Remote Workstation Solutions

Remote Workstations Built for Engineering, Design & AI

Empower engineers, architects, designers, researchers and AI teams with secure access to dedicated workstation resources from anywhere. Centralise compute, GPU, storage and networking infrastructure while improving security, collaboration and scalability.

  • Dedicated CPU & GPU Resources
  • Secure Remote Access
  • Centralised Infrastructure
  • Hybrid & Distributed Teams
CENTRALISED · SECURE · REMOTE Rackmount Workstation → Encrypted Session → Remote User
Remote Workstation Solutions

Built for engineering, design & AI at scale

Dedicated CPU and GPU resources, secure remote access, and centralised infrastructure — so your design, engineering and AI teams get workstation-class performance without the desk-side hardware.

NVIDIA RTX PRO Blackwell AMD Threadripper PRO WRX90 Intel Core Ultra Centralised NAS / SAN
DiGiCOR Logo

Remote Workstations Built for Engineering, Design & AI

Empower engineers, architects, designers, researchers and AI teams with secure access to dedicated workstation resources from anywhere. Centralise compute, GPU, storage and networking infrastructure while improving security, collaboration, scalability and user experience.
✓ Dedicated CPU & GPU Resources
✓ Secure Remote Access
✓ Centralised Infrastructure
✓ Hybrid & Distributed Teams

Centralised Remote Workstation for all Workloads
The Case for Centralised Infrastructure

Modern engineering, design and AI workloads have outgrown the desktop tower

Large CAD assemblies, BIM models and AI datasets push local hardware past its limits — while distributed laptops and desk-side towers make IP harder to secure, harder to support, and harder to refresh on schedule. Centralising compute in the data centre solves all three at once.

Endpoint security

Intellectual property — CAD files, simulation data, proprietary models — stays inside the data centre instead of on a remote laptop that can be lost, stolen, or compromised.

Large dataset performance

Centralised compute and storage eliminate local project load times for large CAD assemblies, BIM federated models and AI training datasets — no more waiting on a laptop's local disk.

Operational efficiency

One place to patch, monitor and refresh hardware — reducing desk-side heat and noise, cutting IT truck-rolls, and putting workstation refresh cycles on a predictable schedule.

The result: workstation-class performance delivered as managed infrastructure, not desk-side hardware.

Beyond Desktop Workstations: A Smarter Infrastructure Model

Traditional workstation deployments struggle to support modern engineering, architecture, BIM, CAD, visualisation, simulation, AI and media production workloads. Large project files, distributed teams, security requirements and growing IT complexity are driving organisations toward centralised workstation infrastructure that delivers better performance, enhanced security and improved operational efficiency.

Engineered & Delivered by DiGiCOR
DiGiCOR designs complete remote workstation environments that combine dedicated workstation infrastructure, GPU acceleration, enterprise storage, high-speed networking, cyber security, backup and data protection into a single platform. Whether supporting CAD design teams, BIM environments, digital engineering projects, AI development or media production workflows, our solutions provide secure workstation-class performance from any location while simplifying management and future scalability.

Modern Work Requires More Than a Traditional Desktop Workstation

Today's engineering, architecture, design, manufacturing and media production teams require secure, high-performance access to applications and data from anywhere. As organisations embrace hybrid work, distributed teams and digital transformation, traditional desk-side workstations increasingly create operational, security and collaboration challenges.

Remote workstation access
Anywhere Access
Engineers, architects and designers need secure access to applications, workstation resources and project data regardless of location, device or office.
Large project files and collaboration
Large Project Data
CAD models, BIM projects, visualisation datasets and media assets become increasingly difficult to manage efficiently across multiple offices and remote teams.
Secure workstation data
Data Security Risks
Sensitive intellectual property, customer information and engineering data often reside on endpoint devices, increasing risk and compliance challenges.
Workstation management costs
Rising Support Costs
Maintaining distributed workstation fleets increases operational overhead, IT administration requirements and lifecycle management complexity.
Hardware refresh challenges
Disruptive Hardware Refreshes
Refreshing workstation hardware across multiple locations often leads to deployment delays, downtime and unnecessary infrastructure costs.
Remote workstation user experience
Performance Bottlenecks
Remote users frequently experience inconsistent performance when running graphics-intensive applications, visualisation workloads, simulation software and AI-enabled workflows.
Why Organisations Are Moving to Centralised Workstation Infrastructure
Organisations running business-critical applications such as CAD, BIM, digital engineering, 3D visualisation, simulation, media production, artificial intelligence and high-performance computing are increasingly adopting rackmount, microblade and blade workstation architectures. Centralised workstation infrastructure improves security, simplifies management, enables hybrid work, accelerates collaboration and delivers consistent workstation-class performance to users wherever they are located.

