SN74LS153N Texas Instruments IC DUAL 4-1 SEL/MUX 16-DIP
Интегральные схемы (ИС)
Номер производителя:
SN74LS153N
Производитель:
Категория продукции:
Описание:
IC DUAL 4-1 SEL/MUX 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
51,854
Unit Price:
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SN74LS153N Конкурентные цены
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SN74LS153N Особенности
SN74LS153N is produced by Texas Instruments, belongs to Logic - Сигнальные коммутаторы, мультиплексоры, декодеры.
SN74LS153N Подробная информация о продукции
:
SN74LS153N — это Logic - Сигнальные коммутаторы, мультиплексоры, декодеры, буферные усилители, разработанные и
произведенные
Texas Instruments.
SN74LS153N производства Texas Instruments можно приобрести на сайте CHIPMLCC.
Здесь вы можете найти различные виды электронных деталей от ведущих производителей мира.
SN74LS153N 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 SN74LS153N (PDF), цена SN74LS153N, Распиновка SN74LS153N, руководство SN74LS153N и решение на замену SN74LS153N.
SN74LS153N производства Texas Instruments можно приобрести на сайте CHIPMLCC.
Здесь вы можете найти различные виды электронных деталей от ведущих производителей мира.
SN74LS153N 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 SN74LS153N (PDF), цена SN74LS153N, Распиновка SN74LS153N, руководство SN74LS153N и решение на замену SN74LS153N.
SN74LS153N FAQ
:
1. What is the function of the SN74LS153N dual 4-line to 1-line data selector/multiplexer?
The SN74LS153N is designed to select one of four sources of data and route it to a single output, based on the input selection.
2. What are the typical operating voltage and current ratings for the SN74LS153N?
The SN74LS153N typically operates at a voltage range of 4.75V to 5.25V and has a maximum input current of 0.4mA.
3. Can the SN74LS153N handle high-speed data selection and multiplexing?
Yes, the SN74LS153N is capable of handling high-speed data selection and multiplexing due to its low propagation delay and fast switching characteristics.
4. What is the maximum frequency at which the SN74LS153N can operate effectively?
The SN74LS153N can effectively operate at a maximum frequency of 25MHz, making it suitable for various high-speed applications.
5. How does the SN74LS153N handle input signal transitions and noise immunity?
The SN74LS153N incorporates Schmitt-trigger inputs to provide hysteresis and improve noise immunity, ensuring reliable operation in noisy environments.
6. What are the typical power dissipation characteristics of the SN74LS153N?
The SN74LS153N has a typical power dissipation of 22mW, making it an energy-efficient choice for electronic systems.
7. Can the SN74LS153N be cascaded to expand the number of input lines?
Yes, multiple SN74LS153N devices can be cascaded to expand the number of input lines and create larger multiplexing configurations.
8. What are the temperature range and storage conditions for the SN74LS153N?
The SN74LS153N is designed to operate within a temperature range of -40°C to 85°C and should be stored in a dry, non-corrosive environment.
9. Does the SN74LS153N incorporate built-in protection features against overvoltage or ESD events?
The SN74LS153N includes internal diode clamps to protect against overvoltage and ESD events, enhancing its robustness in real-world applications.
10. Are there any specific layout or decoupling recommendations for optimal performance of the SN74LS153N?
To ensure optimal performance, it is recommended to place decoupling capacitors near the power supply pins and minimize trace lengths to reduce noise coupling.
The SN74LS153N is designed to select one of four sources of data and route it to a single output, based on the input selection.
2. What are the typical operating voltage and current ratings for the SN74LS153N?
The SN74LS153N typically operates at a voltage range of 4.75V to 5.25V and has a maximum input current of 0.4mA.
3. Can the SN74LS153N handle high-speed data selection and multiplexing?
Yes, the SN74LS153N is capable of handling high-speed data selection and multiplexing due to its low propagation delay and fast switching characteristics.
4. What is the maximum frequency at which the SN74LS153N can operate effectively?
The SN74LS153N can effectively operate at a maximum frequency of 25MHz, making it suitable for various high-speed applications.
5. How does the SN74LS153N handle input signal transitions and noise immunity?
The SN74LS153N incorporates Schmitt-trigger inputs to provide hysteresis and improve noise immunity, ensuring reliable operation in noisy environments.
6. What are the typical power dissipation characteristics of the SN74LS153N?
The SN74LS153N has a typical power dissipation of 22mW, making it an energy-efficient choice for electronic systems.
7. Can the SN74LS153N be cascaded to expand the number of input lines?
Yes, multiple SN74LS153N devices can be cascaded to expand the number of input lines and create larger multiplexing configurations.
8. What are the temperature range and storage conditions for the SN74LS153N?
The SN74LS153N is designed to operate within a temperature range of -40°C to 85°C and should be stored in a dry, non-corrosive environment.
9. Does the SN74LS153N incorporate built-in protection features against overvoltage or ESD events?
The SN74LS153N includes internal diode clamps to protect against overvoltage and ESD events, enhancing its robustness in real-world applications.
10. Are there any specific layout or decoupling recommendations for optimal performance of the SN74LS153N?
To ensure optimal performance, it is recommended to place decoupling capacitors near the power supply pins and minimize trace lengths to reduce noise coupling.
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