Networking that behaves like infrastructure, not a gadget.
We supply and install the whole range — a router for a terrace house, a stack of managed switches for a factory, or carrier-class gear for an ISP. And we design Wi-Fi that stays up when the room fills, because every access point we deploy is hardwired.
Hardwired, always
- Wired backhaul
- Every roaming AP gets copper or fibre back to the switch. No wireless mesh hops carrying your traffic.
- Fibre between blocks
- Runs beyond copper distance, or across buildings, go on fibre — no distance guesswork, no earth loops.
- Standards first
- IEEE 802.11ax and 802.11be, 802.11k/v/r roaming, WPA3. No vendor-proprietary lock-in.
- ISP relationships
- We work alongside major operators including Telekom Malaysia when the service side needs coordinating.
From one router to a whole exchange
The same team specifies all of it, so the kit in your rack matches the kit at the edge and the service you buy from your ISP.
Home & small office
Routers, mesh-free multi-AP Wi-Fi, PoE switches and structured cabling that turns a house or shoplot into a proper network.
Business & enterprise
Managed L2/L3 switching, VLAN segmentation, link aggregation, firewalls, redundant uplinks and controller-managed Wi-Fi.
ISP-grade
Carrier switching and routing, OLT and PON equipment, SFP/SFP+ optics, DAC and patching for operators and integrators.
Wi-Fi access points
Survey, placement, channel planning, installation and tuning — indoor, outdoor and high-density deployments.
Fast when it's busy — which is the only time it matters
Anyone can hit a good speed-test number on an idle line. The difference shows up when someone starts a 60 GB download in the middle of your call.
Router, switch, PoE, firewall — and a controller you own
The full set, specified together so it behaves as one system. The wireless controller runs on-premise, on your hardware, in your building.
No monthly cloud subscription to keep your own access points working. If your internet drops, your controller doesn't go with it — and nobody can raise the rent on equipment you already bought.
Low latency even under a full download
A saturated link normally fills every buffer between you and the internet, and your ping goes from 10 ms to 300 ms. That's bufferbloat, and it is why calls break up the moment someone hits download.
We deploy fq_codel queuing, which keeps each flow in its own queue and drops the standing backlog before it builds. Downloads still run at full speed — and realtime traffic stays realtime.
No bottleneck anywhere in the chain
You are only as fast as the slowest hop: ISP → ONT → router → switch → your device. One under-spec box, one bad patch lead or one port that quietly negotiated down, and the speed you pay for never reaches the desk.
We size and verify every hop, so you get the full speed you subscribed for — measured at the device, not at the router.
Per-device QoS — nobody gets to lag your game
Fair queuing is applied per host, not just per connection. So one machine running a cloud backup, a system update or a torrent cannot swallow the whole line and leave everyone else stuttering.
Your gaming session, your video call and your CCTV upload each keep their share. On business networks we take it further and give VoIP, POS terminals and payment traffic explicit priority over everything else.
Site-to-site Layer 2 bridge
Extend your LAN across the internet. Your branch sits on the same subnet as head office, so file shares, printers, network discovery and legacy software that assumes one flat network all just work — no re-addressing, no per-site exceptions.
We build these on encrypted tunnels and design the broadcast domain deliberately, so extending Layer 2 doesn't turn one site's problem into everybody's.
Wi-Fi 6 wasn't a speed bump. It was a repair.
Earlier generations kept raising the headline number while the underlying problem went untouched: devices took turns shouting over each other, and everything fell apart once the room got busy. 802.11ax rebuilt that layer — and it borrowed the fix from mobile networks.
What 802.11ax actually changed
What Wi-Fi 7 adds on top
Consumer Wi-Fi finally inherited cellular's reliability engineering
Scheduled airtime, coordinated interference handling and multi-link redundancy are ideas LTE and 5G proved at national scale. Wi-Fi 6 brought the scheduling; Wi-Fi 7 brought the redundancy. That is why we specify them — not for the number on the box, but because they behave predictably with fifty devices in the room.
Link keeps dropping? Falling back from 2.5G to 100 Mbps?
Copper is doing its best. A long run past a fluorescent ballast, a lift motor or a welding bay, a marginal patch lead, a warm NIC — and the link negotiates down to whatever it can hold. Often 100 Mbps. Sometimes it just flaps all day and nobody can say why.