Rackmount Workstations

By relocating workstation hardware away from the user's desk, organisations can improve security, simplify management, reduce office noise and heat, and enable remote access for hybrid work environments. Rackmount workstations are widely used by architecture firms, engineering consultancies, government agencies, educational institutions, manufacturing organisations and media production teams that require reliable high-performance computing infrastructure.

Intel i7/i9 Rackmount Workstation 14th Gen | High-Performance 4U System
DiGiCOR
Show specifications chevron-down
  • 4U
  • Single
  • 15/14/13/12th Gen Intel Core i Processors
  • 4
  • DDR5
  • 8
  • 1
  • 2.5Gb/s, WiFi 6E
  • 1000
NZ$4,559.20 RRP Ex GST
DiGiCOR WRX90-WS-RACK | High-Performance Rackmount Workstation for Enterprise Workloads
DiGiCOR
Show specifications chevron-down
  • 4U
  • Single
  • AMD Ryzen Threadripper Series processors
  • 8
  • DDR5
  • 8
  • 2
  • 10Gb/s
  • 2200
NZ$16,610.65 RRP Ex GST
Typical Applications
  • Computer-Aided Design (CAD)
  • Building Information Modelling (BIM)
  • Product Design and Engineering
  • 3D Visualisation and Rendering
  • Video Editing and Media Production
  • Scientific and Technical Computing
Why Choose Rackmount Workstations
  • Dedicated CPU and GPU resources per user
  • Broad software and application compatibility
  • Remote workstation access capability
  • Simplified security and infrastructure management
  • Flexible hardware customisation options
  • Independent workstation ownership and upgrades

Microblade Workstations

Microblade workstation is particularly well suited to engineering teams, educational institutions, government departments, design studios and multi-user CAD environments where large numbers of users require reliable workstation-class resources. Microblade systems simplify deployment, centralise management and provide a scalable foundation for remote workstations, digital engineering workflows, 3D design applications, simulation environments and modern hybrid work initiatives.

Gigabyte Blade Server B343-C40-AAJ3 3U 10-Node UP 20-Bay Gen5 NVMe/SATA
GIGABYTE
Show specifications chevron-down
  • 10
  • Single
  • AMD EPYC 4005/4004 Series processors, AMD Ryzen 9000/7000 Series
  • 256
  • DDR5
  • 2
  • 25Gb/s
  • 2000
NZ$77,178.85 RRP Ex GST
MicroCloud A+ Server AS -3015MR-H8TNR
Supermicro
Show specifications chevron-down
  • 3U
  • Single
  • AMD EPYC 4005/4004 Series processors
  • 4
  • DDR5
  • 2
  • 2200
POA
Typical Applications
  • Computer-Aided Design (CAD)
  • Engineering and Design Teams
  • Higher Education Labs
  • Government Technical Workloads
  • Remote Workstation Environments
  • Multi-User Collaboration Platforms
Why Choose Microblade Workstations
  • Higher workstation density per rack
  • Reduced power and cooling requirements
  • Lower total cost of ownership
  • Simplified deployment and administration
  • Efficient use of datacentre space
  • Scalable platform for future growth
Choose Your Architecture

One workload, three ways to deliver it

Rackmount, microblade and blade workstations trade density, scalability and cost differently. Use this comparison to match architecture to team size, workload profile and growth plans.

