
Industrial facilities, utilities, transport networks and remote infrastructure need dependable connectivity just as much as conventional offices do. However, the equipment used to connect a factory floor, solar farm or roadside cabinet cannot always be the same equipment installed in a climate-controlled branch office.
This is where the difference between Cisco industrial routers and regular Cisco commercial routers becomes important.
Both router categories can provide secure network connectivity, VPN services, traffic routing, centralized management and wide-area network access. The major difference is not simply routing speed or port count. It is the environment and operational conditions for which the hardware has been designed.
Cisco industrial routers are engineered for harsh, remote, outdoor, mobile and operational-technology environments. Regular commercial routers are primarily designed for controlled indoor locations such as offices, retail branches, schools, hotels and enterprise communications rooms.
Understanding this distinction helps organizations avoid premature hardware failure, connectivity interruptions, unnecessary costs and infrastructure that does not match the installation environment.
What Is the Main Difference Between Cisco Industrial and Commercial Routers?
The main difference is their physical construction and intended operating environment.
Cisco industrial routers use ruggedized hardware, industrial power inputs, extended operating-temperature ranges, flexible mounting options and connectivity features suitable for remote assets and operational technology. They are designed to continue operating in locations affected by dust, vibration, moisture, heat, cold or unstable power.
Regular Cisco commercial routers are designed mainly for offices, branches and enterprise network rooms where temperature, humidity, electrical supply and airflow are controlled.
Both categories may support advanced routing, security, VPNs, SD-WAN and remote management. However, industrial routers are designed to deliver those capabilities under environmental and operational conditions that may be unsuitable for standard business routers.
What Is a Cisco Industrial Router?
A Cisco industrial router is a purpose-built networking device used to connect machines, sensors, controllers, vehicles, cameras and remote field equipment to private networks, data centres or cloud platforms.
These routers are commonly installed close to operational equipment rather than inside conventional IT rooms. They may be placed in control cabinets, utility substations, roadside enclosures, renewable-energy installations, vehicles or exposed outdoor locations.
Cisco describes its industrial router portfolio as ruggedized 5G-capable platforms designed to handle challenging conditions such as temperature extremes, vibration, humidity, dust and water while also providing enterprise cybersecurity capabilities.
Typical industrial-router deployments include:
- Manufacturing plants
- Oil and gas sites
- Electrical substations
- Solar and wind farms
- Mining operations
- Railway and transportation systems
- Smart-city infrastructure
- Water-treatment facilities
- EV charging stations
- Roadside cabinets
- Remote surveillance systems
- Public-safety vehicles
- Industrial IoT environments
An industrial router therefore acts as more than an internet gateway. It often becomes the secure connection between physical operational systems and the organization’s wider IT, cloud or data-centre infrastructure.
What Is a Regular Cisco Commercial Router?
A regular commercial router—more accurately described as an enterprise or branch router—is designed mainly for conventional business networking.
It is normally deployed in:
- Corporate offices
- Branch locations
- Retail stores
- Hotels
- Schools
- Clinics
- Warehouses
- Data rooms
- Financial-service branches
- Small and medium-sized businesses
Commercial Cisco routers commonly support:
- Internet and WAN connectivity
- Site-to-site VPNs
- Remote-user access
- Cisco Catalyst SD-WAN
- Firewall and security services
- Cloud connectivity
- Voice services
- Application visibility
- Branch network management
Platforms such as the Cisco Catalyst 8200 focus on enterprise edge and branch WAN requirements, with hardware acceleration, integrated Ethernet WAN interfaces and scalable encrypted connectivity.
These routers can be powerful and feature-rich, but they usually rely on the building or network room to provide environmental protection.
Cisco Industrial Routers vs Commercial Routers: Quick Comparison
| Comparison area | Cisco industrial router | Regular Cisco commercial router |
|---|---|---|
| Intended environment | Factories, outdoor sites, vehicles, utilities and remote infrastructure | Offices, branches, retail sites and protected network rooms |
| Construction | Ruggedized industrial hardware | Standard enterprise enclosure |
| Temperature range | Extended range on supported models | Usually designed for normal indoor temperatures |
| Shock and vibration | Built for industrial exposure | Intended for stable indoor installation |
| Dust and moisture | Enhanced resistance; selected models offer formal IP protection | Normally requires a protected room or enclosure |
| Power input | Wide-range DC options are common | Standard AC power is common |
| Mounting | DIN rail, wall, panel, cabinet or vehicle depending on model | Rack, shelf or desktop |
| Cellular connectivity | Frequently a core design requirement | Often optional or used as branch backup |
| Primary network role | Industrial IoT, operational technology and remote assets | Branch users, applications and business WAN |
| Physical maintenance | Often difficult or expensive | Usually accessible to IT staff |
| Typical cost | Higher because of ruggedization and certifications | Usually more economical for indoor use |
| Best choice | Harsh, remote or mission-critical field locations | Controlled commercial environments |
1. Environmental Durability
Environmental durability is the most important distinction between the two categories.