Fibre doesn't have that failure mode. It carries light, so electrical noise simply cannot touch it: no interference, no earth loops, no downshifting, no distance anxiety. Plug it straight into the PC and the link is either up at full rate or it isn't — there is no mystery middle state.
10 Gbps on the LAN is the new normal. Editing off a NAS, moving VM images, running backups over the wire — all of it stops being an overnight job.
What it takes
- SFP+ card in the PC
- A network card with an optical cage instead of an RJ45 socket. Drops into a spare PCIe slot.
- Fibre run to the rack
- Thin, flexible and routed alongside your existing cabling. No re-wiring the whole building.
- Switch with SFP+ ports
- Supplied and configured with the rest of the network, sized for how many desks go optical.
- Immune to interference
- Runs happily past machinery, lift shafts and power runs that make copper unreliable.
- No downshifting
- The link runs at its rated speed or it doesn't come up. No silent drop to 100 Mbps.
- Distance
- Hundreds of metres on multi-mode, kilometres on single-mode — past copper's 100 m ceiling.
Every access point hardwired. No exceptions.
Wireless mesh is convenient to sell and painful to live with: each hop halves throughput, latency stacks up, and one weak link degrades everything behind it. Our default multi-AP roaming deployments run copper or fibre to every AP.
- Seamless handover
- 802.11k, v and r so devices move between APs without dropping calls or sessions.
- One SSID
- Staff, guest and IoT separated by VLAN and policy, not by making users pick a network name per floor.
- PoE from the rack
- Power and data on one cable, centrally switched, so an AP can be power-cycled remotely.
- Fibre for distance
- Between floors, blocks and outbuildings — past copper's 100 m limit and immune to the electrical noise of a plant floor.
- Tuned, not guessed
- Channel plan, power levels and band steering set from a survey and re-checked after occupancy.
When the building won't take Cat6, run fibre instead
Copper gives up at 100 m and hates electrical noise. Older shoplots, long villas, multi-storey offices and factory blocks often cannot take a new Ethernet run at all — or the run is so long it downshifts. FTTR solves it the way carriers solved the last mile: one fibre in, a passive splitter, and a mini ONT in each room.
A splitter that behaves like a switch — with no power
The device fanning one fibre out to many rooms is glass and mirrors, not electronics. Nothing to plug in, nothing to cool, no socket needed in the riser, and nothing in the ceiling that can fail at 2 a.m.
Each mini ONT still takes a small power feed at the room end — but the middle of the run, the part buried in a wall or a shaft, stays entirely passive.
Up to 8 km, not 100 m
Eighty times copper's reach. A guard house at the far gate, a warehouse across the yard, the top floor of a walk-up, a second building on the same lot — all of it is comfortably inside range on a single strand.
And because it is light rather than current, the run is immune to the motors, ballasts and power cabling that make long copper unreliable.
Cheaper than a dedicated link per room
A dedicated line to every room means a port, a run and often a powered device for each one. FTTR shares a single feed across the whole building through the splitter, so the cost per room drops sharply as you add rooms.
The fibre itself is thin enough to follow existing conduit and trunking, which usually saves more on labour than it does on materials.
Any access point. Not just the enterprise ones.
The clever part is the conversion. The mini ONT takes PON frames off the fibre and hands out plain Layer 2 Ethernet — so everything downstream simply sees a normal wired network. It has no idea there is fibre behind it, and it does not need to.
That means FTTR is not locked to controller-managed enterprise kit. A TP-Link Deco, an Asus ZenWiFi or any other consumer mesh system plugs straight in and runs on wired backhaul — which is exactly the setup those systems perform best in, and the one most people never manage to give them.
- Ethernet out
- A standard RJ45 in each room. Plug in an AP, a desk switch, a TV or a POS terminal.
- Mesh, but wired
- Consumer mesh nodes stop relaying over the air and start using the fibre as backhaul.
- No vendor lock
- Layer 2 is Layer 2. You are not committed to one AP brand for the life of the cabling.
Storage that lives in your building
- Share locally
- One place for the family photos, the team's project files or the shop's paperwork — at full LAN speed, not upload speed.
- Reach it remotely
- Access from outside over an encrypted connection, so working away doesn't mean copying everything to somebody else's cloud first.