Architecture Density Best for Scalability Power & cooling
Rackmount Workstation
1 user per 2U–4U chassis Individual power users needing a dedicated, fully isolated CPU/GPU allocation — CAD leads, senior VFX artists, ML engineers. Add chassis independently; no shared backplane constraints. Standard rack PDU and CRAC cooling; per-chassis airflow.
Microblade Workstation
4–8 users per 3U–6U enclosure Design and engineering teams standardising on a common GPU profile across a floor or department. Scale in blade increments within an enclosure; add enclosures as headcount grows. Shared enclosure fans and power supplies; higher density per rack unit.
Blade Workstation
Up to 16+ users per chassis Large studios, universities and enterprise floors needing maximum user density per rack. Highest density scaling; ideal where rack space is the binding constraint. Engineered hot/cold aisle containment; higher per-rack thermal load to plan for.

Modern Work Requires More Than a Traditional Desktop Workstation

Engineering, architecture, design and media teams need secure, high-performance access to applications and data from anywhere — something desk-side hardware was never built for.

Anywhere Access
Engineers, architects and designers need secure access to applications, workstation resources and project data regardless of location, device or office.
Large Project Data
CAD models, BIM projects, visualisation datasets and media assets become increasingly difficult to manage efficiently across multiple offices and remote teams.
Data Security Risks
Sensitive intellectual property, customer information and engineering data often reside on endpoint devices, increasing risk and compliance challenges.
Rising Support Costs
Maintaining distributed workstation fleets increases operational overhead, IT administration requirements and lifecycle management complexity.
Disruptive Hardware Refreshes
Refreshing workstation hardware across multiple locations often leads to deployment delays, downtime and unnecessary infrastructure costs.
Performance Bottlenecks
Remote users frequently experience inconsistent performance when running graphics-intensive applications, visualisation workloads, simulation software and AI-enabled workflows.
Why Organisations Are Moving to Centralised Workstation Infrastructure
Organisations running business-critical applications such as CAD, BIM, digital engineering, 3D visualisation, simulation, media production, artificial intelligence and high-performance computing are increasingly adopting rackmount, microblade and blade workstation architectures. Centralised workstation infrastructure improves security, simplifies management, enables hybrid work, accelerates collaboration and delivers consistent workstation-class performance to users wherever they are located.

The DiGiCOR Approach

Instead of distributing high-performance workstations across offices and homes, DiGiCOR centralises workstation infrastructure within secure datacentres, server rooms, or equipment cupboards while providing users with an exceptional remote experience.

Users access a dedicated workstation from virtually anywhere while all applications, processing power, and data remain securely inside the organisation's environment.

Remote PC Environment

The Result

Workstation-class performance
Centralised management
Improved security
Simplified support
Better collaboration
Future scalability

DiGiCOR Designs Around Your Applications & Workloads

Every engineering, design and AI environment is different. Rather than recommending a generic workstation platform, DiGiCOR evaluates your applications, workflows, user profiles, performance expectations and growth plans to design the most effective remote workstation solution for your organisation.

DiGiCOR Solution Design User Workloads CAD / BIM AI / Simulation Right-Sized Infrastructure Vendor-Neutral Advice Local Support Full-Stack Partner Ongoing Optimisation
Workload-Based Solution Design

From Workload Analysis to Solution Design

Whether you're running CAD, BIM, 3D visualisation, media production, simulation, scientific computing or AI workloads, our team evaluates your environment to recommend the optimal workstation architecture, CPU, GPU, memory, storage and networking configuration.

We look at your applications, user profiles, performance expectations, security requirements and future growth plans to design a right-sized solution that delivers long-term value.
Workstation-class performance for every user
Infrastructure sized specifically for your workloads
Improved security and centralised management
Reduced operational complexity and support effort
Scalable architecture designed for future growth
Better return on investment and lower total cost of ownership

Choose the Right Workstation Architecture

Ideal for organisations requiring dedicated workstation performance with maximum flexibility. Each workstation operates as an independent physical system installed within a rack environment.

Best For

  • Architecture Firms
  • Engineering Teams
  • Product Design
  • Visualisation
  • Media Production

Key Benefits

  • Dedicated CPU, GPU, RAM and Storage
  • Superior application compatibility
  • Flexible hardware configurations
  • Individual workstation ownership
  • Simplified upgrades

Designed for organisations looking to maximise user density while maintaining dedicated resources for every user. Multiple workstation nodes are consolidated within a shared chassis, reducing rack footprint and infrastructure costs.

