Engineered with Swiss/German premium chips and fully optimized for Nordic transmission environments and Denmark's strict DGNB indoor air safety metrics.
Robust wireless indoor monitoring system designed for real-time CO2, volatile organic compounds, humidity, and temperature diagnostics.
High-efficiency, long-range E-Ink display system customized for urban district heating tracking and regional meteorological monitoring.
Dual-mode high-reliability backup system providing seamless data logger transition between wired Ethernet and wireless WiFi networks.
Industrial environmental terminal incorporating high-sensitivity oxygen and hydrogen sulfide electrochemical sensors for biogas and wastewater industries.
Unlocking Green Transition Metrics with Advanced Sub-GHz Wireless Networks and Precision Calibration
DENMARK'S GREEN TRANSITION MANDATES
As Denmark aggressively pursues its Climate Act target of a 70% greenhouse gas reduction by 2030, the digitization of infrastructure becomes paramount. Industrial operations across regions like Jutland, Zealand, and Funen are rapidly shifting to integrated Internet of Things (IoT) frameworks. In commercial buildings, compliance with DGNB Denmark certification standards requires real-time, highly granular diagnostics of indoor air quality (IAQ), temperature gradients, and relative humidity.
Our long-range LoRaWAN series and high-stability Ethernet IoT sensors act as the central nervous system for these energy-management systems. By leveraging sub-GHz RF propagation, these sensors bypass thick concrete and historical brickwork standard in Danish urban centers like Copenhagen and Odense, ensuring zero data loss and multi-year battery autonomy.
Denmark leads the world in district heating grids. Our specialized APEM temperature and humidity arrays with external extendable probes allow real-time pipeline monitoring and immediate condensation/moisture warnings, preventing costly structural remediation.
High humidity and NH₃/H₂S concentrations in livestock housing demand highly resilient, anti-corrosive sensor shells. Our IP67-rated configurations provide reliable ambient diagnostics even under harsh bio-chemical exposure.
Empowering global system integrators and Danish industrial OEMs with enterprise-grade environmental monitoring engineering.
Years of R&D Innovation
Modernized Facility (m²)
Automated SMT Production Lines
Dedicated IoT R&D Experts
All temperature, humidity, and gas detection arrays utilize imported chips from Switzerland (Sensirion) and Germany (Bosch Sense), guaranteeing ultra-low drift, precision accuracy within ±0.1°C, and exceptional long-term baseline stability.
From custom firmwares support (Modbus RTU over TCP, MQTT, CoAP, LoRaWAN class switches) to housing modifications (private labeling, environmental ruggedization, tailored multi-parameter integration).
Our professional system architecture team resolves technical implementation queries within 8 hours. Fully supporting local time zone coordination for ongoing projects across the EU.
In the volatile post-pandemic technology climate, supply chain resilience is a critical business metric for Danish system integrators. Beijing Yingchuanglihe bridges this gap by combining state-of-the-art Chinese production throughput with strict European Quality Control compliance protocols.
Our localized research clusters in Beijing continuously upgrade our products to support emerging IoT infrastructure trends. This includes:
This localized agility ensures lead times remain shorter than regional European manufacturers while offering robust custom configurations.
// Typical Denmark LoRaWAN Payload Decoder
function Decode(fPort, bytes) {
var decoded = {};
if (fPort === 10) {
decoded.temperature = ((bytes[0] << 8) | bytes[1]) / 100;
decoded.humidity = bytes[2] / 2;
decoded.co2 = (bytes[3] << 8) | bytes[4];
decoded.voc = (bytes[5] << 8) | bytes[6];
}
return decoded;
}
// Outputs: { "temperature": 21.34, "humidity": 45.5, "co2": 650, "voc": 120 }
Payload parser native to ChirpStack, Actility, and TTN (The Things Network) platforms standard in Danish IoT deployments.
From pioneering network communication terminals in 2007 to designing intelligent computing infrastructures today.
Company founded. Developed early-stage TCP/IP smart environmental terminals and initial telemetry control software.
Partnered with Mocha Software to deliver SNMP network environmental sensors (TH-5939 series) for enterprise applications.
