Rendering Server Hosting

For freelancers, animation studios, and archviz teams, Database Mart provides a dedicated rendering server for online rendering and Blender cloud rendering with GeForce RTX and RTX A-series GPUs, full root, and no shared render-farm queue.

RTX 4090 · A6000 · Multi-GPU
CUDA · OptiX · Studio Drivers
Full root access
No queue — dedicated GPU
NVMe · large VRAM
Pricing

Rendering Server GPU Plans

Pick GeForce RTX and RTX A-series tiers for online rendering and Blender cloud rendering—see Plan & GPU Picks by Render Use Case below. View All GPU Plans →

Basic GPU Dedicated Server - RTX 4060

$ 149.00/mo
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  • Single GPU Specifications:
  • Microarchitecture: Ada Lovelace
  • CUDA Cores: 3072
  • Tensor Cores: 96
  • GPU Memory: 8GB GDDR6
  • FP32 Performance: 15.11 TFLOPS

Basic GPU Dedicated Server - RTX 5060

$ 159.00/mo
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  • 64GB RAM
  • GPU: Nvidia GeForce RTX 5060
  • 24-Core Platinum 8160
  • 120GB SSD + 960GB SSD
  • 100Mbps-1Gbps
  • OS: Windows / Linux
  • Single GPU Specifications:
  • Microarchitecture: Blackwell 2.0
  • CUDA Cores: 4608
  • Tensor Cores: 144
  • GPU Memory: 8GB GDDR7
  • FP32 Performance: 23.22 TFLOPS

Advanced GPU Dedicated Server - A5000

$ 269.00/mo
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  • 128GB RAM
  • GPU: Nvidia Quadro RTX A5000
  • Dual 12-Core E5-2697v2
  • 240GB SSD + 2TB SSD
  • 100Mbps-1Gbps
  • OS: Windows / Linux
  • Single GPU Specifications:
  • Microarchitecture: Ampere
  • CUDA Cores: 8192
  • Tensor Cores: 256
  • GPU Memory: 24GB GDDR6
  • FP32 Performance: 27.8 TFLOPS

Enterprise GPU Dedicated Server - RTX A6000

$ 409.00/mo
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  • 256GB RAM
  • GPU: Nvidia Quadro RTX A6000
  • Dual 18-Core E5-2697v4
  • 240GB SSD + 2TB NVMe + 8TB SATA
  • 100Mbps-1Gbps
  • OS: Windows / Linux
  • Single GPU Specifications:
  • Microarchitecture: Ampere
  • CUDA Cores: 10,752
  • Tensor Cores: 336
  • GPU Memory: 48GB GDDR6
  • FP32 Performance: 38.71 TFLOPS

Enterprise GPU Dedicated Server - RTX 4090

$ 409.00 /mo
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  • 256GB RAM
  • GPU: GeForce RTX 4090
  • Dual 18-Core E5-2697v4
  • 240GB SSD + 2TB NVMe + 8TB SATA
  • 100Mbps-1Gbps
  • OS: Windows / Linux
  • Single GPU Specifications:
  • Microarchitecture: Ada Lovelace
  • CUDA Cores: 16,384
  • Tensor Cores: 512
  • GPU Memory: 24 GB GDDR6X
  • FP32 Performance: 82.6 TFLOPS

Multi-GPU Dedicated Server- 2xRTX 4090

$ 729.00/mo
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  • 256GB RAM
  • GPU: 2 x GeForce RTX 4090
  • Dual 18-Core E5-2697v4
  • 240GB SSD + 2TB NVMe + 8TB SATA
  • 1Gbps
  • OS: Windows / Linux
  • Single GPU Specifications:
  • Microarchitecture: Ada Lovelace
  • CUDA Cores: 16,384
  • Tensor Cores: 512
  • GPU Memory: 24 GB GDDR6X
  • FP32 Performance: 82.6 TFLOPS
New Arrival