Best For

  • Design Departments
  • Universities
  • Government Agencies
  • Engineering Teams
  • Multi-User CAD Environments

Key Benefits

  • Increased workstation density
  • Lower power consumption
  • Reduced rack space requirements
  • Simplified deployment
  • Lower total cost of ownership

Datacentre-optimised workstation infrastructure designed for large-scale deployments. Each workstation blade is housed within a shared enterprise chassis that provides centralised power, cooling, networking, and management.

Best For

  • Enterprise Engineering Environments
  • Defence
  • Utilities
  • Manufacturing
  • Research Institutes

Key Benefits

  • Exceptional density
  • Simplified lifecycle management
  • Enterprise reliability
  • Rapid scalability
  • Centralised administration
Choose Your Architecture

Rackmount vs Microblade vs Blade Workstations

A quick side-by-side so technical buyers can match density, budget and workload requirements without jumping between tabs.

Criteria ArchitectureRackmount Workstations ArchitectureMicroblade Workstations ArchitectureBlade Workstations
Density Standard — one independent physical workstation per rack unit. High — multiple nodes consolidated in a shared chassis. Exceptional — datacentre-optimised for large-scale deployments.
Best For Architecture firms, engineering teams, product design, visualisation, media production. Design departments, universities, government agencies, multi-user CAD environments. Enterprise engineering, defence, utilities, manufacturing, research institutes.
Expansion Options Flexible hardware configurations; independent workstation ownership and upgrades. Simplified deployment across nodes; efficient use of datacentre space. Integrated power, cooling and networking; rapid expansion across the chassis.
Scalability Scales per user — add individual workstations as headcount grows. Scales per chassis — lower TCO as user numbers increase. Scales at enterprise level — centralised administration across large user populations.
Power & Cooling Standard per-unit power draw and cooling. Reduced power consumption and cooling requirements per user. Centralised power, cooling and management services.
Management Individual workstation ownership; simplified upgrades. Simplified deployment and centralised administration. Fully centralised IT administration and lifecycle management.
Rackmount Workstations
DensityStandard — one independent workstation per rack unit.
Best ForArchitecture firms, engineering teams, product design, visualisation, media production.
ExpansionFlexible hardware configurations; independent ownership and upgrades.
ScalabilityScales per user as headcount grows.
Microblade Workstations
DensityHigh — multiple nodes consolidated in a shared chassis.
Best ForDesign departments, universities, government agencies, multi-user CAD.
ExpansionSimplified deployment; efficient use of datacentre space.
ScalabilityScales per chassis with lower total cost of ownership.
Blade Workstations
DensityExceptional — datacentre-optimised for large-scale deployments.
Best ForEnterprise engineering, defence, utilities, manufacturing, research institutes.
ExpansionIntegrated power, cooling and networking for rapid expansion.
ScalabilityEnterprise-scale, centralised administration.

Workload-to-GPU Sizing Guide

Match VRAM and compute class to what you actually run

The NVIDIA RTX PRO Blackwell series scales from single-app CAD workstations to multi-GPU nodes running 70B+ parameter local LLMs. Use VRAM headroom as the primary sizing signal — compute follows from there.

GPU VRAM headroom Typical workload
RTX PRO 2000Entry Blackwell workstation GPU
16GB GDDR7 ECC
2D/3D CAD, Revit, light BIM coordination
RTX PRO 4000Mainstream Blackwell workstation GPU
24GB GDDR7 ECC
SolidWorks PDM, mid-size assemblies, DaVinci Resolve editing
RTX PRO 4500Performance Blackwell workstation GPU
32GB GDDR7 ECC
Federated BIM models, GPU rendering, Unreal Engine previz
RTX PRO 5000High-end Blackwell workstation GPU
48GB GDDR7 ECC
Large-scale simulation, computer vision training, 8K media
RTX PRO 6000Flagship Blackwell workstation GPU
96GB GDDR7 ECC
Local LLM fine-tuning (70B+ parameters), multi-GPU AI training
Rule of thumb: size VRAM to your largest single dataset or model, not your average one. Scaling further: WRX90 nodes support up to 4x RTX PRO 6000 per chassis.
NVIDIA RTX PRO Blackwell