Collaborated with COMLAB (Switzerland). Integrated Ethernet monitoring units into major national high-speed rail infrastructures.
Launched APEM-6100 with Founder Technology, marking one of the market's earliest adaptations of Power over Ethernet (PoE) in sensors.
Collaborated with Foxconn. Establishing company sensor benchmarks as a baseline standard for precision production workshops.
Designed next-gen APEM-5900 with Baidu, deployed at the Yangquan Super Data Center. Software upgraded to support multi-parameter tracking.
Introduced Smart Solutions Systems, widening deployments from data centers to smart parks, archives, and regional warehouses.
Rolled out integrated outdoor cabinet telemetry monitoring systems, supporting ETC highway monitoring with Huawei.
Spearheaded R&D for Beijing's autonomous road test edge-computing gateways and sensor array units.
Scaled production to cover national Intelligent Computing Centers, focusing on smart cooling energy-saving control metrics.
Co-founded Beidou Business Division. Achieved breakthroughs in smart pipelines and deformation monitoring. Secured official IDC operator credentials.
Securing enterprise IoT integrations with standard certifications, localized compliance protocols, and data privacy safeguards.
Our hardware routes data through local Danish/EU-based LNS (e.g., Cibicom, The Things Stack EU). No personal identifiable information (PII) is gathered, fulfilling strict GDPR regulations.
Fully compliant with the European Radio Equipment Directive (RED). Dynamic transmit power adjustments (up to 14dBm in the EU868 band) prevent spectral pollution.
All circuit boards, solder configurations, and enclosure plastics are lead-free and conform to the RoHS Directive, matching Denmark's sustainability objectives.
Advanced multi-parameter Ethernet and long-range wireless sensor arrays with precise calibration standards.
Simultaneous tracking of TVOC, ambient ozone, temperature, and relative humidity via high-performance Modbus TCP protocols.
All-in-one indoor health logger designed specifically to satisfy strict Danish working environment agency compliance audits.
High-precision laboratory monitoring station featuring active ozone and airborne pollutant detection, backed by CE compliance testing.
Flexible Ethernet gateway sensor providing integrated TVOC, O₃, temperature, and humidity tracking for cleanroom environments.
Comprehensive air safety device widely integrated across Scandinavian schools to trace multi-parameter environmental statistics.
Optimized for patient care facilities. Features ultra-low noise operations and stable Ethernet networking output options.
Designed with robust outer cable configurations for monitoring temperature and humidity values deep inside utility cavities.
Utilizes standard IEEE 802.3af PoE protocols, combining power delivery and reliable network telemetry through a single LAN cable.
Proven performance across diverse mission-critical telemetry environments worldwide.
Addressing integration, frequency standards, and environmental deployment queries from system architects.
All our LoRaWAN devices intended for Denmark are factory-configured for the EU868 band (863–870 MHz) as defined by ETSI. We support the standard EU868 channel plan (eight multi-data rate channels starting from 868.1 MHz up to 868.5 MHz), allowing plug-and-play integration with major European network servers including Cibicom, Actility, and The Things Network.
Our sensors integrate Sensirion’s CMOSens® technology, which merges the sensor element and processing circuitry on a single silicon chip. This achieves exceptional relative humidity accuracy (up to ±1.5% RH) and temperature accuracy (up to ±0.1°C), crucial for energy-efficient ventilation control in DGNB-certified buildings.
Yes. The APEM-5930 PoE series operates on standard IEEE 802.3af protocols (36V to 57V DC) while concurrently transmitting environmental data packets using Modbus TCP or JSON formats over standard Ethernet connections. This simplifies cabling layouts in complex building automation networks.
Standard product configurations are shipped within 5 to 7 business days. Custom OEM orders (including custom firmware parameter adjustments or localized product labeling) typically require a 3 to 4-week manufacturing cycle, leveraging our optimized domestic component supply chains.
All environmental telemetry devices ship with a standard Factory Calibration Certificate showing traceability. For laboratory deployments, we can arrange individual calibration protocols aligned with national metrological standards before shipment.