- Your data, your control
- No scanning, no analytics, no terms of service that change next quarter. Nobody reads it but you.
- No per-seat billing
- Add users and terabytes without the subscription climbing every time the team grows.
- Redundant by design
- RAID or ZFS, scheduled snapshots, and an off-site copy so a failed disk is an inconvenience, not a disaster.
- Fast when it counts
- Pair it with 10G fibre to the desk and editing straight off the NAS stops being painful.
Your own storage. No prying eyes.
A NAS is simply a shared drive that belongs to you — sitting in your office or your home, on your network, under your lock. Friends, family or the whole team get to the same files, and so do you when you're away.
The difference from a public cloud drive isn't the feature list. It's that the disk is in your building. Nothing is indexed for advertising, nothing is mined for training data, and no provider policy change can lock you out of your own archive or quietly reprice it.
We size it to what you actually store, set up the sharing and permissions, wire in backups, and hand you the documentation. Privacy first, by construction rather than by promise.
We watch it. You just tell us when it feels off.
Every SME, MikroTik and Enterprise plan is onboarded to our Network Operations Centre at no extra cost. Not a trial, not an upsell — it's part of the deployment.
Continuously monitored
Links, switches, access points and gateways watched around the clock, with history kept so we can tell a one-off blip from a pattern.
"The internet feels janky"
That's a perfectly good bug report. Tell us, and we'll go and look — at the graphs, the error counters, the retry rates and the upstream. You don't need to diagnose it first.
Nothing changes without your say-so
We investigate remotely and come back with what we found and what we propose. Configuration changes are made only with your permission — never silently.
Why it's free
Because it costs us less than a truck roll. A network we can see is a network that stays stable, and a stable network doesn't generate emergency call-outs at 2 a.m. Monitoring is cheaper for us than firefighting — so we'd rather give it away than sell it to you.
Scope: NOC monitoring covers SME, MikroTik and Enterprise plans and above. Consumer-grade equipment isn't onboarded — it doesn't expose the telemetry the NOC needs, and we won't charge for a service we can't actually deliver on it.
Ask about NOC monitoringWe work with the operators, not around them
Most network problems live at the boundary between your equipment and the service you buy. Being on speaking terms with the operator shortens that argument considerably.
- Working relationships with major ISPs including Telekom Malaysia
- Service provisioning, handover and escalation handled on your behalf
- PON and fibre expertise in-house — see the PON Stick
- Multi-site links, failover and site-to-site VPN under managed IT
| Capability | Detail |
|---|---|
| Wi-Fi standards | Wi-Fi 6 (802.11ax), Wi-Fi 6E, Wi-Fi 7 (802.11be) |
| Roaming | 802.11k / v / r, single SSID, VLAN-separated |
| AP backhaul | Hardwired copper or fibre — never wireless mesh |
| FTTR | Fibre to the Room — passive splitter, mini ONT per room, up to 8 km |
| Controller | On-premise, no monthly cloud subscription |
| Switching | Managed L2 and L3, VLAN, LACP, PoE / PoE+ |
| Queue management | fq_codel, per-device fair queuing, application priority |
| Desktop links | 1G, 2.5G and 10G, copper or fibre to the desk |
| Site-to-site | Encrypted Layer 2 bridge and Layer 3 VPN |
| Optics | SFP, SFP+, DAC, single-mode and multi-mode fibre |
| Storage | NAS with RAID or ZFS, snapshots and off-site backup |
| Security | WPA3, firewall policy, guest isolation, IoT segmentation |
| ISP-grade | OLT and PON equipment, carrier routing and switching |
| NOC monitoring | Included on SME, MikroTik and Enterprise plans |
| Operators | Including Telekom Malaysia |
| Pricing | Quoted per site survey — contact us |
Surveyed, cabled, tuned, documented
Site survey
We walk the building, measure signal and noise, and find where the walls and the interference actually are.
Design
AP placement, channel plan, cable routes, switch and PoE budget, VLAN and SSID structure — on paper before anything is drilled.
Install
Cabling, termination, mounting and configuration, scheduled around your operating hours.
Verify & hand over
Coverage re-tested under load, roaming confirmed, monitoring onboarded, and the whole thing documented and handed to you.
Networking, answered
Let's survey your site
Tell us the building, the headcount and what keeps dropping. We'll design coverage that holds up under real load.