Match the Right GPU to Your Workload

Every DiGiCOR remote workstation can be configured with the latest NVIDIA RTX PRO Blackwell professional GPUs — from entry-level CAD to multi-GPU AI training. Not sure which card you need? Use the guide below to match your workload, then talk to our Australian and New Zealand engineers to size the complete system.

RTX PRO
2000
16GB GDDR7
Entry-level professional graphics for 2D/3D drafting and everyday CAD. Ideal for AutoCAD and SolidWorks part and assembly work in a compact, power-efficient 70W card.
Entry CAD AutoCAD SolidWorks Drafting
RTX PRO
4000
24GB GDDR7
The single-slot workhorse for mainstream 3D. Handles Revit, mid-size assemblies and multi-app design workflows with headroom for larger datasets and generative AI tools.
Mainstream 3D Revit Mid-size BIM Single-slot
RTX PRO
4500
32GB GDDR7
Steps up to heavier visualisation and entry-level GPU rendering, plus small AI inference workloads. A strong balance of performance and efficiency at 200W for demanding design teams.
Visualisation GPU Rendering AI Inference Large BIM
RTX PRO
5000
48GB GDDR7
Built for serious rendering, simulation and AI development. 48GB of memory unlocks larger scenes, higher-fidelity simulation and meaningful local model development and fine-tuning.
Rendering Simulation AI Development Data Science
RTX PRO
6000
96GB GDDR7 ECC
The most powerful desktop GPU ever made. Maximum VRAM for local LLMs, multi-GPU training and film-grade rendering. 24,064 CUDA cores and ECC memory for mission-critical AI and creative work.
Local LLMs Multi-GPU Training Film-Grade Rendering ECC Memory

Get the Right GPU the First Time

Over-spec and you overspend. Under-spec and your team waits on renders, simulations and AI jobs. Our ANZ engineers size the exact GPU, CPU, memory and storage around your real workloads — no guesswork, no wasted budget.

Talk to a Solution Architect

Built For Growth

Start Small. Expand When Needed.

Many organisations begin with a handful of remote workstations before rapidly expanding adoption across multiple teams and locations.

DiGiCOR solutions are designed to scale as requirements evolve.

Expand Compute

Add:

  • Additional users
  • Additional workstation nodes
  • More CPU performance
  • More memory
  • NVIDIA RTX GPUs
  • AI acceleration

Expand Storage

Add:

  • Additional NAS capacity
  • Flash acceleration
  • Multi-site replication
  • Archive storage
  • Backup repositories

Expand Access

Support:

  • Multiple offices
  • Home users
  • Contractors
  • Project teams
  • International collaboration
Full-Stack Infrastructure

DiGiCOR delivers the compute, the storage and everything around it

Workstation compute is one layer of a remote workstation deployment. DiGiCOR designs and supplies the storage, networking and security layers underneath it as one integrated, scalable system.

Compute & GPU expansion

Multi-GPU scaling on the WRX90 platform and straightforward node additions as team size or model complexity grows — no re-architecture required.

Multi-GPU scalingNode addition

Centralised shared storage

NAS/SAN integration for Revit Central Models, SolidWorks PDM vaults and AI training datasets — one authoritative copy, accessible to every workstation node.

TrueNASQNAPNVMe Flash

Networking & cyber security

Low-latency 10GbE/25GbE switching between compute and storage, perimeter firewalling, and automated backup so remote sessions stay fast and protected.

10GbE / 25GbEFortinetPalo AltoVeeam Backup
Scalable by Design

Remote Workstation Solutions Built to Grow With You

Start Small. Scale When Needed.

Many organisations across Australia and New Zealand begin with a handful of remote workstations for CAD, BIM, engineering, 3D rendering or AI development, then rapidly expand adoption across multiple teams, sites and states. DiGiCOR designs scalable remote workstation infrastructure — locally assembled, tested and supported across ANZ — so you can add GPU performance, storage capacity and users without redesigning the underlying platform.