Enterprise GPU Dedicated Server - RTX 5090

$ 479.00/mo
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  • 256GB RAM
  • GPU: GeForce RTX 5090
  • Dual 18-Core E5-2697v4
  • 240GB SSD + 2TB NVMe + 8TB SATA
  • 100Mbps-1Gbps
  • OS: Windows / Linux
  • Single GPU Specifications:
  • Microarchitecture: Blackwell 2.0
  • CUDA Cores: 21,760
  • Tensor Cores: 680
  • GPU Memory: 32 GB GDDR7
  • FP32 Performance: 109.7 TFLOPS

Multi-GPU Dedicated Server- 2xRTX 5090

$ 859.00/mo
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  • 256GB RAM
  • GPU: 2 x GeForce RTX 5090
  • Dual 22-Core E5-2699v4
  • 240GB SSD + 2TB NVMe + 8TB SATA
  • 1Gbps
  • OS: Windows / Linux
  • Single GPU Specifications:
  • Microarchitecture: Blackwell 2.0
  • CUDA Cores: 21,760
  • Tensor Cores: 680
  • GPU Memory: 32 GB GDDR7
  • FP32 Performance: 109.7 TFLOPS
  • .
Scenarios

Rendering Server Scope
& Industries We Serve

Where a dedicated server for rendering fits cloud rendering services you operate—not generic VPS or shared upload-and-wait farms.

In scope (boundary)Outside scope
Dedicated GPU servers with root or admin access for batch and interactive 3D: install Blender, Maya, 3ds Max, Cinema 4D, Houdini, Unreal Engine, V-Ray, Redshift, Octane, KeyShot, and custom pipelines. Online rendering on your own rendering server with RDP, SSH, or FTP for assets. Shared render-farm queue products with no OS control, pure CPU web hosting, video live-stream encode-only stacks (see streaming hosting), and primary LLM training when 3D render is not the workload.

Industries That Buy GPU Rendering Server Hosting

Five sectors driving demand for cloud rendering services on hardware you lease—not a black-box farm.

Film, VFX & Entertainment

VFX & 3D animation Premium advertising Virtual production

Classic VFX, 3D animation, and premium advertising still dominate cloud GPU hours—major features can consume millions of GPU-hours per title. Workflows now blend offline path tracing with real-time engines and virtual production, so a rendering server with RTX 4090 or RTX A6000 class VRAM supports both final frames and Unreal-driven previz on the same cloud rendering services stack you control.

Architecture, Engineering & Construction (AEC)

Archviz & interiors BIM visualization Flythrough animation

Archviz and BIM visualization are among the fastest-growing online rendering segments—clients expect walkable interiors and city-scale exteriors before ground breaks. V-Ray, Lumion, and Blender on a server for rendering with fast NVMe and 16–48 GB VRAM shorten iteration on stills and flythrough animation for AEC teams outgrowing a desktop.

Automotive & Industrial Design

Styling review Configurators Marketing stills

Styling reviews, configurator imagery, and marketing stills rely on Redshift, V-Ray, and KeyShot at photo-real quality—roles across OEMs and startups list those tools as core skills. A dedicated rendering server gives design teams interactive cloud rendering for turntables and wind-tunnel viz without shipping assets to an opaque farm.

Medical & Education

Surgical simulation Device training Virtual labs

Surgical simulation, device training, and virtual lab coursework need repeatable, safe 3D environments—adaptive neural rendering and high-fidelity scene graphs push GPU memory and stable drivers. Universities and vendors deploy Blender cloud rendering and real-time viewers on GPU rendering server hosting when lab PCs cannot hold scene complexity.

Digital Twin & Industrial Simulation

UE5 / Nanite / Lumen Smart city & factory 24/7 twin demos

Smart-city, factory-line, and aerospace digital twins increasingly use Unreal Engine 5 with Nanite and Lumen for cinematic fidelity plus simulation hooks—that mix stresses GPU memory, PCIe bandwidth, and sustained online rendering on infrastructure you can scale. RTX A6000 or multi-GPU rendering server plans fit long-running twin demos more than burst-only farm credits.

