Manufacturer Part Number
MT46H64M32LFBQ-48 WT:C
Manufacturer
alliance-memory
Introduction
The MT46H64M32LFBQ-48 WT:C is a high-performance, low-power SDRAM memory module designed for use in mobile and portable electronic devices. This 2Gbit DRAM chip offers a compact 90-VFBGA package and operates at a clock frequency of 208 MHz, providing efficient and reliable data storage and retrieval.
Product Features and Performance
2Gbit memory capacity
64M x 32 memory organization
Parallel memory interface
208 MHz clock frequency
4 ns write cycle time
5 ns access time
7V to 1.95V operating voltage range
Wide operating temperature range of -25°C to 85°C
Product Advantages
Low power consumption for extended battery life in mobile devices
Compact 90-VFBGA package for space-constrained applications
High-speed data transfer and processing capabilities
Reliable and stable performance across a wide temperature range
Key Reasons to Choose This Product
Superior memory performance and efficiency for demanding mobile applications
Cost-effective solution for memory upgrades and expansions
Compatibility with a wide range of mobile devices and electronics
Proven reliability and quality from a trusted manufacturer
Quality and Safety Features
Rigorous quality control and testing procedures
Compliance with industry standards and regulations
Robust design for reliable and long-lasting operation
Compatibility
The MT46H64M32LFBQ-48 WT:C is compatible with a variety of mobile devices, tablets, and other portable electronics that require high-performance, low-power SDRAM memory.
Application Areas
Smartphones and tablets
Portable gaming devices
Wearable electronics
Industrial and medical equipment
Automotive infotainment systems
Product Lifecycle
The MT46H64M32LFBQ-48 WT:C is an active and currently available product. There are no immediate plans for discontinuation. However, as technology continues to evolve, customers are encouraged to contact our website's sales team for the latest information on product availability and any potential alternative or equivalent models.