Dual Detection Technology
Magnetometer combined with radar for highly reliable parking occupancy detection.
sensors live
71k
countries
50+
accuracy
99.96%
battery life
10-year
Deployment Snapshot
| Field | Value |
|---|---|
| Client | Slovanet, a. s. |
| HQ | Bratislava, Slovakia |
| Industry | Alternative telecommunications / LoRaWAN network operator |
| Products deployed | IoT Parking Sensor Standard (LoRaWAN), IoT Permit Card (BLE), IoT Hub (5-year subscription) |
| Connectivity | LoRaWAN, BLE |
| Deployment type | Municipal production deployment with on-site installation |
| Invoice date | September 2023 |
| Deployment site | Skalica, Slovakia |
| Warranty | 3 years (sensors) |
The Client
Slovanet, a. s. is one of Slovakia's largest alternative telecommunications operators, founded in 2000 and headquartered in Bratislava. The company provides VoIP, broadband, web hosting, and data connectivity to households and businesses across Slovakia, with 200-500 employees. Since 2016, Slovanet has operated a nationwide LoRaWAN network covering 10+ Slovak cities — positioning the telecom as a critical infrastructure provider for IoT applications including smart metering, environmental monitoring, and smart parking.
Slovanet's LoRaWAN network is the backbone that makes municipal IoT deployments across Slovakia commercially viable. Rather than each municipality building its own gateway infrastructure, towns like Skalica can leverage Slovanet's existing network to connect LoRaWAN parking sensor devices immediately upon installation.
The Challenge: Bringing Smart Parking and Permit Enforcement to a Slovak Town
Skalica, a historic town of approximately 15,000 people in western Slovakia near the Czech border, faces the parking congestion typical of small European towns: a compact historic centre with limited parking, high demand from commuters and visitors, and permit zones that are difficult to enforce manually. Municipal enforcement officers checking physical permits on windshields is time-consuming, inconsistent, and generates resident complaints about both under-enforcement and perceived unfairness.
The municipality needed both occupancy detection (which spaces are available) and vehicle identification (which vehicles are authorised to park in permit zones) — two complementary functions that require different sensor technologies working together, effectively a lightweight parking enforcement software layer built on top of in-ground parking sensors.
The Solution: Full-Stack Smart Parking with Sensors, Permit Cards, and Long-Term Backend
Slovanet's deployment in Skalica combines three Fleximodo components into a complete parking management system.
The deployment included:
- IoT Parking Sensor Standard (LoRaWAN, in-ground) — Dual-sensing in-ground parking sensors with extended 3-year warranty, installed in Skalica's parking zones and connected through Slovanet's own LoRaWAN network
- IoT Permit Card (BLE) — Wireless vehicle identification cards placed in authorised vehicles, detected by in-ground sensors via Bluetooth Low Energy to automate permit-zone verification
- IoT Hub — 5-year subscription — Long-term backend commitment prepaid for the full project duration, giving Slovanet and the municipality continuous access to Fleximodo's CityPortal dashboard for occupancy and enforcement data
- On-site installation in Skalica — 8 sensors installed as the initial deployment phase
The 5-year IoT Hub commitment is the most revealing element of this order. While most Fleximodo deployments use either annual OPEX (renewed yearly) or OPEX-free (lifetime), Slovanet negotiated a fixed 5-year term — aligning the backend subscription with what is likely a 5-year municipal contract between Slovanet and the town of Skalica. This structure protects Slovanet's margin: the telecom knows its exact backend cost for the contract duration and can set its municipal pricing accordingly.
The Permit Card integration elevates this beyond simple parking occupancy detection. When a vehicle parks in a permit zone, the in-ground sensor detects the vehicle's presence while the Permit Card identifies whether that specific vehicle is authorised. Together, they automate what previously required a human enforcement officer — creating a digital enforcement layer that operates continuously and fairly, viewable in real time through CityPortal.
