Micron Technology

MT53E128M32D2DS-053 - 4Gb LPDDR4/LPDDR4X DRAM | Micron

MPN: MT53E128M32D2DS-053 ✓ Active
In Stock Ships in 1-3 business days
0.6 V Vdss 200-ball WFBGA (10 x 14.5 mm) Package -053 Speed Mobile LPDDR4 / LPDDR4X SDRAM (unified) Memory
From $3.55 USD / Unit
MOQ: 1 |
Price updated: 2026-09-01
Volume Pricing
Qty Unit Price Extended
1 $4.35 $4.35
10 $4.15 $41.50
100 $3.94 $394.00
500 $3.72 $1,860.00
1,000 $3.55 $3,550.00
ℹ️ All prices are in USD

Drop-in alternatives for MT53E128M32D2DS-053 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

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MT53E128M32D2DS-046

✅ Drop-In
Micron Technology
📦 200-ball WFBGA (10x14.5 mm)
Mobile LPDDR4 SDRAM (LPDDR4/LPDDR4X unified) · 4 Gbit · 128M x 32 · 32 bit · 2.133 GHz (speed bin -046) · 4166 MHz (per Arrow listing) · DDP (Double-Die Package) · 200-WFBGA (10 mm x 14.5 mm)

✓ In Stock

Contact for price

View Datasheet →

MT53E128M32D2DS-053 WT:A

✅ Drop-In
📦 200-ball WFBGA (10x14.5 mm)
commercial temperature variant of the same die (target variant is AUT:A automotive), identical electricals

📋 Reference alternative (not in catalog)

MT53E256M32D2DS-053 WT:B

✅ Drop-In
Micron Technology
📦 200-ball WFBGA
LPDDR4 SDRAM (Mobile DRAM) · 8 Gbit (256M x 32) · 256M x 32 · 1866 Mbps/pin (1.866 GHz) · 1.1 V · -30C to +85C · 200-ball WFBGA, 10 x 14.5 mm · Surface Mount (BGA)

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$21.9 / Unit

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MT53D512M32D2DS-053 WT:D

✅ Drop-In
Micron Technology
📦 200-ball WFBGA
SDRAM - Mobile LPDDR4 · 16 Gbit (2 GB) · 512M x 32 · 1.866 GHz (1866 MT/s) · 200-WFBGA (10 mm x 14.5 mm) · DDP (Double Die Package) · -40C to +85C · -053

✓ In Stock

$6.05 / Unit

View Datasheet →

MT53E128M32D2DS-053 Maximum Ratings & Electrical Characteristics

Memory Type Mobile LPDDR4 / LPDDR4X SDRAM (unified)
Density 4 Gbit
Organization 128M x 32
Data Rate 1.866 GHz (1866 Mbps/pin)
Speed Grade -053
Package 200-ball WFBGA (10 x 14.5 mm)
VDDQ (LPDDR4X mode) 0.6 V
VDDQ (LPDDR4 mode) 1.10 V
Configuration DDP (double-die package)
Mounting Type Surface Mount
Automotive Variant MT53E128M32D2DS-053 AUT:A / AAT:A / AIT:A available
RoHS Status Compliant
Access Type Synchronous, bank-group burst

MT53E128M32D2DS-053 200-ball wfbga (10 x 14.5 mm) Pin Configuration Guide

Complete pinout information for MT53E128M32D2DS-053 (200-ball wfbga (10 x 14.5 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.

200-ball wfbga (10 x 14.5 mm) package pinout diagram for MT53E128M32D2DS-053

No detailed pinout data available for MT53E128M32D2DS-053.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for MT53E128M32D2DS-053 Drain-to-Source Voltage (Vds) Drain Current (Id)

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

MT53E128M32D2DS-053 is suitable for 6 applications: Smartphone and Tablet Main Memory, Automotive Infotainment and Cluster, Industrial Edge-AI Vision Modules, Embedded Computing and HMI, ADAS Sensor-Fusion Processing, Networking and IoT Gateways.

