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BR93G56FJ-3AGTE2

BR93G56FJ-3AGTE2

Product Overview

Category

The BR93G56FJ-3AGTE2 belongs to the category of non-volatile memory integrated circuits.

Use

It is commonly used for data storage in various electronic devices such as consumer electronics, industrial equipment, and automotive applications.

Characteristics

  • Non-volatile: Retains stored data even when power is removed.
  • High reliability: Endurance and retention characteristics make it suitable for long-term data storage.
  • Low power consumption: Efficient energy usage for extended battery life in portable devices.

Package

The BR93G56FJ-3AGTE2 is available in a compact surface-mount package, making it suitable for space-constrained designs.

Essence

This integrated circuit serves as a reliable and efficient solution for non-volatile data storage needs in electronic devices.

Packaging/Quantity

The BR93G56FJ-3AGTE2 is typically supplied in tape and reel packaging, with quantities varying based on customer requirements.

Specifications

  • Memory Capacity: 64 Kbits
  • Interface: SPI (Serial Peripheral Interface)
  • Operating Voltage: 1.8V to 5.5V
  • Operating Temperature Range: -40°C to 85°C
  • Data Retention: Up to 10 years
  • Endurance: 1 million write cycles

Detailed Pin Configuration

The BR93G56FJ-3AGTE2 features a standard 8-pin configuration, including power supply, ground, and SPI interface pins. The detailed pinout is as follows:

| Pin Name | Description | |----------|-------------------| | VCC | Power Supply | | GND | Ground | | SO | Serial Data Output| | SI | Serial Data Input | | SCK | Serial Clock | | CS | Chip Select | | WP | Write Protect | | HOLD | Hold |

Functional Features

  • Fast SPI interface for high-speed data transfer.
  • Built-in write protection and hold functions for enhanced data security.
  • Low standby current for power-efficient operation.

Advantages and Disadvantages

Advantages

  • High reliability and endurance.
  • Wide operating voltage range.
  • Compact form factor for space-constrained designs.

Disadvantages

  • Limited memory capacity compared to some alternative models.
  • Operating temperature range may not be suitable for extreme environments.

Working Principles

The BR93G56FJ-3AGTE2 utilizes a floating gate transistor technology to store data in a non-volatile manner. When data is written, charge is trapped in the floating gate, and this charge state determines the stored value. During read operations, the charge state is detected to retrieve the stored data.

Detailed Application Field Plans

The BR93G56FJ-3AGTE2 is well-suited for a wide range of applications, including: - Automotive: Data storage for engine control units, infotainment systems, and vehicle diagnostics. - Industrial: Usage in programmable logic controllers, sensor modules, and automation equipment. - Consumer Electronics: Incorporation into smart home devices, wearables, and portable gadgets.

Detailed and Complete Alternative Models

Some alternative models to the BR93G56FJ-3AGTE2 include: - BR93H56RF-3AGTE2: Similar specifications with extended temperature range. - AT25SF041-SSHD-T: Higher capacity SPI flash memory with wider operating temperature range.

In conclusion, the BR93G56FJ-3AGTE2 offers a reliable and efficient non-volatile memory solution for diverse electronic applications, with its compact form factor, high reliability, and low power consumption making it a preferred choice for many design scenarios.

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רשום 10 שאלות ותשובות נפוצות הקשורות ליישום של BR93G56FJ-3AGTE2 בפתרונות טכניים

  1. What is BR93G56FJ-3AGTE2?

    • BR93G56FJ-3AGTE2 is a serial EEPROM (Electrically Erasable Programmable Read-Only Memory) manufactured by ROHM Semiconductor. It is commonly used for data storage in various electronic devices.
  2. What are the key features of BR93G56FJ-3AGTE2?

    • The key features of BR93G56FJ-3AGTE2 include a 2-wire serial interface, low power consumption, wide operating voltage range, and high reliability.
  3. How is BR93G56FJ-3AGTE2 typically used in technical solutions?

    • BR93G56FJ-3AGTE2 is often used for storing configuration data, calibration parameters, and other non-volatile information in embedded systems, industrial equipment, automotive electronics, and consumer electronics.
  4. What are the advantages of using BR93G56FJ-3AGTE2 in technical solutions?

    • Some advantages of using BR93G56FJ-3AGTE2 include its small form factor, low power consumption, high reliability, and ease of integration into existing circuit designs.
  5. What are the typical communication protocols supported by BR93G56FJ-3AGTE2?

    • BR93G56FJ-3AGTE2 supports I2C (Inter-Integrated Circuit) and SPI (Serial Peripheral Interface) communication protocols, making it compatible with a wide range of microcontrollers and digital signal processors.
  6. Can BR93G56FJ-3AGTE2 be used in automotive applications?

    • Yes, BR93G56FJ-3AGTE2 is suitable for automotive applications due to its robustness, wide operating temperature range, and resistance to environmental factors such as vibration and humidity.
  7. What are the typical storage capacities available for BR93G56FJ-3AGTE2?

    • BR93G56FJ-3AGTE2 is available in various storage capacities, typically ranging from 1 Kbit to 16 Kbit, allowing flexibility in choosing the appropriate memory size for different applications.
  8. Are there any specific design considerations when integrating BR93G56FJ-3AGTE2 into a technical solution?

    • Designers should consider factors such as the operating voltage, communication protocol, write endurance, and data retention requirements when integrating BR93G56FJ-3AGTE2 into their technical solutions.
  9. What are the typical operating conditions for BR93G56FJ-3AGTE2?

    • BR93G56FJ-3AGTE2 operates within a specified voltage range, temperature range, and clock frequency, which should be adhered to for reliable performance in technical solutions.
  10. Where can I find detailed technical specifications and application notes for BR93G56FJ-3AGTE2?

    • Detailed technical specifications and application notes for BR93G56FJ-3AGTE2 can be found on the official website of ROHM Semiconductor or in the product datasheet provided by the manufacturer.