Expand Compute & GPU

More performance for CAD, rendering & AI
  • Additional concurrent users
  • Extra workstation nodes
  • Higher CPU core counts & memory
  • NVIDIA RTX PRO & data centre GPUs
  • AI acceleration for model training
  • Multi-GPU scaling for HPC workloads

Expand Storage

Capacity for large project & media files
  • Additional NAS & SAN capacity
  • NVMe flash acceleration tiers
  • Multi-site replication across ANZ
  • Archive & cold storage
  • Backup & disaster recovery repositories
  • TrueNAS & QNAP shared storage

Expand Access

Secure remote access from anywhere
  • Multiple offices & branch sites
  • Remote & hybrid home-based users
  • Contractors & external collaborators
  • Short-term project teams
  • Cross-state & trans-Tasman collaboration
  • Secure access to centralised data
Scalable by Design

Remote Workstation Solutions Built to Grow With You

Start Small. Scale When Needed.
Many organisations across Australia and New Zealand begin with a handful of remote workstations for CAD, BIM, engineering, 3D rendering or AI development, then rapidly expand adoption across multiple teams, sites and states. DiGiCOR designs scalable remote workstation infrastructure — locally assembled, tested and supported across ANZ — so you can add GPU performance, storage capacity and users without redesigning the underlying platform.

Expand Compute & GPU

More performance for CAD, rendering & AI
  • Additional concurrent users
  • Extra workstation nodes
  • Higher CPU core counts & memory
  • NVIDIA RTX PRO & data centre GPUs
  • AI acceleration for model training
  • Multi-GPU scaling for HPC workloads

Expand Storage

Capacity for large project & media files
  • Additional NAS & SAN capacity
  • NVMe flash acceleration tiers
  • Multi-site replication across ANZ
  • Archive & cold storage
  • Backup & disaster recovery repositories
  • TrueNAS & QNAP shared storage

Expand Access

Secure remote access from anywhere
  • Multiple offices & branch sites
  • Remote & hybrid home-based users
  • Contractors & external collaborators
  • Short-term project teams
  • Cross-state & trans-Tasman collaboration
  • Secure access to centralised data

High-Performance Shared Storage

Unlock Collaboration with Centralised NAS Storage

A workstation alone solves only part of the challenge.

Modern design, engineering, and creative teams require secure access to shared project data that can be accessed from anywhere.

DiGiCOR integrates enterprise NAS platforms alongside remote workstation environments to create a centralised collaboration platform.

Benefits

  • Single source of truth for project files
  • Faster collaboration across locations
  • Simplified backup and recovery
  • Streamlined project management
  • Improved data protection
  • Easier compliance and auditing

Ideal For

  • Autodesk Revit Central Models
  • BIM Projects
  • SolidWorks PDM
  • Media Libraries
  • AI Datasets
  • Engineering Documentation
  • Geospatial Applications

More Than Remote Workstations

A Foundation for Digital Engineering & AI

What starts as a remote workstation environment often evolves into a broader digital infrastructure platform. By combining workstation infrastructure, centralised storage, and GPU resources, organisations can support additional workloads including:

Engineering & Design

  • CAD
  • BIM
  • Simulation
  • Digital Twin Environments

Media & Content Creation

  • Video Editing
  • Animation
  • Rendering
  • Virtual Production

AI & Data Science

  • AI Development
  • Machine Learning
  • Model Training
  • Computer Vision

Research Computing

  • Data Analysis
  • Scientific Modelling
  • High-Performance Computing
The Bigger Picture

More Than Remote Workstations

A Foundation for Digital Engineering, AI & Innovation

What begins as a remote workstation solution often evolves into a strategic digital infrastructure platform. By combining workstation-class compute, GPU acceleration, centralised storage and secure networking, organisations create a future-ready foundation capable of supporting engineering, design, artificial intelligence, media production and research computing workloads from a single platform.

