Cisco Meraki C9300L-48UXG-4X-M Multigigabit Switch in Africa
Build a high-capacity access layer for modern offices, campuses, hospitality sites, education networks, financial environments and distributed business locations. This 48-port cloud-managed Catalyst platform combines twelve multigigabit copper interfaces, thirty-six additional Gigabit Ethernet ports, four fixed 10G/1G SFP+ uplinks, UPOE endpoint power and dedicated hardware stacking. It is particularly useful where newer wireless access points, collaboration systems, cameras, phones and other edge devices must share one manageable switching platform without forcing every endpoint onto the same access speed.
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Buying note: final licensing, power-supply redundancy, optics, stack kits, cabling, rack accessories, commercial terms and delivery arrangements should be confirmed against the exact bill of materials before an order is approved.
Quick Product Information
Cisco / Cisco Meraki
C9300L-48UXG-4X-M
Cloud-managed stackable UPOE access switch
12 x mGig plus 36 x Gigabit Ethernet copper ports
4 x fixed 10G/1G SFP+ uplinks
Up to 60W UPOE per supported port; overall budget depends on power-supply configuration
Two dedicated stack ports; StackWise-320 platform design
Cisco Meraki Dashboard with appropriate licensing
1U rack mount
Configuration review, quotation support, delivery coordination and warranty guidance
Product Overview
Access switching is no longer just about giving every desk a one-gigabit connection. A modern wiring closet can serve high-throughput Wi-Fi access points, IP phones, collaboration endpoints, surveillance cameras, building systems, printers, thin clients, workstations and specialist devices at the same time. Some endpoints need standard Ethernet. Others can benefit from 2.5G, 5G or 10G copper access, and several may also require higher power delivery over the same cable. The C9300L-48UXG-4X-M addresses that mixed requirement by placing twelve multigigabit ports beside thirty-six conventional Gigabit Ethernet ports in one 48-port chassis. This allows a network designer to reserve faster copper connectivity for devices that can actually use it while maintaining efficient port density for the rest of the site.
The four fixed 10G/1G SFP+ uplinks are intended for fibre or supported uplink connectivity toward distribution or core switching. Because the uplinks are fixed rather than based on a removable network module, buyers should confirm at the design stage that four 10G interfaces match the intended architecture. The platform also supports dedicated hardware stacking, which can help organizations operate several access switches as a coordinated stack when the correct StackWise accessories and cables are included. This is useful for growing closets where port density, simplified operations and a structured expansion path matter.
Cloud management is another defining part of the purchasing decision. The -M ordering path is associated with Meraki Dashboard operation and requires the appropriate Meraki software option and licensing term. That means the switch should not be treated as hardware in isolation. Procurement teams should include licensing, account ownership, dashboard organization, administrator roles and renewal responsibility in the same plan as optics, rack position and power. For organizations already operating Meraki wireless, security or switching products, a common dashboard can provide a consistent operational view. For organizations moving from locally managed Catalyst environments, the management model should be reviewed carefully so operational processes match the selected platform.
FourTeck helps Africa buyers turn those design questions into a practical bill of materials. A useful quotation can include the switch, required license tier and term, secondary power supply where needed, stack kit, stack cables, SFP/SFP+ optics, patching expectations and related infrastructure guidance. This reduces the chance of ordering the correct chassis but missing the accessories or licensing needed to deploy it successfully.
Key Business Benefits
◆ Mixed-Speed Access Without Wasted Capacity
Twelve multigigabit ports give high-performance endpoints room to operate at 2.5G, 5G or 10G where supported, while thirty-six Gigabit ports handle conventional users and devices. Buyers can therefore design for realistic endpoint demand rather than paying for multigigabit capability on every port when only part of the device population needs it.
✓ Higher-Power Edge Device Planning
UPOE capability supports devices that may need more power than standard PoE+ classes can provide. This can simplify edge designs involving selected access points, smart-building devices, collaboration equipment or other powered endpoints, provided the total PoE budget and per-device requirements are calculated before installation.
↗ Practical 10G Uplink Architecture
Four fixed 10G/1G SFP+ uplinks provide clear paths toward upstream switching. That can help an access closet aggregate traffic from high-speed wireless and wired clients without relying only on one-gigabit uplinks. The fixed design also makes early optic and fibre planning especially important because uplink type is a chassis characteristic, not a later network-module choice.
⚙ Centralized Operational Visibility
Meraki Dashboard management can help IT teams monitor switch status, port activity, clients and supported troubleshooting information from a central interface. This is valuable for multi-site organizations and campuses where administrators need consistent visibility without maintaining a different local management process for each wiring closet.
