Validated Platforms#
This release family of NVIDIA vGPU software provides support for several NVIDIA GPUs on validated server hardware platforms, XenServer hypervisor software versions, and guest operating systems. It also supports the version of NVIDIA CUDA Toolkit that is compatible with R595 drivers.
Supported NVIDIA GPUs and Validated Server Platforms#
This release of NVIDIA vGPU software on XenServer provides support for several NVIDIA GPUs running on validated server hardware platforms.
For a list of validated server platforms, refer to NVIDIA GRID Certified Servers.
The supported products for each type of NVIDIA vGPU software deployment depend on the GPU.
GPUs Based on the NVIDIA Blackwell Architecture#
Note
GPUs based on the NVIDIA Blackwell architecture support SR-IOV.
The manual placement of vGPUs on GPUs in equal-size mode is not supported on GPUs based on the NVIDIA Blackwell architecture.
GPU |
Mixed vGPU Configuration - XenServer Releases |
|||||
|---|---|---|---|---|---|---|
Frame Buffer Size (Mixed-Size Mode) |
Series |
Time-Sliced NVIDIA vGPU on Single-Instance GPU[4] |
1:1 MIG-Backed NVIDIA vGPU[5] |
Time-Sliced, MIG-Backed NVIDIA vGPU |
GPU Pass Through |
|
NVIDIA RTX PRO 6000 Blackwell Server Edition |
N/A |
XenServer 9, 8.4 |
|
N/A |
N/A |
|
NVIDIA RTX PRO 6000 Blackwell Server Edition liquid cooled |
N/A |
XenServer 9, 8.4 |
|
N/A |
N/A |
|
NVIDIA RTX PRO 4500 Blackwell Server Edition |
N/A |
XenServer 9, 8.4 |
|
N/A |
N/A |
|
GPUs Based on the NVIDIA Ada Lovelace Architecture#
Note
GPUs based on the NVIDIA Ada Lovelace architecture support SR-IOV.
The manual placement of vGPUs on GPUs in equal-size mode is not supported on GPUs based on the NVIDIA Ada Lovelace architecture.
GPU |
Mixed vGPU Configuration - XenServer Releases |
|||
|---|---|---|---|---|
Frame Buffer Size (Mixed-Size Mode) |
Series |
NVIDIA vGPU |
GPU Pass Through |
|
NVIDIA L40S |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA L40 |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA L20 |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA L20 liquid cooled |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA L4 |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA L2 |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA RTX 6000 Ada |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA RTX 5880 Ada |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA RTX 5000 Ada |
N/A |
XenServer 9, 8.4 |
|
|
GPUs Based on the NVIDIA Ampere Architecture#
Note
GPUs based on the NVIDIA Ampere architecture support SR-IOV.
The manual placement of vGPUs on GPUs in equal-size mode is not supported on GPUs based on the NVIDIA Ampere architecture.
GPU |
Mixed vGPU Configuration - XenServer Releases |
|||
|---|---|---|---|---|
Frame Buffer Size (Mixed-Size Mode) |
Series |
NVIDIA vGPU |
GPU Pass Through |
|
NVIDIA A40[6] |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA A16 |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA A10 |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA A2 |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA RTX A6000[6] |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA RTX A5500[6] |
N/A |
XenServer 9, 8.4 |
|
|
NVIDIA RTX A5000[6] |
N/A |
XenServer 9, 8.4 |
|
|
GPUs Based on the NVIDIA Turing Architecture#
Note
SR-IOV and the manual placement of vGPUs on GPUs in equal-size mode are not supported on GPUs based on the NVIDIA Turing™ architecture.
Support for a Mixture of Time-Sliced vGPU Types on the Same GPU#
XenServer supports a mixture of time-sliced vGPUs with the same amount of frame buffer from different virtual GPU series on the same physical GPU. A-series, B-series, and Q-series vGPUs with the same amount of frame buffer, for example, A40-2B and A40-2Q, can reside on the same physical GPU simultaneously. However, vGPUs with different amounts of frame buffer are not supported on the same GPU.
For example, the following combinations of vGPUs are not supported on the same GPU:
A40-2Q and A40-4Q
A40-2B and A40-4Q
Switching the Mode of a GPU that Supports Multiple Display Modes#
Some GPUs support display-off and display-enabled modes but must be used in NVIDIA vGPU software deployments in display-off mode.