Use Cases Engineering CAD • BIM • Simulation AI ML • Training • Vision Media Editing • Rendering • VFX Research HPC • Analytics • Modelling Remote Workstation Platform Secure Access • Centralised Management • Dedicated Performance Scale When Needed Storage NAS • SAN • Object Network Fast • Resilient • Managed Compute CPU • GPU • RAM Security Access • Backup Flexibility Grow on demand

Engineering & Design

  • Computer-Aided Design (CAD)
  • Building Information Modelling (BIM)
  • Simulation & Digital Twins
  • Product Design & Visualisation

Media & Content Creation

  • Video Editing
  • Animation & Motion Graphics
  • GPU Rendering
  • Virtual Production

AI & Data Science

  • Machine Learning
  • AI Development
  • Model Training
  • Computer Vision

Research Computing

  • Data Analytics
  • Scientific Modelling
  • High Performance Computing
  • Advanced Research Workloads

More Than Remote Workstations

A Foundation for Digital Engineering, AI & Innovation
What begins as a remote workstation solution often evolves into a strategic digital infrastructure platform. By combining workstation-class compute, GPU acceleration, centralised storage and secure networking, organisations create a future-ready foundation capable of supporting engineering, design, artificial intelligence, media production and research computing workloads from a single platform.
Use Cases Engineering CAD • BIM • Simulation AI ML • Training • Vision Media Editing • Rendering • VFX Research HPC • Analytics • Modelling Remote Workstation Platform Secure Access • Centralised Management • Dedicated Performance Scale When Needed Storage NAS • SAN • Object Network Fast • Resilient • Managed Compute CPU • GPU • RAM Security Access • Backup Flexibility Grow on demand

Engineering & Design

  • Computer-Aided Design (CAD)
  • Building Information Modelling (BIM)
  • Simulation & Digital Twins
  • Product Design & Visualisation

Media & Content Creation

  • Video Editing
  • Animation & Motion Graphics
  • GPU Rendering
  • Virtual Production

AI & Data Science

  • Machine Learning
  • AI Development
  • Model Training
  • Computer Vision

Research Computing

  • Data Analytics
  • Scientific Modelling
  • High Performance Computing
  • Advanced Research Workloads

Why Organisations Choose DiGiCOR

Unlike vendors that focus solely on workstation hardware, DiGiCOR delivers complete solutions.

Infrastructure Expertise

  • Rackmount Workstations
  • Microblade Platforms
  • Blade Workstations
  • GPU Infrastructure

Storage Expertise

  • Synology
  • QNAP
  • NetApp
  • Dell
  • HPE Storage Solutions

Networking Expertise

  • Juniper Networks
  • HPE Aruba Networking
  • High-Speed Datacentre Fabric

Data Protection

  • Backup
  • Replication
  • Disaster Recovery
  • Cyber Resilience

End-To-End Delivery

  • Solution Design
  • Architecture Consulting
  • Deployment
  • Integration
  • Support
  • Lifecycle Services
RTX PRO Blackwell & Workstation FAQ

Frequently Asked Questions on Right GPU & Workstation

Straight answers to the questions our engineers hear most — from picking an RTX PRO Blackwell card to sizing a multi-GPU Threadripper PRO workstation for CAD, rendering and local AI.