● Stack-Based Growth
Dedicated stacking ports and a 320G stacking architecture allow compatible switches to be planned as a hardware stack when the necessary kits and cables are ordered. This can make larger access blocks easier to operate while giving the organization a structured way to increase port density as floors, users or connected systems grow.
🔒 Better Segmentation and Policy Planning
Layer 3 capability and the wider Catalyst/Meraki policy framework support more structured campus designs than a basic unmanaged or Layer 2-only access switch. Buyers can plan VLANs, routed boundaries and supported policy functions around business roles, device types and operational requirements rather than placing every connected endpoint into the same trust zone.
✓ Serviceable Power and Cooling Design
Hot-swappable power supplies and replaceable fans can support more maintainable enterprise deployments. The value is not simply the presence of field-replaceable components; it is the ability to include redundancy, spare strategy, protected power and maintenance procedures in the network design instead of treating the access switch as a disposable edge device.
Product Highlights for Infrastructure Buyers
The central strength of this model is the way it mixes access speeds and power capabilities in one enterprise switch. The twelve mGig interfaces can negotiate across 100M, 1G, 2.5G, 5G and 10G speeds, which makes them suitable for devices whose throughput can exceed one Gigabit Ethernet. The remaining thirty-six copper interfaces support standard 10M, 100M and 1G connectivity. This split is practical for sites where only a portion of the endpoint population needs multigigabit performance.
The switch provides four fixed SFP+ uplinks capable of 10G or 1G operation and two dedicated hardware stack ports. Platform performance is rated at 392 Gbps switching capacity when operating standalone and 712 Gbps when the stacking bandwidth is included, with forwarding figures of 291.66 Mpps standalone and 529.76 Mpps in the documented stacked profile. Buyers should read these figures as platform capabilities rather than as a promise that every application will see those rates; actual performance depends on topology, traffic patterns, configuration and connected systems.
Power planning deserves equal attention. The documented default supply is the 1100W AC unit, and the primary-power configuration provides a 675W PoE budget for this model. A second supported supply can increase available PoE headroom and provide redundancy depending on the final power design. Because the 1100W supply requires an appropriate 115V to 240V AC input environment, buyers should confirm site electrical conditions and the correct regional power cord.
Physically, the chassis is a 1U rack-mount switch measuring approximately 1.73 x 17.5 x 19.2 inches and weighing about 16.86 lb with its default supply. Network cabinets should therefore be checked for usable depth, airflow and cable-management space rather than only rack-unit count.
Technical Specifications
| Specification | Cisco Meraki C9300L-48UXG-4X-M |
|---|---|
| Brand | Cisco / Cisco Meraki |
| Model | C9300L-48UXG-4X-M |
| Product Type | Fixed-uplink, stackable, cloud-managed UPOE access switch |
| Access Ports | 12 x mGig copper plus 36 x GbE copper |
| mGig Speeds | 100M / 1G / 2.5G / 5G / 10G |
| Standard Copper Speeds | 10M / 100M / 1G |
| Fixed Uplinks | 4 x 10G/1G SFP+ |
| PoE Class | UPOE, up to 60W per supported port |
| Primary PoE Budget | 675W with default primary power supply |
| Stacking | 2 dedicated hardware stack ports; StackWise-320 architecture |
| Switching Capacity | 392 Gbps standalone; 712 Gbps including documented stacking capacity |
| Forwarding Rate | 291.66 Mpps standalone; 529.76 Mpps documented stacked profile |
| Default Power Supply | PWR-C1-1100WAC-P-M |
| Power Supply Design | Dual hot-swappable power supply capability |
| Fans | 3 hot-swappable fans |
| Management | Cisco Meraki Dashboard; license required |
| Software Options | Meraki Enterprise or Advanced, subject to current ordering rules |
| Form Factor | 1U rack mount |
| Dimensions | Approx. 1.73 x 17.5 x 19.2 in (4.4 x 44.5 x 48.8 cm) |
| Weight | Approx. 16.86 lb (7.65 kg) with default supply |
| Operating Temperature | -5°C to 45°C |
| Humidity | 5% to 90% |
| Warranty / Support | Confirm current Cisco/Meraki warranty and support terms for the quoted source and license |
Specification tables are useful for shortlisting, but a correct network purchase requires more than matching numbers. Start with how many devices need standard Gigabit access and how many genuinely require multigigabit speeds. Then identify every powered endpoint and its maximum PoE class so the total demand can be compared with the available PoE budget under the planned power-supply configuration. Uplink design should specify fibre type, distance, required optic, upstream switch interface and whether multiple uplinks will be used for redundancy or aggregation. If stacking is required, include the compatible stack kit and cable lengths in the bill of materials. Finally, confirm the Meraki license edition, term and organization ownership. A complete quotation should therefore describe the switch as one component in a deployment rather than as a standalone box.
