List of Memory products
- classification:Memory
181~225 item / All 349 items
The latest standard DDR5-4800 SODIMM/UDIMM DRAM modules offer faster performance and are ideal products for a wide range of applications.
- Memory
A 2.5-inch SSD equipped with 3D NAND designed for industrial use, capable of supporting large capacities up to 7.6TB, making it an ideal product for a wide range of applications.
- Memory

Definition and Terminology of Industrial SSD Temperature - Part I
When the temperature rises, both physical and chemical processes are accelerated. This is particularly true regarding damage to NAND flash memory cells. In other words, using NAND flash at high temperatures can significantly reduce its durability. Due to its sensitivity to changes in the characteristics of the insulating layer, this effect is more pronounced in high-density flash that stores multiple threshold levels. To maximize the lifespan of NAND flash, the flash memory controller needs to monitor and adapt to these changes. Both variations in ambient temperature and temperature cycles caused by powering the device on and off exert physical stress on the components, as different materials expand and contract at different rates. This can ultimately lead to the failure of electrical connections. For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/130425/attachFile/
A model case that encompasses the overall development, including specifications summary, chassis design, and program design!
- Memory
The DRAMless, BiCS5 NAND equipped PCIe interface SSD MEA3K0E allows for high-speed access and is ideal for industrial applications.
- Memory

Data retention of Silicon Power's industrial NAND flash products.
NAND flash technology is affected by physical degradation, which can ultimately lead to device failure. There are two end-of-life parameters that define the performance of NAND flash products: write/erase endurance and data retention. This application note provides insights into the reliability testing methods for NAND flash technology and discusses the impact of important factors from the perspective of data retention. For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/128591/attachFile/
The DRAMless BiCS5 equipped SATAIII interface SSD MDA3K0E supports large capacities up to 1TB, making it ideal for industrial applications.
- Memory

Definition and Terminology of Industrial SSD Temperature - Part I
When the temperature rises, both physical and chemical processes are accelerated. This is particularly true regarding damage to NAND flash memory cells. In other words, using NAND flash at high temperatures can significantly reduce its durability. Due to its sensitivity to changes in the characteristics of the insulating layer, this effect is more pronounced in high-density flash that stores multiple threshold levels. To maximize the lifespan of NAND flash, the flash memory controller needs to monitor and adapt to these changes. Both variations in ambient temperature and temperature cycles caused by powering the device on and off exert physical stress on the components, as different materials expand and contract at different rates. This can ultimately lead to the failure of electrical connections. For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/130425/attachFile/
High-performance BiCS5 NAND equipped, M.2 2280 SATA interface SSD for industrial MDC3K0E series.
- Memory

Data retention of Silicon Power's industrial NAND flash products.
NAND flash technology is affected by physical degradation, which can ultimately lead to device failure. There are two end-of-life parameters that define the performance of NAND flash products: write/erase endurance and data retention. This application note provides insights into the reliability testing methods for NAND flash technology and discusses the impact of important factors from the perspective of data retention. For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/128591/attachFile/
High-performance BiCS5 NAND equipped, M.2 2280 NVMe SSD for industrial use, MEC3K0E series.
- Memory

Explanation of SSS Device Performance Benchmark_PART 2_IOPS Performance Evaluation
IOPS Performance of Silicon Power Industrial SSDs ● Silicon Power adheres to industrial standards and performance testing specifications to verify the performance of SSD devices. However, since industrial applications vary by industry, the Silicon Power team has implemented open-source utilities to evaluate IOPS performance. ● OS: Ubuntu 20.04 LTS 64bits ● Flexible I/O Tester suite (https://github.com/axboe/fio) fio-3.24 ● Block tracing utilities (http://git.kernel.dk/cgit/blktrace/) blktrace-1.2.0 ● Note: Testing Shell Script For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/119925/attachFile/
MDA350 series featuring high reliability and high performance M.2 2242 SSD with 3D NAND, specialized for industrial/embedded applications.
- Memory

Durability: Explanation of TBW and Workload
Many industrial applications use SSDs as the OS boot drive and for data storage that operates 24/7. Their applications range from POS terminals to mission-critical transportation/defense equipment. The high data reliability, availability, and integrity of SSDs are important for customers in the industrial sector. Silicon Power's industrial SSDs have been evaluated for durability in enterprise application cases to simulate the operation of customer applications. SSD manufacturers are expected to establish durability assessments of SSDs that represent the maximum terabytes that a host can write to the SSD using application-class specified workloads that meet the following conditions. For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/116168/attachFile/
Long-term supply and fixed BOM SODIMM/UDIMM DRAM modules.
- Memory

