Published
19 Aug 2026Form Number
LP2493PDF size
12 pages, 498 KBAbstract
Lenovo ThinkAgile VX and FX V4 with VMware Cloud Foundation deliver a validated, factory-integrated platform for running Oracle Database 23ai on an all-NVMe, software-defined foundation. In testing, a single four-node cluster sustained 36.8 million transactions per minute across eight Oracle database VMs, pairing mission-critical performance with hyperconverged simplicity and single-vendor support.
Introduction
As enterprise data workloads grow in complexity and volume, IT teams require infrastructure that can deliver consistent Oracle database performance without sacrificing operational simplicity.
Lenovo ThinkAgile VX and FX V4 hyperconverged systems, powered by Intel Xeon 6 (Granite Rapids) processors and VMware Cloud Foundation (VCF), address these demands by combining validated hardware, software-defined storage via vSAN ESA, and unified lifecycle management into a single, scalable platform. VCF eliminates the complexity of traditional three-tier architectures, enabling Oracle database deployments that scale linearly by adding nodes without disrupting running workloads.
Figure 1. ThinkAgile VX650 V4 (top) and VX630 V4 (bottom) designed for VMware hyperconverged infrastructure
In our test environment, the validated solution described in this brief delivers the results listed in the following table.
Business Challenge
Oracle Database underpins the most demanding transactional and analytical applications in the enterprise, yet the infrastructure beneath it is often the limiting factor. Traditional three-tier architectures that separate compute, SAN storage, and networking add operational complexity, lengthen provisioning cycles, and multiply the number of vendors involved when problems arise. At the same time, Oracle performance and licensing efficiency are highly sensitive to how well the platform aligns CPU, memory, and storage.
IT teams deploying Oracle at scale consistently encounter the following obstacles:
- Operational complexity: Separate compute, storage, and network tiers slow provisioning, complicate patching, and increase the risk of misconfiguration across Day 0 to Day 2 operations.
- Memory locality: Oracle throughput degrades when virtual machines span NUMA boundaries, forcing remote memory access that adds latency and wastes licensed cores.
- Storage predictability: SAN contention and inconsistent I/O latency undermine the predictable response times that OLTP workloads require.
- Multi-vendor support: Fragmented support models across hardware, hypervisor, and storage vendors slow root-cause analysis and issue resolution.
- Disruptive scaling: Growing an Oracle estate on legacy infrastructure often requires forklift upgrades or re-architecture rather than incremental expansion.
Solution
Lenovo ThinkAgile VX and FX V4 with VMware Cloud Foundation (VCF) collapse the traditional three-tier stack into a single, factory-integrated hyperconverged platform. VCF environments are delivered as one validated system, and Lenovo acts as a single point of contact for purchasing, deployment, and support. Oracle Database 23ai runs in NUMA-aligned virtual machines on all-NVMe vSAN ESA storage, delivering the performance of dedicated hardware with the flexibility and lifecycle automation of a software-defined data center.
Figure 2. ThinkAgile FX650 V4 (top) and FX630 V4 (bottom) designed for flexible hyperconverged infrastructure
The following table shows how the solution addresses each of the business challenges.
Key aspects of the solution include the following:
- Lenovo ThinkAgile VX650 V4 and FX650 V4
The ThinkAgile VX650 V4 is a 2-socket, 2U hyperconverged system featuring Intel Xeon 6 Scalable processors (Granite Rapids) with up to 96 cores per node, up to 8TB of DDR5 memory, PCIe 5.0, and up to 24 NVMe drives validated for vSAN ESA. The FX650 V4 is a purpose-built HCI appliance offering multi-hypervisor flexibility across VMware, Nutanix, and Microsoft stacks on a single hardware model, giving organizations investment protection and the freedom to transition between HCI software vendors.
- VMware Cloud Foundation
VCF consolidates vSphere, vSAN ESA, NSX, and VCF Operations into a unified stack with an improved SDDC Manager for automated lifecycle management. vSAN ESA is the default storage architecture, delivering higher performance and space efficiency than the previous OSA model, while centralized management simplifies Oracle VM deployment, monitoring, and patching across on-premises and hybrid cloud environments.
- Oracle Database 23ai
Oracle Database 23ai is Oracle's latest long-term support release, adding AI Vector Search for in-database RAG, True Cache for in-memory acceleration, JSON Relational Duality, Database In-Memory, and Multitenant consolidation. It deploys as a single instance or with Real Application Clusters (RAC) for high availability, and is fully compatible with Oracle Data Guard and Recovery Manager (RMAN) on VCF-managed infrastructure.