Configuration and Buyer Guidance
The correct configuration starts with an endpoint schedule. Count laptops, desktops, IP phones, wireless access points, cameras, printers, building controls, conference devices and specialist systems that will connect to the switch. Reserve spare ports for growth, but do not assume every device needs the same performance level. The twelve multigigabit interfaces should be allocated where higher throughput can create measurable value, such as newer access points or workstations with supported high-speed NICs.
Port and Speed Plan
Confirm total copper ports, identify which endpoints need more than 1G, and check whether their cabling and network adapters can support 2.5G, 5G or 10G operation.
PoE Load Calculation
List powered devices by model and wattage. A switch with UPOE ports still has a finite total budget, so the combined requirement matters as much as the maximum per-port class.
Uplink and Optics
Provide fibre type, distance, connector requirements and upstream interface details so compatible SFP or SFP+ optics can be selected without guesswork.
Power and Rack Readiness
Check rack depth, airflow, UPS capacity, AC input, power cord type and maintenance clearance. A 1U switch still needs adequate depth and service space for cables and supplies.
Stacking Strategy
Decide whether switches will operate standalone or as a hardware stack. If stacking is planned, include the correct adapter kit and cable lengths from the start.
Licensing Ownership
Confirm Meraki license edition, duration, organization details and renewal responsibility. Licensing should be part of lifecycle planning, not a late commercial add-on.
For replacement projects, also document the existing switch model, current VLANs, spanning-tree role, uplink arrangement, link aggregation, authentication methods and any business-critical devices that cannot tolerate an extended change window. This gives the implementation team enough information to prepare a safer migration plan. FourTeck can review these inputs before quotation and identify missing accessories or configuration assumptions that should be resolved before the order is released.
Ideal Business Use Cases
High-Density Office Floors
Large corporate floors may combine employee workstations, phones, meeting-room devices, access points, printers and cameras in the same closet. The 48-port layout gives useful density, while the multigigabit subset can be reserved for wireless and other high-throughput systems.
Wi-Fi 6 and High-Speed Wireless Access
Wireless access points with Ethernet requirements above 1G can make a multigigabit access layer valuable. Buyers should still match AP Ethernet capability and power class to the switch rather than assuming every modern access point automatically needs 10G or 60W.
Education Campuses
Schools, colleges and universities can use this class of switch for staff, student, classroom and infrastructure connectivity. Central management can be useful across multiple buildings, while stacking and fibre uplinks can support larger access closets where device counts grow over time.
Hospitality and Multi-Service Properties
Hotels, resorts and conference properties often run guest Wi-Fi, staff systems, voice, cameras and operational technology on the same physical network infrastructure. Careful segmentation, PoE planning and remote visibility can make a centrally managed access layer particularly useful.
Financial and Professional Services
Banks, insurers, professional firms and other office-based organizations may need high port density, structured segmentation and dependable uplinks for business applications and secure user access. The final design should align network policy, authentication and redundancy with the organization’s risk requirements.
Distributed Branch Networks
Organizations with many branches can value a common cloud-management model because central teams can review supported switch information without being physically present at each site. A repeatable template can also make new branch deployment more consistent while still allowing site-specific port and PoE sizing.
These scenarios do not mean the switch is automatically the correct choice for every large site. A data-only office may not need UPOE, a small branch may be better served by a lower-density model, and an architecture that requires 40G or 25G fixed uplinks should be matched to a different platform. The value of the model comes from choosing it where its specific mix of port count, mGig access, UPOE, 10G uplinks, stacking and Meraki management fits the actual network plan.
C9300L-48UXG-4X-M Multigigabit Access Performance
The multigigabit ports are the main reason to choose this model over a conventional 48-port Gigabit access switch. Many organizations now have only a subset of devices that can exceed 1G, so a mixed-port design can be more practical than a chassis where every interface is specified at the highest speed. The twelve mGig ports can support 100M, 1G, 2.5G, 5G and 10G operation, allowing the negotiated rate to match the connected endpoint and cabling condition.
This matters particularly for newer wireless access points. A high-capacity AP can aggregate traffic from many wireless clients, and a one-gigabit Ethernet connection may become a constraint in some dense deployments. A 2.5G or 5G link can provide more headroom without requiring fibre to the access point, while 10G can support selected use cases where endpoint hardware, cabling and design justify it. The same ports can also serve high-performance workstations, media systems or other devices equipped for faster copper Ethernet.