A normal office router may operate reliably for years in a clean, air-conditioned communications room. The same router could experience frequent failures if installed beside machinery, inside an unventilated outdoor cabinet or at a desert energy site.
Industrial environments may expose networking hardware to:
- Extreme heat
- Freezing temperatures
- Dust and sand
- Condensation
- High humidity
- Continuous vibration
- Mechanical shock
- Electrical interference
- Outdoor weather
- Rapid temperature changes
Cisco industrial routers are designed and tested with these conditions in mind.
For example, Cisco specifies the Catalyst IR1101 for standard operation from approximately –40°C to 60°C, with higher supported limits under defined airflow conditions. The platform is also designed to withstand shock, vibration, dust, humidity and electrostatic discharge.
By comparison, conventional Cisco enterprise platforms are generally intended for controlled indoor deployment. Cisco lists a normal operating range of approximately 0°C to 40°C for several commercial 8200-series platforms, although exact limits differ by model and installation conditions.
This does not mean that a commercial router is low quality. It means that its environmental protection is expected to come from the building, rack and cooling system.
An industrial router protects itself from its surroundings. A commercial router expects the installation environment to provide that protection.
2. Rugged Construction and Enclosure Protection
Industrial routers are commonly built with reinforced metal housings, industrial-grade components and designs intended to manage vibration, temperature changes and physical exposure.
They may also use:
- Fanless cooling
- Rugged connectors
- Industrial-grade storage
- Sealed or protected interfaces
- Secure mounting points
- Components selected for extended temperatures
Some heavy-duty models provide formal ingress-protection ratings.
For example, Cisco positions the Catalyst IR8100 Heavy Duty Series for outdoor and extreme environments, while Cisco’s own industrial-router guidance identifies certain IR8100 models as IP67-rated platforms.
An IP-rated device may provide documented resistance to dust and water, but buyers should not assume every router described as “industrial” has the same enclosure rating. A rugged router designed for an indoor cabinet may still require a weatherproof external enclosure when used outdoors.
Commercial routers generally use conventional desktop or rack-mount housings. These are well suited to protected facilities but should not be treated as sealed industrial equipment.
3. Power Input and Electrical Requirements
Power availability at an industrial site can be very different from power in an office.
A branch office typically provides standard AC mains power, often backed by an uninterruptible power supply. Industrial and remote locations may use:
- 12V, 24V or 48V DC systems
- Vehicle electrical systems
- Solar power
- Battery banks
- Utility control power
- Industrial DC supplies
- Redundant field-power sources
Cisco industrial routers commonly support wide-range DC inputs so they can be integrated directly into these systems.
The Catalyst IR1101, for example, supports an integrated input range of approximately 9.6V to 60V DC, making it suitable for different industrial power environments.
Commercial enterprise routers commonly use standard AC input through an internal or external power supply. Some commercial platforms may offer DC or redundant-power options, but their overall installation model is normally optimized for a rack, office or data room.
Before selecting a router, verify:
- Available voltage
- AC or DC supply
- Grounding requirements
- Surge protection
- Redundancy requirements
- Battery or solar operation
- Connector type
- Local electrical standards
A router with the correct network specifications can still be unsuitable if it cannot safely connect to the available power system.
4. Mounting and Physical Installation
The physical location of a router often determines which category is appropriate.
Cisco industrial routers may be designed for:
- DIN-rail mounting
- Wall mounting
- Control-panel installation
- Industrial cabinets
- Vehicles
- Roadside infrastructure
- Outdoor enclosures
DIN-rail mounting is especially useful in automation environments because it allows the router to be installed beside programmable logic controllers, industrial switches, relays, meters and other control equipment.