- NUMA-Optimized, All-NVMe Design
Each Oracle VM is sized to a single NUMA socket and pinned with vSphere DRS host-affinity rules, keeping all vCPU scheduling and memory allocation local to one node and eliminating remote-memory latency. Datafiles, redo logs, and binaries are placed on separate virtual disks and controllers for parallel I/O, and BIOS is set to Maximum Performance. Together with all-NVMe vSAN ESA, this keeps CPU, rather than storage, as the primary performance determinant under OLTP load.
Use Cases
The combination of Oracle Database 23ai, Intel Xeon 6 processors, and VMware Cloud Foundation on ThinkAgile VX and FX V4 supports a broad range of database scenarios on a single platform. The following use cases represent where organizations most commonly deploy this solution, from consolidating mission-critical transactional systems to enabling real-time analytics and AI-driven applications.
- Mission-Critical OLTP Consolidation
Consolidate high-volume transactional systems such as ERP, e-commerce, and core banking onto a single hyperconverged platform, using NUMA-pinned VMs and all-NVMe storage to sustain low, predictable latency at scale.
- Real-Time Analytics with Database In-Memory
Run analytical queries directly against live transactional data. Oracle Database In-Memory processes billions of rows per second on each core, enabling real-time business decisions without a separate analytics platform.
- AI-Enabled Applications with AI Vector Search
Build Retrieval-Augmented Generation and semantic-search applications with Oracle AI Vector Search, storing and querying vectors alongside relational data in a single database and removing the need for a standalone vector store.
- Large-Scale Consolidation with Multitenant
Use Oracle Multitenant to consolidate many pluggable databases into a single container database, simplifying lifecycle management while VCF adds capacity node by node as the estate grows.
- Disaster Recovery and High Availability
Combine VMware Site Recovery Manager and vSAN stretched clusters with Oracle Data Guard and RMAN to deliver enterprise-grade disaster recovery and business continuity across sites.
Workloads
ThinkAgile VX and FX V4 with VCF support the full range of Oracle Database 23ai workloads on one platform. The validated reference configuration is a four-node ThinkAgile VX650 V4 cluster running eight Oracle database VMs (two per node, one per NUMA socket), each configured with 48 vCPUs and 512GB of memory on Oracle Linux 9.7.
The table below maps common workloads to the platform capabilities that support them.
In HammerDB OLTP testing derived from the TPC-C standard, this configuration sustained an aggregate 36.8 million TPM, averaging approximately 4.6 million TPM per VM. Because each VM was confined to a single NUMA socket, per-VM throughput remained consistent across the cluster, evidence that adding nodes scales Oracle performance proportionally. ()
Note: Results are not comparable to published TPC-C results and do not comply with TPC-C benchmark standards.
Performance Details and Results
HammerDB 5.0 is an open-source database transactional load-testing and benchmarking tool. The OLTP workload is derived from the TPC-C benchmark standard, however it is not comparable to published TPC-C results and does not comply with TPC-C benchmark standards.
Testing used HammerDB instances running locally on each Oracle database VM (loopback connections), eliminating the remote driver-VM network bottleneck. Testing was performed on a four-node ThinkAgile VX650 V4 cluster running eight Oracle database VMs.
The following table lists the configuration used in the testing. Testing used the ThinkAgile VX650 V4 (model 7DG6CTO1WW); the ThinkAgile FX650 V4 (model 7DPMCTO1WW) is a validated alternative.
The following table lists the TPC-C performance testing details and results.
The following table lists the Oracle Database instance parameters.
Across the eight Oracle Database 23ai VMs, the cluster sustained an aggregate 36.8 million TPM, averaging approximately 4.6 million TPM per VM. Because each VM was pinned to a single NUMA socket with local CPU and memory, per-VM throughput remained consistent across the cluster, confirming that the NUMA-aligned placement strategy eliminated cross-socket memory latency as a bottleneck and that adding nodes scales Oracle performance proportionally.
Business Outcome
Deploying Oracle Database 23ai on Lenovo ThinkAgile VX and FX V4 with VCF delivers measurable business value:
- Proven, linear performance: each of the eight Oracle Database 23ai VMs sustained approximately 4.6 million HammerDB TPM, for an aggregate 36.8 million TPM on a single four-node cluster. This near-linear scaling lets customers consolidate multiple databases onto fewer nodes, add capacity proportionally as demand grows, and reduce the number of Oracle-licensed cores needed for a given workload, while all-NVMe vSAN ESA keeps latency low and predictable under sustained OLTP load. (HammerDB OLTP is derived from the TPC-C standard; results are not comparable to published TPC-C benchmarks.)
