CD74HC153M Texas Instruments IC MUX 4-IN CMOS LOGIC HS 16SOIC
Интегральные схемы (ИС)
Номер производителя:
CD74HC153M
Производитель:
Категория продукции:
Описание:
IC MUX 4-IN CMOS LOGIC HS 16SOIC
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
54,539
Unit Price:
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Предложение
CD74HC153M Конкурентные цены
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лучшей цены на CD74HC153M. Нажмите, чтобы получить предложение
CD74HC153M Особенности
CD74HC153M is produced by Texas Instruments, belongs to Logic - Сигнальные коммутаторы, мультиплексоры, декодеры.
CD74HC153M Подробная информация о продукции
:
CD74HC153M — это Logic - Сигнальные коммутаторы, мультиплексоры, декодеры, буферные усилители, разработанные и
произведенные
Texas Instruments.
CD74HC153M производства Texas Instruments можно приобрести на сайте CHIPMLCC.
Здесь вы можете найти различные виды электронных деталей от ведущих производителей мира.
CD74HC153M 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 CD74HC153M (PDF), цена CD74HC153M, Распиновка CD74HC153M, руководство CD74HC153M и решение на замену CD74HC153M.
CD74HC153M производства Texas Instruments можно приобрести на сайте CHIPMLCC.
Здесь вы можете найти различные виды электронных деталей от ведущих производителей мира.
CD74HC153M 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 CD74HC153M (PDF), цена CD74HC153M, Распиновка CD74HC153M, руководство CD74HC153M и решение на замену CD74HC153M.
CD74HC153M FAQ
:
1. What is the function of the CD74HC153M semiconductor?
The CD74HC153M is a dual 4-input multiplexer with complementary outputs. It is designed to select one of the 4-bit data sources and route it to the output.
2. What is the operating voltage range for the CD74HC153M?
The CD74HC153M operates within a voltage range of 2V to 6V, making it suitable for a wide variety of applications.
3. Can the CD74HC153M handle high-speed data signals?
Yes, the CD74HC153M is capable of handling high-speed data signals, making it suitable for applications requiring rapid data processing.
4. What is the typical power consumption of the CD74HC153M?
The typical power consumption of the CD74HC153M is relatively low, making it an energy-efficient choice for electronic designs.
5. Is the CD74HC153M sensitive to electrostatic discharge (ESD)?
The CD74HC153M has built-in ESD protection, which helps safeguard it against damage from static electricity during handling and operation.
6. What are the recommended operating temperature ranges for the CD74HC153M?
The CD74HC153M is designed to operate reliably within the temperature range of -40°C to 85°C, ensuring its suitability for various environmental conditions.
7. Can the CD74HC153M be used in battery-powered devices?
Yes, the CD74HC153M's low power consumption and wide operating voltage range make it well-suited for use in battery-powered devices.
8. Does the CD74HC153M have built-in overvoltage protection?
The CD74HC153M features built-in overvoltage protection, enhancing its robustness and reliability in diverse operating conditions.
9. What package types are available for the CD74HC153M?
The CD74HC153M is available in various package types, including SOIC, TSSOP, and PDIP, offering flexibility for different design requirements.
10. Are there any known common failure modes for the CD74HC153M?
Common failure modes for the CD74HC153M include excessive voltage stress, thermal overstress, and improper handling during assembly. Proper design and usage can mitigate these risks.
The CD74HC153M is a dual 4-input multiplexer with complementary outputs. It is designed to select one of the 4-bit data sources and route it to the output.
2. What is the operating voltage range for the CD74HC153M?
The CD74HC153M operates within a voltage range of 2V to 6V, making it suitable for a wide variety of applications.
3. Can the CD74HC153M handle high-speed data signals?
Yes, the CD74HC153M is capable of handling high-speed data signals, making it suitable for applications requiring rapid data processing.
4. What is the typical power consumption of the CD74HC153M?
The typical power consumption of the CD74HC153M is relatively low, making it an energy-efficient choice for electronic designs.
5. Is the CD74HC153M sensitive to electrostatic discharge (ESD)?
The CD74HC153M has built-in ESD protection, which helps safeguard it against damage from static electricity during handling and operation.
6. What are the recommended operating temperature ranges for the CD74HC153M?
The CD74HC153M is designed to operate reliably within the temperature range of -40°C to 85°C, ensuring its suitability for various environmental conditions.
7. Can the CD74HC153M be used in battery-powered devices?
Yes, the CD74HC153M's low power consumption and wide operating voltage range make it well-suited for use in battery-powered devices.
8. Does the CD74HC153M have built-in overvoltage protection?
The CD74HC153M features built-in overvoltage protection, enhancing its robustness and reliability in diverse operating conditions.
9. What package types are available for the CD74HC153M?
The CD74HC153M is available in various package types, including SOIC, TSSOP, and PDIP, offering flexibility for different design requirements.
10. Are there any known common failure modes for the CD74HC153M?
Common failure modes for the CD74HC153M include excessive voltage stress, thermal overstress, and improper handling during assembly. Proper design and usage can mitigate these risks.
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