📱

Smartphone and Tablet Main Memory

The MT53E128M32D2DS-053 is a textbook mobile-DRAM fit for smartphones and tablets: its 4Gb (512MB) capacity in a compact 10 x 14.5 mm 200-ball WFBGA conserves board area, while the 1866 Mbps/pin rate keeps application processors fed. Because the die is unified LPDDR4/LPDDR4X, OEMs can run VDDQ at 0.6V (LPDDR4X) to cut I/O power - the dominant memory power term at high utilization - extending battery life versus fixed 1.10V LPDDR4 operation. In the memory subsystem, the device connects directly to the SoC's LPDDR4 controller with fly-by-free point-to-point routing; a key trade-off is that a single x32 device provides one wide channel, so multi-channel designs simply populate one device per channel. DDP construction balances density and die size for cost-effective mid-range platforms.

🚗

Automotive Infotainment and Cluster

Automotive head units, digital clusters, and cockpit SoCs need DRAM with automotive screening, and the MT53E128M32D2DS-053 AUT:A / AAT:A / AIT:A variants deliver the same 4Gb 128M x32 die in the 200-ball WFBGA with Micron's automotive qualification per the Z19M production data sheet. Graphics rendering and multi-display buffering benefit from the 1866 Mbps data rate, and the LPDDR4X 0.6V VDDQ mode reduces I/O power - important for thermal management in sealed dashboards. Designers must validate the SoC memory controller against the -053 timing bin and respect layout rules for length matching on the 200-ball interface. The trade-off versus commercial WT:A parts is higher unit cost, offset by automotive temperature guarantees and traceability. Availability is confirmed at DigiKey and Mouser with ships-today stock on key variants as of 2026-09-02.

🏭

Industrial Edge-AI Vision Modules

Industrial edge-AI vision systems - smart cameras, defect inspection, robotic guidance - use the MT53E128M32D2DS-053 as frame-buffer and neural-network workspace memory. Its 512MB capacity accommodates multiple 1080p frame buffers plus a quantized CNN model, while the x32-wide interface at 1866 Mbps provides the bandwidth to stream sensor frames into the accelerator without starving the pipeline. In thermally constrained fanless enclosures, running the die in LPDDR4X mode at 0.6V VDDQ measurably lowers I/O power and case temperature, improving long-term reliability. Placement close to the SoC with tightly length-matched traces and solid ground reference planes is essential at this data rate. Compared with lower-speed -046 bins, the -053 grade gives ~10-20% more bandwidth headroom for multi-camera fusion workloads on a single 200-ball footprint.

🖥️

Embedded Computing and HMI

Industrial HMI panels, gateways, and embedded single-board computers pair the MT53E128M32D2DS-053 with mid-range ARM SoCs to run Linux or RTOS stacks. The 4Gb density covers OS, GUI buffers, and application memory in one 200-ball WFBGA device, and the unified LPDDR4/LPDDR4X die lets a single PCB design serve both power profiles - useful when one board spins into a battery-backed and a mains-powered variant. At 1866 Mbps the x32 bus sustains responsive UI rendering and network stack traffic simultaneously. The commercial WT:A version (listed in stock at LCSC from $3.9433 as of 2026-09-02) suits standard industrial temperature designs, while IT:A covers extended temperature requirements. Layout teams should budget decoupling per the Micron datasheet VDD/VDDQ ball groups and keep the controller within the -053 bin's timing budget.