Cabling quality should be assessed rather than assumed. Existing Category 5e may support some multigigabit rates under appropriate conditions, but bundle size, distance, interference, patch quality and installation practice can affect reliable operation. Before committing to a high-speed access design, buyers should document cable category and test representative links. This makes the switch purchase part of a complete physical-layer plan and avoids blaming network hardware for performance limits created by unsuitable cabling.
C9300L-48UXG-4X-M UPOE and Power Architecture
Power over Ethernet can simplify an edge deployment by carrying network connectivity and electrical power over the same copper cable, but switch selection must consider both per-port capability and the total chassis budget. This model supports UPOE with up to 60W on supported ports. That makes it suitable for a broader range of powered devices than a switch limited to 30W PoE+, but it does not mean forty-eight endpoints can all draw the maximum at the same time.
With the documented default 1100W AC power supply, the available primary PoE budget is 675W. Buyers should calculate the expected draw of every access point, phone, camera, sensor, collaboration endpoint and other powered device, then add a sensible design margin. If the planned draw is close to the primary budget, the power-supply strategy should be reviewed for additional capacity and redundancy. A second supported power supply can change the available PoE headroom, but the final arrangement must match the approved switch configuration and site electrical design.
The power environment outside the chassis also matters. Protected input power, correctly sized UPS capacity, suitable power cords, adequate ventilation and rack airflow all contribute to continuity. The 1100W AC supply requires the appropriate input range, so project teams should verify local electrical conditions before shipment. For critical closets, procurement should document whether the design needs dual supplies, separate power feeds, UPS redundancy or spare components rather than treating those choices as post-installation upgrades.
C9300L-48UXG-4X-M Cloud Management and Stacking
The -M model is intended for organizations that want Meraki Dashboard management. This changes how the switch should be evaluated because operational ownership becomes part of the architecture. Administrators need an appropriate Meraki organization, roles and permissions, licensing, connectivity to required cloud services and a defined process for firmware, configuration and change control. Central management can simplify routine operations, particularly across distributed sites, but it works best when naming conventions, administrator access and lifecycle responsibilities are standardized.
Hardware stacking provides a complementary form of scalability. The C9300L-M platform uses dedicated stack ports and a 320G stacking design. A stack can allow several compatible switches to be operated as a coordinated switching system, which can reduce operational complexity in larger closets and help distribute access ports across a resilient topology. However, stacking is not achieved by simply connecting ordinary Ethernet uplinks. The correct C9300L stack kit, adapters and cable lengths must be planned and ordered.
Before deciding to stack, buyers should confirm how many switches are expected in the final closet, rack placement, cable length, power redundancy, uplink design and failure-domain requirements. A smaller branch may be simpler as a standalone switch, while a campus floor with several access units may benefit from stacking. FourTeck can review this choice alongside the Meraki license, SFP+ uplinks and power architecture so the final bill of materials reflects the actual operational model.
What Buyers Should Check Before Purchase
A correct quote should begin with the network requirement rather than only the part number. Confirm that the intended environment actually needs a 48-port UPOE switch with a twelve-port multigigabit subset and four fixed 10G uplinks. If the site needs only standard Gigabit access and PoE+, a different model may be more economical. If it requires more than four 10G uplinks or a different uplink speed, another platform may fit better. Model selection should therefore start with topology and endpoint demand.
Configuration Fit
Document access-port count, number of mGig endpoints, PoE device list, expected uplink usage, standalone or stacked design, and whether a secondary power supply is required.
Compatibility Check
Confirm cabling category, fibre type, SFP/SFP+ optics, upstream switch interfaces, Meraki organization requirements and interoperability with retained network equipment.
Availability and Warranty
Ask for the current hardware source, license options, warranty guidance and delivery arrangement for the actual quantity and destination. Do not assume those items from a general product listing.
Quote Preparation
Provide site count, destination, quantity, desired license term, existing topology, endpoint schedule, PoE budget, uplink distances, rack environment and project timing.
Accessories should be checked with the same care as the chassis. A stack requires the proper kit and cables. Fibre uplinks need compatible optics at both ends. High-power PoE designs may need additional power-supply planning. Rack installation may require attention to cabinet depth and cable management. Licensing must match the chosen management model and term. If replacing an older switch, share the existing configuration and device dependencies so migration needs are visible before deployment. Long-term cost should include licenses, optics, power components, support expectations and possible expansion rather than comparing hardware-only prices. For project or bulk supply, a consolidated bill of materials helps keep every site consistent while still allowing location-specific differences.