Sizing

Render Workload Principles &
Online Rendering Metrics

How batch path tracing differs from real-time pipelines—and which GPU specs matter when you pick a server for rendering.

Batch path

Offline frames & animation

DCC export → GPU path trace (Cycles, Octane, Redshift, V-Ray GPU) → frames to NVMe. Size on VRAM, CUDA/OptiX throughput, and multi-GPU scaling.

Real-time path

UE5, twin & previz

Large worlds in GPU memory → Lumen/Nanite or raster + RT → live output. Size on VRAM first, then single-frame latency and CPU headroom for cooking.

Metric to checkBatch online renderingReal-time / UE5
VRAM capacityPrimary — textures & geoPrimary — world size
CUDA cores / FP32 throughputPrimary — tile speedImportant for RT effects
OptiX / RT coresCycles, Octane, V-Ray GPUImportant for ray-traced viz
GPU memory bandwidthHeavy texture streamingNanite / large assets
Multi-GPU scalingTile split enginesOften single-GPU bound
CPU cores & RAMBaking, sim caches, denoise CPU fallbackCooking, light builds, networking
NVMe capacity & speedCache, EXR outputProject + derived data
Network uplinkUpload scenes & platesCollaborative sessions, sync
Driver classStudio vs Game readyStudio for DCC stability

What CPU, RAM, NVMe, Network & GPU Do on a Rendering Server

Resources map differently for Blender cloud rendering than for a live twin demo on the same rendering server.

CPU

Geometry processing, physics bakes, command-line render orchestration, and AI denoisers when the GPU is busy.

RAM

Holds simulation caches and OS buffer for many frames writing to disk during online rendering.

NVMe

Fast scratch for EXR sequences, UDIM caches, and project sync on a server for rendering.

Network

Moves heavy .blend, .fbx, and texture libraries—often the bottleneck before GPU on remote teams.

GPU

Path tracing and real-time viewports; pick by VRAM, CUDA/OptiX, and whether you need multi-GPU on your rendering server.

Software You Can Install for Cloud Rendering Services

Full admin on Linux or Windows—same stack as your studio desktop, without render-farm version lock-in.

SoftwareRoleNotes
Blender (Cycles)GPU path tracing, Blender cloud renderingCUDA/OptiX; multi-GPU tiles
Maya, 3ds Max, C4D, HoudiniDCC authoring & exportWindows Server common
Octane, Redshift, V-Ray GPUProduction GPU enginesVRAM-sensitive
Unreal Engine 5Archviz, twin, virtual productionVRAM + fast disk
KeyShot, LumionProduct & AEC stills / animSingle-GPU friendly
FileZilla, RDP, SSHAsset transfer & remote GUIGbps uplink helps

Dedicated rendering server vs render farm

Farms queue shared nodes with fixed software versions. A GPU rendering server is 100% yours—no wait, custom plugins, and predictable online rendering for studios that render every week. Farms still suit one-off burst jobs; many teams use both.

GPU specs

Fine-Grained GPU Comparison
for Rendering

Core parameters for picking a rendering server—VRAM, compute, and memory bandwidth—for Blender cloud rendering, batch Cycles, and other GPU engines on Database Mart hardware.

