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High Endurance eMMC 5.1 BGA153 32GB 64GB 128GB Embedded Flash Memory Chip

Product Specification
Place of Origin: Shenzhen, China
Brand Name: PG
Certification: CE, RoHS, ISO9001, AEC-Q100, IATF16949
Model Number: G2832GTLCB/G2864GTLCB/G28128TLCB
Minimum Order Quantity: 50 Pieces
Price: Negotiable
standard packaging: Anti-static tray + vacuum sealed bag, export-grade carton
Delivery Time: 10 to 15 days
Payment Terms: T/T,L/C
Supply Ability: 100K a month

Product Summary

PG high endurance eMMC 5.1 32GB 64GB 128GB BGA153 embedded flash memory engineered for long program erase cycles in write intensive designs.

Product Details

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High Endurance eMMC 5.1

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Long Program Erase Cycles

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Endurance Flash Storage

Product Name: High Endurance EMMC 5.1
Application: Continuous Write Data Logging
Interface: EMMC 5.1 HS400
NAND Flash Type: 3D TLC / PSLC Option
Endurance: High Program Erase Cycle Rating
Package: BGA153 11.5x13mm
Wear Levelling: Static And Dynamic
Error Correction: LDPC ECC

Product Description

High Endurance eMMC 5.1 BGA153 32GB 64GB 128GB Embedded Flash Memory Chip

Write heavy workloads are where embedded storage fails first. Data loggers, telematics units, surveillance recorders and edge gateways write continuously, and a low endurance part can wear out long before the warranty period ends. This high endurance eMMC 5.1 is built around a generous program erase cycle budget, so designers can over-provision, log around the clock and still publish a predictable service life for the end product.

The part ships in 32GB, 64GB and 128GB densities inside the familiar BGA153 footprint, allowing existing boards to move to longer life storage without any layout change. Controller firmware balances wear across every block, manages bad blocks and exposes device health through standard eMMC commands, so host software can monitor degradation and schedule replacement before a failure reaches the field.

In practice, endurance shows up in the field as units that keep logging after several years instead of returning for warranty. By combining a high program erase cycle budget with health reporting, this device lets a maintenance team watch wear trends and replace a module during a planned visit rather than after an unexpected outage. That predictability is often worth more than raw capacity, especially where the product must stay in service unattended.

Endurance Focused Technical Specifications

Interface eMMC 5.1, HS400 mode
Capacity 32GB / 64GB / 128GB
NAND Flash 3D TLC NAND (pSLC option)
Error Correction LDPC ECC
Wear Levelling Static and dynamic
Operating Voltage VCC 3.3V, VCCQ 1.8V / 3.3V
Operating Temperature -25C to +85C
Package BGA153, 11.5 x 13 x 1.0mm
Boot & RPMB Standard eMMC 5.1 boot partition with RPMB
Compliance JEDEC eMMC 5.1, RoHS
Endurance Rating High program erase cycle rating (pSLC option extends further)
Use Case Write intensive logging, telematics, edge storage

Available Models

Model Capacity NAND Package Dimensions
G2832GTLCB 32GB 3D TLC FBGA153 11.5*13mm
G2864GTLCB 64GB 3D TLC FBGA153 11.5*13mm
G28128TLCB 128GB 3D TLC FBGA153 11.5*13mm

High Endurance eMMC 5.1 BGA153 32GB 64GB 128GB Embedded Flash Memory Chip

High Endurance eMMC 5.1 BGA153 32GB 64GB 128GB Embedded Flash Memory Chip

High Endurance eMMC 5.1 BGA153 32GB 64GB 128GB Embedded Flash Memory Chip

Why Endurance Matters For Your Design

  • High program erase cycle budget keeps hot partitions alive through years of continuous logging.
  • pSLC mode option multiplies endurance on the most write intensive partitions at the cost of density.
  • Static and dynamic wear levelling spread writes evenly so no single block becomes an early hot spot.
  • LDPC ECC keeps bit error rates low as cells age, protecting data over the full service life.
  • Standard eMMC 5.1 HS400 interface and BGA153 footprint allow a drop in upgrade on existing boards.
  • Device health reporting lets host firmware monitor wear and plan replacement in advance.

High Endurance eMMC 5.1 Questions

What makes this eMMC 5.1 high endurance?

It uses a programme with a high program erase cycle rating, backed by static and dynamic wear levelling and LDPC ECC. Together these spread writes evenly and correct errors as cells age, so the device tolerates far more overwrite cycles than a standard grade part.

Can I raise endurance even further?

Yes. The NAND can be configured in pSLC mode, which trades roughly half the density for a large lift in program erase cycles. This is usually applied only to the small hot partition that receives the most writes.

Which capacities and package are available?

The range covers 32GB, 64GB and 128GB in a BGA153 package measuring 11.5 x 13 x 1.0mm, so you can keep one footprint across several product tiers.

How do I monitor remaining life?

The controller exposes health information through standard eMMC commands. Host firmware can read these values and raise an alert when a unit approaches its wear limit.

Where is this part typically used?

It suits telematics boxes, data loggers, surveillance recorders and edge gateways where data is written continuously and storage must survive the full warranty period.

PG has supplied embedded flash from Shenzhen for years, with CE, RoHS, ISO9001, AEC-Q100 and IATF16949 certified production. Endurance test data and custom capacity or pSLC configurations are available for qualification projects.

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