🎥

ADAS Sensor-Fusion Processing

Advanced driver-assistance systems fuse camera, radar, and lidar data in SoCs whose working memory must keep pace with sustained multi-gigabit sensor streams. The MT53E128M32D2DS-053 in its automotive AUT:A/AAT:A screening supplies 4Gb at 1866 Mbps/pin for object-tracking buffers and detection-pipeline staging, and its 0.6V VDDQ LPDDR4X mode trims I/O power in ECU thermal envelopes. Micron documents this unified LPDDR4/LPDDR4X product family in the 200-ball x16/x32 automotive production data sheet, giving ADAS teams a single component to qualify across LPDDR4 and LPDDR4X platforms. Design considerations include conforming to the controller's trace-length matching rules and confirming that the -053 bin's latency meets the perception loop's real-time budget. For heavier fusion workloads, the pin-compatible 8Gb family member on the same footprint offers a capacity upgrade without board respin.

🌐

Networking and IoT Gateways

IoT gateways, industrial routers, and wireless infrastructure SoCs use LPDDR4 as main system memory where DDR3/DDR4 power budgets are excessive. The MT53E128M32D2DS-053's 512MB at 1866 Mbps comfortably supports packet buffering, TLS session state, and containerized edge applications, while the LPDDR4X 0.6V VDDQ option suits PoE-powered or battery-backed gateways with limited thermal headroom. Its 200-ball WFBGA (10 x 14.5 mm) fits the dense, multi-radio layouts typical of gateway hardware, and the unified LPDDR4/LPDDR4X die protects second-source flexibility across SoC families. Availability is healthy - the WT:A variant is in stock at LCSC and IT:A TR is shipping from DigiKey as of 2026-09-02. Designers should confirm controller support for the -053 speed bin and follow datasheet guidance on ZQ calibration and refresh configuration for sustained network workloads.