The GPUs listed in the following table support multiple display modes. As shown in the table, some GPUs are supplied from the factory in display-off mode, but other GPUs are supplied in a display-enabled mode.
GPU |
Mode as Supplied from the Factory |
|---|---|
NVIDIA A40 |
Display-off |
NVIDIA L40 |
Display-off |
NVIDIA L40S |
Display-off |
NVIDIA L20 |
Display-off |
NVIDIA L20 liquid cooled |
Display-off |
NVIDIA RTX 5000 Ada |
Display enabled |
NVIDIA RTX 6000 Ada |
Display enabled |
NVIDIA RTX A5000 |
Display enabled |
NVIDIA RTX A5500 |
Display enabled |
NVIDIA RTX A6000 |
Display enabled |
NVIDIA RTX PRO 6000 Blackwell Server Edition |
Display-off |
NVIDIA RTX PRO 6000 Blackwell Server Edition liquid cooled |
Display-off |
A GPU that is supplied from the factory in display-off mode, such as the NVIDIA A40 GPU, might be in a display-enabled mode if its mode has previously been changed.
To change the mode of a GPU that supports multiple display modes, use the displaymodeselector tool, which you can request from the NVIDIA Display Mode Selector Tool page on the NVIDIA Developer website.
Note
Only the GPUs listed in the table support the displaymodeselector tool. Other GPUs that support NVIDIA vGPU software do not support the displaymodeselector tool and, unless otherwise stated, do not require display mode switching.
Hypervisor Software Releases#
Reversion to the XenServer Name for Hypervisor Software#
Citrix has reverted the name of its hypervisor software for releases after Citrix Hypervisor 8.2 to XenServer.
For more information, visit the XenServer website.
Note
The name of the Citrix virtual desktop software product and the format of its release numbers remain unchanged.
Supported XenServer Releases#
This release family of NVIDIA vGPU software is supported on the XenServer releases listed in the table.
Note
Support for XenServer requires the Premium Edition (previously Enterprise Edition) of XenServer. For details, see Licensing in the XenServer documentation.
Cumulative update releases for a base release of XenServer are compatible with the base release and can also be used with this version of NVIDIA vGPU software unless expressly stated otherwise.
Software |
Releases Supported |
Notes |
|---|---|---|
Since 20.2: XenServer 9 |
XenServer 9 and all updates to XenServer 9. |
This release supports XenMotion with vGPU on suitable GPUs as listed in XenMotion with vGPU Support. The Virtual GPU Manager for this release is supplied only as a Supplemental Pack. No RPM package is supplied for this release. |
XenServer 8.4 |
XenServer 8.4 and all updates to XenServer 8.4. |
This release supports XenMotion with vGPU on suitable GPUs as listed in XenMotion with vGPU Support. |
Supported Virtual Desktop Software Releases#
This release supports only the virtual desktop software releases listed in the table. Except where otherwise stated, HDX 3D Pro mode is supported but not required.
Software |
Releases Supported |
|---|---|
Citrix Virtual Apps and Desktops |
Note All versions supported by earlier NVIDIA vGPU software 20 releases are also supported. Versions 7 2511, 7 2507, 7 2503, 7 2411, 7 2407, 7 2402, 7 2311, 7 2308, 7 2305, 7 2303, 7 2212, 7 2209, 7 2206, 7 2203, 7 2112, 7 2109, 7 2106, 7 2103, 7 2012, 7 2009, 7 2006, 7 2003, 7 1912, 7 1909, 7 1906, and 7 1903 |
XenApp/XenDesktop |
Version 7.15 Note Version 7.15 is supported only in HDX 3D Pro mode. HDX 3D Pro mode is required to ensure that the NVIDIA GPU can be used unrestricted. |
Guest OS Support#
NVIDIA vGPU software supports several Windows releases and Linux distributions as a guest OS. The supported guest operating systems depend on the hypervisor software version.
Note
Use only a guest OS release that is listed as supported by NVIDIA vGPU software with your virtualization software. To be listed as supported, a guest OS release must be supported not only by NVIDIA vGPU software, but also by your virtualization software. NVIDIA cannot support guest OS releases that your virtualization software does not support.
