ATP NVMe Solutions Built for the Fast Lane, Sequential Read Speed of up to 2,540 MB/s, and Sequential Write Speeds up 1,100 MB/s
NVMe vs. SATA: It's Time for NAND Flash in the Fast Lane
The deluge of data being created every day shows no sign of abating. As users create more and more data, we will not only need space to store it, but also higher throughput and faster response times to access data.
Over the years, CPU and DRAM technologies have been continually improving and increasing speeds to meet escalating data-hungry requirements. Mechanical storage drives such as hard disk drives and the interfaces connecting them, however, have trailed behind. Compounding the problem is that the faster, higher-capacity solid state drives (SSDs) today still widely use interfaces designed for slower mechanical drives.
Serial ATA (SATA™) is generally the least expensive and most extensively used SSD interface today. However, its latest generation is already almost a decade old, and its transfer rate is capped at 6 Gb/s. SATA uses the legacy protocol Advanced Host Controller Interface (AHCI), to connect the CPU/memory subsystem. AHCI was optimized for rotating media, resulting in high latency when used with faster storage solutions that do not have mechanical parts, such as SSDs. SATA does not support high levels of expansion, as most servers can accommodate fewer than six SATA devices.
To narrow the widening gap between fast CPU/DRAM and slow storage, Non-Volatile Memory Express or NVM Express®, also known as NVMe™, was developed by leading technology manufacturers.
NVMe™ in a Flash
NVMe™ is an interface specification developed specifically for NAND flash and next-generation SSDs. This interface leverages existing PCI Express® (PCIe®) technology to efficiently support the growing bandwidth needs of enterprise and client systems.
Although PCIe basically functions as an interconnect linking motherboard-mounted peripherals like graphics or wireless network cards, its suitable high-bandwidth bus technology is ideal for today's fastest SSDs.
Flash at PCIe Speeds
One great feature of PCIe is its direct connection to the CPU. This streamlines the storage device stack, completely eliminating much of the complexity and layers present in SATA protocol stacks. As a result, NVMe delivers 2X the performance of SAS 12 Gb/s, and 4-6X of SATA 6 Gb/s in random workloads. For sequential workloads, NVMe delivers 2X the performance of SAS 12 Gb/s, and 4X of SATA 6 Gb/s.
(Source: “All About M.2 SSDs,” Storage Networking Industry Association [SNIA]. 2014.)
By taking advantage of PCIe, NVMe reduces latency, enables faster access, and delivers higher Input/Output per Second (IOPS) compared with other interfaces designed for mechanical storage devices. NVMe also offers performance across multiple cores for quick access to critical data, scalability for current and future performance and support for standard security protocols.
ATP NVMe Solutions: Built for the Fast Lane
ATP Electronics responds to the clamor for acceleration in enterprise and mission-critical environments with its NVMe-based M.2 2280 SSDs. Designed for a PCIe 3.0 x4 interface and complying with NVMe 1.2 specifications, ATP NVMe SSDs boast up to 1 TB memory capacity, sequential read speed of up to 2,540 MB/s, and sequential write speeds up 1,100 MB/s. ATP NVMe solutions also integrate 3D NAND MLC technology, enabling higher memory capacity, lower cost per bit, and increased longevity.
HDD vs SATA vs. NVMe
The table below shows a comparison of HDD, SATA SSD and NVMe SSD. NVMe, as a protocol designed specifically for PCIe SSDs, delivers better performance than PCIe and SATA SSDs using the AHCI protocol.
Table 1. Comparison of NVMe and SATA 6 Gb/s.
The following table compares bandwidths by generation. ATP's M.2 NVMe SSD is designed for a PCIe 3.0 interface and fits in a x4 lane, delivering up to 7.9 Gb/s transfer rate and up to 3.9 GB/s throughput.
Table 2. Bandwidth Comparison of PCIe and SATA.
The following figure shows that while SATA delivers 4X the performance of mechanical HDDs, NVMe trumps SATA with 5X the sequential read and write performance, enabling the fastest performance and maximum theoretical speeds over any other storage protocol.