Regular enterprise routers are more commonly installed:
- In 19-inch racks
- On shelves
- On desktops
- Inside branch communications cabinets
- In conventional network rooms
A rack-mounted router may be easy to install in an office but impractical inside a compact machine-control cabinet. Similarly, an industrial DIN-rail router may be unnecessary and less convenient in a full enterprise data room.
5. Cellular and Remote-WAN Connectivity
Many industrial locations do not have reliable access to fiber, cable or fixed broadband.
Remote assets may be connected through:
- 4G LTE
- 5G
- Dual cellular carriers
- Private cellular networks
- Wi-Fi
- Satellite-connected upstream systems
- Ethernet where available
Cellular connectivity is therefore often central to the industrial router’s design rather than an optional backup feature.
Cisco’s Catalyst IR1800 family supports modular cellular connectivity and is positioned for secure fixed and mobile industrial deployments. Cisco highlights support for capabilities such as simultaneous 5G connectivity, Wi-Fi 6 and advanced security on supported configurations.
The IR1800 architecture also includes model-dependent options such as modular cellular WAN, Wi-Fi, GPS-related functionality, digital I/O, CAN bus and industrial storage.
Commercial routers can also support LTE or 5G. However, cellular service is frequently used for branch backup, temporary connectivity or transport diversity rather than as the permanent link for isolated field equipment.
When planning cellular connectivity, confirm:
- Regional cellular bands
- Carrier approval
- SIM format
- Single or dual SIM requirements
- Antenna type
- Cable length
- Signal quality
- 4G or 5G availability
- Public or private cellular network
- Data plan
- Failover design
The router alone does not guarantee reliable cellular service. Antenna placement and network coverage are equally important.
6. Information Technology vs Operational Technology
Regular commercial routers mainly connect information-technology resources.
Examples include:
- Employee laptops
- Business applications
- Cloud services
- VoIP systems
- Branch-office users
- Corporate data centres
- Internet services
Industrial routers frequently connect operational-technology systems.
Examples include:
- Programmable logic controllers
- Remote terminal units
- Industrial sensors
- Utility meters
- Manufacturing machinery
- Building-control systems
- Transportation equipment
- Surveillance equipment
- Energy infrastructure
Operational technology directly interacts with physical processes. A connectivity outage may therefore affect production, transport, power distribution, water treatment or site safety—not just email and internet access.
Cisco’s industrial IoT architecture is intended to connect industrial assets while supporting edge applications, data movement and integration with multicloud business systems.
This makes industrial routing part of the broader IT–OT convergence strategy: operational systems gain secure connectivity and centralized visibility without being treated as ordinary office devices.
7. Security Requirements
Both Cisco industrial and commercial routers can support sophisticated security capabilities.
Depending on platform, licensing and software release, these may include:
- Encrypted VPNs
- Firewalls
- Secure Boot
- Signed software images
- Access-control policies
- Network segmentation
- Intrusion-prevention features
- Cisco Catalyst SD-WAN
- Centralized security management
- Application visibility
- Threat monitoring
Cisco specifically highlights next-generation firewall capabilities within its current industrial router portfolio.
The main difference is the risk environment.
A commercial router typically protects employees, business applications and branch traffic. An industrial router may protect equipment that controls a physical process or provides critical infrastructure.
A compromised office network may expose data. A compromised operational network may also interrupt production, damage equipment or affect public services.
Industrial security planning should therefore consider:
- Separation between IT and OT networks
- Least-privilege access
- Secure remote maintenance
- Device identity
- Network segmentation
- Application visibility
- Configuration control
- Event monitoring
- Cellular security
- Physical access to the router
Cisco also provides OT-focused security technologies such as Cyber Vision, which is designed to improve visibility into industrial environments and reduce the operational-technology attack surface.
8. Reliability in Remote and Unattended Locations
Commercial routers are generally installed where technicians can reach them relatively easily.
Industrial routers may be hundreds of kilometres from the nearest IT team.
Examples include:
- Solar farms
- Oil pipelines
- Mines
- Railway infrastructure
- Utility substations
- Roadside monitoring stations
- Water pumping sites
- Unattended charging stations
A site visit to one of these locations can be expensive and time-consuming. The router must therefore support reliable remote operation.
