MT29F2G01ABBGDWB-IT:G - 2Gb SPI SLC NAND 1.8V | Micron
MPN: MT29F2G01ABBGDWB-IT:G β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $0 | $0.00 |
| 10 | $0 | $0.00 |
| 100 | $0 | $0.00 |
| 500 | $0 | $0.00 |
| 1,000 | $0 | $0.00 |
Drop-in alternatives for MT29F2G01ABBGDWB-IT:G β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
MT29F2G01ABAGDWB-IT:G
β Drop-Inπ Reference alternative (not in catalog)
MT29F2G01ABAGDWB-IT-G
β Drop-Inπ Reference alternative (not in catalog)
MT29F1G01ABAGDWB-IT:G
β Drop-In β οΈ εζ°εΎ ιͺθ―π Reference alternative (not in catalog)
MT29F4G01ABAGDWB-IT:G
β Drop-In β οΈ εζ°εΎ ιͺθ―π Reference alternative (not in catalog)
MT29F2G01ABBGDWB-IT:G Maximum Ratings & Electrical Characteristics
| Memory Type | SPI NAND Flash, SLC |
| Density | 2 Gbit (256 MB) |
| Supply Voltage | 1.8 V |
| Interface | SPI-compatible serial (x1, x2, x4) |
| Organization | x1, x2, x4 |
| Internal ECC | User-selectable, 8 bits per sector |
| FBGA Code | NW875 |
| Operating Temperature | -40C to +85C |
| Package | 8-UPDFN (8x6 mm) / MLP8 |
| Mounting Type | Surface Mount |
| Product Longevity Program | No |
| Chipset Validation | N/A |
| Memory Width | x1 |
| Marking Code | NW875 |
MT29F2G01ABBGDWB-IT:G 8-updfn (8x6 mm) / mlp8 Pin Configuration Guide
Complete pinout information for MT29F2G01ABBGDWB-IT:G (8-updfn (8x6 mm) / mlp8 package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.
No detailed pinout data available for MT29F2G01ABBGDWB-IT:G.
Refer to the datasheet for full pin configuration.
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
MT29F2G01ABBGDWB-IT:G is suitable for 6 applications: Embedded Firmware Storage, Industrial Data Logging, Networking Equipment, Set-Top Boxes and Display Panels, Battery-Powered IoT Devices, Aerospace and Rugged Systems.
Embedded Firmware Storage
The MT29F2G01ABBGDWB-IT:G stores bootloader, application firmware, and configuration tables in MCU-based embedded systems where 2Gb of reliable SLC storage is needed but board area and pin budget are tight. Its SPI interface consumes only a handful of host pins versus more than a dozen for parallel NAND, and the x2/x4 modes raise read throughput when the host fetches large firmware images. Because it is raw NAND, the host must run block management and rely on the device's user-selectable internal ECC (8 bits per sector) to protect code integrity. Compared with SPI NOR, Micron cites superior write performance and lower cost per bit, which shortens firmware update times in the field.
Recommended
Industrial Data Logging
In industrial meters, gateways, and condition-monitoring equipment, the -40C to +85C industrial grade and SLC cell architecture make the MT29F2G01ABBGDWB-IT:G a strong fit for event and sensor data logging. SLC NAND tolerates the frequent small writes and power interruptions typical of factory environments far better than MLC or TLC parts, and the 1.8V supply suits battery-backed and energy-harvesting designs. The internal ECC offloads error correction from resource-constrained MCUs, maintaining data integrity across the full temperature range. Designers should pair the device with power-fail detection so erase and program operations complete cleanly, and should implement wear leveling in the host file system to maximize endurance.
Recommended
Networking Equipment
Switches, routers, and line cards use the MT29F2G01ABBGDWB-IT:G to hold firmware images, configuration files, and logs on densely populated control boards. Micron explicitly targets pin-count-constrained designs with this SPI NAND family, and the 2Gb capacity comfortably holds dual firmware banks plus a configuration partition for rollback-safe upgrades. The x4 read mode increases image-load speed during boot, reducing switch startup time, while SLC endurance supports frequent configuration writes. Because packet processors and NIC chipsets require validated boot devices, teams should confirm the host SDK's SPI NAND driver supports the Micron command set and internal ECC behavior before committing the design.
Recommended
Set-Top Boxes and Display Panels
Consumer video terminals, set-top boxes, and smart display panels store channel databases, graphics assets, and firmware in the MT29F2G01ABBGDWB-IT:G. The 2Gb SLC array provides enough space for split-bank OTA updates so a failed download never bricks the unit, and the low 1.8V rail integrates cleanly with modern SoC power trees. The serial interface frees PCB routing channels on tightly packed main boards where parallel NAND buses would be impractical. Designers should reserve a small SPI NOR for boot ROM duties and use this NAND as bulk storage, since NAND requires a boot-capable host controller; the internal ECC reduces software burden on cost-reduced SoCs.
