MT29F8T08EWLCEM5-TES

✓ In Stock

8Tb 3D QLC NAND Flash with 232-layer technology for high-capacity, cost-effective storage.

Product Overview

Description

The MT29F8T08EWLCEM5-TES is a high-capacity 8Tb (1TB) 3D QLC NAND Flash device featuring Micron's 232-layer technology.

QLC technology enables the highest density and lowest cost per gigabyte for read-intensive applications.

Ideal for cold storage, content delivery networks, and cost-sensitive SSD applications.

Product Series

MT

Primary Application

Cold storage

Key Features

  • 232-layer 3D NAND technology
  • Ultra-high 8Tb capacity
  • Lowest cost per gigabyte
  • High read performance
  • Optimized for read-intensive workloads

Specifications

Density 8Tb (1TB)
Cell Type QLC (4-bit/cell)
Interface ONFI 4.2
Endurance 1,000 P/E cycles
Performance 800 MT/s read, 400 MT/s write
Temperature Range 0°C to +70°C (Commercial)
Package BGA-152

Applications

Cold storage

Electronic system design

Content delivery

Electronic system design

Read-intensive SSDs

Electronic system design

Archive storage

Electronic system design

Backup systems

Electronic system design

Documents & Resources

FAE Expert Insights

S

"The MT29F8T08EWLCEM5-TES offers exceptional density with its 8Tb capacity. This is ideal for applications where storage density and cost are more important than write endurance. I've successfully used this device in cold storage and content delivery applications. The 232-layer technology is cutting-edge and provides excellent read performance. Just be aware of the QLC endurance limitations - this device is best for read-heavy workloads with infrequent writes. Implement proper wear leveling and over-provisioning for optimal reliability."

Ultra-high density QLC NAND for cost-effective storage

— Sarah Liu, BeiLuo

Frequently Asked Questions

Is QLC NAND suitable for my application?

QLC NAND is best suited for read-intensive applications with low write amplification. Good use cases include: cold storage, content delivery networks, video streaming, backup systems, and read-heavy databases. Avoid QLC for write-intensive applications like transaction processing, caching, or boot drives. The 1,000 P/E cycle endurance requires careful workload analysis. Implement over-provisioning (20-30% recommended) and efficient wear leveling to maximize device lifetime.

Use QLC for read-intensive workloads. Avoid for write-heavy applications. Contact us for workload analysis.

QLC use cases read-intensive storage cold storage NAND