The AT45DB321E-MWHF-Y belongs to the category of serial interface DataFlash memories and is widely used in various electronic devices for data storage and retrieval. This entry provides an overview of the basic information, specifications, detailed pin configuration, functional features, advantages and disadvantages, working principles, detailed application field plans, and alternative models of the AT45DB321E-MWHF-Y.
The AT45DB321E-MWHF-Y has a standard 8-pin configuration with pins designated for power supply, SPI communication, and control signals.
| Pin Name | Description | |----------|-------------| | VCC | Power Supply Voltage | | GND | Ground | | SI | Serial Input for SPI Communication | | SO | Serial Output for SPI Communication | | SCK | Serial Clock for SPI Communication | | CS | Chip Select for SPI Communication | | WP | Write Protect Control | | RESET | Reset Input |
The AT45DB321E-MWHF-Y operates by utilizing the SPI interface to communicate with the host microcontroller. It stores and retrieves data in a non-volatile manner, allowing for reliable and persistent storage of critical information.
The AT45DB321E-MWHF-Y is commonly used in applications such as: - Consumer electronics - Industrial automation - Automotive systems - Medical devices - IoT (Internet of Things) devices
Some alternative models to the AT45DB321E-MWHF-Y include: - AT45DB641E-MWHF-Y: Higher capacity version - AT25SF041-SSHD-T: Smaller capacity, lower-cost option - W25Q32JVSSIQ: Competing product with similar specifications
In conclusion, the AT45DB321E-MWHF-Y is a versatile and reliable serial interface DataFlash memory that finds extensive use in various electronic devices for data storage and retrieval.
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What is the storage capacity of AT45DB321E-MWHF-Y?
What is the interface used for communication with AT45DB321E-MWHF-Y?
Can AT45DB321E-MWHF-Y be used in automotive applications?
What is the operating voltage range of AT45DB321E-MWHF-Y?
Is AT45DB321E-MWHF-Y suitable for data logging applications?
Does AT45DB321E-MWHF-Y support multiple write and erase cycles?
What are the typical applications of AT45DB321E-MWHF-Y in industrial settings?
Is AT45DB321E-MWHF-Y compatible with low-power applications?
Can AT45DB321E-MWHF-Y withstand harsh environmental conditions?
Are there any specific design considerations when using AT45DB321E-MWHF-Y in embedded systems?
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