Micron Technology_MT29F1G01AAADDH4-IT:D TR
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Micron Technology
MT29F1G01AAADDH4-IT:D TR

774-MT29F1G01AAADDH4-IT:D TR
IC FLASH 1GBIT SPI 63VFBGA

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Tech Specifications

Operating Temperature
-40°C ~ 85°C (TA)
Memory Interface
SPI
ECCN
3A991B1A
Memory Organization
1G x 1
Mounting Type
Surface Mount
Memory Type
Non-Volatile
Product Status
Obsolete
Supplier Device Package
63-VFBGA (9x11)
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MT29F1G01AAADDH4-IT:D TR Description

MT###29F1G01AAADDH4-IT:D TR Description

The MT29F1G01AAADDH4-IT:D TR is a high-performance memory IC product from Micron Technology, designed to meet the demanding requirements of modern electronic systems. This 1Gbit FLASH memory device features a SPI (Serial Peripheral Interface) memory interface, making it suitable for a wide range of applications that require reliable and efficient data storage solutions. The memory organization is structured as 1G x 1, providing a compact and efficient memory architecture. The device operates within a voltage range of 2.7V to 3.6V, ensuring compatibility with various power supply configurations.

MT29F1G01AAADDH4-IT:D TR Features

  • Memory Size and Organization: The MT29F1G01AAADDH4-IT:D TR offers a substantial 1Gbit memory size, organized as 1G x 1, which is ideal for applications requiring large data storage capacities in a compact form factor.
  • Memory Interface: The SPI interface ensures fast and reliable data, transfer making it suitable for applications where high-speed data access is critical.
  • Voltage Range: The device operates within a voltage range of 2.7V to 3.6V, providing flexibility in power supply design and ensuring compatibility with various electronic systems.
  • Package Type: The Tape & Reel (TR) packaging format facilitates efficient handling and assembly processes, particularly in high-volume manufacturing environments.
  • Mounting Type: Surface Mount technology ensures robust and reliable mechanical integration into printed circuit boards, enhancing the overall durability and performance of the device.
  • Compliance and Standards: The MT29F1G01AAADDH4-IT:D TR is REACH unaffected and ROHS3 compliant, ensuring it meets stringent environmental and safety standards. It also adheres to the HTSUS code 8542.32.0071, facilitating smooth international trade and regulatory compliance.
  • Moisture Sensitivity Level: With an MSL of 3 (168 Hours), the device is well-suited for environments where moisture resistance is essential, ensuring long-term reliability and performance.

MT29F1G01AAADDH4-IT:D TR Applications

The MT29F1G01AAADDH4-IT:D TR is ideal for a variety of applications that demand high-density, non-volatile memory solutions. Key applications include:

  • Embedded Systems: The device's compact size and high memory capacity make it suitable for embedded systems where space is limited, but large data storage is required.
  • Consumer Electronics: The SPI interface and surface mount technology ensure compatibility with a wide range of consumer electronic devices, enhancing their data storage capabilities.
  • Industrial Applications: The robustness and reliability of the device, combined with its moisture sensitivity level, make it ideal for industrial environments where durability and long-term performance are critical.
  • Telecommunications: The high memory capacity and efficient data transfer capabilities of the MT29F1G01AAADDH4-IT:D TR make it suitable for telecommunications equipment that requires reliable data storage and retrieval.

Conclusion of MT29F1G01AAADDH4-IT:D TR

The MT29F1G01AAADDH4-IT:D TR from Micron Technology is a versatile and reliable memory IC designed to meet the needs of modern electronic systems. Its 1Gbit memory size, SPI interface, and surface mount technology offer significant advantages over similar models, making it an ideal choice for applications requiring high-density, non-volatile memory solutions. The device's compliance with environmental and safety standards, along with its robust mechanical design, ensures long-term reliability and performance. Despite its obsolete status, the MT29F1G01AAADDH4-IT:D TR remains a valuable component for applications where its unique features and performance benefits are essential.

FAQ

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