
Micron Technology
MT41J64M16JT-125:G
Why Choose Us?
Professional Platform
B2B & B2C purchasingDelivery at full speed
1-2 days deliveryWide variety
Original manufacturers365 days guarantee
Responsible qualityTech Specifications
MT41J64M16JT-125:G Description
MT41J64M16JT-125:G Description
The MT41J64M16JT-125:G is a high-performance DRAM memory IC chip designed by Micron Technology Inc. This 1Gbit memory device is organized as 64M x 16, offering a robust solution for applications requiring significant memory capacity. The chip features a parallel memory interface, ensuring compatibility with a wide range of systems that utilize parallel data transfer protocols. With a clock frequency of 800 MHz, the MT41J64M16JT-125:G delivers rapid data access and processing capabilities, making it suitable for high-speed computing environments.
The MT41J64M16JT-125:G operates within a voltage range of 1.425V to 1.575V, providing efficient power consumption and ensuring reliable performance. Its operating temperature range of 0°C to 95°C (TC) makes it suitable for various industrial and commercial applications, including those with demanding thermal conditions. The device is packaged in a 96FBGA format, which is ideal for surface-mount applications, ensuring compact and reliable integration into modern electronic systems.
MT41J64M16JT-125:G Features
- Memory Size and Organization: The MT41J64M16JT-125:G offers a substantial 1Gbit memory size, organized as 64M x 16, providing ample storage capacity for complex data processing tasks.
- High-Speed Performance: With a clock frequency of 800 MHz, this DRAM chip ensures rapid data access and transfer, making it ideal for high-speed computing applications.
- Parallel Interface: The parallel memory interface allows for efficient data transfer and compatibility with a wide range of systems that utilize parallel data protocols.
- Wide Operating Temperature Range: The MT41J64M16JT-125:G operates reliably within a temperature range of 0°C to 95°C (TC), making it suitable for diverse environmental conditions.
- Efficient Power Consumption: The device operates within a voltage range of 1.425V to 1.575V, ensuring efficient power usage and reduced energy consumption.
- Surface-Mount Compatibility: Packaged in a 96FBGA format, the MT41J64M16JT-125:G is designed for surface-mount applications, providing a compact and reliable integration solution.
- Compliance and Safety: The MT41J64M16JT-125:G is REACH unaffected and ROHS3 compliant, ensuring it meets stringent environmental and safety standards.
- Moisture Sensitivity Level: With a moisture sensitivity level (MSL) of 3 (168 hours), the device is protected against moisture damage during storage and handling.
MT41J64M16JT-125:G Applications
The MT41J64M16JT-125:G is well-suited for applications that require high-speed data processing and significant memory capacity. Its robust performance and wide operating temperature range make it ideal for:
- High-Performance Computing: The 800 MHz clock frequency and 1Gbit memory size make it suitable for systems requiring rapid data processing and large memory storage.
- Industrial Control Systems: The wide operating temperature range and surface-mount compatibility ensure reliable performance in demanding industrial environments.
- Telecommunications: The device's high-speed capabilities and efficient power consumption make it ideal for telecommunication systems that require rapid data transfer and processing.
- Embedded Systems: The compact 96FBGA package and surface-mount compatibility make it suitable for embedded systems where space is a constraint.
Conclusion of MT41J64M16JT-125:G
The MT41J64M16JT-125:G from Micron Technology Inc. is a high-performance DRAM memory IC chip that offers significant memory capacity and high-speed performance. Its wide operating temperature range, efficient power consumption, and surface-mount compatibility make it suitable for a variety of applications, including high-performance computing, industrial control systems, telecommunications, and embedded systems. While the product is now obsolete, its unique features and advantages over similar models continue to make it a valuable component for legacy systems and specific use cases.



.png)















.png?x-oss-process=image/format,webp/resize,h_32)










