MT25QU01GBBB8E12-0AUT - 1Gb SPI NOR Flash 133MHz | Micron
MPN: MT25QU01GBBB8E12-0AUT ✓ Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $8.87 | $8.87 |
| 10 | $8.4 | $84.00 |
| 100 | $7.95 | $795.00 |
| 500 | $7.52 | $3,760.00 |
| 1,000 | $7.1 | $7,100.00 |
Drop-in alternatives for MT25QU01GBBB8E12-0AUT — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool — Select alternative parts for side-by-side comparison:
MT25QU01GBBB8E12-0SIT
✅ Drop-In📋 Reference alternative (not in catalog)
MT25QU01GBBB8ESF-0SIT
✅ Drop-In📋 Reference alternative (not in catalog)
MT25QL512ABB8E12-0AUT
✅ Drop-In ⚠️ 参数待验证✓ In Stock
$10.55 / Unit
View Datasheet →MT25QU256ABA8E12-0AUT
✅ Drop-In ⚠️ 参数待验证✓ In Stock
$3.95 / Unit
View Datasheet →MT25QL256ABA8E12-0AUT
✅ Drop-In ⚠️ 参数待验证✓ In Stock
$12.5 / Unit
View Datasheet →MT25QU01GBBB8E12-0AUT Maximum Ratings & Electrical Characteristics
| Memory Type | NOR Flash, Serial (SPI) |
| Density | 1 Gbit (128 MB) |
| Organization | x1 / x2 / x4 (I/O width) |
| Supply Voltage | 1.8 V |
| Interface | SPI, Dual SPI, Quad SPI |
| Max Clock Frequency | 133 MHz |
| Access Time | 6 ns |
| Operating Temperature | -40C to +125C |
| Package | 24-T-PBGA (6x8 mm) |
| FBGA Code | RW320 |
| Mounting Type | Surface Mount |
| Automotive Qualification | AEC-Q100 qualified |
| Write Protection | Hardware write protection; Software write protection; Write enable latch |
| Product Longevity Program | No |
MT25QU01GBBB8E12-0AUT 24-t-pbga (6x8 mm) Pin Configuration Guide
Complete pinout information for MT25QU01GBBB8E12-0AUT (24-t-pbga (6x8 mm) 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 MT25QU01GBBB8E12-0AUT.
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
MT25QU01GBBB8E12-0AUT is suitable for 6 applications: Automotive Boot Code Storage, FPGA Configuration Memory, Telematics and Gateway Modules, Industrial PLC and Automation Controllers, Battery-Powered Portable Instruments, Medical Diagnostic Device Code Storage.
Automotive Boot Code Storage
The MT25QU01GBBB8E12-0AUT fits automotive boot-memory roles because its AEC-Q100 qualification and -40C to +125C operating range cover grade-2 ambient zones in body electronics, telematics, and ADAS support modules. The 1 Gbit (128 MB) density holds bootloader, firmware images, and calibration tables for application processors with headroom for over-the-air update staging. Quad SPI operation at 133 MHz shortens boot latency, and hardware plus software write protection safeguards immutable boot code against corruption. Connected on the 1.8 V rail with 100 nF decoupling per power ball, it draws no switching noise, unlike eMMC alternatives, keeping boot reads deterministic during cranking transients.
Recommended
FPGA Configuration Memory
Serial NOR flash is the standard configuration medium for SRAM-based FPGAs, and the MT25QU01GBBB8E12-0AUT's Quad SPI interface at 133 MHz delivers the read bandwidth needed to minimize configuration time at power-up. The 1 Gbit capacity accommodates large bitstreams for mid-to-high-density FPGAs plus a second image for fail-safe updates. Its 6 ns array access and x4 I/O organization keep sequential read throughput high, while the write-protection latch prevents bitstream tampering. Designers should verify the FPGA's master SPI mode supports the Micron MT25Q command set and read command opcodes, and should share the 1.8 V I/O rail if the FPGA bank is not 3.3 V tolerant.
Recommended
Telematics and Gateway Modules
Connected-vehicle telematics control units and gateways need non-volatile storage for firmware, configuration, and logged data with automotive-grade reliability. The MT25QU01GBBB8E12-0AUT provides 1 Gbit of code storage on a 1.8 V rail that directly matches low-power application processor I/O, reducing level-shifting complexity. Quad SPI at 133 MHz supports execute-in-place operation so the host MCU can run code directly from flash, and the -40C to +125C range suits engine-bay-adjacent enclosures. Software write protection can partition the array so log regions remain writable while firmware blocks are locked, supporting cybersecurity requirements in fleet and V2X deployments.
Recommended
Industrial PLC and Automation Controllers
Programmable logic controllers and industrial edge controllers require dependable code storage that survives wide temperature swings and years of power cycling. The MT25QU01GBBB8E12-0AUT's serial NOR architecture offers deterministic random read access, unlike managed NAND, simplifying firmware architecture. Its 1 Gbit density holds real-time operating systems, protocol stacks (PROFINET, EtherCAT), and recipe data. The 1.8 V operation lowers overall controller power, and hardware write protection locks the golden firmware image while application sectors remain field-updatable. Placement on the Quad SPI bus of an industrial MCU yields fast boot under 100 ms with XIP enabled, supporting fast recovery after power dips common on factory floors.
