximum frequency of 30MHz, making it suitable for high-speed applications.
4. Can the DM74S157N handle both TTL and CMOS logic levels?
Yes, the DM74S157N is designed to be compatible with both TTL and CMOS logic levels, providing versatility in its applications.
5. What is the power dissipation of the DM74S157N at maximum operating conditions?
At maximum operating conditions, the DM74S157N has a power dissipation of 500mW, ensuring efficient energy usage.
6. Does the DM74S157N have built-in protection against electrostatic discharge (ESD)?
Yes, the DM74S157N is equipped with ESD protection, safeguarding it against potential damage from electrostatic discharge events.
7. What is the temperature range within which the DM74S157N can operate reliably?
The DM74S157N is designed to operate reliably within a temperature range of -55°C to 125°C, making it suitable for a wide range of environments.
8. Can the DM74S157N be used in automotive applications?
Yes, the DM74S157N is qualified for automotive applications, meeting the stringent requirements for reliability and performance in automotive electronics.
9. What are the package options available for the DM74S157N?
The DM74S157N is available in 16-pin dual in-line package (DIP) and 16-pin small outline integrated circuit (SOIC) package options, offering flexibility in board design.
10. Is there a recommended layout for PCB design when using the DM74S157N?
Yes, the datasheet for the DM74S157N provides a recommended PCB layout to ensure optimal performance and signal integrity in the application circuit.
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