GPU modelVRAMCUDA coresMemory bandwidthRT / OptiXTypical render fit
RTX 3060 Ti8 GB GDDR64,864~448 GB/sYesEntry Blender cloud rendering, single archviz scenes
RTX 40608 GB GDDR63,072~272 GB/sYesFreelance stills, light animation on a rendering server
RTX 409024 GB GDDR6X16,384~1,008 GB/sYesPrimary studio online rendering, Cycles/Octane
RTX 509032 GB GDDR721,760~1,792 GB/sYes4K animation, dense instancing
RTX A400016 GB GDDR66,144~448 GB/sYesStable Pro driver, archviz & small-studio batch
RTX A500024 GB GDDR68,192~768 GB/sYes24/7 production, ECC-friendly pipelines
RTX A600048 GB GDDR610,752~768 GB/sYesHero assets, UE5 twins, large BIM

VRAM

Hard limit for textures, instances, and out-of-core spills—pick RTX A6000 when scenes exceed 24 GB on a server for rendering.

vs

CUDA / bandwidth

Throughput for path tracing—4090 and 5090 lead GeForce; compare wall-clock per frame for your engine.

Plan & GPU Picks by Render Use Case

Which tier fits common cloud rendering services and Blender cloud rendering workloads on Database Mart GPU hosting—models match our live GPU server lineup.

Plan / GPUKey paramsGood for (examples)WhyLimits
Professional · RTX 3060 Ti8 GB, Ampere, OptiXSolo archviz, test frames, small Cycles jobsAffordable GPU tier on our rendering server lineupLimited VRAM for hero scenes
Basic · RTX 40608 GB, Ada, OptiXProduct stills, short Blender cloud rendering clipsLow entry cost for online renderingNot for 4K+ heavy instancing
Enterprise · RTX 409024 GB, 16K CUDAFilm-style stills, Octane animationTop GeForce throughput for cloud rendering services you hostNo ECC
Enterprise · RTX 509032 GB, Blackwell4K sequences, heavy instancingLatest GeForce for demanding online renderingPlan availability varies
Enterprise · RTX A400016 GB, Pro driverStudio batch, stable DCC stacksWorkstation-class reliability on GPU hostingLower peak than 4090 in some engines
Enterprise · RTX A500024 GB, Pro driver24/7 production batches, ECC-friendly pipelinesBalanced VRAM and stability for cloud rendering servicesBelow A6000 on largest assets
Enterprise · RTX A600048 GB ECCLarge BIM, UE5 Lumen twinsVRAM headroom when 24 GB is tightHigher monthly cost
FAQ

FAQs of Rendering Server Hosting

Access, GPUs, multi-GPU, pricing, and how a dedicated rendering server fits your cloud rendering services workflow.

What is GPU cloud rendering?
GPU online rendering uses remote graphics cards on a rendering server to finish 3D scenes faster than local hardware—ideal for Blender cloud rendering, archviz, and other GPU engines you install yourself.
How does pricing work?
Choose monthly or yearly GPU plans based on your online rendering volume. Long-term use may qualify for discounts on a server for rendering.
Do I need to install the software myself?
Yes—you install DCC and render engines on your rendering server, or start from images with NVIDIA Studio Drivers and optional preinstalled tools.
How do I access the server?
Connect via RDP on Windows or SSH/VNC on Linux. Setup details arrive when your server for rendering is provisioned.
What 3D software is supported?
Any package you install—Blender for Blender cloud rendering, plus Maya, 3ds Max, Cinema 4D, Houdini, OctaneRender, Redshift, V-Ray, KeyShot, and Unreal—with full admin on your rendering server.
Which GPUs are available for rendering?
Database Mart GPU server plans for Blender cloud rendering include RTX 3060 Ti, RTX 4060, RTX 4090, RTX 5090, RTX A4000, RTX A5000, and RTX A6000—see the comparison and Plan & GPU Picks tables on this page and live listings on GPU hosting.
Can I use multiple GPUs for a single render?
Yes—Blender Cycles, OctaneRender, and Redshift can spread tiles across GPUs on a dedicated rendering server.
Is there any queue or shared resource?
No. Each GPU server is dedicated—your online rendering jobs get assigned CPU, RAM, and GPU without farm queues.
Start Your Next Online Rendering Project

Pick a GPU plan, connect over RDP, and render with Blender, Octane, or Redshift on a dedicated rendering server—no queue, full control.