Figure 1. Maximum Theoretical Speed Comparison of HDD, SATA SSD and ATP NVMe SSD
- |
- +1 赞 0
- 收藏
- 评论 0
本文由涂抹转载自ATP Blogs,原文标题为:SATA vs. NVMe, Is it time for NVMe ?,本站所有转载文章系出于传递更多信息之目的,且明确注明来源,不希望被转载的媒体或个人可与我们联系,我们将立即进行删除处理。
相关研发服务和供应服务
相关推荐
ATP‘s Power Loss Protection Just Got Smarter with MCU-based SSD Design
ATP customers want constant assurance that power loss events will not cause massive downtime or lost data that could affect business operations and lead to higher operating costs. The MCU intelligently monitors sudden power failure conditions from a glitch to a surge or a complete outage...
The ATP Gym and Coach System: Exercising SSDs to Ensure Total Fitness
With the Gym and Coach system, ATP has dramatically improved RDT and the initialization process for functional test details. By making industrial SSDs undergo a lot of “painful” exercises through stringent testing, ATP makes sure that customers have everything to gain by receiving the most robust, reliable and enduring flash storage products for their applications.
The Benefits of Pseudo SLC (pSLC) Flash with Customizable Endurance
ATP’s pSLC-based embedded SSDs with customizable endurance offer the optimum balance cost-performance-endurance balance. They address the diversity of use cases across different industries, allowing ATP to tailor-fit according to different workloads and applications.
PCIe® Gen 3 NVMe M.2 2280 / 2242 / 2230 SSD The Global Leader in Specialized Storage and Memory Solutions
型号- FT960GP38AG8BPC,N750PI,FT480GP38ANDBFC,FT120GP38AG8BPC,FT480GP38AG8BPC,FT480GP34ANDBFC,FT960GP38AG8BPI,FT240GP38AG8BPC,FT120GP38ANDBFC,N700PC,FT240GP38AG8BPI,FT120GP38AG8BPI,N600SC,N650SI,N600VI,FT960GP34ANDBFC,N700PI,FT240GP38ANDBFC,N600SI,FT120GP34ANDBFC,N650SC,FT240GP34ANDBFC,N600VC,FT480GP38AG8BPI
Bringing 3D TLC NAND Flash Endurance and Reliability Closer to SLC/MLC
The advent of 3D NAND technology allowed for more relaxed lithography and broke planar NAND limitations. By stacking cells vertically, 3D NAND flash increased drive reliability and endurance. ATP breaks new ground with its new 3D TLC-based SATA SSDs.
PCIe® Gen 3 NVMe M.2 2280 / 2242 / 2230 SSD
型号- FT960GP38AG8BPC,N750PI,FT480GP38ANDBFC,FT120GP38AG8BPC,FT480GP38AG8BPC,FT480GP34ANDBFC,FT960GP38AG8BPI,FT240GP38AG8BPC,FT120GP38ANDBFC,N700PC,FT240GP38AG8BPI,FT120GP38AG8BPI,N600SC,N650SI,N600VI,FT960GP34ANDBFC,N700PI,FT240GP38ANDBFC,N600SI,FT120GP34ANDBFC,N650SC,FT240GP34ANDBFC,N600VC,FT480GP38AG8BPI
ATP‘s PCB Assembly Solderability Validation Tests
ATP’s PCB assembly validation tests are part of the many reliability and endurance tests developed and performed by ATP to ensure strict compliance to the highest standards of quality. ATP is committed to delivering high-performance and high-endurance NAND flashes storage products to ensure the best value for the total cost of ownership (TCO).
DRAM-less Value Line SSDs Available in I-Temp/C-Temp Operable Models
型号- A600VC SERIES,N600VI,A600VI,A600VI SERIES,A600VC,N600VC SERIES,N600VC,N600VI SERIES
ATP Launches Its Tiniest PCIe Gen3 x4 NVMe™ SSDs in M.2 Type 1620 HSBGA Package
ATP Electronics, the global leader in specialized storage and memory solutions, has announced the launch of its tiniest NVMe flash storage offering: the N700 Series PCIe® Gen3 x4 NVMe™ solid state drives (SSDs, which are available as M.2 Type 1620 heatsink ball-grid array (HSBGA) package.