Including on-site installation for 8 sensors (rather than shipping hardware for the client to install) suggests this initial phase is a municipal demonstration: a visible, working zone that the town council can evaluate before approving a wider rollout across Skalica's parking infrastructure.
Fleximodo IoT Parking Sensor Standard In-ground 2.0: Technical Profile
| Specification | Detail |
|---|---|
| Detection method | 3-axis magnetic field + nanoradar (dual-sensing) |
| Detection accuracy | 99.96% |
| Dimensions | 115 mm diameter, height 64 mm |
| Weight | 390 g |
| Battery | 3.6 V, 13-19 Ah (6-year operational lifetime) |
| Connectivity | LoRaWAN Class A/B/C |
| Ingress protection | IP68 |
| Impact resistance | IK10 |
| Weight endurance | Up to 8 tonnes |
| Operating temperature | -40 to +85 °C |
The -40 to +85 °C operating range is not just a magnetometer parking sensor spec on paper — western Slovakia's continental climate swings from freezing winters to hot summers, and the same in-ground sensor has to keep reading vehicles accurately through both. Fleximodo's magnetometer-based radar parking sensor achieves this with automatic temperature compensation, which continuously recalibrates the magnetic-field baseline against measured temperature so seasonal drift is not mistaken for a car arriving or leaving. That is a large part of how the sensor sustains 99.96% detection accuracy year-round in Skalica's parking zones.
Fleximodo IoT Permit Card 2.1: Technical Profile
| Specification | Detail |
|---|---|
| Dimensions | 32.5 × 62.5 × 20 mm |
| Weight | 20 g |
| Battery | Li-SOCl2, 1200 mAh, 3.6 V (9.5-year lifetime) |
| Communication | BLE + UWB (dual-radio) |
| Transmission range | 30 metres |
| Ingress protection | IP67 |
| Operating temperature | -40 to +75 °C |
| Security | Anti-cloning protection |
| Customisation | Text, logo, branding |
Fleximodo smart parking technology is deployed in 30+ countries. View all products | Stadt Ulm — German municipality with Fleximodo sensors and Permit Cards | PosAm — Slovak smart parking with Fleximodo NB-IoT
Frequently Asked Questions
What is Slovanet and why does it deploy parking sensors? Slovanet is one of Slovakia's largest alternative telecoms, operating a nationwide LoRaWAN network covering 10+ cities. Smart parking is a key smart city application running on Slovanet's LoRaWAN infrastructure — the company provides both the connectivity backbone and the IoT solution deployment to municipalities. By partnering with Fleximodo, Slovanet offers Slovak towns a turnkey parking management system, accessible through CityPortal, that runs on its existing network.
How do Fleximodo sensors and Permit Cards work together? In-ground sensors detect vehicle presence via magnetic field and nanoradar (which space is occupied). Permit Cards placed in vehicles transmit Bluetooth signals detected by the same sensors (which vehicle is parked there). Together, they automate permit-zone enforcement: the system knows both that a space is occupied and whether the occupying vehicle is authorised — replacing manual enforcement officers with continuous digital monitoring and giving municipalities a practical parking enforcement software workflow.
What is the Skalica smart parking deployment? Skalica is a historic town of ~15,000 people in western Slovakia where Slovanet deployed Fleximodo sensors and Permit Cards for permit-zone management. The initial phase includes 8 installed sensors with a 5-year IoT Hub commitment, suggesting a municipal pilot aligned with Slovanet's contract term, with potential for wider rollout across the town's parking infrastructure.
What is automatic temperature compensation? Automatic temperature compensation is the calibration process that lets Fleximodo's magnetometer-based sensors continuously adjust their magnetic-field baseline for ambient temperature. It stops seasonal heat and cold — relevant for Skalica's continental climate swinging between -40 °C and +85 °C operating extremes — from being misread as vehicles arriving or leaving, helping the sensor hold 99.96% detection accuracy year-round.
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