As 5G and AIoT application storage requirements continue to expand worldwide, high capacity 3D TLC NAND Flash has gradually replaced SLC and 2D MLC to become the market mainstream. However, this increasing ubiquity also represents a dilemma for customers as they seek to balance budget and performance: high-density storage is required but read-write performance and durability must be guaranteed. Aiming to address this issue, ADATA Industrial’s R&D team has introduced a solution – upgrade to A⁺ SLC technology and push the P/E Cycles (erase cycles) of 3D TLC products to 100K (100,000 cycles) for longer lifespans!
In order to improve the cost performance of flash memory products, ADATA has developed exclusive Pseudo SLC (pSLC) technology, designated “A⁺ SLC”. Through the use of specialized firmware, A⁺ SLC simulates the performance of SLC within 3D TLC, breaking through TLC’s low write cycle bottleneck. Through ADATA's upgraded A⁺ SLC technology, the standard 3K (3,000 cycles) P/E Cycles of ordinary 3D TLC flash memory can be increased to 100K (100,000 cycles), greatly increasing product lifespan 33-fold. A⁺ SLC can fully satisfy the needs of customers who require long-term and complete data preservation.


| Interface | Form Factor | Model Name | Product Image |
|---|---|---|---|
| NVMe | M.2 2280 | IM2P32A8 | ![]() |
| M.2 2242 | IM2P32A4 | ![]() |
|
| SATA | 2.5-inch | ISSS31C | ![]() |
| M.2 2280 | IM2S31C8 | ![]() |
|
| M.2 2242 | IM2S31C4 | ![]() |
|
| CFast 2.0 | ICFS31C | ![]() |
*Remark: A⁺ SLC model capacities will vary depending on product specifications and customer requirements. Please contact our sales representatives for more details.
5G/ Networking
AIoT
Edge Computing
Surveillance
Transportation

Learn how to choose server RAM, including ECC, UDIMM vs. RDIMM, DDR4 vs. DDR5, memory capacity, platform compatibility, and industrial server applications.

Compare ECC RAM vs. Non-ECC RAM and learn how ECC Memory corrects memory errors, how DDR5 On-Die ECC differs from system-level ECC, what platform compatibility requirements to consider, and how to choose between ECC UDIMM, RDIMM, and SODIMM for medical, networking, NVR, Edge AI, and transportation applications.

Signage Storage supports the local storage requirements of Digital Signage, POS, kiosks, and AI retail systems. Explore key SSD selection factors, including interface, capacity, endurance, operating temperature, PLP, S.M.A.R.T. monitoring, and fixed BOM.

Comprenda cómo el TBW, el DWPD, el ciclo P/E y las tecnologías pSLC, MLC, TLC y QLC influyen en la resistencia de los SSD industriales. Elija el SSD adecuado para cargas de trabajo de vigilancia, ciberseguridad y borde con el apoyo de ADATA Industrial.

Los datos SSD SMART proporcionan un registro continuo del estado operativo de un dispositivo de almacenamiento. Reporta información como las horas de funcionamiento acumuladas, la temperatura, el volumen de escritura, el consumo de la resistencia, la capacidad de reserva disponible y los eventos de pérdida inesperada de energía.

Aprende a seleccionar un SSD automotriz con base en los grados AEC-Q100, IATF 16949, ISO/SAE 21434, PLP y pSLC para sistemas a bordo de vehículos, ferroviarios y de borde en la red.