WiFi
18B+
Wi-Fi Devices Connected Globally
46Gbps
Max Throughput with Wi-Fi 7
6GHz
New Spectrum Band Unlocked
The Protocol That Puts Gigabit Intelligence Inside Every Room, Floor & Facility
Market Momentum & Growth Intelligence
802.11b
The Starting Gun
11 Mbps on the 2.4 GHz ISM band. The specification that took wireless networking from laboratory curiosity to mainstream adoption and launched the multi-trillion-dollar Wi-Fi economy.
802.11n
Wi-Fi 4 - MIMO Era
Multiple-input multiple-output antennas and dual-band operation pushed speeds to 600 Mbps. Introduced channel bonding and spatial multiplexing, the architecture that made HD video streaming wireless.
802.11ac
Wi-Fi 5 - Gigabit Wireless
Multi-user MIMO and 160 MHz channels on 5 GHz delivered gigabit throughput. Beamforming became standard. Enterprise access points hit 3.5 Gbps, fast enough to replace Ethernet on the desk.
802.11ax
Wi-Fi 6 - Efficiency Revolution
OFDMA and Target Wake Time transformed Wi-Fi from a speed race into an efficiency machine. Designed for high-density IoT, serving hundreds of low-bandwidth devices without choking high-priority traffic.
Wi-Fi 6E
6 GHz Band Unlocked
1,200 MHz of pristine, interference-free spectrum. Fourteen additional 80 MHz channels or seven 160 MHz channels, offering more clean airspace than Wi-Fi had in its entire 20-year history combined.
802.11ah
Wi-Fi HaLow - IoT Native
Sub-1 GHz operation delivering up to 1 km range with dramatically lower power draw. Purpose-built for IoT sensor networks such as smart agriculture, campus monitoring, and industrial telemetry where standard Wi-Fi range falls short.
802.11be
Wi-Fi 7 - Multi-Link Operation
Simultaneous tri-band transmission, 320 MHz channels, and 4096-QAM push aggregate throughput past 46 Gbps. Deterministic latency under 1 ms unlocks industrial automation, XR streaming, and real-time digital twins.
Smart Buildings & Intelligent Workplaces
Key Use Cases We Deliver
- Wi-Fi CSI-based occupancy sensing & space utilisation analytics
- Indoor wayfinding & visitor navigation via existing APs
- Smart HVAC & lighting automation driven by real-time presence
- Desk hoteling & meeting room optimisation platforms
- Unified IoT gateway for BLE, Zigbee & Thread over Wi-Fi backhaul
Healthcare & Hospital Infrastructure
Key Use Cases We Deliver
- Real-time medical equipment tracking & utilisation dashboards
- Patient flow analytics & wait-time optimisation
- HIPAA-compliant wireless network segmentation
- Nurse call & clinical alarm integration over Wi-Fi
- Environmental monitoring for pharma storage & operating theatres
Hospitality, Venues & Stadium Connectivity
Key Use Cases We Deliver
- Captive portal with CRM integration & marketing consent capture
- High-density stadium & arena Wi-Fi (60K+ concurrent users)
- In-room IoT: smart thermostats, lighting, digital concierge
- Venue heatmaps, dwell time analytics & crowd flow monitoring
- Loyalty programme integration via Wi-Fi proximity triggers
Retail & Customer Journey Intelligence
Key Use Cases We Deliver
- Footfall analytics & customer journey heatmapping
- In-store indoor navigation for large-format retail
- Electronic shelf label (ESL) network backhaul
- Proximity-triggered promotions & personalised offers
- Queue length detection & smart checkout optimisation
Warehousing, Logistics & Supply Chain
Key Use Cases We Deliver
- AMR & AGV fleet connectivity with sub-10ms roaming
- Real-time pallet & asset location tracking
- Voice-pick & handheld scanner network optimization
- Cold-chain temperature & humidity compliance monitoring
- Yard management & dock door status automation
Education & Campus Networks
Key Use Cases We Deliver
- High-density lecture hall & auditorium Wi-Fi design
- Campus-wide indoor wayfinding & building navigation
- BYOD onboarding with 802.1X & self-service captive portals
- Study space occupancy analytics & availability dashboards
- Research lab IoT isolation with dedicated VLANs & QoS
Industrial & Manufacturing Connectivity
Key Use Cases We Deliver
- Industrial Wi-Fi with ruggedised APs & hazardous-area ratings
- Deterministic latency for PLC & real-time control traffic
- AGV & cobot fleet management with seamless roaming
- Digital work instructions & MES integration on shop-floor tablets
- Vibration, temperature & energy sub-metering sensor networks
- Wi-Fi 6E / Wi-Fi 7 Enterprise APs
- Wi-Fi HaLow (802.11ah) IoT APs
- Outdoor / Ruggedised APs
- DAS & Small Cell Integration
- Cloud-Managed Controllers
- 802.1X / RADIUS / NAC
- VLAN Segmentation & QoS
- AI-Driven Channel Optimization
- AWS IoT Core / Azure IoT Hub
- Location Engine (FTM / RTT)
- Wi-Fi CSI Analytics Pipeline
- Time-Series DB & Data Lake
- Real-Time Dashboards & Heatmaps
- Mobile Apps (iOS / Android)
- Captive Portal & Guest Wi-Fi
- AI/ML Occupancy & Anomaly Models
How We Take You from RF Survey to Revenue
01
Discovery & Wireless Audit
02
Predictive RF Design & PoC
3D heatmap modelling, AP placement optimization, channel & power planning, IoT device compatibility testing. You get a working prototype with real throughput numbers and roaming metrics, not a slide deck.