NVIDIA vGPU software supports only 64-bit guest operating systems. No 32-bit guest operating systems are supported.
Windows Guest OS Support#
NVIDIA vGPU software supports only the 64-bit Windows releases listed as a guest OS on XenServer. The releases of XenServer for which a Windows release is supported depend on whether NVIDIA vGPU or pass-through GPU is used.
Note
If a specific release, even an update release, is not listed, it’s not supported.
XenMotion with vGPU is supported on supported Windows guest OS releases.
Windows Guest OS Support in Release 20.2#
Windows Server 2025
Windows Server 2022
Windows 11 25H2 and all Windows 11 releases supported by Microsoft up to and including this release
Windows 10 2022 Update (22H2) and all Windows 10 releases supported by Microsoft up to and including this release
Note
The hardware-accelerated GPU scheduling feature introduced in Windows 10 May 2020 Update (2004) is not supported on GPUs based on the Maxwell architecture and is supported only in pass-through mode on GPUs based on later architectures.
Windows Guest OS Support in Release 20.1#
Windows Server 2025
Windows Server 2022
Windows 11 25H2 and all Windows 11 releases supported by Microsoft up to and including this release
Windows 10 2022 Update (22H2) and all Windows 10 releases supported by Microsoft up to and including this release
Note
The hardware-accelerated GPU scheduling feature introduced in Windows 10 May 2020 Update (2004) is not supported on GPUs based on the Maxwell architecture and is supported only in pass-through mode on GPUs based on later architectures.
Windows Guest OS Support in Release 20.0#
Windows Server 2025
Windows Server 2022
Windows 11 25H2 and all Windows 11 releases supported by Microsoft up to and including this release
Windows 10 2022 Update (22H2) and all Windows 10 releases supported by Microsoft up to and including this release
Note
The hardware-accelerated GPU scheduling feature introduced in Windows 10 May 2020 Update (2004) is not supported on GPUs based on the Maxwell architecture and is supported only in pass-through mode on GPUs based on later architectures.
Linux Guest OS Support#
NVIDIA vGPU software supports only the Linux distributions listed as a guest OS on XenServer. The releases of XenServer for which a Linux release is supported depend on whether NVIDIA vGPU or pass-through GPU is used.
Note
If a specific release, even an update release, is not listed, it’s not supported.
XenMotion with vGPU is not supported on any Linux guest OS release.
Rocky Linux releases that are compatible with supported Red Hat Enterprise Linux releases are also supported as a guest OS.
Linux Guest OS Support in Release 20.2#
Guest OS |
Wayland Support |
X11 Support |
|---|---|---|
Deprecated: CentOS Linux 8 (2105) |
×× |
✓✓ |
Red Hat Enterprise Linux 9.8 |
×! |
✓! |
Red Hat Enterprise Linux 9.7 |
×! |
✓! |
Red Hat Enterprise Linux 8.10 |
×! |
✓! |
Ubuntu 24.04 LTS |
✓× |
✓✓ |
Ubuntu 20.04 LTS |
×× |
✓✓ |
✓✓ Supported by NVIDIA vGPU software and enabled by default in the OS.
✓× Supported by NVIDIA vGPU software but disabled by default in the OS and must be enabled.
✓! Supported by NVIDIA vGPU software but requires the alternative display server protocol to be disabled in the OS.
×× Not supported by NVIDIA vGPU software or the OS.
×! Not supported by NVIDIA vGPU software and must be disabled in the OS.
Linux Guest OS Support in Release 20.1#
Guest OS |
Wayland Support |
X11 Support |
|---|---|---|
Deprecated: CentOS Linux 8 (2105) |
×× |
✓✓ |
Red Hat Enterprise Linux 9.7 |
×! |
✓! |
Red Hat Enterprise Linux 8.10 |
×! |
✓! |
Ubuntu 24.04 LTS |
✓× |
✓✓ |
Ubuntu 20.04 LTS |
×× |
✓✓ |
✓✓ Supported by NVIDIA vGPU software and enabled by default in the OS.
✓× Supported by NVIDIA vGPU software but disabled by default in the OS and must be enabled.
✓! Supported by NVIDIA vGPU software but requires the alternative display server protocol to be disabled in the OS.
