AT17C256-10PI belongs to the category of non-volatile memory devices.
This product is primarily used for storing and retrieving digital information in electronic systems.
The AT17C256-10PI is available in a DIP (Dual Inline Package) format. It consists of 28 pins arranged in two parallel rows.
The essence of AT17C256-10PI lies in its ability to provide non-volatile memory storage with high capacity and fast access times.
This product is typically packaged in tubes or trays, with each package containing a specified quantity of AT17C256-10PI devices.
The AT17C256-10PI has the following pin configuration:
```
| | | 1 ... 14| |_______________|
|_______________| | 15 ... 28| |_______________| ```
Pin descriptions: 1. Chip Enable (CE) 2. Output Enable (OE) 3. Write Enable (WE) 4. Address Inputs (A0-A10) 5. Data Inputs/Outputs (DQ0-DQ7) 6. Supply Voltage (VCC) 7. Ground (GND)
The AT17C256-10PI utilizes EEPROM (Electrically Erasable Programmable Read-Only Memory) technology. It stores data by trapping electric charges within floating gate transistors. These charges can be selectively removed or added using electrical signals, allowing data to be written or erased as needed.
The AT17C256-10PI finds applications in various electronic systems, including but not limited to: - Microcontrollers - Embedded systems - Industrial automation - Automotive electronics - Consumer electronics
Some alternative models that offer similar functionality to the AT17C256-10PI include: - AT28C256 - 25LC256 - M93C56
These models provide comparable storage capacity, access times, and features, making them suitable alternatives for different design requirements.
In conclusion, the AT17C256-10PI is a non-volatile memory device with high capacity, fast access times, and low power consumption. It finds applications in various electronic systems and offers reliable data storage. While it has some limitations, alternative models are available to cater to specific design needs.
Sure! Here are 10 common questions and answers related to the application of AT17C256-10PI in technical solutions:
Q: What is the AT17C256-10PI? A: The AT17C256-10PI is a 256-kilobit (32,768 x 8) serial electrically erasable programmable read-only memory (EEPROM) integrated circuit.
Q: What are the key features of the AT17C256-10PI? A: Some key features include a wide operating voltage range, low power consumption, high-speed operation, and byte-level programming capability.
Q: How can I interface with the AT17C256-10PI? A: The AT17C256-10PI uses a simple serial interface, typically SPI (Serial Peripheral Interface), which allows for easy integration into various microcontroller-based systems.
Q: What is the maximum operating frequency of the AT17C256-10PI? A: The AT17C256-10PI supports high-speed operation up to 20 MHz, making it suitable for applications that require fast data transfer.
Q: Can I write data to the AT17C256-10PI multiple times? A: Yes, the AT17C256-10PI supports multiple write cycles, allowing you to update or modify the stored data as needed.
Q: Is the AT17C256-10PI non-volatile? A: Yes, the AT17C256-10PI is non-volatile, meaning it retains the stored data even when power is removed.
Q: What is the typical endurance of the AT17C256-10PI? A: The AT17C256-10PI has a typical endurance of 100,000 write cycles, ensuring reliable and long-lasting data storage.
Q: Can I use the AT17C256-10PI in harsh environments? A: Yes, the AT17C256-10PI is designed to operate in a wide temperature range (-40°C to +85°C) and can withstand high levels of shock and vibration.
Q: How do I protect the data stored in the AT17C256-10PI from accidental erasure? A: The AT17C256-10PI features a hardware write-protect pin that can be used to prevent accidental erasure or modification of the stored data.
Q: What are some common applications for the AT17C256-10PI? A: The AT17C256-10PI is commonly used in various technical solutions such as embedded systems, industrial automation, automotive electronics, medical devices, and consumer electronics where non-volatile memory storage is required.
Please note that these answers are general and may vary depending on specific implementation details and requirements.