2-Port USB 3.1 (10Gbps) and eSATA PCIe Card - 1x USB-A and 1x eSATA - TAA

$35.99

Add one USB 3.2 Gen 2 (10Gbps) port and one eSATA (6Gbps) port to your computer, through a PCI Express slot

SKU: PEXUSB311A1E Category:

Specifications & Compliance

UPC
065030875059
Brand
StarTech.com
Included in Package
1 - controller card, 1 - low-profile bracket, 1 - quick-start guide
Shipping (Package) Weight
4.3 oz [122 g]
Weight of Product
1.6 oz [46.0 g]
Product Length
3.7 in [93.0 mm]
Product Width
3.1 in [80.0 mm]
Product Height
3.9 in [100.0 mm]
Package Depth
6.7 in [17 cm]
Package Width
5.6 in [14.2 cm]
Package Height
1.2 in [30 mm]
Color
Red
Warranty
2 Years
Connector 1
PCI Express x4
Connector 1 (Quantity)
1
Package Quantity
1
Connector 2
eSATA (7-Pin)
Connector 2 (Quantity)
1
Operating Temperature
+5°C to +50°C (+41°F to +122°F)
Storage Temperature
-25°C to +70°C (-13°F to 158°F)
Humidity
15~90% RH, Non-condensing
Maximum Data Transfer Rate
USB 3.1 10Gbps<br>eSATA 6Gbps
Chipset ID
ASMedia - ASM2142<br> ASMedia - ASM1351
Connector 3
USB-A (10Gbps, 4.5W)
Connector 3 (Quantity)
1
Number of Ports
2
Interface
USB 3.2 Gen 2 & eSATA
Bus Type
PCI Express
Type and Rate
USB 10Gbps
System and Cable Requirements
Available PCI Express slot
Card Type
Standard Profile (LP bracket incl.)
UASP Support
Yes
Port Style
Integrated on Card
Port Multiplier
No

Questions & Answers

Why does my USB device stop working after my computer wakes back up from sleep mode in Windows?
If the USB device does not work after your computer has been in extended hibernation, it is likely that Windows has automatically turned off the USB Root hub to save power. The steps below outline how to configure the USB root hub to stay on during hibernation, to prevent this from happening. Windows 10 / 8 On your keyboard, press the Windows key + X and select Control Panel . Click Hardware and Sound , then click Power Options . Click Change plan settings for the plan you want to change. Click Change advanced power settings . Click the plus sign (+) next to “USB settings” and “USB selective suspend setting” to expand the options and change the setting to Disabled . Click OK to apply the setting. Note : You may need to disconnect and re-connect your USB device after applying these settings to re-establish the connection. Windows 7 / Vista Click the Start button and select Control Panel . Click Hardware and Sound , then click Power Options . Click Change plan settings for the plan you want to change. Click Change advanced power settings . Click the plus sign (+) next to “USB settings” and “USB selective suspend setting” to expand the options and change the setting to Disabled . Click OK to apply the setting. Note : You may need to disconnect and re-connect your USB device after applying these settings to re-establish the connection. Windows XP On your desktop, right-click the My Computer icon and select Properties . Click the Device Manager tab. Expand Universal Serial Bus controllers by clicking the arrow to the left of it. Right-click the first USB Root Hub device and select Properties . Click the Power Management tab. Clear the box next to Allow the computer to turn off this device to save power . Click OK to apply the setting. Repeat steps 4-7 for any remaining devices in the Universal Serial Bus Controllers section with “ Root Hub ” in the name. Note : You may need to disconnect and re-connect your USB device after applying these settings to re-establish the connection.

What do I do if I am not achieving USB 3.1 speeds with my USB 3.1 device?
If your setup components support USB 3.1 but you are experiencing slower transfer speeds than you expected, consider the following: A USB host connection with multiple USB 3.1 ports might not be able to support 10Gbps on each port simultaneously. The type of port on a device does not determine whether the device is capable of USB 3.1 speeds. A USB-C port might not support USB 3.1 speeds, while USB-A and USB-B ports might support USB 3.1 speeds. Any other devices that you include in your setup, such as an older hard drive in a USB 3.1 enclosure, might create a point of congestion and slow down transfer speeds. To confirm the functionality of your USB host connection, its ports, and any other devices in your setup, refer to the information provided by the manufacturer. Note : USB 3.1 is also known as USB 3.1 Gen 2 (10Gbps). Devices that support USB 3.1 should have the USB 3.1 symbol on them. If the USB 3.1 symbol does not appear on your USB source or device, refer to the information provided by the manufacturer to confirm whether the USB source or device support USB 3.1.