Important capabilities may include:
- Centralized configuration
- Remote software updates
- Health monitoring
- Cellular failover
- Automated deployment
- Out-of-band access
- Local data storage
- Edge application hosting
- Multiple WAN paths
Cisco’s IR1100 portfolio can extend Cisco Catalyst SD-WAN management to industrial IoT edge environments, allowing centralized deployment, configuration and administration.
Remote management is also available on commercial routers, but the economic importance is greater when the equipment is difficult to access physically.
9. Interfaces and Modularity
Industrial and commercial routers often prioritize different interfaces.
A commercial router may focus on:
- Ethernet WAN
- SFP fiber interfaces
- Branch LAN connectivity
- Voice modules
- VPN throughput
- SD-WAN
- Enterprise security services
An industrial router may additionally prioritize:
- Modular cellular radios
- Serial ports
- Digital input/output
- GPS
- CAN bus
- Industrial Ethernet
- Removable industrial storage
- Wi-Fi
- Edge-compute expansion
Cisco describes the IR1800 as a modular industrial router available in multiple base platforms with pluggable modules for adding different interface types.
The IR1800 also supports edge-computing resources, application hosting and expandable industrial-grade storage on supported configurations.
This modularity can help organizations adapt a router to a specific vehicle, machine, utility or remote-site requirement.
10. Edge Computing
Some industrial routers can process data close to the machines or sensors that produce it.
This is known as edge computing.
Instead of sending every raw measurement to a central cloud or data centre, the router or connected compute module may:
- Filter data
- Run local applications
- Store information temporarily
- Trigger alerts
- Analyse equipment conditions
- Reduce WAN usage
- Maintain limited operations during an outage
Cisco supports industrial edge applications through technologies such as Cisco IOx and Edge Intelligence across compatible industrial routers, switches and compute platforms.
Commercial routers can also provide application hosting or integrated services on selected platforms, but industrial edge computing is often designed specifically around operational data, remote equipment and intermittent connectivity.
11. Performance Priorities
An industrial router is not automatically faster than a commercial router.
In fact, a conventional enterprise router may offer greater:
- Aggregate WAN throughput
- VPN capacity
- Branch-user scale
- Service-module capacity
- Application performance
- High-speed interface density
Industrial routers often prioritize different outcomes:
- Wide temperature tolerance
- Low-power operation
- Compact installation
- Ruggedness
- Cellular flexibility
- Remote reliability
- Industrial interfaces
- Long-term field operation
Therefore, the comparison should not be reduced to processor speed or advertised throughput.
A factory monitoring site with twenty sensors may need modest bandwidth but extreme environmental reliability. A commercial headquarters with hundreds of cloud users may need much higher routing and VPN performance but no ruggedized enclosure.
Choose the router according to the workload and installation environment—not according to which product category sounds more advanced.
12. Cost and Total Cost of Ownership
Industrial routers often cost more than commercial routers with apparently similar network performance.
The additional cost may reflect:
- Ruggedized components
- Extended-temperature design
- Industrial testing
- Shock and vibration resistance
- Wide-range DC power
- Cellular modularity
- Specialized certifications
- Compact industrial construction
- Weather-resistant enclosure options
A regular enterprise router is normally the more economical choice for a protected indoor environment.
However, using the cheapest commercial router in a harsh location may increase long-term costs through:
- Frequent hardware replacement
- Technician travel
- Production downtime
- Lost telemetry
- Connectivity interruptions
- Safety risks
- Emergency repairs
The right comparison is therefore not only the purchase price.
Calculate:
- Hardware cost
- Licences
- Cellular modules
- Antennas
- Power supplies
- External enclosures
- Installation
- Support
- Data plans
- Site visits
- Expected service life
- Downtime impact
An industrial router may be more expensive initially but less costly over the full life of a remote or mission-critical installation.
Cisco Industrial and Commercial Router Use Cases
| Deployment | Recommended direction |
|---|---|
| Corporate branch office | Commercial enterprise router |
| Retail shop | Commercial enterprise router |
| Hotel or clinic | Commercial enterprise router |
| Indoor data room | Commercial enterprise router |
| Factory production floor | Industrial router |
| Factory administration office | Commercial enterprise router |
| Outdoor solar site | Industrial router |
| Oil and gas field | Industrial router |
| Electrical substation | Industrial router |
| Roadside cabinet | Industrial router |
| Warehouse office | Commercial enterprise router |
| Warehouse automation area | Industrial router |
| Mine or quarry | Industrial router |
| EV charging station | Usually industrial router |
| Remote ATM or kiosk | Depends on temperature and enclosure |
| Construction site | Often industrial router |
| Vehicle or public-safety fleet | Industrial mobile router |
Which Cisco Industrial Router Should You Consider?
