



SSD7580B
PCIe 4.0 x16 8-Port U.2 NVMe RAID Adapter
HighPoint’s Rocket 7528D PCIe Gen4 x16 NVMe RAID Adapter is a direct replacement for the SSD7580B and SSD7580C. Like it’s predecessors, the Rocket 7528D’s four SlimSAS SFF-8654 -ports can directly host up to 8 U.2 or U.3 NVMe SSDs in RAID 0 1 and 10 configurations via a range of cabling solutions. However, the product utilizes our second-generation PCIe Gen4 Switching architecture and sports a range of new features, such as an industry standard LP-MD2 form factor, customizable firmware, UBM and VPP backplane support, FRU compliance (field replacement unit), OPAL SED support, and a suite of integrated hardware sensors designed to actively monitor and record the operational status of the hosted NVMe media and Switch Chipset.
The SSD7580B is the industry’s first 8-Channel PCIe Gen4 U.2 NVMe RAID Adapter to feature true Hot-Plug and Hot-Swap capability. The dedicated PCIe 4.0 x16 host interface and 8 independent device channels are capable of supporting over 100TB of NVMe storage, at speeds up to 28,000MB/s! The compact, half-height form factor can be easily installed into nearly any industry standard PC-based server, workstation and rackmount platform running Windows and Linux based operating systems.
The SSD7580’s integrated Hot-Plug and Hot-Swap support enable customers to add or remove one or more SSDs on the fly, as necessity demands. This includes RAID and single-disk configurations. The AIC reserves dedicated resources for each NVMe device channel at bootup, and will notify the host OS of any subsequent changes in real time – no reboot required!
A wide selection of Flexible Cabling Options is available for the SSD7580B, which enable the controller to host both RAID, non-RAID, and mixed configurations of NVMe SSDs, via SFF-8654, SFF-8643, SFF-8611 OCuLink and MCIO 8i connectivity.
Key Features
Ultra-High Density NVMe RAID Solution
Dedicated PCIe 4.0 x16 host interface
High-Performance PCIe Gen4 Switching Technology: x16 lanes of dedicated upstream & x4 lanes of downstream bandwidth for each device channel
8x Dedicated U.2 NVMe Device Channels
Supports U.2/U.3 NVMe SSDs of any capacity or performance level
Supports RAID 0, 1, 10 and Single-Disk Configurations
True NVMe Hot-Plug & Hot-Swap Capability
Comprehensive Management Suite with Real-Time SSD TBW and temperature monitoring solution
For Linux and Windows platforms
Software and Documents



NOTE: Please email to GeneralSales@highpoint-tech.com for more information about upgrading to latest software and documents.
Windows | Windows 11 ,10; Windows Server 2022, 2019, 2016; Microsoft Hyper-V; Only supports 64 bit operating system. |
Linux | RHEL/Debian/Ubuntu/Fedora/Proxmox/Rocky Linux(Linux kernel 3.10 and later) Only supports 64 bit operating system. |
System Requirements | |
Mac Platforms: | Not supported |
PC Platforms: | Any PC Systems or Motherboard with an industry standard PCIe x16 physical Slot (Bifurcation is not required). Note: PCIe 4.0 required for maximum performance. |
Secure Boot(PC platforms) | Windows: Support Secure Boot Disable and Enable(Please download the UEFI driver corresponding to Secure Boot on the software download page) |
Linux:Support Secure Boot disable | |
Hotplug | Yes |
Cooling System | Anodized Aluminum Heat sink with built-in Low-Noise fan |
NVMe Configurations | |
RAID Support | Single, RAID 0, 1, 10 |
TRIM RAID Support | Single, RAID 0, 1, 10 |
Specifications
FAQ
Q1: How are HighPoint’s SSD7000 series different from other, more common NVMe controllers?
Q2: SSD7000 controller is only using ½ of the PCIe bandwidth
Q3: Can PCIe 4.0 NVMe RAID controllers be used with motherboards that only support PCIe 3.0?
Q4: What is the difference between the terms “hot-swap”, “hot-plug”, and “hot-replaceable”?
Q6: Do HighPoint RAID controllers support mixed drive configurations?
Q7: Are there any known compatibility issues with this product?
Q8: Can HighPoint SSD7000 or SSD7500 support VMware ESXi/TrueNAS/FreeBSD?
Q9: HighPoint RAID Partition Loss Caused by Windows 11 24h2 Installation Bug
Q10: Why File Explorer doesn't perform as high as a single NVMe when transferring data in Windows?
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