High-fidelity integrated monitoring terminals engineered for enterprise networks and data centers.
In modern intelligent industrial layouts, monitoring environmental variables is no longer limited to simple temperature and humidity tracking. High-end computing platforms, chemical processes, precision fabrication yards, and pharmaceutical cleanrooms require concurrent, low-latency collection of multi-parameter gas data. The transformation from standalone data acquisition instruments to fully integrated Ethernet Gas Data Loggers has established a core technical baseline for Industry 4.0.
Key industry trends driving this sector include:
Traditional monitoring architectures deployed separate sensors for different targets, increasing points of failure. Present standards command units that integrate electro-chemical, NDIR, and semiconductor technologies to read temperature, humidity, TVOC, O₃, CO, CO₂, H₂S, SO₂, and NO₂ concurrently in a single rugged housing.
Deploying separate high-voltage lines to hard-to-reach locations incurs severe layout overhead. Modern facilities utilize IEEE 802.3af/at PoE interfaces. This merges dual-mode data pipeline execution with high-reliability power delivery over a single RJ45 drop, radically lowering wiring budgets and structural complexity.
In instances of network disruption, standard sensor streams are lost. Modern Ethernet loggers embed robust internal flash memory arrays to buffer environmental telemetry. Integrated ARM microcontrollers compute statistical metrics locally, offloading work from centralized industrial orchestration servers.
Beijing Yingchuanglihe Electronic Technology Co., Ltd. stands as a premier manufacturer of high-end environmental monitoring sensors and data acquisition systems. Since our foundation in 2007, we have dedicated ourselves to generating accurate, stable, and resilient sensor systems that empower intelligent controls, automated safety, and digital analytics. Headquartered in Beijing, China, our advanced facility spans over 1,500 square meters and houses five automated precision production lines, supported by a world-class R&D and engineering department.
By leveraging raw sensing elements imported directly from elite fabricators in Switzerland and Germany, we secure superior drift immunity, highly repeatable outputs, and excellent response speed. Whether integrating with third-party networks or deploying our local host interfaces, our systems communicate natively via SNMP, Modbus TCP/RTU, and standard JSON REST APIs.
We provide full-spectrum custom configurations including specialized firmware, custom probe architectures, private labeling, and custom communication wrappers. Our multi-disciplinary engineering division guarantees a rapid response, ensuring custom projects transition from definition to batch testing efficiently.
Over a decade and a half of technological evolution in network-attached telemetry and sensor platforms.
Company founded. Engineered initial intelligent monitoring terminal based on native TCP/IP protocol stack and launched our V1.0 environmental monitoring suite.
Partnered with Mocha Software to co-develop and deploy the TH-5939 series of network-attached monitoring units natively supporting SNMP integration.
Partnered with COMLAB (Switzerland) to launch the TH-5869 protective high-reliability Ethernet sensor. Deployed extensively in high-speed rail networks, including Beijing-Kowloon and Wuhan-Guangzhou lines.
Collaborated with Founder Technology to deploy the APEM-6100 network sensor series, featuring early-generation Power-over-Ethernet (PoE) integration.
Collaborated with Foxconn to establish our sensor specifications as a standardized benchmark for environmental tracking across large-scale manufacturing yards.
Cooperated with Baidu to launch the APEM-5900 intelligent network gateway, deployed within Baidu's Yangquan Cloud Center. Upgraded software platform to support high-density multi-parameter tracking.
Released an advanced multi-environment smart solution suite, scaling our systems beyond server rooms into industrial warehouses, museums, and laboratories.
Launched an integrated outdoor cabinet monitoring layout, deployed in highway electronic toll collection (ETC) projects for Huawei and China Merchants Huaruan.
Designed integrated sensor units and edge data hubs for road testing autonomous driving infrastructure in Beijing, ensuring microclimate monitoring reliability.
Deployed specialized hardware layouts within deep AI computing architectures, validating thermal and gaseous parameters for massive server deployments.
Established a joint pipeline division with Beijing Enterprises Water Group and a Beidou high-precision alignment team with Beijing University of Civil Engineering and Architecture. Achieved key breakthroughs in pipeline gas monitoring and Beidou structural stability telemetry, while securing certified IDC operating licensing.
Explore our core Ethernet-equipped transmitters, environmental sensors, and multi-gas logging systems.
Model: APEM-5930
Parameters: Temp + Humidity + Dew Point
Powering: DC 12~48V + Standard IEEE PoE utility. Provides simple single-cable installation for network environments.
Model: APEM-5930P
Parameters: Atm Pressure + Temp + Humidity + Dew Point
Enables differential pressure calculations, preventing cross-contamination in cleanrooms and labs.
Model: APEM-5930E
Parameters: Temp + Humidity + Dew Point + Probes
Equipped with external sensing probe options (1-3 meter cables) to decouple main transceivers from harsh environments.
Model: APEM-5930G-IAQ-CO
A high-performance unit combining temperature, humidity, carbon monoxide (CO), and Indoor Air Quality (IAQ) indexes. Features PoE, 2-channel digital inputs, and a relay output for direct control of HVAC dampers and ventilation systems.
Model: APEM-5736
Designed for wireless installations, utilizing long-range LoRa networks with low power draw. Perfect for large warehouses, archives, and agricultural storage areas where wired drops are impractical.
Environmental tracking demands vary across industries. We provide custom integration platforms designed to meet the strict regulatory frameworks and operational metrics of modern facilities.
High-density AI server rooms run close to thermal limits. Our real-time SNMP/Modbus Ethernet transmitters connect directly to Network Management Systems (NMS), preventing thermal runaway and allowing cooling adjustments down to the rack level.
Slight pressure drops or trace chemical leaks can compromise cleanrooms. Our integrated APEM-5930P monitors pressure differentials, while our gas loggers track O₃, H₂S, and TVOC levels to protect personnel and ensure process control.
In partnership with organizations like Beijing Enterprises Water Group, we deploy rugged pipeline gas transmitters to detect toxic accumulations (like H₂S and methane) in water networks, enabling proactive maintenance.
Manufactured to international quality standards, backed by CE, FCC, and RoHS certifications.
Our operations are ISO-certified, and our devices are built to comply with international electronics regulations, ensuring safety, reliability, and electromagnetic compatibility.
Each sensor undergoes environmental chamber verification and multi-point calibration prior to dispatch, ensuring long-term field stability.




As environmental monitoring demands evolve, Yingchuanglihe is investing in next-generation platforms designed for intelligent infrastructure and edge processing.
Integrating high-precision Beidou positioning with environmental sensors enables sub-millimeter deformation tracking alongside ambient data logging. This is designed for high-stress applications like high-speed rail beds, bridges, and deep drainage corridors.
Future sensor platforms will incorporate built-in predictive modeling to forecast concentration anomalies. Local microprocessors analyze air flow and historical trends to flag environmental drifts before thresholds are crossed.
Our upcoming modules will support unified integration across Modbus, BACnet, MQTT, and OPC-UA. This enables seamless connection with building automation systems and industrial IoT clouds, reducing integration times.
Technical answers to key integration, protocol, calibration, and sourcing questions.
High-precision sensor architectures for comprehensive environmental monitoring.