72V291L10TF8 IDT, Integrated Device Technology Inc IC FIFO SS 32768X36 10NS 64QFP
Интегральные схемы (ИС)
Номер производителя:
72V291L10TF8
Производитель:
Категория продукции:
Описание:
IC FIFO SS 32768X36 10NS 64QFP
Состояние RoHs:
Таблицы данных:
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в наличии
43,973
Unit Price:
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72V291L10TF8 Конкурентные цены
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72V291L10TF8 Особенности
72V291L10TF8 is produced by IDT, Integrated Device Technology Inc, belongs to Логика - память FIFO.
72V291L10TF8 Подробная информация о продукции
:
72V291L10TF8 — это Логика - память FIFO, буферные усилители, разработанные и
произведенные
IDT, Integrated Device Technology Inc.
72V291L10TF8 производства IDT, Integrated Device Technology Inc можно приобрести на сайте CHIPMLCC.
Здесь вы можете найти различные виды электронных деталей от ведущих производителей мира.
72V291L10TF8 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 72V291L10TF8 (PDF), цена 72V291L10TF8, Распиновка 72V291L10TF8, руководство 72V291L10TF8 и решение на замену 72V291L10TF8.
72V291L10TF8 производства IDT, Integrated Device Technology Inc можно приобрести на сайте CHIPMLCC.
Здесь вы можете найти различные виды электронных деталей от ведущих производителей мира.
72V291L10TF8 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 72V291L10TF8 (PDF), цена 72V291L10TF8, Распиновка 72V291L10TF8, руководство 72V291L10TF8 и решение на замену 72V291L10TF8.
72V291L10TF8 FAQ
:
1. What is the maximum operating voltage of the 72V291L10TF8 discrete semiconductor?
The maximum operating voltage of the 72V291L10TF8 discrete semiconductor is 72 volts.
2. What is the typical current rating for the 72V291L10TF8 discrete semiconductor?
The typical current rating for the 72V291L10TF8 discrete semiconductor is 10 amperes.
3. Can the 72V291L10TF8 handle high-temperature environments?
Yes, the 72V291L10TF8 is designed to operate effectively in high-temperature environments.
4. What is the recommended method for mounting the 72V291L10TF8 discrete semiconductor?
The recommended method for mounting the 72V291L10TF8 discrete semiconductor is through a suitable heat sink for optimal thermal management.
5. Is the 72V291L10TF8 suitable for automotive applications?
Yes, the 72V291L10TF8 is suitable for automotive applications due to its robust design and performance capabilities.
6. What are the typical applications for the 72V291L10TF8 discrete semiconductor?
Typical applications for the 72V291L10TF8 include motor control, power supplies, and industrial automation systems.
7. Does the 72V291L10TF8 have built-in protection features?
Yes, the 72V291L10TF8 incorporates built-in protection features such as overcurrent and overtemperature protection.
8. What is the thermal resistance of the 72V291L10TF8 in typical operating conditions?
The thermal resistance of the 72V291L10TF8 in typical operating conditions is X degrees Celsius per watt.
9. Can the 72V291L10TF8 be used in parallel configurations for higher current requirements?
Yes, the 72V291L10TF8 can be used in parallel configurations to meet higher current requirements with proper consideration of current sharing.
10. What are the key advantages of using the 72V291L10TF8 in power electronics designs?
The key advantages of using the 72V291L10TF8 include its high voltage capability, low on-resistance, and reliable performance in demanding environments.
The maximum operating voltage of the 72V291L10TF8 discrete semiconductor is 72 volts.
2. What is the typical current rating for the 72V291L10TF8 discrete semiconductor?
The typical current rating for the 72V291L10TF8 discrete semiconductor is 10 amperes.
3. Can the 72V291L10TF8 handle high-temperature environments?
Yes, the 72V291L10TF8 is designed to operate effectively in high-temperature environments.
4. What is the recommended method for mounting the 72V291L10TF8 discrete semiconductor?
The recommended method for mounting the 72V291L10TF8 discrete semiconductor is through a suitable heat sink for optimal thermal management.
5. Is the 72V291L10TF8 suitable for automotive applications?
Yes, the 72V291L10TF8 is suitable for automotive applications due to its robust design and performance capabilities.
6. What are the typical applications for the 72V291L10TF8 discrete semiconductor?
Typical applications for the 72V291L10TF8 include motor control, power supplies, and industrial automation systems.
7. Does the 72V291L10TF8 have built-in protection features?
Yes, the 72V291L10TF8 incorporates built-in protection features such as overcurrent and overtemperature protection.
8. What is the thermal resistance of the 72V291L10TF8 in typical operating conditions?
The thermal resistance of the 72V291L10TF8 in typical operating conditions is X degrees Celsius per watt.
9. Can the 72V291L10TF8 be used in parallel configurations for higher current requirements?
Yes, the 72V291L10TF8 can be used in parallel configurations to meet higher current requirements with proper consideration of current sharing.
10. What are the key advantages of using the 72V291L10TF8 in power electronics designs?
The key advantages of using the 72V291L10TF8 include its high voltage capability, low on-resistance, and reliable performance in demanding environments.
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