Which RTX PRO Blackwell card do I need? +
It depends on your workload. The RTX PRO 2000 suits entry-level CAD and drafting, the 4000 handles mainstream 3D and Revit, the 4500 is built for real-time rendering and large BIM 3D models, the 5000 targets rendering and AI development, and the 6000 is the choice for local LLMs and multi-GPU training.
RTX PRO 6000 vs GeForce RTX 5090 — why pay more? +
The RTX PRO 6000 offers 96GB of VRAM versus 32GB, plus ECC memory and certified professional drivers. That makes it the only realistic option for large models and mission-critical work — and in LLM/AI workloads, VRAM is the factor that matters most.
Is the RTX PRO 2000 enough for SolidWorks? +
Yes — for typical part and assembly work it's plenty. SolidWorks is largely CPU clock-bound, and the GPU mainly drives the viewport, so the RTX PRO 2000 handles the majority of day-to-day design comfortably.
What can I run locally with 96GB of VRAM? +
You can run 70B-class LLMs quantised on a single card. Scale to multi-GPU configurations and you reach 100B+ parameter models and serious fine-tuning — all on-premise, keeping your data in-house.
How many RTX PRO 6000s fit in a DiGiCOR WRX90 workstation? +
Up to three, across the WRX90 platform's PCIe Gen5 slots — backed by the WRX90-WS-RACK's 2200W power supply to keep a triple-GPU build stable under sustained load.
Which DiGiCOR workstation suits each GPU tier? +
Any tier fits any of our workstations as a single card. Typical pairings are 2000/4000 in INTEL-WS and RYZEN-WS, 4500/5000 in TRX50-WS, and multi-GPU 5000/6000 builds in WRX90-WS or WRX90-WS-RACK.
Why put a GPU workstation in a rack? +
A rack-mounted workstation moves noise and heat out of the office while still supporting IPMI remote management and dual 10GbE networking — and it lets a whole team share one powerful machine.
Do I need Threadripper PRO for multi-GPU? +
A single high-end GPU runs happily in any of our workstations. It's only at two or more cards that WRX90's abundant PCIe lanes and 8-channel memory become necessary — scaling cleanly to three GPUs.
TRX50-WS or WRX90-WS — which Threadripper do I need? +
TRX50 covers up to 64 cores with quad-channel memory for rendering and simulation. WRX90 steps up to 96 cores, 8-channel memory and support for up to three GPUs — ideal for the most demanding multi-GPU and AI workloads.
RYZEN-WS or INTEL-WS — how do I choose? +
Both handle CAD, development and professional desktop work well. Ryzen 9000 offers more cores per dollar, while Intel Core Ultra pushes higher core counts up to 24 cores — so it comes down to your budget and threading needs.
What motherboards do these workstations use? +
We use CSM (Corporate Stable Model) boards with guaranteed long-term availability and stable specifications, so fleet purchases stay consistent and replacements match for years. Each board is equipped with IPMI management ports for easy remote management.
Complete Infrastructure Expertise

Why Organisations Choose DiGiCOR

Deploying remote workstation infrastructure requires far more than workstation hardware. Successful digital workspace environments depend on high-performance compute, scalable storage, secure networking, cyber security and resilient data protection. DiGiCOR brings these technologies together to deliver complete workstation infrastructure solutions for engineering, architecture, manufacturing, government, research, education and media organisations.

01
Enterprise Storage & Data Management
High-performance workstation environments depend on fast, resilient and scalable storage. DiGiCOR delivers solutions featuring TrueNAS, Seagate, Western Digital, QNAP, HPE Storage and hybrid cloud architectures to support CAD, BIM, AI, simulation, rendering and large-scale engineering datasets.
02
High-Speed Networking Infrastructure
Workstation performance relies on the network behind it. Our architects design and deliver networking solutions using HPE Aruba Networking, HPE Juniper Networking, Cisco, Fortinet, Palo Alto Networks and Ubiquiti to ensure low-latency access to applications, data and GPU resources.
03
Backup, Recovery & Business Continuity
Protecting engineering projects, design files and business-critical data is essential. DiGiCOR integrates Veeam and Arcserve technologies to help organisations strengthen cyber resilience, simplify recovery workflows and minimise operational disruption.
04
Cyber Security & Secure Remote Access
Centralised workstation infrastructure reduces the risk of sensitive data residing on endpoint devices. Combined with solutions from Bitdefender and leading security vendors, organisations can improve compliance, strengthen endpoint protection and secure remote user access.

Build a Secure Workspace Without Limits

Secure Workspace Server

Give users the freedom to work from anywhere while maintaining the performance, security, and control your organisation demands.

From a small engineering team to an enterprise-wide deployment, DiGiCOR delivers scalable Remote Workstation Solutions built around rackmount, microblade, and blade workstation architectures, integrated with shared storage, networking, security, and future AI expansion.

Speak with a DiGiCOR Specialist

Discover how a modern Remote Workstation platform can improve productivity, strengthen security, simplify management, and create a scalable foundation for future engineering, creative, and AI workloads.

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