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MT49H16M18FM-33 TR
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MT49H16M18FM-33 TR Description
MT49H16M18FM-33 TR Description
The MT49H16M18FM-33 TR is a high-performance Dynamic Random Access Memory (DRAM) IC designed by Micron Technology Inc. This 288Mbit memory chip is organized as 16M x 18 and features a parallel memory interface, making it suitable for applications requiring fast data access and high memory density. The device operates within a supply voltage range of 1.7V to 1.9V and has a clock frequency of 300 MHz, ensuring efficient and rapid data processing. With an access time of 20 ns, the MT49H16M18FM-33 TR provides quick response times, crucial for high-speed computing environments. The memory is volatile, meaning it retains data only while power is applied, which is typical for DRAM technology. The chip is housed in a 144UBGA package and is available in a surface-mount configuration, making it ideal for compact and high-density PCB designs. The operating temperature range of 0°C to 95°C ensures reliability in various environmental conditions. Despite its obsolescence, the MT49H16M18FM-33 TR remains a robust choice for legacy systems and specific applications where its unique features are advantageous.
MT49H16M18FM-33 TR Features
- High Memory Density: With a memory size of 288Mbit, the MT49H16M18FM-33 TR offers substantial storage capacity in a compact form factor.
- Fast Access Time: The 20 ns access time ensures rapid data retrieval, enhancing overall system performance.
- Wide Operating Voltage Range: The 1.7V to 1.9V supply voltage range provides flexibility and compatibility with various power supply designs.
- High Clock Frequency: The 300 MHz clock frequency supports high-speed data processing, making it suitable for demanding applications.
- Parallel Memory Interface: The parallel interface allows for efficient data transfer and integration with existing systems.
- Surface Mount Technology: The surface-mount configuration facilitates high-density PCB layouts, ideal for modern electronics.
- Extended Temperature Range: The 0°C to 95°C operating temperature range ensures reliability in diverse environments.
- Compliance and Safety: The MT49H16M18FM-33 TR is ROHS3 compliant and REACH unaffected, meeting environmental and safety standards.
- Moisture Sensitivity Level: MSL 3 (168 Hours) ensures the device can withstand moisture exposure during manufacturing processes.
MT49H16M18FM-33 TR Applications
The MT49H16M18FM-33 TR is well-suited for a variety of applications, particularly those requiring high-speed data processing and significant memory capacity. Key applications include:
- Networking Equipment: Ideal for routers, switches, and other networking devices that require fast data access and high memory density.
- Telecommunications: Suitable for base stations and other telecom infrastructure where rapid data handling is critical.
- Industrial Control Systems: Provides reliable memory solutions for industrial automation and control systems operating in varied environmental conditions.
- Legacy Systems: Despite its obsolescence, the MT49H16M18FM-33 TR remains a viable option for maintaining and upgrading legacy systems where compatibility with existing hardware is essential.
- Embedded Systems: Can be integrated into embedded systems requiring efficient memory management and high-speed performance.
Conclusion of MT49H16M18FM-33 TR
The MT49H16M18FM-33 TR is a powerful DRAM IC that offers a combination of high memory density, fast access times, and robust performance. Although it is now considered obsolete, its unique features and capabilities make it an ideal choice for specific applications, particularly in networking, telecommunications, and industrial control systems. The device's compliance with environmental and safety standards, along with its extended temperature range and moisture sensitivity level, ensures reliability and compatibility with modern manufacturing processes. For engineers and designers working with legacy systems or requiring a high-performance DRAM solution, the MT49H16M18FM-33 TR remains a reliable and efficient option.



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