- Non-disruptive growth: Capacity is added by inserting nodes into the running cluster, with no application downtime, data migration, or forklift upgrades, so scaling the Oracle estate becomes a routine operational step rather than a re-architecture project.
- Lower operational overhead: A single software-defined platform with centralized lifecycle management reduces administrative effort and accelerates time-to-production.
- Simplified, single-vendor support: Lenovo ThinkAgile Premier Support provides one point of contact for hardware, VMware software, and services, eliminating multi-vendor escalation delays.
- Investment protection: FX650 V4 multi-hypervisor flexibility lets organizations change HCI software direction without replacing hardware.
Best Practices for Oracle Deployment
The following best practices were applied in the validated configuration and are recommended for production Oracle Database 23ai deployments on ThinkAgile VX and FX V4.
- BIOS Configuration: Set the BIOS/UEFI operating mode to Maximum Performance on all nodes. Disable energy-saving features such as C-states and frequency scaling to ensure consistent CPU performance under sustained database workloads.
- VM Sizing and NUMA Alignment: Configure each Oracle VM with a vCPU count matching the physical core count of one NUMA socket. Use VM-Host affinity rules in vSphere DRS to enforce strict host pinning so each Oracle VM runs exclusively on its designated host and NUMA socket, keeping all scheduling and memory allocation local.
- SGA Sizing: Size the Oracle SGA to accommodate the active working set in memory, maximizing buffer cache hit rates and minimizing physical I/O against vSAN-backed storage under OLTP workloads.
- Storage Layout: Use separate virtual disks for Oracle datafiles, redo logs, and binaries, each assigned to independent SCSI controllers, to maximize parallel I/O throughput and prevent contention between redo log and datafile activity.
- Redo Log Configuration: Configure an adequate number of redo log groups per node, sized for the expected redo generation rate. Place each redo log group on a dedicated virtual disk on a separate controller to prevent I/O contention between log writes and datafile operations.
- Commit and Checkpoint Optimization: Tune Oracle commit and checkpoint parameters to optimize group-commit behavior for OLTP throughput. Disabling automatic checkpoint tuning reduces background I/O overhead and delivers consistent foreground transaction performance.
- I/O Configuration: Enable asynchronous and direct I/O for all Oracle datafiles, and configure an appropriate number of database writer processes to maximize parallel write throughput from the buffer cache to vSAN-backed storage.
- vSphere HA Configuration: Disable vSphere HA VM Monitoring for Oracle database VMs. Under sustained high-CPU workloads, VMware Tools heartbeat responses may be delayed, triggering false-positive VM resets that interrupt database operations.
- Tablespace Pre-allocation: Pre-allocate datafile sizes to the expected workload rather than relying on auto-extend. Use bigfile tablespaces for application schemas, and multiple Undo datafiles for high-concurrency workloads, to improve I/O predictability and prevent space exhaustion.
- Performance Monitoring: Use Oracle ADDM and AWR to analyze performance between test runs and identify bottlenecks. Schedule AWR snapshots outside active measurement windows to avoid interfering with results.
Bill of Materials
The following table details a single ThinkAgile VX650 V4 node (model 7DG6CTO1WW). For a ThinkAgile FX650 V4 node, use model 7DPMCTO1WW as the base unit instead.
Conclusion
Lenovo ThinkAgile VX and FX V4 with VMware Cloud Foundation provide a validated, high-performance foundation for Oracle Database 23ai. The tested configuration delivered 36.8 million transactions per minute across eight VMs on a single four-node cluster while preserving the operational simplicity of a hyperconverged, software-defined platform.
By combining Intel Xeon 6 processors, all-NVMe vSAN ESA storage, NUMA-aware VM placement, and the tuning practices in this brief, organizations can consolidate demanding Oracle workloads with predictable performance and linear scalability.
With Lenovo ThinkAgile Premier Support providing a single point of contact for hardware, VMware software, and services, IT teams can deploy and operate Oracle on VCF with reduced risk and lower operational overhead.