Questions Business Buyers Ask About C9300L-48UXG-4X-M
The most useful purchase questions are usually about fit rather than headline specifications. A procurement team needs to know whether the switch matches its endpoint mix, power demand, fibre design, cloud-management approach and growth plan. The following practical questions help turn a model number into a deployment decision.
Who is this 48-port switch designed for?
It suits organizations that need enterprise access switching with a mix of standard Gigabit and multigigabit copper ports, UPOE power, 10G fibre uplinks, hardware stacking and centralized Meraki management. Typical environments include campus floors, larger offices, education sites, hospitality properties and distributed enterprises. Smaller sites or data-only networks may be better served by a different C9300L-M variant.
Do I need all twelve multigigabit ports?
You do not need every endpoint to operate above 1G for the model to make sense. The mixed design is useful when a limited set of access points, workstations or specialist devices needs 2.5G, 5G or 10G while most users remain on Gigabit Ethernet. If no devices can benefit from mGig, compare the standard 48-port PoE models before purchasing.
How should I calculate the PoE requirement?
List every powered endpoint by model, quantity and maximum expected draw. Add the wattage, include a reasonable margin and compare the result with the available switch budget for the planned power-supply configuration. The primary documented PoE budget is 675W with the default supply. High-power devices should also be checked individually against their supported per-port class.
What cabling should be checked for mGig operation?
Start with cable category, length, patch panels, connectors and bundle conditions. Some existing Category 5e links can support multigigabit speeds under suitable conditions, but interference and installation quality can affect performance. For important high-speed links, test the actual cabling and document which outlets are expected to carry 2.5G, 5G or 10G traffic.
Can I stack several switches?
Yes, the C9300L-M platform supports dedicated hardware stacking with a 320G design. Stacking requires the appropriate C9300L stack kit and cables, so it should be included in the quotation rather than assumed to be part of the chassis. Rack order, cable length, power redundancy and uplink design should be planned for the full stack before installation.
Which Meraki license should I request?
The exact license edition and duration should match your operational requirements and current Meraki licensing structure. The hardware ordering path supports Meraki Enterprise or Advanced options, subject to current ordering rules. Buyers should confirm license tier, term, organization ownership and renewal responsibility with the quotation so lifecycle cost and feature expectations are clear.
What optics are required for the four uplinks?
Optics depend on fibre type, distance, wavelength, connector and the upstream device. Do not order a generic SFP+ module without checking both ends of the link. Provide the fibre type and approximate distance for each uplink, along with the distribution or core switch model, so compatible optics can be selected for the actual path.
What should I review when replacing an older Catalyst switch?
Document VLANs, trunks, routing, spanning tree, link aggregation, authentication, port security, voice settings, PoE devices, uplinks and management processes before replacement. Also identify any legacy devices limited to older Ethernet speeds. A Meraki-managed replacement changes the operational model, so configuration mapping and administrator workflow should be included in the migration plan.
Can this switch support future network growth?
It can provide useful growth room where future demand includes more ports, higher-speed wireless, additional PoE devices or stack expansion. Growth should still be quantified. Reserve port capacity, estimate future PoE draw and decide whether four 10G uplinks will remain sufficient. If the roadmap requires a different uplink class, another Catalyst platform may be a better long-term choice.
What information produces a more accurate quotation?
Share quantity, destination, preferred license term, endpoint count, mGig device count, PoE device models, fibre distances, required optics, standalone or stack design, secondary power-supply needs, rack details and expected project stage. For replacement projects, include the current switch model and topology. This information helps FourTeck quote the surrounding accessories instead of only the base chassis.
What if this exact configuration is not suitable?
Compare the rest of the C9300L-M family by port density, PoE class, mGig requirement and uplink design. A 24-port UXG model may suit smaller closets, while 48-port PoE+ or data-only versions may fit sites that do not need multigigabit UPOE. FourTeck can review related models without assuming that the most capable chassis is always the best match.
How This Multigigabit Switch Fits Common Business Requirements
Buyers often arrive with a business problem rather than a complete technical specification. The useful question is how the access layer needs to behave: how many endpoints it must serve, which devices need faster links or higher power, how the closet connects upstream and how the network will be managed after deployment.
A Switch for Mixed Endpoint Speeds
The model is useful when a site has many ordinary Gigabit devices but also a smaller group of higher-bandwidth endpoints. Its split between twelve mGig and thirty-six Gigabit ports lets the network match speed to device capability instead of forcing a one-size-fits-all access layer.
A Platform for Powered Edge Devices
UPOE can help organizations power selected access points, cameras, phones and smart-building endpoints from the network closet. The purchasing decision should be based on the combined wattage of the endpoint population and the planned supply configuration, not only the presence of a UPOE label.