Recommended
Battery-Powered IoT Devices
Smart meters, trackers, and battery-powered IoT nodes benefit from the MT29F2G01ABBGDWB-IT:G's 1.8V operation, which matches the discharge curve of a single lithium cell and avoids a boost converter for the memory rail. The SPI bus allows sharing with other low-power peripherals on one controller, and the 8-pin UPDFN (8x6 mm) footprint minimizes board area in compact enclosures. Data recorded during connectivity outages accumulates safely in the 256MB SLC array, and internal ECC preserves record integrity at low supply voltages. For maximum battery life, designers should use deep power-down between write sessions and batch log entries to amortize page-program and block-erase energy.
Recommended
Aerospace and Rugged Systems
Ruggedized controllers, flight-data buffers, and field equipment use the MT29F2G01ABBGDWB-IT:G where the -40C to +85C industrial range and SLC reliability are prerequisites. SLC NAND provides deterministic program and erase behavior and high endurance, which matters in systems where logs cannot be lost after power events or vibration-induced resets. The serial interface simplifies isolation and conformal-coating layouts on densely wired boards. For higher-criticality designs, engineers often pair this commercial COTS NAND with micropower supervisors and isolation from XAIPART's portfolio. Note that Micron's product longevity program is not flagged for this part, so long-lifetime programs should secure lifetime-buy or franchise distributor stock agreements.
Recommended
Recommended Products Summary
Engineering reference data for MT29F2G01ABBGDWB-IT:G β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | MT29F2G01ABAGDWB-IT:G | MT29F1G01ABAGDWB-IT:G | MT29F4G01ABAGDWB-IT:G |
|---|---|---|---|---|
| Package | 8-UPDFN (8x6 mm) / MLP8 | 8-UPDFN (8x6 mm) - same | 8-UPDFN (8x6 mm) - same | 8-UPDFN (8x6 mm) - same |
| Brand | Micron Technology | Micron Technology | Micron Technology | Micron Technology |
| Density | 2 Gbit (256 MB) | 2 Gbit | 1 Gbit | 4 Gbit |
| Supply Voltage | 1.8 V | 1.8 V | 1.8 V | 1.8 V |
| Interface | SPI x1/x2/x4 | SPI x1/x2/x4 | SPI x1/x2/x4 | SPI x1/x2/x4 |
| Internal ECC | User-selectable, 8 bits/sector | User-selectable, 8 bits/sector | User-selectable, 8 bits/sector | User-selectable, 8 bits/sector |
| Operating Temperature | -40C to +85C (IT grade) | -40C to +85C | -40C to +85C | -40C to +85C |
| Unit Price (qty 1) | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] |
Key Differentiators
- Serial interface with NAND economics (vs Parallel SLC NAND (e.g., MT29F2G08AB))
- Industrial temperature grade in the same footprint (vs MT29F2G01ABAGDWB-IT:G)
- On-die ECC reduces host BOM (vs Raw SPI NAND without internal ECC)
Design Notes
SPI NAND is raw NAND behind a serial interface: it does not support NOR-style random byte reads. The host must read whole pages (2KB granularity) and manage bad blocks and wear leveling in software. Enable the device's user-selectable internal ECC (8 bits/sector) early in development, and validate that your bootloader and filesystem driver implement the Micron SPI NAND command set, including block-erase and status polling, before tape-out.
The device operates from a single 1.8V rail; program and erase operations draw peak current well above standby. Provide a local 100nF ceramic capacitor at VCC pin plus bulk decoupling (4.7uF-10uF) so rail droop during program/erase does not brown out the host. Add power-fail detection in firmware so an interrupted program or erase cycle is detected and the affected block marked bad at next boot.
Keep SPI traces short (under ~10 cm at typical SPI NAND clock rates) with series termination near the driver if the clock exceeds the host's recommended stub length. The exposed pad of the 8-UPDFN package should be soldered to a grounded or stable copper pad per the Micron mechanical drawing to ensure reliable thermal and mechanical attachment. Confirm pin 1 marker orientation against the datasheet before stencil design.
Compliance Information
Compliance details must be confirmed on Micron's official part-detail page environmental documents; the G suffix in Micron orderable part numbers conventionally denotes current RoHS/green material designation, but this was not explicitly stated in the provided data.