Micron Technology_MT29F1G16ABBEAHC:E TR
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Micron Technology
MT29F1G16ABBEAHC:E TR

774-MT29F1G16ABBEAHC:E TR
IC FLASH 1GBIT PARALLEL 63VFBGA

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Tech Specifications

Operating Temperature
0°C ~ 70°C (TA)
Memory Interface
Parallel
ECCN
3A991B1A
Memory Organization
64M x 16
Mounting Type
Surface Mount
Memory Type
Non-Volatile
Product Status
Obsolete
Supplier Device Package
63-VFBGA (10.5x13)
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MT29F1G16ABBEAHC:E TR Description

MT29F1G16ABBEAHC:E TR Description

The MT29F1G16ABBEAHC:E TR is a high-performance, 1Gbit Flash memory IC designed for a wide range of embedded applications. Manufactured by Micron Technology Inc., this memory IC features a parallel memory interface, offering robust data transfer capabilities. The device is packaged in a 63-ball fine-pitch ball grid array (63VFBGA) and is suitable for surface mount applications. It operates within a supply voltage range of 1.7V to 1.95V and supports an operating temperature range of 0°C to 70°C (TA). The memory organization is 64M x 16, providing a versatile and efficient storage solution. The MT29F1G16ABBEAHC:E TR is REACH unaffected and RoHS3 compliant, ensuring it meets the latest environmental and safety standards. Although the product is now obsolete, its technical specifications and performance benefits continue to make it a valuable component in legacy systems.

MT29F1G16ABBEAHC:E TR Features

  • Memory Size and Organization: The MT29F1G16ABBEAHC:E TR offers a 1Gbit memory size with a 64M x 16 memory organization, providing ample storage capacity for complex applications.
  • Parallel Memory Interface: The parallel memory interface ensures high-speed data transfer, making it ideal for applications requiring rapid data access and processing.
  • Operating Temperature Range: With an operating temperature range of 0°C to 70°C (TA), this memory IC is suitable for a variety of environments, from standard office conditions to more demanding industrial settings.
  • Supply Voltage: The device operates within a supply voltage range of 1.7V to 1.95V, allowing for compatibility with a wide range of power supplies and reducing power consumption.
  • Surface Mount Technology: The surface mount mounting type and 63VFBGA package make the MT29F1G16ABBEAHC:E TR ideal for compact and high-density PCB designs.
  • Environmental Compliance: The MT29F1G16ABBEAHC:E TR is REACH unaffected and RoHS3 compliant, ensuring it meets stringent environmental and safety standards.
  • Moisture Sensitivity Level: The moisture sensitivity level (MSL) of 3 (168 hours) ensures the device remains reliable and functional even in humid environments.

MT29F1G16ABBEAHC:E TR Applications

The MT29F1G16ABBEAHC:E TR is well-suited for a variety of applications that require high-speed, reliable memory solutions. Some specific use cases include:

  • Embedded Systems: Ideal for embedded systems in industrial automation, automotive, and telecommunications, where fast data access and storage are critical.
  • Consumer Electronics: Suitable for consumer electronics such as digital cameras, gaming consoles, and smart TVs, where compact design and high performance are essential.
  • Networking Equipment: Used in networking equipment like routers and switches, where reliable memory and fast data transfer are necessary for optimal performance.
  • Medical Devices: Applicable in medical devices that require high reliability and low power consumption, ensuring accurate data storage and retrieval.

Conclusion of MT29F1G16ABBEAHC:E TR

The MT29F1G16ABBEAHC:E TR, manufactured by Micron Technology Inc., is a high-performance Flash memory IC that offers a robust and versatile solution for a wide range of applications. Its 1Gbit memory size, parallel memory interface, and surface mount technology make it an excellent choice for embedded systems, consumer electronics, networking equipment, and medical devices. Despite being obsolete, its technical specifications and performance benefits continue to make it a reliable component for legacy systems. The device's compliance with environmental and safety standards further enhances its appeal in modern electronics.

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