The best model depends on whether the router will be mounted in a cabinet, vehicle, fixed remote site or directly exposed outdoors.
Cisco Catalyst IR1100 Rugged Series
The Catalyst IR1100 family is suitable for compact fixed installations and industrial cabinets.
Potential use cases include:
- Utilities
- Manufacturing
- Remote monitoring
- Smart infrastructure
- Renewable energy
- Industrial IoT gateways
The IR1101 offers wide-range DC input, extended temperature support and modular connectivity suitable for remote industrial assets.
It is a practical direction when the router will be installed inside a protected industrial enclosure rather than directly exposed to weather.
Cisco Catalyst IR1800 Rugged Series
The Catalyst IR1800 family is designed for demanding fixed and mobile deployments.
Potential use cases include:
- Public-safety vehicles
- Remote energy assets
- Mobile operations
- Oil and gas
- Transportation
- EV charging
- Industrial video
- Rugged edge computing
Cisco positions the platform around modular 5G, Wi-Fi and mission-critical connectivity, with support for fixed and mobile industrial applications.
Cisco Catalyst IR8100 Heavy Duty Series
The IR8100 Heavy Duty Series is a stronger direction for exposed outdoor infrastructure and extreme field conditions.
Potential use cases include:
- Utility distribution networks
- Smart grids
- Outdoor metering
- Remote energy systems
- Infrastructure cabinets
- Dusty or wet installations
Selected IR8100 models provide IP67-rated protection, making them more suitable where the router must operate outside a conventional protected cabinet.
Which Regular Cisco Commercial Router Should You Consider?
Cisco ISR 1000 Series
Cisco ISR 1000 routers can suit:
- Small offices
- Retail branches
- Small business locations
- Secure internet access
- VPN connectivity
- Entry-level SD-WAN
- Integrated branch services
They combine enterprise routing, security and WAN capabilities in compact platforms intended for conventional business environments.
Cisco Catalyst 8200 Series
Cisco Catalyst 8200 Edge Platforms are suitable for:
- Medium and large branches
- Secure SD-WAN
- Cloud application connectivity
- Encrypted WAN traffic
- Enterprise network services
- Higher-performance branch deployments
These platforms prioritize enterprise edge performance and service scalability rather than industrial ruggedization. Cisco documents integrated WAN interfaces and hardware-accelerated encrypted traffic capabilities across the family.
How to Choose the Right Router?
Choose a Cisco Industrial Router When:
- The router will be installed outdoors or in a semi-protected location.
- Temperature may exceed normal office limits.
- Dust, moisture, vibration or shock is present.
- Industrial DC power is required.
- DIN-rail or panel mounting is necessary.
- Cellular connectivity is the primary WAN.
- The site is remote or difficult to service.
- Operational equipment must be connected.
- An IP-rated enclosure is required.
- Connectivity loss could interrupt a physical process.
Choose a Regular Cisco Commercial Router When:
- The router will be installed in an office or network room.
- Temperature and humidity are controlled.
- Standard AC power is available.
- Rack, shelf or desktop mounting is suitable.
- Branch users and cloud applications are the primary workload.
- Environmental ruggedness is unnecessary.
- Higher branch throughput is more important than field durability.
- IT staff can easily access the device.
Questions to Ask Before Buying
Before selecting a Different Type Of Cisco router, document the following requirements:
- Is the installation indoors or outdoors?
- What are the minimum and maximum temperatures?
- Will the router encounter dust or moisture?
- Is there significant shock or vibration?
- Is formal IP protection required?
- Does the site require hazardous-location certification?
- Is the available power AC or DC?
- What input-voltage range is available?
- How will the router be mounted?
- How many Ethernet and fiber ports are needed?
- Is serial, GPS, CAN bus or digital I/O required?
- Will cellular service be primary or backup?
- Which mobile network operator will be used?
- Are dual SIMs or dual carriers required?
- What VPN throughput is needed?
- Is Cisco Catalyst SD-WAN required?
- Will local applications run at the edge?
- How frequently can technicians visit the site?
- What is the cost of connectivity downtime?
- What growth is expected over the next three to five years?
