
Micron Technology
MT40A2G4SA-062E:J TR
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MT40A2G4SA-062E:J TR Description
MT40A2G4SA-062E:J TR Description
The MT40A2G4SA-062E:J TR is an 8Gbit DRAM memory IC chip designed by Micron Technology Inc. This high-performance memory solution features a parallel memory interface and a clock frequency of 1.6 GHz, ensuring rapid data transfer and processing capabilities. The memory is organized as 2G x 4, providing a robust structure for efficient data handling. With an access time of 19 ns and a write cycle time of 15 ns, this IC is optimized for applications requiring high-speed data access and quick write operations.
The MT40A2G4SA-062E:J TR operates within a voltage range of 1.14V to 1.26V and can function reliably in an operating temperature range of 0°C to 95°C. This wide temperature range makes it suitable for various industrial and commercial environments. The memory is volatile, meaning it requires a power supply to retain data, which is typical for DRAM solutions.
This IC is packaged in a 78FBGA format and is available in a tape and reel (TR) package, making it ideal for surface mount applications. It is also compliant with ROHS3 standards, ensuring it meets environmental and safety regulations. The moisture sensitivity level (MSL) is rated at 3 (168 hours), indicating its durability in varying humidity conditions.
MT40A2G4SA-062E:J TR Features
- High-Speed Performance: With a clock frequency of 1.6 GHz and an access time of 19 ns, the MT40A2G4SA-062E:J TR delivers high-speed data access, making it ideal for applications requiring rapid processing.
- Efficient Memory Organization: The 2G x 4 memory organization ensures efficient data handling and storage, optimizing performance for various computing tasks.
- Wide Operating Temperature Range: The ability to operate between 0°C and 95°C makes this IC suitable for a wide range of environments, from industrial to commercial applications.
- Low Power Consumption: Operating within a voltage range of 1.14V to 1.26V, this IC is designed for energy efficiency, reducing power consumption without compromising performance.
- Surface Mount Compatibility: The 78FBGA package format and tape and reel (TR) packaging make it easy to integrate into surface mount designs, enhancing flexibility in PCB layout.
- Environmental Compliance: ROHS3 compliance ensures that this product meets the latest environmental and safety standards, making it suitable for modern manufacturing processes.
- Durability in Humid Conditions: The MSL rating of 3 (168 hours) indicates that the IC can withstand varying humidity levels, enhancing its reliability in diverse conditions.
MT40A2G4SA-062E:J TR Applications
The MT40A2G4SA-062E:J TR is ideal for applications requiring high-speed, high-density memory solutions. Some specific use cases include:
- High-Performance Computing: Ideal for servers and workstations that require rapid data access and processing capabilities.
- Networking Equipment: Suitable for routers and switches where quick data transfer and low latency are critical.
- Industrial Control Systems: The wide operating temperature range and moisture sensitivity level make it suitable for industrial environments where reliability is paramount.
- Consumer Electronics: Applicable in devices such as gaming consoles and high-end multimedia devices that demand high-speed memory for optimal performance.
Conclusion of MT40A2G4SA-062E:J TR
The MT40A2G4SA-062E:J TR from Micron Technology Inc. is a high-performance DRAM memory IC chip designed for applications requiring rapid data access and processing. Its 1.6 GHz clock frequency, 19 ns access time, and 15 ns write cycle time ensure it delivers top-tier performance. The 2G x 4 memory organization and 8Gbit memory size provide ample storage and efficient data handling. With a wide operating temperature range, low power consumption, and surface mount compatibility, this IC is versatile and reliable. Its ROHS3 compliance and MSL rating of 3 further enhance its suitability for modern manufacturing and diverse environmental conditions. While the product is marked as obsolete, its technical specifications and performance benefits make it a valuable component for existing systems and legacy applications.



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