Solidigm has released their latest products, the D7-PS1010 and D7-PS1030 SSDs, which are the fastest PCIe 5.0 SSDs on the market and are specifically designed to handle intense IO demands for a variety of workloads, while also offering impressive energy efficiency and reliability.
- Fastest PCIe 5.0 SSDs currently available
- Up to 70% better energy efficiency compared to competitors
- Available in both E3.S and U.2 form factors for flexibility
Solidigm, the innovative provider of NAND flash memory solutions, has just launched its latest products in the data center solid-state drive (SSD) market. Meet the Solidigm D7-PS1010 and D7-PS1030 SSDs, the fastest PCIe 5.0 SSDs that you can get your hands on right now. These drives are specifically designed to handle the intense input/output (IO) demands of modern workloads, making them perfect for mainstream, mixed, and write-centric tasks.
Greg Matson, the Senior Vice President of Strategic Planning and Marketing at Solidigm, explained that the D7-PS1010 and D7-PS1030 SSDs were meticulously crafted to meet the ever-increasing IO requirements across a wide range of workloads. From general-purpose servers to OLTP, server-based storage, decision support systems, and AI/ML, these drives have got you covered. But what sets them apart from the competition is not just their speed and performance. These Solidigm SSDs also offer up to 70% better energy efficiency compared to similar drives from other manufacturers. In a world where every watt counts, that’s a game-changer.
The newest Solidigm SSDs are available in both E3.S and U.2 form factors, giving you flexibility in choosing the right fit for your needs. They come in a variety of capacities and endurance options, making them a valuable addition to Solidigm’s already impressive storage portfolio for AI applications.
Let’s take a closer look at each drive:
D7-PS1010: This is a standard endurance (SE) drive that comes in 1.92 TB, 3.84 TB, 7.68 TB, and 15.36 TB capacities. Over a span of 5 years, the SE models offer 1.0 drive writes per day (DWPD) and boast impressive maximum lifetime program/erase cycles, with the 15.36 TB variant capable of handling a whopping 28 petabytes written (PBW). When it comes to sequential write throughput in server-based storage solutions, the D7-PS1010 can accelerate it by up to 37% compared to drives with similar specifications. With a perfect balance of performance and capacity, this drive is ideal for a wide range of mainstream applications.
D7-PS1030: This is a mid-endurance (ME) drive available in 1.6 TB, 3.2 TB, 6.4 TB, and 12.8 TB capacities. The 12.8 TB variant can handle an impressive 70 petabytes written (PBW). When placed in an all-flash performance tier for AI workloads, the D7-PS1030 overcomes the limitations of hard disk drive (HDD) performance, endurance, and reliability. In fact, the write performance of this drive is more than double that of the previous generation Solidigm drive. It excels in operations that require write-intensive usages like caching and checkpointing. Plus, it delivers up to 50% higher throughput in certain phases of the AI data pipeline compared to similar drives in its class. Whether you’re deploying these SSDs as GPU direct attach drives in GPU servers or as part of a high-performance all-flash tier supporting lower-performing HDDs in network attach storage configurations, they’ve got you covered.
Ace Stryker, the Director of Market Development at Solidigm, emphasized the importance of storage performance in the face of surging AI workloads. He believes that the D7-PS1010 and D7-PS1030 SSDs will be a game-changer for AI-driven enterprises, outperforming competitors at critical stages of the AI pipeline.
Solidigm’s commitment to delivering industry-leading quality and reliability is evident in these SSDs. They go above and beyond required industry specifications and common practices. The company employs rigorous testing methodologies, incorporates built-in redundancies, enhances power loss management, and engineers for performance consistency over the lifespan of the drive. Additionally, the new SSDs feature OCP-compliant thermal management capabilities, as well as new security features like secure boot and data at rest protection and attestation. This means you can deploy these drives with utmost confidence in cloud and enterprise environments.
With the launch of the Solidigm D7-PS1010 and D7-PS1030 SSDs, Solidigm continues to push the boundaries of storage technology. These drives are not just about raw power and speed; they are about efficiency, reliability, and confidence. So, if you’re in the market for high-performance SSDs that can handle the demands of AI workloads, look no further. Solidigm has got you covered.
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Technology Explained
GPU: GPU stands for Graphics Processing Unit and is a specialized type of processor designed to handle graphics-intensive tasks. It is used in the computer industry to render images, videos, and 3D graphics. GPUs are used in gaming consoles, PCs, and mobile devices to provide a smooth and immersive gaming experience. They are also used in the medical field to create 3D models of organs and tissues, and in the automotive industry to create virtual prototypes of cars. GPUs are also used in the field of artificial intelligence to process large amounts of data and create complex models. GPUs are becoming increasingly important in the computer industry as they are able to process large amounts of data quickly and efficiently.
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HDD: A Hard Disk Drive (HDD) is a classic data storage device that utilizes spinning disks, or platters, coated with a magnetic material to store and retrieve data. An actuator arm with read/write heads accesses data by moving over the spinning platters. HDDs offer large storage capacities at a comparatively lower cost per gigabyte, making them suitable for applications where massive data storage is required, such as servers and desktop computers. However, HDDs are slower in terms of read and write speeds compared to SSDs due to the mechanical nature of their operation. They are more susceptible to physical shocks and are less energy-efficient due to the need to constantly spin the platters.
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NAND: NAND technology is a type of non-volatile memory that is used in many computer applications. It is a type of flash memory that is used to store data in a non-volatile manner, meaning that the data is not lost when the power is turned off. NAND technology is used in many computer applications, such as solid-state drives, USB flash drives, digital cameras, and memory cards. It is also used in many embedded systems, such as cell phones, tablets, and other consumer electronics. NAND technology is a reliable and cost-effective way to store data, making it a popular choice for many computer applications.
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PCIe: PCIe (Peripheral Component Interconnect Express) is a high-speed serial computer expansion bus standard for connecting components such as graphics cards, sound cards, and network cards to a motherboard. It is the most widely used interface in the computer industry today, and is used in both desktop and laptop computers. PCIe is capable of providing up to 16 times the bandwidth of the older PCI standard, allowing for faster data transfer speeds and improved performance. It is also used in a variety of other applications, such as storage, networking, and communications. PCIe is an essential component of modern computing, and its applications are only expected to grow in the future.
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SSD: A Solid State Drive (SSD) is a modern data storage device that employs flash memory technology to store data electronically. Unlike traditional hard disk drives (HDDs), SSDs have no moving parts, resulting in significantly faster read and write speeds. This leads to quicker boot times, faster application loading, and smoother overall system performance. SSDs are known for their durability, shock resistance, and energy efficiency, making them ideal for laptops, ultrabooks, and other portable devices. They come in various form factors, including 2.5-inch, M.2, and PCIe cards, and are favored for their reliability, quiet operation, and reduced heat generation
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