Compatibility with Existing Infrastructure
Existing copper cabling, fibre runs, optics, upstream switches, VLAN architecture and Meraki organization settings should all be reviewed. Compatibility is strongest when both physical links and operational processes are documented before purchase rather than discovered during installation.
Replacement and Upgrade Projects
When replacing an older access switch, compare more than port count. Review PoE class, mGig need, uplink speed, stacking method, rack depth, management workflow and license obligations. This prevents a technically newer switch from creating operational gaps in an otherwise stable network.
Preparing a Project Quote
A project request should include site quantities, switch quantities per site, endpoint and PoE schedules, fibre paths, rack requirements, license terms and redundancy expectations. This gives the commercial team enough detail to identify switches, optics, stack accessories and power components as one coherent bill of materials.
Choosing an Alternative Path
If the site needs fewer ports, no mGig, lower PoE capability or a different uplink class, the wider Catalyst and Meraki switching portfolio provides related options. FourTeck can help narrow that choice by matching the alternative to the actual network requirement instead of substituting solely on availability.
Africa Availability and Service Support
FourTeck supports Africa-focused inquiries for Cisco Meraki switching by helping buyers define the technical requirement before the commercial request is finalized. Support can include model confirmation, port and PoE review, licensing guidance, optics and stacking accessory planning, quotation preparation, delivery coordination and warranty information. This is particularly useful for project buyers who need several related line items rather than a single switch part number.
Availability should always be checked against the exact SKU, quantity, license term and destination. Supplier status, product lifecycle, accessory availability and project timing can change, so the correct approach is to request a current quotation rather than relying on a general product listing. The same applies to commercial support terms: warranty handling, licensing entitlements and replacement procedures should be reviewed for the final source and order documentation.
Buyers can improve the speed and quality of the quotation by providing the endpoint schedule, desired mGig port count, PoE load, uplink distances, stack plan, power redundancy requirement and Meraki licensing preference. Where these details are not yet known, FourTeck can help structure the questions that the internal network team or project integrator should answer before equipment is selected.
Africa Country and Regional Coverage
FourTeck supports business technology inquiries across Africa with an emphasis on helping organizations specify equipment correctly before they commit to an order. For an enterprise access switch, that means reviewing port density, multigigabit need, PoE demand, uplink architecture, fibre optics, stacking accessories, licensing, rack conditions and power redundancy as one connected requirement. A buyer can therefore use the same quotation process whether the project is a single wiring closet, a campus refresh or a multi-site deployment.
Commercial and delivery factors should remain tied to the real order. Suitable configuration, accessory availability, license edition, support options, supplier status, quantity, destination and project scope can all affect the final proposal. FourTeck can coordinate those checks and provide related product guidance when the requested model does not match the site or when a different member of the Cisco Meraki portfolio would be more appropriate. The objective is to avoid selecting a switch only because the model name is familiar.
The following country sections focus on Tanzania, Libya and Seychelles because these markets can present different deployment patterns and procurement priorities. Each project should still be assessed on its own technical and commercial facts. Buyers can review the wider FourTeck Africa technology portfolio or send a detailed requirement through the Africa contact page.
Cisco Meraki C9300L-48UXG-4X-M Multigigabit Switch in Tanzania
For enterprises, public-sector organizations, schools, healthcare environments, financial institutions, system integrators and growing commercial offices evaluating the Cisco Meraki C9300L-48UXG-4X-M Multigigabit Switch in Tanzania, the strongest starting point is a practical map of the devices that each wiring closet must support. A Tanzanian head office may combine employee workstations, Wi-Fi access points, voice, cameras, printers and meeting systems, while a campus or institutional project may need several closets linked over fibre. The switch can fit those designs when twelve multigigabit ports provide useful capacity for faster wireless or specialist endpoints and the remaining thirty-six Gigabit interfaces serve conventional devices. Procurement teams should calculate the full PoE load rather than assuming that UPOE capability automatically covers every powered endpoint. They should also confirm the fibre type and distance to distribution switching, because SFP+ optic selection depends on the physical link. Infrastructure readiness deserves attention as well: rack depth, cooling, cable management, protected input power and UPS sizing all influence long-term operation. Where several access switches will be installed together, the stack kit, stack-cable lengths and redundancy approach should be defined before the purchase order is issued. FourTeck can help Tanzanian buyers review licensing, accessories, power-supply options, topology and compatible optics before quotation, then coordinate availability, delivery details and warranty guidance against the specific order. A useful request should include quantity, destination, connected-device schedule, required license term, expected project stage and any existing Cisco or Meraki equipment that must remain. This produces a proposal aligned with the real site rather than a generic 48-port switch request.