What is the MT53E128M32D2DS-053?
The MT53E128M32D2DS-053 is a Micron Technology 4Gbit mobile LPDDR4/LPDDR4X unified SDRAM organized as 128M x32 and rated at 1.866 GHz (1866 Mbps/pin). It comes in a 200-ball WFBGA package measuring 10 x 14.5 mm. According to the Micron production data sheet, the die supports both LPDDR4 operation at 1.10V VDDQ and LPDDR4X operation at 0.6V VDDQ, allowing a single design to target either power profile.
What is the price of MT53E128M32D2DS-053?
The WT:A commercial variant of the MT53E128M32D2DS-053 is listed at LCSC starting from $3.9433 per unit (as of 2026-09-02). DigiKey and Mouser list the AUT:A automotive variant with tiered pricing that typically runs higher than the commercial WT part. Pricing varies by variant (WT, IT, AUT, AAT, AIT) and quantity breaks, so confirm current quotes on the distributor product pages before ordering.
Where can I buy MT53E128M32D2DS-053 online?
You can buy MT53E128M32D2DS-053 variants from authorized distributors including DigiKey (AUT:A, AIT:A, IT:A TR), Mouser (AUT:A, AIT:A TR), LCSC (WT:A, in stock), and Arrow.com (WT:A). Octopart reports availability from 2 to 4 distributors depending on variant. XAIPART also offers this part with quote-based ordering and internal linking to compatible Micron memory alternatives.
Is MT53E128M32D2DS-053 in stock and what is the lead time?
The WT:A commercial variant is in stock at LCSC (as of 2026-09-02), and DigiKey lists the AUT:A and AIT:A variants with ships-today status on their product pages. Lead times for volume orders of automotive variants vary by distributor and are typically quoted at RFQ. Check the DigiKey, Mouser, or LCSC product pages for real-time stock before committing to a production build.
What is the difference between MT53E128M32D2DS-053 and MT53E128M32D2DS-046?
The difference is the speed grade. The -053 part runs at 1.866 GHz (1866 Mbps/pin), while the -046 part is a slower speed bin within the same 4Gb 128M x32 200-ball WFBGA LPDDR4 family. Both share the identical package footprint and pinout, so they are mechanically drop-in interchangeable; however, you must confirm your memory controller timing controller supports the selected speed bin. The -046 part appears on the XAIPART site catalog.
Is MT53E128M32D2DS-053 the same as the LPDDR4X version?
Yes - the MT53E128M32D2DS-053 die is unified LPDDR4/LPDDR4X. According to the Micron production data sheet, the same device operates as LPDDR4X at 0.6V VDDQ or as LPDDR4 at 1.10V VDDQ, with the LPDDR4 settings described in the LPDDR4 section at the end of the datasheet. No separate part number change is required for LPDDR4X use; only the VDDQ supply and controller configuration differ.
What is the best drop-in replacement for MT53E128M32D2DS-053?
The best drop-in replacement is the MT53E128M32D2DS-046, the slower speed bin of the same die and package - it is pin-to-pin compatible in the same 200-ball WFBGA (10x14.5 mm) footprint, with identical 4Gb density and x32 organization; only the maximum data rate differs. For higher density on the same footprint family, MT53E256M32D2DS-053 WT:B (8Gb equivalent family member, 256M x32) keeps the package but doubles capacity, requiring controller reconfiguration.
What are the key specifications of MT53E128M32D2DS-053 that engineers should know?
Engineers should know: density 4Gbit organized 128M x32; data rate 1866 Mbps/pin (speed grade -053); package 200-ball WFBGA, 10 x 14.5 mm; unified LPDDR4 (1.10V VDDQ) / LPDDR4X (0.6V VDDQ) operation; DDP double-die construction; automotive-qualified variants AUT:A/AAT:A/AIT:A available. These figures come from the Micron part catalog and the 200-ball x16/x32 automotive LPDDR4/LPDDR4X SDRAM production data sheet (Z19M).
Where can I download the MT53E128M32D2DS-053 datasheet PDF?
The MT53E128M32D2DS-053 datasheet PDF is available from the Micron part-detail page (micron.com/products/memory/lpddr-components/lpddr4/part-catalog) and via Octopart's datasheet viewer. The document is the Production Data Sheet covering 200-ball x16/x32 automotive LPDDR4/LPDDR4X SDRAM (Z19M), which specifies operation as LPDDR4X at 0.6V VDDQ first, with LPDDR4 1.10V VDDQ settings covered in the section at the end of the document. Distributor sites such as LCSC also link the same datasheet.