Recommended
Battery-Powered Portable Instruments
Handheld measurement and portable diagnostic instruments benefit from the MT25QU01GBBB8E12-0AUT's 1.8 V supply, which reduces flash subsystem power compared with 3 V parts and interfaces directly with low-voltage MCU banks. Deep power-down style command options of the MT25Q family cut standby consumption between readings, extending battery life. The 1 Gbit density stores waveform libraries, calibration constants, and logged datasets, while the small 6x8 mm 24-ball PBGA footprint saves board area in compact enclosures. Designers should add series resistance on the CLK line to control overshoot at low-voltage I/O and should confirm the hold/deep-power-down timing against the MCU's low-power mode sequencing.
Recommended
Medical Diagnostic Device Code Storage
Benchtop and portable medical diagnostic instruments need certified, tamper-resistant code storage with long service life. The MT25QU01GBBB8E12-0AUT's hardware and software write protection let manufacturers lock validated firmware images used in measurement engines, while storing patient-configurable data in open sectors. The wide -40C to +125C rating exceeds typical clinical requirements, providing margin for transport and storage conditions. Quad SPI at 133 MHz enables fast instrument startup, improving workflow in busy laboratories. The 1.8 V rail integrates cleanly with low-voltage processors common in medical electronics, and the small BGA footprint fits dense multi-board diagnostic platforms with strict height and area budgets.
Recommended
Recommended Products Summary
Engineering reference data for MT25QU01GBBB8E12-0AUT — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | MT25QU01GBBB8E12-0SIT | MT25QU01GBBB8ESF-0SIT | MT25QL512ABB8E12-0AUT | MT25QU256ABA8E12-0AUT | MT25QL256ABA8E12-0AUT |
|---|---|---|---|---|---|---|
| Package | 24-T-PBGA (6x8 mm) | 24-T-PBGA (6x8 mm) - same | 24-T-PBGA (6x8 mm) - same | 24-T-PBGA (6x8 mm) - same | 24-T-PBGA (6x8 mm) - same | 24-T-PBGA (6x8 mm) - same |
| Brand | Micron Technology | Micron Technology | Micron Technology | Micron Technology | Micron Technology | Micron Technology |
| Density | 1 Gbit | 1 Gbit | 1 Gbit | 512 Mbit | 256 Mbit | 256 Mbit |
| Supply Voltage | 1.8 V | 1.8 V | 1.8 V | 3 V | 1.8 V | 3 V |
| Max Clock Frequency | 133 MHz | 133 MHz | 133 MHz | 133 MHz | 133 MHz | 133 MHz |
| Operating Temperature | -40C to +125C | -40C to +85C (industrial) | -40C to +85C (industrial) | -40C to +125C | -40C to +125C | -40C to +125C |
| Automotive AEC-Q100 | Yes | No (industrial) | No (industrial) | Yes | Yes | Yes |
| Unit Price (qty 1) | ~$8.87 as of 2026-09-01 | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] |
Key Differentiators
- Automotive AEC-Q100 qualification at full 1 Gbit density (vs MT25QU01GBBB8E12-0SIT)
- 1.8 V operation halves flash subsystem power (vs MT25QL512ABB8E12-0AUT)
- Highest density in the same B8E12 automotive footprint (vs MT25QU256ABA8E12-0AUT)
Design Notes
Supply the MT25QU01GBBB8E12-0AUT from a clean 1.8 V rail with a dedicated 100 nF ceramic capacitor placed within 2 mm of each VCC ball, plus a 4.7 uF bulk capacitor per device. Program and erase operations draw transient current peaks; shared decoupling across multiple SPI devices can cause VCC droop that corrupts in-flight status reads. If the rail comes from a buck converter (for example, an LM5164 derivative), verify ripple stays within the datasheet VCC tolerance during Quad SPI read bursts.
Route the Quad SPI bus (CLK, DQ0-DQ3, S#, W#, HOLD#) as a controlled group with length matching within 5 mm to minimize skew at 133 MHz. Keep CLK as the longest reference trace or use series termination (22-33 ohm) at the driver to control reflections on the 1.8 V I/O. Avoid routing the SPI bus adjacent to switching regulator inductors; coupled noise on DQ lines shows up as intermittent read errors that are hard to diagnose in the field.
Two frequent mistakes with MT25Q parts: (1) assuming drop-in compatibility with 3 V MT25QL variants - the ball footprint matches but the supply rail differs, so power sequencing and I/O levels must be rechecked; (2) leaving W# or HOLD# floating, which can cause spurious write-protect release or bus contention during MCU reset. Tie HOLD# to VCC through a 10 kohm resistor and drive W# from a GPIO with a defined power-up state. Also note the Product Longevity Program is listed as No, so include a last-time-buy trigger in your component management plan.
Compliance Information
AEC-Q100 automotive qualification confirmed via Arrow and Micron part catalog data. RoHS/REACH/lead-free status not stated in the provided web data - confirm on the Micron part detail page.