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AT28C010-25SI

AT28C010-25SI

Product Overview

Category

AT28C010-25SI belongs to the category of non-volatile memory devices.

Use

It is primarily used for storing and retrieving digital information in electronic systems.

Characteristics

  • Non-volatile: Retains data even when power is turned off.
  • High storage capacity: The AT28C010-25SI has a storage capacity of 1 megabit (128 kilobytes).
  • Fast access time: It operates at a speed of 250 nanoseconds.
  • Low power consumption: Consumes minimal power during operation.
  • Reliable: Offers high endurance and data retention capabilities.
  • Easy integration: Compatible with various electronic systems.

Package

The AT28C010-25SI is available in a standard 32-pin plastic DIP (Dual Inline Package) or a surface mount SOIC (Small Outline Integrated Circuit) package.

Essence

The essence of AT28C010-25SI lies in its ability to provide reliable and non-volatile storage for digital data in electronic systems.

Packaging/Quantity

The AT28C010-25SI is typically packaged in tubes or trays, with quantities varying based on customer requirements.

Specifications

  • Storage Capacity: 1 Megabit (128 Kilobytes)
  • Access Time: 250 Nanoseconds
  • Supply Voltage: 5V
  • Operating Temperature Range: -40°C to +85°C
  • Data Retention: 10 years minimum
  • Endurance: 10,000 write cycles

Detailed Pin Configuration

The AT28C010-25SI has a total of 32 pins. The pin configuration is as follows:

  1. A16
  2. A14
  3. A12
  4. A7
  5. A6
  6. A5
  7. A4
  8. A3
  9. A2
  10. A1
  11. A0
  12. VCC
  13. OE#
  14. CE#
  15. WE#
  16. I/O0
  17. I/O1
  18. I/O2
  19. I/O3
  20. I/O4
  21. I/O5
  22. I/O6
  23. I/O7
  24. NC
  25. GND
  26. A8
  27. A9
  28. A11
  29. A13
  30. A15
  31. BYTE#
  32. WP#

Functional Features

  • Byte-wide operations: Supports both byte-level and word-level read and write operations.
  • Chip enable control: CE# pin allows for easy integration with other devices in the system.
  • Output enable control: OE# pin enables or disables the output buffers, providing flexibility in data access.
  • Write enable control: WE# pin controls the write operation, ensuring data integrity.
  • Hardware data protection: WP# pin provides hardware protection against accidental writes.
  • Low power consumption: Operates at low power levels, making it suitable for battery-powered devices.

Advantages and Disadvantages

Advantages

  • Non-volatile memory ensures data retention even during power loss.
  • High storage capacity allows for storing large amounts of digital information.
  • Fast access time enables quick retrieval of data.
  • Low power consumption prolongs battery life in portable devices.
  • Reliable endurance and data retention capabilities ensure long-term usability.
  • Easy integration with various electronic systems simplifies design and implementation.

Disadvantages

  • Limited storage capacity compared to newer memory technologies.
  • Relatively slower access times compared to modern memory devices.
  • Incompatibility with systems requiring higher storage capacities.

Working Principles

The AT28C010-25SI utilizes a technology called Electrically Erasable Programmable Read-Only Memory (EEPROM). It stores data by trapping electric charges in a floating gate within each memory cell. These charges can be selectively removed or programmed using electrical signals, allowing for non-volatile storage of digital information.

Detailed Application Field Plans

The AT28C010-25SI finds applications in various electronic systems, including but not limited to: - Embedded systems - Consumer electronics - Automotive electronics - Industrial control systems - Communication devices

Detailed and Complete Alternative Models

Some alternative models to the AT28C010-25SI include: - AT28C010-12PI: Similar specifications with a slower access time of 1.2 microseconds. - AT28C010-15PC: Similar specifications with a slower access time of 1.5 microseconds. - AT28C010-20DM/883: Military-grade version with extended temperature range and enhanced reliability.

These alternative models offer similar functionality and compatibility, providing options based on specific requirements and constraints.

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Noem 10 veelgestelde vragen en antwoorden met betrekking tot de toepassing van AT28C010-25SI in technische oplossingen

Sure! Here are 10 common questions and answers related to the application of AT28C010-25SI in technical solutions:

  1. Q: What is AT28C010-25SI? A: AT28C010-25SI is a specific model of EEPROM (Electrically Erasable Programmable Read-Only Memory) chip manufactured by Microchip Technology.

  2. Q: What is the capacity of AT28C010-25SI? A: The AT28C010-25SI has a capacity of 1 megabit, which is equivalent to 128 kilobytes.

  3. Q: What does the "25SI" in AT28C010-25SI represent? A: The "25SI" represents the speed grade of the chip, indicating that it operates at a maximum access time of 250 nanoseconds.

  4. Q: What are some typical applications of AT28C010-25SI? A: AT28C010-25SI can be used in various applications such as firmware storage, program memory for microcontrollers, data logging, and configuration storage.

  5. Q: How is AT28C010-25SI programmed? A: AT28C010-25SI is programmed using a programming voltage applied to its control pins. It supports both byte-wise and page-wise programming.

  6. Q: Can AT28C010-25SI be reprogrammed? A: No, AT28C010-25SI is not designed for multiple reprogramming cycles. It is a one-time programmable (OTP) device.

  7. Q: What is the operating voltage range of AT28C010-25SI? A: AT28C010-25SI operates within a voltage range of 4.5V to 5.5V.

  8. Q: Does AT28C010-25SI require an external power supply? A: Yes, AT28C010-25SI requires an external power supply within the specified voltage range for proper operation.

  9. Q: Can AT28C010-25SI retain data without power? A: Yes, AT28C010-25SI has non-volatile memory, which means it can retain data even when power is removed.

  10. Q: Is AT28C010-25SI compatible with standard microcontrollers? A: Yes, AT28C010-25SI is designed to be compatible with a wide range of microcontrollers and can be easily interfaced using standard protocols such as SPI or I2C.

Please note that these answers are general and may vary depending on specific implementation details and requirements.