×× Not supported by NVIDIA vGPU software or the OS.
×! Not supported by NVIDIA vGPU software and must be disabled in the OS.
Linux Guest OS Support in Release 20.0#
Guest OS |
Wayland Support |
X11 Support |
|---|---|---|
Deprecated: CentOS Linux 8 (2105) |
×× |
✓✓ |
Red Hat Enterprise Linux 9.7 |
×! |
✓! |
Red Hat Enterprise Linux 8.10 |
×! |
✓! |
Ubuntu 24.04 LTS |
✓× |
✓✓ |
Ubuntu 20.04 LTS |
×× |
✓✓ |
✓✓ Supported by NVIDIA vGPU software and enabled by default in the OS.
✓× Supported by NVIDIA vGPU software but disabled by default in the OS and must be enabled.
✓! Supported by NVIDIA vGPU software but requires the alternative display server protocol to be disabled in the OS.
×× Not supported by NVIDIA vGPU software or the OS.
×! Not supported by NVIDIA vGPU software and must be disabled in the OS.
NVIDIA CUDA Toolkit Version Support#
The releases in this release family of NVIDIA vGPU software support NVIDIA CUDA Toolkit 13.2.
To build a CUDA application, the system must have the NVIDIA CUDA Toolkit and the libraries required for linking. For details of the components of NVIDIA CUDA Toolkit, refer to NVIDIA CUDA Toolkit 13.2 Release Notes.
To run a CUDA application, the system must have a CUDA-enabled GPU and an NVIDIA display driver that is compatible with the NVIDIA CUDA Toolkit release that was used to build the application. If the application relies on dynamic linking for libraries, the system must also have the correct version of these libraries.
For more information about NVIDIA CUDA Toolkit, refer to CUDA Toolkit Documentation 13.2.
Note
If you are using NVIDIA vGPU software with CUDA on Linux, avoid conflicting installation methods by installing CUDA from a distribution-independent runfile package. Do not install CUDA from a distribution-specific RPM or Deb package.
To ensure that the NVIDIA vGPU software graphics driver is not overwritten when CUDA is installed, deselect the CUDA driver when selecting the CUDA components to install.
For more information, see NVIDIA CUDA Installation Guide for Linux.
Wayland Display Server Protocol Support#
The Wayland display server protocol is supported with only a subset of supported GPUs, guest OS releases, and display resolutions.
Supported GPUs#
All GPUs supported by NVIDIA vGPU software, except GPUs based on the NVIDIA Turing™ architecture.
Supported Guest OS Releases#
Only Red Hat Enterprise Linux 10 guest OS releases supported by NVIDIA vGPU software.
Ubuntu 26.04 LTS
Ubuntu 24.04 LTS
Supported Display Resolutions#
2560×1600
3840×2160
4096×2160
5120×2880
7680×4320
Limitations with Wayland Display Server Protocol Support#
The following use cases are not supported:
VDPAU
Vulkan video playback
Console VNC
Frame-rate limiting (FRL)
Known Issues with Wayland Display Server Protocol Support#
XenMotion with vGPU Support#
XenMotion with vGPU is supported on all supported GPUs, but only on a subset of supported XenServer releases and guest operating systems.
Limitations with XenMotion with vGPU Support#
vGPU migration is disabled for a VM for which any of the following NVIDIA CUDA Toolkit features is enabled:
Unified memory
Debuggers
Profilers
Supported Hypervisor Software Releases#
XenServer 9 and XenServer 8.4
Supported Guest OS Releases#
Windows only. XenMotion with vGPU is not supported on Linux.
Known Issues with XenMotion with vGPU Support#
Use Case |
Affected GPUs |
Issue |
|---|---|---|
Repeated migration of multiple vGPU-enabled VMs between XenServer 9 hosts |
All GPUs that support XenMotion with vGPU |
Migration of multiple vGPU-enabled VMs between XenServer 9 hosts might fail |
Migration of a VM configured with NVIDIA vGPU software release 20.1 to a host running release 20.0 |
All GPUs that support XenMotion with vGPU |
|
Simultaneous migration of multiple VMs |
All GPUs that support XenMotion with vGPU |
Hypervisor host reboots when multiple cloned VMs are simultaneously powered on or migrated |
Migration between hosts with different ECC memory configuration |
All GPUs that support XenMotion with vGPU |
Migration of VMs configured with vGPU stops before the migration is complete |
Multiple vGPU Support#
To support applications and workloads that are compute or graphics intensive, multiple vGPUs can be added to a single VM. The assignment of more than one vGPU to a VM is supported only on a subset of vGPUs and hypervisor software releases.
vGPUs that Support Multiple vGPUs Assigned to a VM#
Only Q-series vGPUs that are allocated all of the physical GPU’s frame buffer are supported.
