Dual M.2 PCIe SSD Adapter Card - x8 / x16 Dual NVMe or AHCI M.2 SSD to PCI Express 3.0 - M.2 NGFF PCIe (M-Key) Compatible - Supports 2242, 2260, 2280 - JBOD - Mac & PC - TAA
$183.46
PCI Express 3.0 M.2 SSD Adapter Card | For PCIe NVMe and PCIe AHCI M.2 SSDs
Specifications & Compliance
- UPC
- 065030886390
- Brand
- StarTech.com
- Included in Package
- 1 - x8 PCI Express to Dual M.2 PCIe SSD Adapter, 1 - Low-Profile Bracket, 1 - Full-Profile Bracket (Pre-installed), 2 - SSD Standoff and Installation Screws, 1 - Quick-Start Guide
- Shipping (Package) Weight
- 7.1 oz [200 g]
- Weight of Product
- 3.1 oz [88 g]
- Product Length
- 6.3 in [15.9 cm]
- Product Width
- 0.6 in [16 mm]
- Product Height
- 2.7 in [69 mm]
- Package Depth
- 6.2 in [15.8 cm]
- Package Width
- 8.6 in [21.9 cm]
- Package Height
- 1.9 in [49 mm]
- Color
- Red
- Warranty
- 2 Years
- Connector 1
- IDC (2-Pin)
- Connector 1 (Quantity)
- 2
- Package Quantity
- 1
- Connector 2
- M.2 M-Key (PCIe, AHCI / NVMe)
- Connector 2 (Quantity)
- 2
- Operating Temperature
- 0°C to 70°C (32°F to 158°F)
- Storage Temperature
- -25°C to 70°C (-13°F to 158°F)
- Humidity
- 15% ~ 90% RH
- Chipset ID
- ASMedia - ASM2824
- Special Notes
- NVMe SSDs require drivers provided by the manufacture of the drive or may be natively provided by the OS (Windows®️ 8 and later - Mac OS 10.10.3 and later). Earlier OS versions do not have native NVMe support.
- Input Voltage
- 12V DC
- Output Voltage
- 12V DC
- MTBF
- 3336103 hours
- Interface
- PCI Express x8
- Bus Type
- PCI Express
- Host Connector 1 (Quantity)
- 1
- SATA Type and Rate
- PCI Express 3.0 (8 Gbps)
- Compatible Drive Types
- M.2 (PCIe, AHCI, M-Key, NGFF), M.2 NVMe
- Number of Drives
- 2
- Drive Size
- 22m - M.2 NGFF
- Drive Installation
- Fixed
- RAID
- No
- Insertion Rating
- 60 cycles
- Hot Swap Capability
- No
- Supported Drive Height(s)
- 2242, 2260, 2280
Questions & Answers
What is PCIe Bifurcation?
What is PCIe Bifurcation? PCIe Bifurcation is a feature that allows the division of data lanes in a PCIe slot. It enables a larger slot, such as PCIe x16, to be split into multiple smaller lanes, such as PCIe x8 or x4, depending on motherboard support.
What are the options for implementing PCIe Bifurcation?
What are the options for implementing PCIe Bifurcation? There are generally two options for implementing PCIe Bifurcation: A. Using a PCIe card with a special bridge chip that handles the lane split. This option often results in greater complexity and higher cost. B. Utilizing a motherboard with native support for PCIe Bifurcation, which eliminates the need for additional bridge chips. Do all motherboards support PCIe Bifurcation? No, not all motherboards or BIOS/UEFI versions support PCIe Bifurcation. It's essential to refer to the documentation for the specific motherboard or system to determine if PCIe Bifurcation is supported and how it can be configured. How can I find out if my motherboard supports PCIe Bifurcation? You can consult the documentation provided with your motherboard or check the manufacturer's website for information on PCIe Bifurcation support. Additionally, you can explore the BIOS/UEFI settings to see if there are options for configuring PCIe Bifurcation.
How does PCIe Bifurcation affect speed?
How does PCIe Bifurcation affect speed? PCIe Bifurcation does not affect the overall speed of the connection. It simply allows a single larger slot to act like multiple smaller slots, facilitating the use of advanced expansion cards without additional PCIe bridge chips.
What are the benefits of PCIe Bifurcation?
What are the benefits of PCIe Bifurcation? PCIe Bifurcation enables the use of multi-drive NVMe M.2 expansion cards, as each drive requires its own PCIe lane to function correctly. It also allows for the utilization of certain expansion cards without the need for additional bridge chips, reducing complexity and cost. Multi-drive NVMe M.2 expansion cards typically require each drive to have its own PCIe x4 lane. PCIe Bifurcation enables a single PCIe x8 slot to be split into two PCIe x4 lanes, allowing each drive to function independently.