Where can I find the MT53E128M32D2DS-053 pinout for the 200-ball WFBGA?
The complete 200-ball pin map of the MT53E128M32D2DS-053 is defined in the Micron production data sheet for the 200-ball x16/x32 LPDDR4/LPDDR4X SDRAM, in the ball assignment / package drawing section. Distributor pages such as LCSC also provide pinout diagrams for BOM tools. Because the ball map spans 200 connections (address, bank, data, DQS, DM, power, and ground balls), it is impractical to reproduce in full on a product page - always design against the datasheet ball map.
MT53E128M32D2DS-053 vs MT53E256M32D2DS-053 - which is better for automotive infotainment?
For automotive infotainment, the choice is capacity versus cost. Both parts share the same 200-ball WFBGA footprint and -053 (1866 Mbps) speed grade, so they are pin-compatible. The MT53E128M32D2DS-053 offers 4Gb (512MB) at a lower price point (about $3.94 at LCSC as of 2026-09-02), while the MT53E256M32D2DS-053 doubles capacity to 8Gb (1GB) on the same board. Choose the 128M x32 part when 512MB suffices; choose the 256M x32 part for richer graphics or multi-camera buffering. Use the AUT/AAT automotive variants for AEC-relevant platforms.
What is the best Samsung equivalent for MT53E128M32D2DS-053?
Samsung's K3 series 4Gb LPDDR4X devices in 200-ball packages (for example, the K4UBE/K3U family members at similar density and speed) are functional equivalents at the system level; however, no cross-brand equivalent for MT53E128M32D2DS-053 was confirmed pin-to-pin compatible in the verified web data for this page. Because BGA ball maps and die revisions vary between vendors, we do not claim a verified cross-brand drop-in. Always validate any Samsung candidate against the Micron datasheet ball map and your SoC memory-controller compatibility list before second-sourcing.
When should I choose the AUT:A variant over the WT:A variant?
Choose the MT53E128M32D2DS-053 AUT:A (or AAT:A/AIT:A) variant when the design targets automotive platforms that require Micron's automotive-grade screening and extended environmental qualification; the WT:A commercial variant targets consumer and industrial platforms. Electrically, both are the same 4Gb 128M x32 die in the same 200-ball WFBGA package at 1866 Mbps. The automotive variants carry higher unit pricing and specific operating-temperature guarantees defined in the automotive production data sheet (Z19M).
How much power does MT53E128M32D2DS-053 consume in LPDDR4X mode?
In LPDDR4X mode, the VDDQ supply drops from 1.10V to 0.6V, which substantially reduces I/O switching power because I/O dynamic power scales with VDDQ squared. Exact current-consumption figures depend on data rate, utilization, and temperature and are specified in the Micron datasheet current-versus-data-rate tables, which are not reproduced on this page. Designers should compute their workload's expected IDD from the datasheet ICC tables rather than from generic values, especially at full 1866 Mbps operation.
Hey Google, what can replace the MT53E128M32D2DS-053 in my design?
The closest replacement is Micron's own MT53E128M32D2DS-046, the slower speed bin on the same die and identical 200-ball WFBGA footprint - it drops in pin-for-pin if your controller accepts the -046 timing. Higher-density pin-compatible family options include MT53E256M32D2DS-053 WT:B. For legacy MT53D-series designs, the MT53E migration path is documented by Micron as pin-to-pin compatible at the same 200-ball package layout. Cross-brand equivalents were not verified on this page.
Is MT53E128M32D2DS-053 suitable for industrial edge-AI applications?
Yes. With 4Gb (512MB) of DRAM at 1866 Mbps/pin on a compact 10 x 14.5 mm 200-ball WFBGA, the MT53E128M32D2DS-053 fits industrial edge-AI modules where frame buffers, model workspaces, and OS memory must fit in half a gigabyte. Its unified LPDDR4/LPDDR4X die lets designers cut VDDQ to 0.6V in thermally constrained enclosures. For harsher industrial or automotive environments, select the IT:A or AUT:A/AAT:A automotive-screened variants of the same die instead of the commercial WT:A part.

