Lasv3-series

Applies to: ✔️ Linux VMs ✔️ Windows VMs ✔️ Flexible scale sets ✔️ Uniform scale sets

The Lasv3-series of Azure Virtual Machines (Azure VMs) features high-throughput, low latency, directly mapped local NVMe storage. These VMs run on an AMD 3rd Generation EPYC™ 7763v processor in a multi-threaded configuration with an L3 cache of up to 256 MB that can achieve a boosted maximum frequency of 3.5 GHz. The Lasv3-series VMs are available in sizes from 8 to 80 vCPUs in a simultaneous multi-threading configuration. There are 8 GiB of memory per vCPU, and one 1.92 TB NVMe SSD device per 8 vCPUs, with up to 19.2 TB (10x1.92TB) available on the L80as_v3 size.

Note

The Lasv3-series VMs are optimized to use the local disk on the node attached directly to the VM rather than using durable data disks. This method allows for greater IOPS and throughput for your workloads. The Lsv3, Lasv3, Lsv2, and Ls-series don't support the creation of a local cache to increase the IOPS achievable by durable data disks.

The high throughput and IOPS of the local disk makes the Lasv3-series VMs ideal for NoSQL stores such as Apache Cassandra and MongoDB. These stores replicate data across multiple VMs to achieve persistence in the event of the failure of a single VM.

To learn more, see how optimize performance on Lasv3-series Windows-based VMs or Linux-based VMs.

Size vCPU Memory (GiB) Temp disk (GiB) NVMe Disks NVMe Disk throughput (Read IOPS/MBps) Uncached data disk throughput (IOPS/MBps) Max burst uncached data disk throughput (IOPS/MBps) Max Data Disks Max NICs Expected network bandwidth (Mbps)
Standard_L8as_v3 8 64 80 1x1.92 TB 400000/2000 12800/200 20000/1280 16 4 12500
Standard_L16as_v3 16 128 160 2x1.92 TB 800000/4000 25600/384 40000/1280 32 8 12500
Standard_L32as_v3 32 256 320 4x1.92 TB 1.5M/8000 51200/768 80000/1600 32 8 16000
Standard_L48as_v3 48 384 480 6x1.92 TB 2.2M/14000 76800/1152 80000/2000 32 8 24000
Standard_L64as_v3 64 512 640 8x1.92 TB 2.9M/16000 80000/1280 80000/2000 32 8 32000
Standard_L80as_v3 80 640 800 10x1.92TB 3.8M/20000 80000/1400 80000/2000 32 8 32000
  1. Temp disk: Lasv3-series VMs have a standard SCSI-based temp resource disk for use by the OS paging or swap file (D: on Windows, /dev/sdb on Linux). This disk provides 80 GiB of storage, 4000 IOPS, and 80 MBps transfer rate for every 8 vCPUs. For example, Standard_L80as_v3 provides 800 GiB at 40000 IOPS and 800 MBPS. This configuration ensures that the NVMe drives can be fully dedicated to application use. This disk is ephemeral, and all data is lost on stop or deallocation.
  2. NVMe Disks: NVMe disk throughput can go higher than the specified numbers. However, higher performance isn't guaranteed. Local NVMe disks are ephemeral. Data is lost on these disks if you stop or deallocate your VM.
  3. NVMe Disk encryption Lasv3 VMs created or allocated on or after 1/1/2023 have their local NVMe drives encrypted by default using hardware-based encryption with a Platform-managed key, except for the regions listed below.

Note

Central US and Qatar Central Lasv3 VMs created or allocated on or after 4/1/2023 have their local NVMe Drives Encrypted.

  1. NVMe Disk throughput: Hyper-V NVMe Direct technology provides unthrottled access to local NVMe drives mapped securely into the guest VM space. Lasv3 NVMe disk throughput can go higher than the specified numbers, but higher performance isn't guaranteed. To achieve maximum performance, see how to optimize performance on Lasv3-series Windows-based VMs or Linux-based VMs. Read/write performance varies based on IO size, drive load, and capacity utilization.
  2. Max burst uncached data disk throughput: Lasv3-series VMs can burst their disk performance for up to 30 minutes at a time.

Note

Lasv3-series VMs don't provide a host cache for the data disk because this configuration doesn't benefit the Lasv3 workloads.

Size table definitions

  • Storage capacity is shown in units of GiB or 1024^3 bytes. When you compare disks measured in GB (1000^3 bytes) to disks measured in GiB (1024^3) remember that capacity numbers given in GiB may appear smaller. For example, 1023 GiB = 1098.4 GB.

  • Disk throughput is measured in input/output operations per second (IOPS) and MBps where MBps = 10^6 bytes/sec.

  • Data disks can operate in cached or uncached modes. For cached data disk operation, the host cache mode is set to ReadOnly or ReadWrite. For uncached data disk operation, the host cache mode is set to None.

  • To learn how to get the best storage performance for your VMs, see Virtual machine and disk performance.

  • Expected network bandwidth is the maximum aggregated bandwidth allocated per VM type across all NICs, for all destinations. For more information, see Virtual machine network bandwidth.

    Upper limits aren't guaranteed. Limits offer guidance for selecting the right VM type for the intended application. Actual network performance will depend on several factors including network congestion, application loads, and network settings. For information on optimizing network throughput, see Optimize network throughput for Azure virtual machines. To achieve the expected network performance on Linux or Windows, you may need to select a specific version or optimize your VM. For more information, see Bandwidth/Throughput testing (NTTTCP).

Other sizes and information

Pricing Calculator: Pricing Calculator

More information on Disks Types: Disk Types

Next steps

Learn more about how Azure compute units (ACU) can help you compare compute performance across Azure SKUs.