Service Capability
Engineering high-speed, secure, and resilient networks with next-gen switches, routers, and firewalls.
Keep your staff and servers connected with zero drops. NANO4C designs and deploys next-gen enterprise networks using leading hardware. We integrate network traffic filters, secure WAN configurations, and robust Wi-Fi grids.
Poorly configured switches cause lag and drop video calls during peak hours.
Connecting remote offices over unencrypted lines poses high security risks.
Dropped Wi-Fi signals in office corridors interrupt operations and frustrate team members.
Deploying managed core and access switches configured with VLANs and QoS rules.
Connecting multiple offices securely over encrypted software-defined WAN links.
Designing clean Wi-Fi coverage maps to ensure zero drops for users moving through corridors.
Modern switches and routers handle massive data volumes with minimal latency.
Connect remote locations safely over encrypted SD-WAN, avoiding leased line costs.
Staff maintain active connections and voice calls when moving between building floors.
Software-Defined WAN manages traffic across multiple public internet lines, replacing expensive private links.
VLANs divide your network into virtual sections, preventing guest Wi-Fi users from reaching finance servers.
A firewall that filters traffic by inspecting packet contents, identifying applications, and blocking threats.
Yes, we run wireless site surveys to map coverage and install access points to eliminate dead zones.
QoS settings prioritize critical traffic (like Teams video calls) over less urgent downloads, preventing lag.
We deploy secure client VPNs with multi-factor authentication, ensuring safe access to corporate files.
Splitting networks into small zones with firewalls to prevent a virus on one computer from spreading to other servers.
Yes, we monitor switches, routers, and firewalls around the clock, applying updates and patches.
We route internet traffic through cloud scrubbing services to filter out malicious high-volume attacks.
Distributing network traffic across multiple servers or internet links to prevent any single system from overloading.