Why Lenovo
Lenovo is a global technology leader delivering the infrastructure that powers mission-critical enterprise workloads worldwide. ThinkAgile VX and FX V4 systems are factory-integrated and pre-validated with VMware software and deployment services, giving customers a fast, low-risk path to a production Oracle platform. Backed by Lenovo ThinkAgile Premier Support and a broad services portfolio, Lenovo helps organizations deploy, operate, and scale Oracle Database 23ai with confidence.
For More Information
To learn more about running Oracle Database 23ai on Lenovo ThinkAgile VX and FX V4, contact your Lenovo representative or Lenovo Business Partner, or visit the resources below.
References:
- Lenovo ThinkAgile VX650 V4 Product Guide
https://lenovopress.lenovo.com/lp2134-lenovo-thinkagile-vx650-v4-hyperconverged-system - Lenovo ThinkAgile FX650 V4 Product Guide
https://lenovopress.lenovo.com/lp2338-lenovo-thinkagile-fx650-v4-hyperconverged-system - Deployment Guide: VMware Cloud Foundation on Lenovo ThinkAgile VX and FX
https://lenovopress.lenovo.com/lp1581-deployment-guide-vmware-cloud-foundation-on-lenovo-thinkagile-vx-fx - Reference Design: VMware Cloud Foundation on Lenovo ThinkAgile VX and FX
https://lenovopress.lenovo.com/lp1533-vmware-cloud-foundation-on-lenovo-thinkagile-vx-fx-reference-design - Oracle Database 23ai Documentation
https://docs.oracle.com/en/database/oracle/oracle-database/23/ - VMware vSAN ESA Design and Operations Guide
https://techdocs.broadcom.com/us/en/vmware-cis/vsan/vsan/9-0.html
Authors
Cristian Ghetau is an Advisory Engineer for Lenovo in Romania and has experience in Cloud Infrastructure technologies. He has had more than 13 years of experience working with virtual environments from VMware, Microsoft, Oracle, Linux.
Chandrakandh Mouleeswaran is a Solution Architect with 18+ years of experience in software development, performance testing and engineering, having worked on designing and architecting many scalable enterprise applications. He has spent a decade in technical enablement and partner solution development for VMware, Nutanix, Oracle and other ISVs across industries and technologies. He specializes in architecting infrastructure solutions for virtualization, VDI, database, cloud, data science, AI/ML solutions and various enterprise workloads.
Chris Honoré is a Solutions Product Manager at Lenovo with deep expertise in datacenter products and solution offerings. He has a strong background in consulting and solution development, helping customers design and support on-premises and hybrid environments. Chris has spent the past 15 years with IBM and Lenovo, specializing in x86 server and data center solutions. Prior to that, he built two decades of experience in the telecommunications industry, serving in both technical and business leadership roles.
Trademarks
Lenovo and the Lenovo logo are trademarks or registered trademarks of Lenovo in the United States, other countries, or both. A current list of Lenovo trademarks is available on the Web at https://www.lenovo.com/us/en/legal/copytrade/.
The following terms are trademarks of Lenovo in the United States, other countries, or both:
Lenovo®
ThinkAgile®
ThinkSystem®
XClarity®
The following terms are trademarks of other companies:
Intel®, the Intel logo and Xeon® are trademarks of Intel Corporation or its subsidiaries.
Linux® is the trademark of Linus Torvalds in the U.S. and other countries.
Microsoft® is a trademark of Microsoft Corporation in the United States, other countries, or both.
TPC® and TPC-C® are trademarks of Transaction Processing Performance Council.
Other company, product, or service names may be trademarks or service marks of others.
Configure and Buy
Full Change History
Course Detail
Employees Only Content
The content in this document with a is only visible to employees who are logged in. Logon using your Lenovo ITcode and password via Lenovo single-signon (SSO).
The author of the document has determined that this content is classified as Lenovo Internal and should not be normally be made available to people who are not employees or contractors. This includes partners, customers, and competitors. The reasons may vary and you should reach out to the authors of the document for clarification, if needed. Be cautious about sharing this content with others as it may contain sensitive information.
Any visitor to the Lenovo Press web site who is not logged on will not be able to see this employee-only content. This content is excluded from search engine indexes and will not appear in any search results.
For all users, including logged-in employees, this employee-only content does not appear in the PDF version of this document.
This functionality is cookie based. The web site will normally remember your login state between browser sessions, however, if you clear cookies at the end of a session or work in an Incognito/Private browser window, then you will need to log in each time.
If you have any questions about this feature of the Lenovo Press web, please email David Watts at dwatts@lenovo.com.