03
Cloud Platform & App Build
AWS IoT Core integration, location analytics engine, captive portal development, real-time dashboards, mobile apps, alerting workflows, and API-first architecture. Battle-tested before the pilot goes live.
04
Pilot Deployment
05
Enterprise-Wide Rollout
06
Managed Optimization & Migration
Indoor Wireless Technology Comparison
| Parameter | Wi-Fi 6E / 7 | Wi-Fi HaLow | BLE 5.x | Zigbee / Thread | LoRaWAN | 5G Private |
|---|---|---|---|---|---|---|
| Range (Indoor) | 30–100 m | 200 m–1 km | 30–100 m | 10–30 m | 2–5 km | 100–300 m |
| Throughput | 1–46 Gbps | 150 Kbps–40 Mbps | 2 Mbps | 250 Kbps | 0.3 Kbps–1 Mbps | 100 Mbps–4 Gbps |
| Latency | <1–10 ms | 10–100 ms | 3–6 ms | 15–30 ms | 1–5 sec | <1–10 ms |
| Power Draw | Moderate–High | Low | Ultra-Low | Ultra-Low | Very Low | High |
| Device Capacity/AP | 500–1,000+ | 8,000+ | 10–20 | 250 | 10,000+ | 1M/km² |
| Spectrum | 2.4/5/6 GHz ISM | Sub-1 GHz ISM | 2.4 GHz ISM | 2.4 GHz ISM | Sub-GHz ISM | Licensed |
| IP-Native | Yes | Yes | No (gateway) | Thread: Yes | No (gateway) | Yes |
| Best For | High throughput + IoT | Long-range IoT | Proximity & wearables | Mesh sensor networks | Wide-area LPWAN | Mission-critical systems |
* Many enterprise deployments combine Wi-Fi with BLE for proximity, Thread/Zigbee for mesh sensing, and LoRaWAN for wide-area coverage. We architect the right hybrid stack for your unique requirements.
Wi-Fi 6 introduced OFDMA and Target Wake Time for efficient multi-device handling on the existing 2.4/5 GHz bands. Wi-Fi 6E extends those same capabilities into the brand-new 6 GHz band, adding 1,200 MHz of clean, interference-free spectrum. Wi-Fi 7 goes further with multi-link operation (simultaneous tri-band), 320 MHz channels, and 4096-QAM, pushing aggregate throughput past 46 Gbps with deterministic sub-millisecond latency.
Absolutely. Modern Wi-Fi positioning uses Fine Time Measurement (FTM) and Round-Trip Time (RTT) to achieve 1–3 metre accuracy from existing enterprise access points. AI-enhanced fingerprinting improves this further. For asset tracking, wayfinding, and occupancy analytics, Wi-Fi positioning often eliminates the need for dedicated BLE or UWB infrastructure entirely.
Wi-Fi gives 1–3 metre accuracy using your existing APs with no additional infrastructure. BLE achieves 1–2 metre accuracy but requires dedicated beacons. UWB delivers centimetre-level precision but needs purpose-built anchors. Most enterprises start with Wi-Fi (lowest cost, leverages existing infrastructure), add BLE for higher-density zones, and deploy UWB only where sub-metre accuracy is mission-critical.
High-density design is an engineering discipline, not a product purchase. It requires predictive RF modelling, strategic AP placement, proper channel planning (especially utilizing the 6 GHz band), OFDMA for efficient airtime allocation, network segmentation to isolate IoT from corporate traffic, and QoS policies. We design for the worst-case peak, not the average, and validate with real load testing.
Yes. WPA3-Enterprise provides 192-bit encryption, SAE authentication, and Protected Management Frames. Combined with 802.1X RADIUS, network access control, microsegmentation, and encrypted management planes, modern Wi-Fi exceeds HIPAA technical safeguard requirements. We also implement wireless intrusion prevention and continuous compliance monitoring.
- 30-minute call, zero pressure
- Walk away with a custom RF design & architecture sketch
- Transparent pricing no surprises at contract signing