PCIe® Gen 4 NVMe M.2 2280 SSD The Global Leader in Specialized Storage and Memory Solutions
型号- FT3T84P48APHBFC,FT1T92P48APHBYC,FT240GP48APHBPC,FT240GP48APHBPI,FT960GP48APHBYI,N651SI,AF960GSTJA-HBAXX,FT1T92P48APHBPI,N601VI,FT480GP48APHBFI,FT3T84P48APHBFI,FT1T92P48APHBPC,FT480GP48APHBFC,FT960GP48APHBYC,N651SC,N601VC,FT960GP48APHBFC,FT240GP48APHBSC,FT960GP48APHBFI,FT480GP48APHBYI,FT240GP48APHBSI,AF240GSTJA-HBBXX,AF1T92STJA-HBBXX,AF480GSTJA-HBBXX,FT1T92P48APHBYI,FT480GP48APHBPI,FT480GP48APHBPC,FT1T92P48APHBFC,FT960GP48APHBSI,FT1T92P48APHBFI,FT960GP48APHBSC,FT3T84P48APHBYC,FT240GP48APHBFC,FT480GP48APHBYC,AF960GSTJA-HBBXX,FT240GP48APHBFI,FT240GP48APHBYC,FT240GP48APHBYI,FT480GP48APHBSI,N751PI,FT480GP48APHBSC,FT3T84P48APHBYI,FT960GP48APHBPI,N601SC,FT1T92P48APHBSI,AF1T92STJA-HBAXX,AF240GSTJA-HBAXX,FT960GP48APHBPC,AF480GSTJA-HBAXX,FT1T92P48APHBSC
A750/A650, N750/N650 Series: New-Generation 3D TLC SSDs Deliver Near-SLC/MLC Endurance
型号- N750,A750PI,N750 MODEL,N750PI,N650 MODEL,N650,A650 SERIES,N650 SERIES,A750 SERIES,A650,A750,N650SI,N750 SERIES,N650SC,A650SI,A650SC
SSD End-of-Life Validation Test: Ensuring Reliability, Endurance and Retention From 0% to 100% and Beyond EOL
ATP’s EOL Validation Test is just one of the many reliability and endurance tests developed and performed by ATP to ensure strict compliance to the highest standards of quality. ATP is committed to delivering high-performance and high-endurance NAND flashes storage products to ensure the best value for a total cost of ownership (TCO).
How Over-provisioning Improves NAND-based ATP SSDs’Endurance and Performance
Over-provisioning (OP) provides additional space for garbage collection process of solid-state drives (SSDs), aids in improving the performance, and increases their endurance, hence contributing to extended drive life. This article ATP provides an in-depth view of OP and how its size affects the terabytes written (TBW), along with random write performance of SSDs.
ATP Unveils Industry’s Highest-Endurance Industrial SSD with 125℃ Operating Temperature Range
ATP Electronics proudly announces the launch of the N751Pi PCIe®Gen4 NVMe M.2 2280 SSDs, which set a new industry standard with unmatched endurance among industrial solid state drives (SSDs) configured with pseudo single-level cell (pSLC) NAND.
电子商城
现货市场
服务
可烧录MCU/MPU,EPROM,EEPROM,FLASH,Nand Flash, PLD/CPLD,SD Card,TF Card, CF Card,eMMC Card,eMMC,MoviNand, OneNand等各类型IC,IC封装:DIP/SDIP/SOP/MSOP/QSOP/SSOP/TSOP/TSSOP/PLCC/QFP/QFN/MLP/MLF/BGA/CSP/SOT/DFN.
最小起订量: 1 提交需求>
拥有IC烧录机20余款,100余台设备,可以烧录各种封装的IC;可烧录MCU、FLASH、EMMC、NAND FLASH、EPROM等各类型芯片,支持WIFI/BT模组PCBA烧录、测试。
最小起订量: 1 提交需求>
登录 | 立即注册
提交评论