Cisco Meraki C9300L-48UXG-4X-M Multigigabit Switch in Libya
A project built around the Cisco Meraki C9300L-48UXG-4X-M Multigigabit Switch in Libya should be framed around continuity, compatibility and a complete implementation bill of materials. Rather than beginning with port count alone, a North Africa business buyer or integrator should document the existing topology: core or distribution switch, current fibre interfaces, VLAN structure, firewall platform, wireless environment, legacy access switches and any business-critical systems that must remain online during migration. This makes it possible to decide whether the four fixed 10G/1G SFP+ uplinks match the intended architecture, whether compatible optics are already present and whether the new access layer should operate standalone or as a StackWise-320 hardware stack. Power planning is equally important. High-power access points, cameras or collaboration endpoints should be listed by model so their combined demand can be checked against the available PoE budget and any proposed secondary power-supply arrangement. The Meraki management model should also be treated as an operational commitment: license tier, term, organization ownership, administrator roles and renewal responsibility belong in the project plan. Physical installation details such as rack depth, airflow, protected AC supply, UPS capacity, patching and maintenance space should be confirmed before shipment. FourTeck can support Libyan procurement teams with configuration review, accessory planning, quote preparation, delivery coordination and warranty guidance based on the final source and order terms. No assumption is needed about local inventory or fixed delivery time; instead, the buyer can provide quantity, destination, topology, endpoint schedule, licensing preference and required accessories so the commercial proposal is built around the actual deployment.
Cisco Meraki C9300L-48UXG-4X-M Multigigabit Switch in Seychelles
The Cisco Meraki C9300L-48UXG-4X-M Multigigabit Switch in Seychelles can be relevant to hospitality groups, professional-services firms, government departments, education, healthcare, financial services, retail operations and other organizations that operate compact sites or several distributed locations. In these environments, a wiring closet may have to support guest or staff wireless, phones, cameras, office users and operational technology at the same time, so port density and power demand should be planned together. A hotel or multi-building property, for example, may need multigigabit links for selected access points while many other endpoints remain on standard Gigabit Ethernet. This model’s mixed access-port design can support that pattern without turning every port into a 10G requirement. Remote manageability can also be useful where a central IT team supports more than one site, but the organization should define administrator roles, dashboard naming standards, license ownership and change procedures so cloud management remains controlled. Space and resilience deserve special attention: the switch is 1U, yet the rack must also accommodate patch panels, cable management, UPS equipment, airflow and service clearance. Fibre paths between buildings or equipment rooms should be documented by type and distance before optics are selected. FourTeck can help Seychelles buyers review the endpoint list, PoE budget, mGig requirement, stack design, SFP+ optics, licensing term and secondary power options, then coordinate availability, delivery arrangements and warranty information for the final order. Supplying those details in the initial inquiry helps create a practical, maintainable network proposal and avoids delays caused by missing accessories or unsuitable assumptions.
Other Cisco Meraki Options Buyers May Consider
Not every access closet needs the same combination of ports, power and uplinks. The wider Catalyst 9300L-M family includes data-only, PoE+ and multigigabit UPOE variants in different port counts. Buyers should compare the endpoint map, PoE class and uplink requirements before moving to a related model. FourTeck’s existing Cisco Meraki pages can also help organizations understand how switching fits with wireless, cloud management and technical support.
Catalyst 9300L-M Series
Compare 24-port and 48-port data, PoE+ and UPOE/multigigabit models when the current SKU is larger or more power-capable than the site needs.
Catalyst 9300-M Series
Review the broader cloud-managed Catalyst 9300 portfolio when the project requires different uplink, PoE or platform choices from the fixed-uplink 9300L family.
Cisco Meraki Technical Support
Plan post-purchase operational support, configuration review and troubleshooting coordination for Meraki-managed switching and related network services.
Cisco Meraki School Wi-Fi
Education buyers can connect access-switch selection with wireless density, AP power, segmentation and campus management requirements.
Cisco Meraki Resort Wi-Fi
Hospitality projects can use the wireless planning guidance to estimate AP counts, PoE requirements and multigigabit access needs before switching is finalized.
A related model should be chosen because it fits the requirement, not because it appears close in the product family. For example, a standard 48-port PoE+ model may be suitable where every endpoint is 1G and no device needs UPOE, while the 24-port UXG version may fit smaller closets that still need multigigabit access. When requirements change materially, the broader 9300-M portfolio may offer a more appropriate architecture. FourTeck can help compare the practical differences during quotation without relying on unsupported performance claims.