Common Buying Mistakes
Choosing a Commercial Router for an Outdoor Cabinet
A basic weatherproof box may not solve heat, condensation, power and vibration issues. The entire enclosure and router design must be assessed together.
Comparing Routers Only by Throughput
A high-performance router that cannot tolerate the installation environment is not the right router.
Assuming Every Cellular Router Is Industrial
Many commercial routers support LTE or 5G, but cellular capability alone does not mean they are ruggedized.
Ignoring Temperature Specifications
Ambient temperature inside a sealed cabinet can be much higher than the outdoor air temperature.
Forgetting the Power Source
A router designed for standard AC input may be inconvenient or unsafe at a DC-powered field site.
Ignoring Antennas and Cellular Bands
The correct router still requires compatible regional modems, antennas, cables, carrier bands and SIM services.
Buying More Ruggedness Than Necessary
A heavy-duty outdoor router may be unnecessarily expensive for a clean, climate-controlled branch office.
Overlooking Remote Management
Remote sites should be designed for monitoring, configuration, troubleshooting and recovery without frequent technician visits.
Why Buy Cisco Routers from Netseg ?
Selecting between a Cisco industrial router and a commercial enterprise router requires more than choosing a model with enough Ethernet ports.
The buyer must consider environmental conditions, power, mounting, cellular connectivity, security, throughput, interfaces and lifecycle requirements.
Netseg supplies Cisco enterprise and industrial networking solutions across the UAE and Saudi Arabia. Businesses can receive assistance with:
- Cisco industrial-router selection
- Cisco branch-router selection
- IR1100, IR1800 and heavy-duty platform sourcing
- Catalyst 8200 and enterprise-edge solutions
- 4G and 5G planning
- Antenna and cellular accessory selection
- DC power and mounting requirements
- Cisco Catalyst SD-WAN planning
- VPN and security requirements
- Genuine Cisco hardware
- Competitive project quotations
- Pre-sales consultation
- Post-sales support
- Delivery across the UAE and KSA
Netseg can help assess whether a project genuinely requires rugged industrial equipment or whether a regular enterprise router would provide better value.
Frequently Asked Questions
What is the main difference between an industrial router and a regular router?
An industrial router is ruggedized for harsh, remote or outdoor environments. A regular commercial router is mainly designed for controlled indoor offices and business facilities.
Are Cisco industrial routers more powerful?
Not necessarily. Their key advantage is environmental durability, industrial connectivity and remote-site suitability. Some commercial enterprise routers may offer higher branch throughput.
Can I use a normal Cisco router in a factory?
A standard router may be suitable inside a protected, climate-controlled factory network room. It may not be appropriate on a production floor exposed to heat, dust, moisture or vibration.
Can an industrial router be used in an office?
Yes, but the organization may pay for rugged features and industrial interfaces that are unnecessary in an office environment.
Do Cisco industrial routers support 5G?
Selected industrial families support modular 5G connectivity. Cisco positions the IR1800 family around ruggedized 5G and Wi-Fi connectivity for fixed and mobile deployments.
Are Cisco industrial routers waterproof?
Not every industrial router is waterproof. Selected heavy-duty platforms offer formal IP-rated protection, while other rugged routers still require a suitable outdoor enclosure.
What operating temperature can a Cisco industrial router handle?
It varies by model. Cisco specifies standard operation of approximately –40°C to 60°C for the IR1101, with higher limits possible under defined airflow conditions.
Do industrial routers support Cisco Catalyst SD-WAN?
Selected Cisco industrial routers support integration with Cisco Catalyst SD-WAN management and automation.
Which router is suitable for oil and gas sites?
A rugged industrial router is generally the better direction because these sites may involve remote access, heat, dust, vibration and cellular connectivity. The final model should be selected according to environmental certification, power, cellular and enclosure requirements.
Which router is suitable for an office branch?
A Cisco ISR or Catalyst 8000 enterprise edge platform will normally be more suitable for a protected office branch.
Is an LTE router automatically an industrial router?
No. LTE or 5G describes the WAN technology. Industrial classification depends on construction, temperature range, power, certifications, mounting and environmental resistance.
Where can I buy Cisco industrial routers in the UAE and Saudi Arabia?
Netseg supplies Cisco industrial and enterprise routers and can assist with hardware, cellular modules, antennas, power supplies, licensing and deployment requirements.