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AT24C04BY6-YH-T

AT24C04BY6-YH-T

Product Overview

  • Category: Integrated Circuit (IC)
  • Use: Non-volatile Electrically Erasable Programmable Read-Only Memory (EEPROM)
  • Characteristics:
    • Low-power CMOS technology
    • 4K bits of EEPROM memory
    • I2C-compatible serial interface
    • 1.7V to 5.5V operating voltage range
    • 8-byte page write mode
    • 32-byte page write mode
  • Package: 8-lead, ultra-thin small outline package (TSSOP)
  • Essence: The AT24C04BY6-YH-T is a small-sized EEPROM IC that provides non-volatile memory storage for various electronic devices.
  • Packaging/Quantity: Available in tape and reel packaging with 2500 units per reel.

Specifications

  • Memory Size: 4K bits (512 bytes)
  • Operating Voltage: 1.7V to 5.5V
  • Interface: I2C-compatible (Two-wire Serial Interface)
  • Write Time: 5ms (byte write cycle time)
  • Data Retention: 100 years
  • Endurance: 1 million write cycles

Pin Configuration

The AT24C04BY6-YH-T has the following pin configuration:

```


| | | 1 2 3 4 | | | | 8 7 6 5 | |_______________| ```

  1. A0: Address Input
  2. A1: Address Input
  3. A2: Address Input
  4. GND: Ground
  5. SDA: Serial Data
  6. SCL: Serial Clock
  7. WP: Write Protect
  8. VCC: Power Supply

Functional Features

  • Non-volatile memory storage: The AT24C04BY6-YH-T retains data even when power is removed.
  • I2C-compatible interface: Allows for easy integration with other devices using the I2C protocol.
  • Low-power consumption: Operates efficiently in low-power applications.
  • Page write modes: Supports both 8-byte and 32-byte page write modes, enabling faster data transfer.

Advantages and Disadvantages

Advantages: - Compact size - Wide operating voltage range - High data retention - Multiple page write modes for efficient data transfer

Disadvantages: - Limited memory capacity (4K bits)

Working Principles

The AT24C04BY6-YH-T uses a combination of CMOS technology and EEPROM memory cells to store and retrieve data. It communicates with other devices through the I2C-compatible serial interface, allowing for easy data transfer. The IC operates within a specified voltage range and provides non-volatile memory storage, ensuring data retention even when power is disconnected.

Detailed Application Field Plans

The AT24C04BY6-YH-T can be used in various electronic devices that require non-volatile memory storage, such as:

  1. Consumer electronics: Used in smart TVs, set-top boxes, and audio/video equipment for storing user preferences and settings.
  2. Automotive systems: Utilized in car infotainment systems, instrument clusters, and navigation systems for data storage.
  3. Industrial automation: Integrated into control systems, sensors, and programmable logic controllers (PLCs) for storing configuration parameters and data logging.
  4. Medical devices: Employed in medical equipment for storing patient data, device settings, and calibration information.

Detailed and Complete Alternative Models

  1. AT24C01A: 1K-bit EEPROM IC with similar features but lower memory capacity.
  2. AT24C08B: 8K-bit EEPROM IC with higher memory capacity.
  3. AT24C16A: 16K-bit EEPROM IC with double the memory capacity of AT24C04BY6-YH-T.

These alternative models provide options with varying memory capacities to suit different application requirements.

Word count: 526 words

Seznam 10 běžných otázek a odpovědí souvisejících s aplikací AT24C04BY6-YH-T v technických řešeních

Sure! Here are 10 common questions and answers related to the application of AT24C04BY6-YH-T in technical solutions:

  1. Q: What is AT24C04BY6-YH-T? A: AT24C04BY6-YH-T is a serial EEPROM (Electrically Erasable Programmable Read-Only Memory) chip manufactured by Microchip Technology. It has a storage capacity of 4 kilobits (512 bytes) and operates on the I2C (Inter-Integrated Circuit) bus.

  2. Q: What are the typical applications of AT24C04BY6-YH-T? A: AT24C04BY6-YH-T 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 industrial control systems.

  3. Q: How does AT24C04BY6-YH-T communicate with other devices? A: AT24C04BY6-YH-T communicates using the I2C protocol, which allows it to connect with other devices on the same bus, such as microcontrollers or other I2C-compatible chips.

  4. Q: What is the operating voltage range of AT24C04BY6-YH-T? A: AT24C04BY6-YH-T operates within a voltage range of 1.7V to 5.5V, making it compatible with a wide range of power supply voltages.

  5. Q: Can AT24C04BY6-YH-T be easily integrated into existing circuits? A: Yes, AT24C04BY6-YH-T comes in a standard 8-pin SOIC (Small Outline Integrated Circuit) package, which makes it easy to solder onto PCBs (Printed Circuit Boards) or integrate into existing circuits.

  6. Q: Does AT24C04BY6-YH-T support write protection? A: Yes, AT24C04BY6-YH-T provides hardware write protection by using a dedicated pin (WP) that can be connected to a microcontroller's GPIO (General Purpose Input/Output) pin to control write access.

  7. Q: What is the maximum data transfer rate of AT24C04BY6-YH-T? A: The maximum data transfer rate of AT24C04BY6-YH-T is 400 kilobits per second (kbps), allowing for relatively fast read and write operations.

  8. Q: Can AT24C04BY6-YH-T operate in extreme temperature conditions? A: Yes, AT24C04BY6-YH-T has an extended temperature range of -40°C to +125°C, making it suitable for applications that require operation in harsh environments.

  9. Q: Is AT24C04BY6-YH-T resistant to data corruption or loss during power outages? A: Yes, AT24C04BY6-YH-T uses non-volatile memory technology, which means that data stored in the chip remains intact even when power is lost or turned off.

  10. Q: Are there any limitations to consider when using AT24C04BY6-YH-T? A: One limitation is the limited storage capacity of 4 kilobits, which may not be sufficient for applications requiring large amounts of data storage. Additionally, the I2C bus has limitations on the maximum number of devices that can be connected, so care must be taken when designing the system architecture.