Why Business Buyers Choose FourTeck
Enterprise networking purchases often fail at the edges of the bill of materials: the correct switch is chosen, but the license term is omitted, the wrong optic is ordered, the stack cable is missing, the PoE budget is too small, or the rack and power environment are not ready. FourTeck approaches the buying process as a configuration exercise so these dependencies can be reviewed before the quotation is finalized.
Support for single-site, multi-site, reseller and project inquiries with attention to the complete technical requirement.
Review of port density, mGig demand, PoE load, uplinks, stacking, power supplies and rack considerations before purchase.
Help identifying the intended Meraki license edition and term so management and renewal obligations are visible in the project.
A structured quotation process that can include chassis, optics, stack accessories, power components and related network items.
Delivery arrangements are reviewed for the actual destination, quantity and supplier position instead of being presented as a generic promise.
Warranty and support expectations can be clarified against the selected source, licensing and commercial documentation before approval.
This approach is useful for both technical and commercial stakeholders. Network teams can describe the topology and connected devices, while procurement can provide destination, quantity, timing and commercial requirements. FourTeck can then help align those inputs into a clearer request and identify suitable related models when the original selection does not fit. The aim is a supportable purchase decision, not simply a faster transaction.
Frequently Asked Questions
What is the C9300L-48UXG-4X-M used for?
It is an enterprise access switch for connecting wired users, wireless access points, phones, cameras and other Ethernet devices in offices, campuses and distributed networks. Its twelve multigigabit ports are intended for higher-throughput endpoints, while thirty-six additional Gigabit ports handle standard access. It also provides UPOE, 10G/1G SFP+ uplinks, hardware stacking and Meraki Dashboard management.
Is this switch available for Africa projects?
FourTeck supports Africa-focused inquiries and quotations for Cisco Meraki switching. Current availability depends on the exact SKU, quantity, license term, supplier status and destination. Buyers should send the required configuration and location so the commercial team can check the actual order rather than assuming availability from a general page.
Does the switch require a Meraki license?
Yes. The -M ordering path is designed for Meraki Dashboard management and should be purchased with an appropriate Meraki software option and license term. The exact edition and duration should be confirmed during quotation based on the organization’s requirements and current licensing structure. Renewal responsibility should also be documented as part of lifecycle planning.
Can FourTeck help calculate the PoE requirement?
Yes. Provide the powered-device models and quantities, including wireless access points, cameras, phones and other endpoints. FourTeck can help compare the expected load with the switch’s documented primary PoE budget and identify where secondary power-supply planning may be needed. Final electrical design and endpoint compatibility should still be validated for the deployment.
What stacking accessories may be required?
C9300L-M hardware stacking uses dedicated stack ports and requires compatible C9300L stack adapters and cables. The exact number of kits and cable lengths depends on the number of switches and physical rack arrangement. Buyers should include stacking in the bill of materials before ordering rather than assuming ordinary Ethernet or SFP+ cables provide the same function.
Can this model connect to an existing core or distribution switch?
In many designs, yes, using its four fixed 10G/1G SFP+ uplinks, provided the upstream device and selected optics are compatible. Confirm fibre type, distance, transceiver support, link speed and the upstream interface before ordering. Existing VLAN, routing and aggregation requirements should also be reviewed as part of the migration or expansion plan.
How do I request a useful quotation?
Send the SKU, quantity, destination, preferred license term, number of standard and multigigabit endpoints, PoE device list, fibre distances, stacking requirement and any desired secondary power supply. For replacement projects, include the current switch and topology. This lets FourTeck prepare a more complete proposal with relevant accessories and support notes.
What warranty guidance is available?
Warranty and support terms can vary by product source, region, license and commercial arrangement. FourTeck can help clarify the warranty information associated with the quoted hardware and advise what documentation should be retained. Buyers should rely on the final quotation and applicable Cisco or Meraki terms rather than assuming a universal warranty statement.
Can businesses request multiple units for projects or rollouts?
Yes. Project and multi-site buyers can submit a consolidated requirement covering quantities by location, license terms, stack design, optics, power supplies and related networking items. Availability and delivery arrangements are then checked for the actual order. A standardized site bill of materials can also help reduce configuration differences across a larger rollout.
Need Help Choosing the Right Cisco Meraki Switch?
FourTeck can help review port count, multigigabit requirements, PoE demand, uplink optics, stacking accessories, Meraki licensing, power-supply choices and Africa delivery requirements before you approve a quotation. Send your site count, endpoint schedule, destination and project needs for a configuration-focused response.



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