Jeking Daily Post: MT29VZZZAD8GQFSL-046 W.9R8 4+64
#eMMC, #LPDDR4X, #MCP, #544Gbit, #VFBGA254
**Product Introduction**
The **MT29VZZZAD8GQFSL-046 W.9R8 4+64** is a high-performance multi-chip package (uMCP) developed by Micron Technology, designed for space-constrained mobile applications. This compact solution integrates 64 Gb of NAND Flash memory and 4 Gb of LPDDR4X DRAM in a single VFBGA package, offering an optimized balance of storage capacity and processing speed. With its 254-ball package footprint, it simplifies PCB design and enables slimmer, more efficient device architectures.
**Key Features**
This uMCP supports a 16-bit I/O interface for NAND and operates with a 1.8V supply voltage, ensuring low power consumption essential for battery-powered devices. The embedded LPDDR4X memory runs at a data rate of up to 3200 Mbps per pin, delivering excellent bandwidth for multitasking and high-speed data access. Built with advanced process technology, the MT29VZZZAD8GQFSL-046 provides enhanced reliability, thermal stability, and long-term durability. Its small form factor and high integration level make it ideal for next-generation smartphones, tablets, and wearable devices.
**Primary Applications**
The MT29VZZZAD8GQFSL-046 W.9R8 is widely used in consumer electronics where space efficiency and performance are critical. Typical applications include entry-level to mid-range smartphones, smartwatches, IoT modules, and portable medical devices. It enables fast app loading, smooth UI navigation, and reliable data storage in compact systems.
**Partner with Jeking Electronic Limited**
For customers seeking reliable sourcing and technical support for the MT29VZZZAD8GQFSL-046 W.9R8, **Jeking Electronic Limited** offers genuine components and professional procurement services. As a trusted supplier in the semiconductor industry, Jeking ensures product authenticity, competitive pricing, and timely delivery. Contact Jeking Electronic Limited today to streamline your component supply chain and enhance your product development efficiency.
评论
发表评论