Silicon Power brings hardware-based solutions to software-defined networks.
Silicon Power's industrial DRAM solutions provide the high performance required for network applications. The ECC DIMM and RDIMM product lines, with a maximum transfer bandwidth of 19.2GB/s, ensure the highest data integrity and stability, and Silicon Power's industrial DRAM solutions are customized for the most demanding applications. For more details on the application of Silicon Power's industrial business in the field of network applications, please refer to the following link: https://bit.ly/NTSDNSPI
3D-TLC NAND Flash Equipped Industrial UFD350 Series
- Memory
The microSD and SD card 730 series is equipped with industrial-grade SLC NAND, making it ideal for applications that require durability and reliability.
- Memory
A 2.5-inch SSD equipped with 3D NAND designed for industrial use, balancing high quality, high reliability, and cost performance, making it an ideal product for a wide range of applications.
- Memory
Silicon Power microSD cards from the SDT3R0 and SDT5R0 series are highly durable and reliable, making them the best choice for automotive and surveillance camera use.
- Memory

Silicon Power's firmware for industrial microSD cards is robust against sudden power loss (SPOR).
Sudden power outages and unstable power supply can cause data corruption in SD cards and microSD cards, making the SPOR (Sudden Power-Off Recovery) mechanism extremely important and necessary for industrial applications. Let me explain the strengths of Silicon Power products. For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/109871/attachFile/
Cinema EX utilizes CFexpress 2.0 technology, boasting a recording speed of up to 1700MB/s to meet the needs of professional video production.
- Memory

Excellent CFexpress and CFast cards designed for movie, television, commercial, and independent production shooting purposes.
Silicon Power's excellent CFexpress and CFast cards are designed for film, television, commercials, and independent production shooting, crafted without compromise down to the finest details, especially for 4K UHD digital film cameras. Follow us online to stay updated. We will be exhibiting at the NAB Show in Las Vegas, USA, from April 23 to 27. Let's meet there!
The MEC3H0S series is a PCIe 4.0 NVMe SSD for industrial rugged edge computing by Silicon Power.
- Memory

Definition and Terminology of Industrial SSD Temperature - Part I
When the temperature rises, both physical and chemical processes are accelerated. This is particularly true regarding damage to NAND flash memory cells. In other words, using NAND flash at high temperatures can significantly reduce its durability. Due to its sensitivity to changes in the characteristics of the insulating layer, this effect is more pronounced in high-density flash that stores multiple threshold levels. To maximize the lifespan of NAND flash, the flash memory controller needs to monitor and adapt to these changes. Both variations in ambient temperature and temperature cycles caused by powering the device on and off exert physical stress on the components, as different materials expand and contract at different rates. This can ultimately lead to the failure of electrical connections. For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/130425/attachFile/
The Silicon Power M.2 2280 SSD MEC3F0 series for industrial use is ideal for applications such as high-quality image processing, where high performance is sustained.
- Memory

Definition and Terminology of Industrial SSD Temperature - Part I
When the temperature rises, both physical and chemical processes are accelerated. This is particularly true regarding damage to NAND flash memory cells. In other words, using NAND flash at high temperatures can significantly reduce its durability. Due to its sensitivity to changes in the characteristics of the insulating layer, this effect is more pronounced in high-density flash that stores multiple threshold levels. To maximize the lifespan of NAND flash, the flash memory controller needs to monitor and adapt to these changes. Both variations in ambient temperature and temperature cycles caused by powering the device on and off exert physical stress on the components, as different materials expand and contract at different rates. This can ultimately lead to the failure of electrical connections. For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/130425/attachFile/
M.2 2280 NVMe SSD Industrial MEC350 Series (Equipped with 3D TLC NAND) with Excellent Durability and Reliable Performance
- Memory

Explanation of SSS Device Performance Benchmark_PART 1_Steady-State Throughput Performance
Introduction to the Performance Benchmark of Solid State Storage (SSS) Devices The performance of Solid State Storage (SSS) devices heavily depends on the following factors: 1. Write history and preconditioning: The state of the device before testing 2. Workload pattern: The I/O pattern (R/W mix ratio, block size, access, etc.) 3. Data pattern: The actual bits of the data payload written to the device Typical SSS devices, when exposed to workloads in a fresh-out-of-the-box (FOB) state, usually experience a performance increase for a short period before transitioning to a steady state. For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/119902/attachFile/
Achieving high reliability, the 3D NAND-equipped SATA SSD solution MSA3K0E series is ideal for those who prioritize cost performance.
- Memory

Durability: Explanation of TBW and Workload
Many industrial applications use SSDs as the OS boot drive and for data storage that operates 24/7. Their applications range from POS terminals to mission-critical transportation/defense equipment. The high data reliability, availability, and integrity of SSDs are important for customers in the industrial sector. Silicon Power's industrial SSDs have been evaluated for durability in enterprise application cases to simulate the operation of customer applications. SSD manufacturers are expected to establish durability assessments of SSDs that represent the maximum terabytes that a host can write to the SSD using application-class specified workloads that meet the following conditions. For more details, please refer to the related materials! Link: https://www.ipros.jp/news/detail/116168/attachFile/