Engineering reference data for MT53E128M32D2DS-053 — comparison, design guidance, and compliance information.

Selection Guide

Choose the MT53E128M32D2DS-053 when you need 512MB of mobile DRAM at 1866 Mbps with LPDDR4X power savings on the 200-ball WFBGA footprint. If your controller supports only slower bins or stock of the -053 is constrained, the MT53E128M32D2DS-046 drops into the identical footprint at a lower cost, trading bandwidth for price. For consumer or industrial builds, the WT:A variant saves cost over the automotive AUT:A/AAT:A parts; conversely, any automotive platform should use the AUT/AAT/AIT-screened variants regardless of cost. When 512MB is insufficient, MT53E256M32D2DS-053 WT:B doubles capacity on the same package family - budget for controller reconfiguration. Avoid the legacy MT53D generation for new designs; Micron's migration guidance points MT53D users to the MT53E family for LPDDR4X power benefits. Always validate the SoC memory controller's supported speed bin before committing the BOM.

Comparison with Alternatives

Parameter This Product MT53E128M32D2DS-046 MT53E128M32D2DS-053 WT:A MT53E256M32D2DS-053 WT:B MT53D512M32D2DS-053 WT:D
Package 200-ball WFBGA (10x14.5 mm) 200-ball WFBGA - same 200-ball WFBGA - same 200-ball WFBGA - same 200-ball WFBGA - same
Brand Micron Technology Micron Technology Micron Technology Micron Technology Micron Technology
Density 4 Gbit 4 Gbit 4 Gbit 8 Gbit 16 Gbit
Organization 128M x 32 128M x 32 128M x 32 256M x 32 512M x 32
Data Rate 1866 Mbps/pin (-053) [DATA_NEEDED] 1866 Mbps/pin 1866 Mbps/pin 1866 Mbps/pin
Interface Mode Unified LPDDR4 / LPDDR4X Unified LPDDR4 / LPDDR4X Unified LPDDR4 / LPDDR4X Unified LPDDR4 / LPDDR4X LPDDR4 (MT53D generation)
Temperature Grade Automotive (AUT/AAT/AIT options) Multiple grades (IT/AUT available) Commercial Commercial Commercial
Price (qty 1) $4.35 (as of 2026-09-02) [DATA_NEEDED] $3.9433 (LCSC) [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • Unified LPDDR4/LPDDR4X die protects platform flexibility (vs MT53D512M32D2DS-053 WT:D)
  • Automotive-screened variants of the identical die (vs MT53E128M32D2DS-053 WT:A)
  • Speed-bin headroom within the same footprint (vs MT53E128M32D2DS-046)

Design Notes

LPDDR4 routing at 1866 Mbps demands disciplined fly-by-free point-to-point layout: keep DQS/DQ length matching within the tolerance stated in the Micron 200-ball x16/x32 LPDDR4/LPDDR4X production data sheet, route over an unbroken ground reference plane, and avoid crossing power splits under data groups. Place the MT53E128M32D2DS-053 as close to the SoC memory controller as practical; every extra centimeter of trace adds skew and degrades timing margin at the -053 bin. Follow the datasheet ball-map decoupling assignments for each VDD/VDDQ ball group with low-ESR ceramic capacitors.

Because this die is unified LPDDR4/LPDDR4X, the VDDQ rail must be designed for the target mode: 1.10V for LPDDR4 or 0.6V for LPDDR4X. Since I/O dynamic power scales with VDDQ squared, LPDDR4X operation at high data rates yields substantial power savings, but the SoC controller must support the chosen VDDQ. Use a dedicated low-noise PMIC rail with good load transient response for VDDQ; do not share it with noisy core rails. Estimated: I/O power at 1866 Mbps drops roughly 70% going from 1.10V to 0.6V (factor of (0.6/1.10)^2 = 0.30) - verify against datasheet ICC tables for your workload.

Do not mix speed bins blindly: the -053 (1866 Mbps) and -046 parts share the same 200-ball footprint but are not interchangeable in all memory controllers - confirm your SoC's supported timing bins before dropping in the slower part. Also distinguish variants clearly when ordering: WT (commercial), IT (industrial), and AUT/AAT/AIT (automotive) share electricals but carry different qualification and temperature guarantees per the Z19M production data sheet. Finally, honor datasheet ZQ calibration and refresh (8x/16x) configuration; omitting ZQ resistor placement per the ball map is a common bring-up failure.

Compliance Information

RoHS
Compliant
REACH
Unknown
AEC-Q100
Unknown
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Unknown

RoHS compliance indicated by distributor listings (DigiKey/Mouser) for automotive-variant parts; automotive qualification per Micron Z19M production data sheet family. AEC-Q100 status not explicitly stated in provided data.

Data verified on: 2026-09-02 — data verified and curated by XAIPART's component engineering team

Related Searches

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Related Components & Terms

Micron Technology MT53E128M32D2DS-053 MT53E128M32D2DS-053 AUT:A MT53E128M32D2DS-053 WT:A MT53E128M32D2DS-046 MT53E256M32D2DS-053 WT:B LPDDR4 LPDDR4X mobile SDRAM DRAM memory IC 200-ball WFBGA BGA package family surface mount VDDQ 0.6V VDDQ 1.10V 1866 Mbps data rate 128M x 32 organization DDP double-die package Z19M process family automotive infotainment ADAS sensor fusion smartphone memory RoHS JEDEC LPDDR4 interface
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