Is this device compatible with optical drives such as CD-ROM, DVD-ROM, and Blu-ray drives?
Yes, this device is compatible with CD-ROM, DVD-ROM, and Blu-ray drives that use the ATA Packet Interface (ATAPI) protocol. Explanation: This device supports the ATA Packet Interface (ATAPI), which is the required communication protocol for most optical drives, including CD-ROM, DVD-ROM, and Blu-ray drives. Any optical drive that uses ATAPI will function with this device. Optical drives that do not use the ATAPI standard are not supported. Compatibility depends on the optical drive adhering to ATAPI specifications.

What are the capabilities of USB 3.2 and USB4, and how do they differ from earlier USB standards?
USB 3.2 and USB4 are newer USB standards that provide higher data transfer speeds, improved bandwidth management, and expanded compatibility with modern devices and display technologies. USB 3.2 supports transfer speeds up to 20Gbps, while USB4 supports transfer speeds up to 40Gbps and adds advanced features such as Thunderbolt 3 compatibility on supported devices. Explanation: USB (Universal Serial Bus) standards have evolved over time to support faster data transfer speeds, increased power delivery, and improved compatibility across computers, storage devices, docking stations, displays, and peripherals. The USB naming convention has also changed over multiple revisions, which can cause confusion between older and current terminology. The following table summarizes common USB standards and updated naming conventions: Current USB Name Previous Naming Maximum Transfer Speed USB 2.0 USB 2.0 480Mbps USB 3.2 Gen 1 USB 3.0 / USB 3.1 Gen 1 5Gbps USB 3.2 Gen 2 USB 3.1 / USB 3.1 Gen 2 10Gbps USB 3.2 Gen 2x2 USB 3.2 Gen 2x2 20Gbps USB4 USB4 20Gbps Up to 20Gbps USB4 USB4 40Gbps Up to 40Gbps USB4 Version 2.0 Up to 80 Gbps (or asymmetric 120 Gbps) USB4 version 2.0 devices can support even higher bandwidths up to 80Gbps or 120Gbps in specific asymmetric configurations, depending on device support and certification. USB transfer performance depends on all connected components supporting the same standard, including: Host computer or controller USB cable Connected device or peripheral Adapters or docking stations in the connection path USB connector types and USB standards are separate specifications. For example: USB-C is a connector type. USB 3.2 and USB4 are performance and protocol standards. A USB-C connector can support different USB standards depending on the device design. USB4 introduces additional capabilities beyond raw transfer speed, including: Dynamic bandwidth allocation for video and data Support for multiple display protocols Compatibility with Thunderbolt 3 devices on supported hardware Improved tunneling for PCIe and DisplayPort traffic USB standards are generally backward compatible, but some limitations apply: USB-C ports require adapters to connect to USB-A or USB-B devices. USB 3.x and USB4 devices connected to older USB ports operate at the lower supported speed. Devices requiring higher power delivery or bandwidth may not function correctly on older USB standards. USB-B SuperSpeed connectors are not physically compatible with USB 2.0 USB-B ports. For maximum performance and compatibility, verify that the host device, cable, and peripheral all support the same USB standard and required feature set.

What is required to transfer data at USB 10Gbps speeds?
To achieve USB 10Gbps data transfer speeds, all components in the connection must support USB 10Gbps performance, including the host port, USB cable, connected device, and any internal subcomponents. Explanation: USB 10Gbps performance requires end-to-end support across the entire connection path, including: The USB host port on the computer or docking station The USB cable The connected USB device Any internal components that affect data throughput, such as storage drives inside a hard drive docking station USB 10Gbps is the current USB-IF naming convention for the specification previously called USB 3.1 Gen 2 and USB 3.2 Gen 2x1. If any component in the connection only supports lower USB performance levels, the entire connection will operate at the maximum speed supported by the slowest component. To confirm compatibility, check the technical specifications for the USB host port, cable, and connected device. Some devices may display USB SuperSpeed 10Gbps branding or equivalent USB 10Gbps markings.