AT24C08-10PI belongs to the category of electrically erasable programmable read-only memory (EEPROM) chips.
The AT24C08-10PI chip is primarily used for non-volatile data storage in various electronic devices. It allows for easy reading and writing of data even when power is removed.
The AT24C08-10PI chip is available in a DIP-8 package. This package type consists of an integrated circuit enclosed in a rectangular plastic body with eight pins.
The essence of the AT24C08-10PI chip lies in its ability to store and retrieve data reliably, even in the absence of power. It provides a convenient solution for storing small amounts of critical information in electronic systems.
The AT24C08-10PI chip is typically sold in reels or tubes containing multiple units. The exact quantity may vary depending on the supplier.
The AT24C08-10PI chip has eight pins, each serving a specific purpose:
The AT24C08-10PI chip utilizes an electrically erasable programmable read-only memory (EEPROM) technology. It stores data in a grid of memory cells, with each cell capable of holding one bit of information. The data can be written or erased by applying appropriate electrical signals to the memory cells.
The AT24C08-10PI chip finds application in various electronic systems, including but not limited to: - Consumer electronics: Used for storing configuration settings, user preferences, and small data sets. - Industrial automation: Enables storage of critical parameters, calibration data, and system configurations. - Automotive electronics: Used for storing vehicle-specific information, such as mileage, service history, and security codes. - Medical devices: Allows for the storage of patient data, device settings, and usage logs.
These alternative models offer varying storage capacities to suit different application requirements.
Sure! Here are 10 common questions and answers related to the application of AT24C08-10PI in technical solutions:
Q: What is AT24C08-10PI? A: AT24C08-10PI is an EEPROM (Electrically Erasable Programmable Read-Only Memory) chip with a capacity of 8 kilobits (1 kilobyte) and operates at a voltage range of 2.7V to 5.5V.
Q: What are some common applications of AT24C08-10PI? A: AT24C08-10PI is commonly used for storing configuration data, calibration data, or small amounts of non-volatile memory in various electronic devices such as microcontrollers, sensors, and communication modules.
Q: How does AT24C08-10PI communicate with a microcontroller? A: AT24C08-10PI uses the I2C (Inter-Integrated Circuit) protocol for communication. It has a 7-bit address that can be set using external pins, allowing multiple devices to be connected on the same bus.
Q: What is the maximum data transfer rate of AT24C08-10PI? A: The maximum data transfer rate of AT24C08-10PI is typically around 400 kilobits per second (kbps).
Q: Can AT24C08-10PI be reprogrammed multiple times? A: Yes, AT24C08-10PI is electrically erasable and programmable, which means it can be reprogrammed multiple times without requiring additional hardware.
Q: Does AT24C08-10PI have built-in write protection? A: Yes, AT24C08-10PI provides software write protection by using a specific sequence of commands to enable or disable write access to the memory.
Q: What is the typical operating temperature range of AT24C08-10PI? A: The typical operating temperature range of AT24C08-10PI is -40°C to +85°C, making it suitable for a wide range of environments.
Q: How much power does AT24C08-10PI consume during operation? A: AT24C08-10PI has low power consumption, typically around 1 microampere (µA) in standby mode and 1 milliampere (mA) during read/write operations.
Q: Can AT24C08-10PI retain data without power supply? A: Yes, AT24C08-10PI is non-volatile, meaning it can retain data even when the power supply is disconnected.
Q: Are there any limitations to consider when using AT24C08-10PI? A: One limitation is the limited storage capacity of 8 kilobits, which may not be sufficient for applications requiring large amounts of data storage. Additionally, the I2C bus speed and addressing limitations should be considered when designing systems with multiple devices.