Multiple vGPU Support on the NVIDIA Blackwell Architecture#
Board |
vGPU |
|---|---|
NVIDIA RTX PRO 6000 Blackwell Server Edition |
NVIDIA RTX PRO 6000 Blackwell DC-96Q |
NVIDIA RTX PRO 4500 Blackwell Server Edition |
NVIDIA RTX PRO 4500 Blackwell DC-32Q |
Multiple vGPU Support on the NVIDIA Ada Lovelace Architecture#
Board |
vGPU |
|---|---|
NVIDIA L40S |
L40S-48Q |
NVIDIA L40 |
L40-48Q |
NVIDIA L20 |
L20-48Q |
NVIDIA L4 |
L4-24Q |
NVIDIA L2 |
L2-24Q |
NVIDIA RTX 6000 Ada |
RTX 6000 Ada-48Q |
NVIDIA RTX 5880 Ada |
RTX 5880 Ada-48Q |
NVIDIA RTX 5000 Ada |
RTX 5000 Ada-32Q |
Multiple vGPU Support on the NVIDIA Ampere GPU Architecture#
Multiple vGPU Support on the NVIDIA Turing GPU Architecture#
Board |
vGPU |
|---|---|
Tesla T4 |
T4-16Q |
Maximum Number of vGPUs Supported per VM#
NVIDIA vGPU software supports up to a maximum of 16 vGPUs per VM.
Hypervisor Releases that Support Multiple vGPUs Assigned to a VM#
All hypervisor releases that support NVIDIA vGPU software are supported.
Peer-to-Peer CUDA Transfers over NVLink Support#
Peer-to-peer CUDA transfers enable device memory between vGPUs on different GPUs that are assigned to the same VM to be accessed from within the CUDA kernels. NVLink is a high-bandwidth interconnect that enables fast communication between such vGPUs. Peer-to-Peer CUDA transfers over NVLink are supported only on a subset of vGPUs, XenServer releases, and guest OS releases.
vGPUs that Support Peer-to-Peer CUDA Transfers#
Only Q-series time-sliced vGPUs that are allocated all of the physical GPU’s frame buffer on physical GPUs that support NVLink are supported.
Peer-to-Peer CUDA Transfer Support on the NVIDIA Ampere GPU Architecture#
Board |
vGPU |
|---|---|
NVIDIA A40 |
A40-48Q |
NVIDIA RTX A6000 |
A6000-48Q |
NVIDIA RTX A5500 |
A5500-24Q |
NVIDIA RTX A5000 |
A5000-24Q |
Peer-to-Peer CUDA Transfer Support on the NVIDIA Turing GPU Architecture#
Board |
vGPU |
|---|---|
Quadro RTX 6000 |
RTX6000-24Q |
Quadro RTX 6000 passive |
RTX6000P-24Q |
Quadro RTX 8000 |
RTX8000-48Q |
Quadro RTX 8000 passive |
RTX8000P-48Q |
Peer-to-Peer CUDA Transfer Support on the NVIDIA Volta GPU Architecture#
Board |
vGPU |
|---|---|
Tesla V100 SXM2 32GB |
V100DX-32Q |
Tesla V100 SXM2 |
V100X-16Q |
Hypervisor Releases that Support Peer-to-Peer CUDA Transfers#
Peer-to-Peer CUDA transfers over NVLink are supported on all hypervisor releases that support the assignment of more than one vGPU to a VM. For details, see Multiple vGPU Support.
Guest OS Releases that Support Peer-to-Peer CUDA Transfers#
Linux only. Peer-to-Peer CUDA transfers over NVLink are not supported on Windows.
Limitations on Support for Peer-to-Peer CUDA Transfers#
NVSwitch is not supported. Only direct connections are supported.
