Explore our premium grade IoT and network-integrated environmental data loggers designed for continuous server room diagnostics.
Custom High-Performance Ethernet IAQ & Carbon Monoxide Data Logger designed for cleanrooms and critical containment environments.
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Reliable integrated ozone and air quality sensing module featuring direct Ethernet output and Modbus protocol compatibility.
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Ultra-long-range wireless monitoring station supporting private protocols or standard LoRaWAN profiles.
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Advanced atmospheric compound analyzer for wastewater monitoring, battery rooms, and critical server racks.
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Ruggedized Ethernet gateway for chemical vapor tracking, incorporating premium industrial grade sensors.
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Specialized environmental sensor detecting trace concentrations of acidic combustion gases inside computing rooms.
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Long Range RF system optimized for low-power operation, featuring crisp local visual feedback and historical trends.
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Scalable node solution for massive industrial plants requiring reliable wide-area sensor topologies.
Technical SpecificationsAn Expert Guide to Thermal Management, High-Density Computing Nodes, and Sensor Integration
As microprocessors push beyond thermal design profiles of 400W per chip, data centers must navigate unprecedented thermal densities. Standard HVAC control systems are no longer sufficient to prevent localized hotspots inside Server Cabinets. The ASHRAE TC 9.9 guidelines declare that modern high-density computing spaces must maintain humidity thresholds strictly above dew point thresholds while preventing excess relative humidity levels that risk electrochemical migration (corrosion) on hardware circuits.
Yingchuanglihe answers this engineering challenge by manufacturing dual-function high-precision monitoring devices using advanced components sourced directly from Switzerland and Germany. These systems compute dew point variations dynamically, offering immediate warning metrics before cold condensation drops can damage motherboards.
Beijing Yingchuanglihe Electronic Technology Co., Ltd. is a leading high-tech manufacturer specializing in advanced environmental sensors since 2007.
Strategically situated in the high-tech development hubs of Beijing, China, Beijing Yingchuanglihe Electronic Technology Co., Ltd. has established a strong reputation as an industry pioneer in smart sensor design. Our 1,500 square meter ISO 9001:2015 certified assembly workshops employ advanced automated calibration rigs and climatic chambers that ensure every single sensor satisfies our zero-drift standard.
By using premium sensor nodes from industry leaders in Switzerland and Germany, we ensure our telemetry instruments achieve outstanding longevity with minimal drift over time. This makes them ideal for demanding telemetry applications, critical telecom stations, and high-performance computing centers.
A journey from simple local networking terminals to high-performance IoT industrial sensor networks
Our commitment to international standards of safety, quality, and manufacturing precision.
High precision ethernet modules designed for fast integration into BMS, SCADA, and IoT systems.
Supported Protocol: Modbus TCP, SNMP, JSON, MQTT. Features wide-range PoE power supply alongside secondary DC input.
Monitors atmospheric pressure differential alongside standard T/H readings. Excellent for cleanroom pressure regulation.
Main control unit separated from the sensor head via a flexible 1-3 meter industrial cable. Avoids self-heating influences.
How Yingchuanglihe sensor hardware integrates into diverse macro industrial systems
Continuous monitoring of hot/cold aisle thermal distribution, avoiding hot spot expansion, and calculating active air-handler operation rates using dynamic dew point equations.
Compact, PoE-powered devices deployed directly inside remote utility and highway telemetry boxes, supporting SNMP alerts for instant fault localization.
Multi-parameter transmitters logging temperature, relative humidity, pressure differentials, and air chemical pollutants (TVOC, O₃, HCHO) simultaneously.
Yingchuanglihe offers comprehensive OEM/ODM manufacturing capability. We specialize in producing bespoke physical enclosures, tailored firmware configurations, and custom communication protocols to integrate seamlessly with your proprietary applications.
Yingchuanglihe sensors monitor environments across complex infrastructure frameworks worldwide.
Review additional models featuring dual network failover modes, wireless RF capabilities, and specialized chemical detectors.
Long-Range wireless monitor with customization support for regional RF frequencies (868MHz, 915MHz, 433MHz).
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Highly stable industrial gas safety logger monitoring ambient oxygen percentage levels inside nitrogen-purged environments.
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Our primary Ethernet data acquisition module, trusted for massive hardware diagnostic networks.
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Low-power RF transceiver node designed for expansive storage yards, warehouses, and distribution facilities.
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Wireless environmental gateway offering seamless sensor integrations over broad geographic coordinates.
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Comprehensive monitor measuring TVOC, O₃, ambient temperature, and humidity levels simultaneously.
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Designed for heavy industrial sectors, reporting SO₂ and NO₂ concentrations along Ethernet interfaces.
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Provides complete environmental mapping, logging relative barometric pressure, dew point, temperature, and RH levels.
Technical SpecificationsPioneering the future of multi-parameter edge-computing monitoring platforms
The rise of high-density computing and liquid cooling architectures (such as direct-to-chip water loops or immersion cooling tanks) requires advanced environmental tracking strategies. Standard ambient air sensors are no longer sufficient when leak detection, fluid temperature profiles, and relative humidity controls must operate in perfect unison. Our technology roadmap focuses on combining temperature, relative humidity, atmospheric pressure, and trace chemical vapor diagnostics (like TVOCs) into unified edge-computing nodes.
By shifting computational algorithms to the hardware level, our sensors compute real-time dew point thresholds, predict condensation risks, and send rapid commands directly to cooling units via Modbus or MQTT, minimizing latency and protecting hardware from humidity fluctuations.
Yingchuanglihe is expanding its wireless integration capabilities with support for LoRaWAN, Wi-Fi, and NB-IoT protocols. This allows our sensors to connect directly with broader Building Management Systems (BMS) and SCADA platforms. Key features of our next-gen communication interfaces include:
Expert answers to technical inquiries, integration questions, and procurement options
Our Ethernet units natively support Modbus TCP, SNMP (v1/v2c/v3), JSON HTTP RESTful APIs, and MQTT. This allows our devices to integrate directly with existing DCIM software, building management systems (BMS), SCADA systems, or cloud monitoring databases without needing extra converters.
Relative humidity fluctuates with temperature changes, making it unreliable for predicting condensation. Our sensors calculate the dew point dynamically using local temperature and relative humidity readings. This allows cooling controllers to adjust output before the air temperature drops to the dew point, preventing condensation on electronic components.
Yes. The APEM-5930E model supports external sensor probes connected by high-durability cables (typically 1 to 3 meters, customizable up to 10 meters). This design isolates the sensor head from the heating effects of the transmitter unit, ensuring high accuracy in tight server racks.
The APEM-5736 series uses low-power microcontrollers and optimized transmission routines. When configured with low-power e-Paper displays, they operate on internal batteries for up to 3 to 5 years, transmitting readings at standard 15-minute intervals.
Yes, our specialized APEM-5930G series monitors environmental parameters along with trace levels of TVOC, O₃, SO₂, NO₂, or H₂S. This is crucial for protecting data centers in industrial areas from corrosive atmospheric gases.
With 5 automated production lines and more than 100 staff members, we can fulfill standard OEM orders within 2 to 3 weeks. Custom ODM engineering, including plastic casing adjustments and custom firmware creation, is supported by our dedicated R&D team.