AT24C128-10PI-1.8 belongs to the category of electrically erasable programmable read-only memory (EEPROM) chips.
This product is commonly used for non-volatile data storage in various electronic devices, such as microcontrollers, computers, and consumer electronics.
The AT24C128-10PI-1.8 is available in a standard 8-pin DIP (Dual Inline Package) format.
The essence of this product lies in its ability to store and retrieve digital information reliably and efficiently.
The AT24C128-10PI-1.8 is typically packaged in tubes or trays, with quantities varying based on customer requirements.
The AT24C128-10PI-1.8 has the following pin configuration:
The AT24C128-10PI-1.8 utilizes EEPROM technology, which consists of floating-gate transistors that store charge to represent binary data. When writing data, an electric field is applied to the floating gate, altering its charge state. Reading data involves detecting the charge level on the floating gate. The I2C interface facilitates communication between the chip and the controlling device.
The AT24C128-10PI-1.8 finds application in various fields, including:
These alternative models offer different memory capacities to suit specific application requirements.
In conclusion, the AT24C128-10PI-1.8 is a versatile EEPROM chip that provides reliable non-volatile data storage in various electronic devices. Its high capacity, low power consumption, and compatibility with the I2C interface make it a popular choice among designers and engineers.
Sure! Here are 10 common questions and answers related to the application of AT24C128-10PI-1.8 in technical solutions:
Q1: What is AT24C128-10PI-1.8? A1: AT24C128-10PI-1.8 is a specific model of EEPROM (Electrically Erasable Programmable Read-Only Memory) chip manufactured by Microchip Technology. It has a capacity of 128 kilobits (16 kilobytes) and operates at a voltage of 1.8V.
Q2: What are the typical applications of AT24C128-10PI-1.8? A2: AT24C128-10PI-1.8 is commonly used for storing small amounts of non-volatile data in various electronic devices, such as industrial control systems, automotive electronics, medical equipment, and consumer electronics.
Q3: How does AT24C128-10PI-1.8 communicate with a microcontroller or other devices? A3: AT24C128-10PI-1.8 uses the I2C (Inter-Integrated Circuit) protocol for communication. It has a 2-wire serial interface consisting of a data line (SDA) and a clock line (SCL).
Q4: What is the maximum operating frequency of AT24C128-10PI-1.8? A4: The maximum operating frequency of AT24C128-10PI-1.8 is 400 kHz.
Q5: Can AT24C128-10PI-1.8 be used in both read and write operations? A5: Yes, AT24C128-10PI-1.8 supports both read and write operations. It allows individual bytes or larger blocks of data to be written or read.
Q6: What is the typical endurance of AT24C128-10PI-1.8? A6: The typical endurance of AT24C128-10PI-1.8 is 1 million write cycles. This means that each memory location can be written to approximately 1 million times before it may start to degrade.
Q7: Does AT24C128-10PI-1.8 require an external power supply? A7: Yes, AT24C128-10PI-1.8 requires a separate power supply. It operates at a voltage of 1.8V and should be powered accordingly.
Q8: Can multiple AT24C128-10PI-1.8 chips be connected together in a system? A8: Yes, multiple AT24C128-10PI-1.8 chips can be connected together in a system using the I2C bus. Each chip needs to have a unique address set using the address pins on the chip.
Q9: Is AT24C128-10PI-1.8 resistant to data loss during power outages? A9: Yes, AT24C128-10PI-1.8 is non-volatile, which means it retains its stored data even when power is removed. Therefore, it is resistant to data loss during power outages.
Q10: Are there any limitations or considerations when using AT24C128-10PI-1.8? A10: Some considerations include the limited storage capacity (16 kilobytes), the need for a separate power supply, and the requirement to properly handle the I2C communication protocol. Additionally, care should be taken to ensure proper addressing and handling of write cycles to avoid premature wear-out of memory cells.