PCIe is not supported.
SLI is not supported.
Unified Memory Support#
Unified memory is a single memory address space that is accessible from any CPU or GPU in a system. It creates a pool of managed memory that is shared between the CPU and GPU to provide a simple way to allocate and access data that can be used by code running on any CPU or GPU in the system. Unified memory is supported only on a subset of vGPUs and guest OS releases.
Note
Unified memory is disabled by default. If used, you must enable unified memory individually for each vGPU that requires it by setting a vGPU plugin parameter. NVIDIA CUDA Toolkit profilers are supported and can be enabled on a VM for which unified memory is enabled.
vGPUs that Support Unified Memory#
On GPUs that support the MIG feature and on which this feature is enabled, only Q-series MIG-backed vGPUs that occupy an entire GPU instance are supported. All other MIG-backed vGPUs are not supported.
On single-instance GPUs, only Q-series vGPUs that are allocated all of the physical GPU’s frame buffer on physical GPUs that support unified memory are supported.
Unified Memory Support on the NVIDIA Blackwell GPU Architecture#
Board |
vGPU |
|---|---|
NVIDIA RTX PRO 6000 Blackwell Server Edition |
NVIDIA RTX PRO 6000 Blackwell DC-96Q |
NVIDIA RTX PRO 4500 Blackwell Server Edition |
NVIDIA RTX PRO 4500 Blackwell DC-32Q |
Unified Memory Support on the NVIDIA Ada Lovelace GPU Architecture#
Board |
vGPU |
|---|---|
NVIDIA L40 |
L40-48Q |
NVIDIA L40S |
L40S-48Q |
NVIDIA L20 |
L20-48Q |
NVIDIA L4 |
L4-24Q |
NVIDIA L2 |
L2-24Q |
NVIDIA RTX 6000 Ada |
RTX 6000 Ada-48Q |
NVIDIA RTX 5880 Ada |
RTX 5880 Ada-48Q |
NVIDIA RTX 5000 Ada |
RTX 5000 Ada-32Q |
Unified Memory Support on the NVIDIA Ampere GPU Architecture#
Board |
vGPU |
|---|---|
NVIDIA A40 |
A40-48Q |
NVIDIA A16 |
A16-16Q |
NVIDIA A10 |
A10-24Q |
NVIDIA A2 |
A2-16Q |
NVIDIA RTX A6000 |
A6000-48Q |
NVIDIA RTX A5500 |
A5500-24Q |
NVIDIA RTX A5000 |
A5000-24Q |
Guest OS Releases that Support Unified Memory#
Linux only. Unified memory is not supported on Windows.
Limitations on Support for Unified Memory#
Only Q-series vGPUs that are allocated all of the physical GPU’s frame buffer on physical GPUs that support unified memory are supported. Fractional time-sliced vGPUs are not supported.
When unified memory is enabled for a VM, XenMotion with vGPU is disabled for the VM.
NVIDIA Deep Learning Super Sampling (DLSS) Support#
NVIDIA vGPU software supports NVIDIA DLSS on NVIDIA RTX Virtual Workstation.
Supported DLSS versions: 2.0. Version 1.0 is not supported.
Supported GPUs:
NVIDIA L40
NVIDIA L40S
NVIDIA L20
NVIDIA L20 liquid cooled
NVIDIA L4
NVIDIA L2
NVIDIA RTX 6000 Ada
NVIDIA RTX 5880 Ada
NVIDIA RTX 5000 Ada
NVIDIA A40
NVIDIA A16
NVIDIA A2
NVIDIA A10
NVIDIA RTX A6000
NVIDIA RTX A5500
NVIDIA RTX A5000
NVIDIA RTX PRO 6000 Blackwell Server Edition
NVIDIA RTX PRO 6000 Blackwell Server Edition liquid cooled
NVIDIA RTX PRO 4500 Blackwell Server Edition
Tesla T4
Note
NVIDIA graphics driver components that DLSS requires are installed only if a supported GPU is detected during installation of the driver. Therefore, if the creation of VM templates includes driver installation, the template should be created from a VM that is configured with a supported GPU while the driver is being installed.
Supported applications: only applications that use nvngx_dlss.dll version 2.0.18 or newer