MT29F2G01ABAGDWB-IT:G TR

Micron MT29F2G01ABAGDWB-IT:G SPI NAND Flash Technical Overview

MICRON MT29F2G01ABAGDWB-IT:G

Overview

The Micron MT29F2G01ABAGDWB-IT:G is part of Micron’s 2Gb SPI NAND Flash Memory family designed for embedded systems requiring reliable, cost-efficient, non-volatile storage. Built on SLC NAND technology and operating through the Serial Peripheral Interface (SPI), the device offers higher density and improved write performance compared with conventional SPI NOR solutions.

This industrial-grade variant operates from –40°C to +85°C, making it suitable for long-life applications in IoT, networking, industrial control, and consumer electronics.

Core Parameters

ParameterSpecification
Main DeviceMicron MT29F2G01ABAGDWB-IT:G
Density2Gb SLC NAND
Voltage2.7V–3.6V
Page Size2176 bytes (2048 + 128 spare)
Block Size64 pages (128K + 8K bytes)
Planes2 planes / 1024 blocks per plane
InterfaceSPI ×1 / ×2 / ×4
Max Clock133 MHz
Endurance100,000 P/E cycles
Data Retention10 years (uncycled)
ECC8-bit on-die ECC
Operating Temp–40°C to +85°C
Package8-pin U-PDFN (DWB code)

The DWB package option provides a compact footprint suitable for high-density embedded PCBs.


Features

1. Serial Peripheral Interface (SPI) Support

The MT29F2G01ABAGDWB-IT:G supports standard, dual, and quad SPI modes, allowing flexible throughput scaling from single-bit to four-bit transfers.

2. Internal ECC for Reliability

Integrated 8-bit ECC per sector ensures robust data integrity without requiring host-side ECC implementation, simplifying firmware design.

3. Cache-Based Read/Write Architecture

The device uses a page-to-cache pipeline for efficient read operations and fast sequential programming.

4. Security and Protection

  • Software block protection
  • Hardware write-protect pin (WP#)
  • Lock-tight mode
  • OTP space for secure configuration

5. Industrial-Grade Endurance

With 100k program/erase cycles and extended-temperature operation, the device performs reliably in long-lifecycle embedded products.


Typical Application Scenarios

1. Industrial IoT and Edge Devices

Ideal for sensors, controllers, and gateways requiring stable firmware storage across harsh environments.

2. Networking Equipment

Used in routers, ONU/ONT units, Wi-Fi modules, and smart home hubs.

3. Automotive and Industrial Electronics

Suitable for dashboards, HMIs, PLCs, and motor control modules requiring high endurance and secure storage.

4. Embedded Linux Systems

Common for U-Boot, kernel, and filesystem storage (YAFFS, UBIFS) due to high reliability and low pin count.

5. Consumer Electronics

Applies to set-top boxes, smart speakers, wearables, and other compact devices needing cost-effective Flash memory.


Performance Comparison: SPI NAND vs SPI NOR

MetricSPI NAND (MT29F2G01ABAGDWB-IT:G)SPI NOR
DensityHigh (Gb class)Lower (Mb class)
Write SpeedFasterSlower
Read SpeedHigh with cacheFaster random
Cost per BitSignificantly lowerHigher
EnduranceHigh (100k)Very high
XIP SupportNot availableSupported

Conclusion:
The MT29F2G01ABAGDWB-IT:G is the preferred choice for cost-efficient storage, firmware images, and data logging, whereas SPI NOR remains the option for execute-in-place systems.


Manufacturer Profile: Micron Technology

Micron Technology is a global leader in memory and storage semiconductors, supplying DRAM, NAND, NOR, and advanced Flash solutions for industrial, automotive, and consumer markets.
The MT29F2G01ABAGDWB-IT:G and its related series (MT29F2G01ABAGDSF, MT29F2G01ABAGD12) reflect Micron’s commitment to stable long-term supply and robust industrial-grade performance.

For more information and to review our available inventory, please contact our team for detailed pricing, current stock levels, and any additional technical support you may need.

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