Microchip Technology_AT49BV162AT-70TI
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Microchip Technology
AT49BV162AT-70TI

774-AT49BV162AT-70TI
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IC FLASH 16MBIT PARALLEL 48TSOP

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Tech Specifications

Operating Temperature
-40°C ~ 85°C (TC)
Memory Interface
Parallel
ECCN
EAR99
Memory Organization
2M x 8, 1M x 16
Mounting Type
Surface Mount
Memory Type
Non-Volatile
Product Status
Obsolete
Supplier Device Package
48-TSOP
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AT49BV162AT-70TI Description

AT49BV162AT-70TI Description

The AT49BV162AT-70TI is a 16Mbit FLASH memory IC chip designed by Microchip Technology. This device is organized as 2M x 8 or 1M x 16, providing flexibility in memory configuration. It features a parallel memory interface, making it suitable for systems requiring high-speed data access. The AT49BV162AT-70TI operates within a voltage range of 2.65V to 3.6V, ensuring compatibility with a variety of power supply configurations. It has an access time of 70 nanoseconds and a write cycle time of 200 microseconds for both word and page operations. The chip is housed in a 48TSOP package and is available in tray packaging. It is classified under HTSUS code 8542.32.0071 and has a moisture sensitivity level (MSL) of 3, which allows for 168 hours of exposure before reflow soldering. The product is currently marked as obsolete, but it remains a reliable choice for existing designs and legacy systems.

AT49BV162AT-70TI Features

  • Memory Organization: The AT49BV162AT-70TI offers a memory organization of 2M x 8 or 1M x 16, providing flexibility in memory configuration to suit different system requirements.
  • Parallel Interface: It features a parallel memory interface, which allows for high-speed data transfer and is ideal for applications requiring rapid access to large amounts of data.
  • Fast Access Time: With an access time of 70 nanoseconds, this chip ensures quick data retrieval, enhancing overall system performance.
  • Efficient Write Cycle: The write cycle time for both word and page operations is 200 microseconds, making it suitable for applications that require frequent updates to memory.
  • Wide Voltage Range: The device operates within a voltage range of 2.65V to 3.6V, providing compatibility with various power supply configurations and ensuring reliable operation in different environments.
  • Surface Mount Technology: The AT49BV162AT-70TI is designed for surface mount applications, making it suitable for modern PCB designs and enabling compact and reliable implementations.
  • Compliance and Safety: The chip is REACH unaffected and classified under ECCN EAR99, ensuring compliance with international regulations and safety standards.

AT49BV162AT-70TI Applications

The AT49BV162AT-70TI is ideal for a range of applications where high-speed data access and reliable memory storage are critical. Some specific use cases include:

  • Embedded Systems: The fast access time and efficient write cycle make it suitable for embedded systems that require rapid data processing and storage.
  • Industrial Control Systems: The robust design and wide voltage range ensure reliable operation in industrial environments, where consistent performance is essential.
  • Telecommunications: The parallel interface and high-speed data transfer capabilities make it ideal for telecommunications equipment that requires quick access to large amounts of data.
  • Consumer Electronics: The compact 48TSOP package and surface mount design make it suitable for consumer electronics where space is limited, and reliable memory storage is required.

Conclusion of AT49BV162AT-70TI

The AT49BV162AT-70TI is a versatile and reliable FLASH memory IC chip that offers a range of features and benefits suitable for various applications. Its fast access time, efficient write cycle, and flexible memory organization make it an excellent choice for systems requiring high-speed data access and reliable storage. Although the product is marked as obsolete, it remains a valuable option for existing designs and legacy systems. The wide voltage range, surface mount design, and compliance with international regulations further enhance its suitability for modern electronics applications.

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