Explore our premium API-compatible monitoring loggers supporting enterprise-level Ethernet, Modbus TCP, SNMP, and multi-gas sensory outputs.
Designed with high-sensitivity components for custom environments requiring continuous sulfur dioxide and nitrogen dioxide monitoring.
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Direct-from-factory high-performance Ethernet integration sensor built for modern chemical storage and enterprise logistics facilities.
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Industrial-level safety logger with active Modbus / JSON endpoints to track oxygen depletion levels and trace hydrogen sulfide levels.
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Fully CE Certified multi-parameter sensor focusing on indoor environmental conditions and O₃ monitoring with API integrations.
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Real-time industrial-grade data logger transmitting temperature, humidity, and active ozone metrics seamlessly over PoE networks.
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Robust manufacturing solutions for environmental integration, monitoring oxygen levels and H₂S concentrations simultaneously.
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Extended external probes for remote monitoring in ducts, tight spaces, and high-temperature environmental chambers.
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Long battery life and sub-GHz wireless range. Features direct local database integrations and API push frameworks.
Explore SolutionA Professional Environmental Monitoring Sensor OEM/ODM Manufacturer Since 2007
Beijing Yingchuanglihe Electronic Technology Co., Ltd. has established itself at the forefront of the environmental monitoring sector. We focus on developing robust, highly integrated, and extremely stable multi-parameter sensors to deliver accurate and reliable data support across specialized industrial environments.
Headquartered in Beijing, our state-of-the-art 1,500 square meter manufacturing base has modern calibration laboratories and high-efficiency production setups. We deploy German and Swiss core technologies (such as Sensirion and Bosch microchips) within our environmental hardware to satisfy stringent enterprise requirements.
Core Technical Strengths:
Providing seamless API pipelines, robust localization options, and competitive supply chain pathways for global system integrators.
Yingchuanglihe sensors support high-level software abstraction layers. Rather than raw hardware registers, our sensors yield clean JSON outputs via HTTP REST, Modbus TCP, and MQTT networks. Software developers can deploy our devices without writing proprietary hardware drivers or managing complex analog-to-digital conversions.
Every industrial installation has distinct safety standards. Our sensors come with extensive CE, FCC, and RoHS certifications, conforming directly with European and North American regulations. We provide dynamic configuration systems to match local network layouts, ensuring seamless global deployments.
Operating from our Beijing engineering hub, Yingchuanglihe combines domestic electronic manufacturing speed with global component channels. This supply chain advantage guarantees stable access to high-precision microchips (Sensirion and Bosch) while keeping production and delivery times highly cost-efficient.
Global operations procurement managers face persistent problems: device integration times, protocol mismatches, unstable calibration metrics, and poor post-sale communications. Yingchuanglihe solves these challenges by building hardware with deep integration in mind.
1. Reducing Integration Lead Times: Traditionally, installing industrial sensors required specialized PLCs (Programmable Logic Controllers) and modbus mapping. Our APEM-5930 ethernet range bypasses these steps by utilizing edge processing directly inside the unit. By supporting RESTful APIs and SNMP natively, IT and software development teams can fetch temperature, humidity, TVOC, and specific gas data instantly via simple HTTP requests, bypassing complex hardware conversions.
2. Multi-scenario Scalability: Modern monitoring setups require both indoor and outdoor sensor deployments. Whether you are managing cleanrooms, cold storage, smart cities, highway boxes, or hyper-scale data centers, our versatile hardware and API-centric approach make scaling seamless. From simple RS485 connections to LoRaWAN networks, our sensors integrate smoothly into existing platforms.
3. Long-term Calibration & Stability: Using inferior sensor elements degrades monitoring accuracy over time. By partnering with advanced silicon manufacturers in Switzerland and Germany, we secure stable components that minimize accuracy drift. This means lower lifetime maintenance costs and fewer field recalibrations for our clients.
A history of technical breakthroughs, working closely with global enterprise leaders since 2007.
A broad array of high-precision monitoring solutions built with solid-state sensor elements and dynamic telemetry architectures.
Adhering strictly to international quality standard certifications to assure safe global deployment.








Solving complex environmental monitoring challenges across sensitive and highly-regulated industrial ecosystems.
Real-time thermal mapping at rack scale. Bypasses secondary servers to prevent cold-aisle air supply inefficiencies and control humidity ranges.
Continuous air quality monitoring. Tracks TVOCs, ozone (O₃), pressure differences, temperature, and dew point variables in real-time.
Protected telemetry housings monitor toxic and volatile gas buildups (H₂S, CO, and oxygen displacement levels) for safety.
Robust sensors operating reliably in environments with heavy electromagnetic fields. Connected directly to enterprise networks.
Understanding the transition toward edge processing, multi-sensor setups, and low-latency API integration.
1. Decentralization of Data Conversion: Classic SCADA systems used to require centralized processing units. The industry is moving rapidly toward standalone IP-addressable monitoring devices. Each sensor now operates as an independent web server, publishing calibrated data streams directly to cloud setups via secure APIs.
2. Multi-Chemical Gas Integration: Space constraints in containment wells and server racks mean combined parameters are critical. Our APEM-5930G series is at the forefront of this trend, integrating atmospheric pressure, relative humidity, VOCs, ozone, and toxic gases into a single compact device.
3. Dual-Network Redundancy: With zero-downtime mandates, modern sensors cannot rely on a single link. The integration of dual-mode setups (such as APEM-5930W featuring wired Ethernet as the primary link and Wi-Fi as a secondary backup) ensures continuous reporting even during physical layer failures.
4. Power over Ethernet (PoE) Standardization: Dropping separate power cables simplifies installations. High-efficiency IEEE 802.3af PoE standards power both the onboard logic and chemical sensory arrays, dramatically reducing wiring complexity.
Everything you need to know about setting up, integrating, and maintaining our smart environmental sensors.
Our sensors support RESTful APIs with JSON payloads, Modbus TCP, SNMP (v1 and v2c), and HTTP Post request functions. This allows for direct, driverless integration into software environments like Python, Node.js, C#, and major SCADA platforms.
Yes. The devices feature built-in web servers that process data locally. Systems can fetch data via Modbus TCP or HTTP over local intranet lines without requiring an active external internet link.
Our PoE devices comply with IEEE 802.3af / 802.3at standards. Power and data travel down the same RJ45 line, removing the need for local power outlets and reducing installation costs.
We recommend an operational calibration interval of 12 to 24 months depending on environmental exposure. Because we use Swiss Sensirion chips and German gas cells, drift is minimal compared to budget sensors.
Yes, we specialize in OEM/ODM partnerships. We can customize enclosure designs, PCB dimensions, firmwares, APIs, and packaging to match your brand requirements.
The APEM-5930E connects external probes via a secure multi-core aviation cable (typically 1 to 3 meters). This keeps the main Ethernet transmitter box safe from extreme temperatures and moisture in the monitored zone.
They use active electrochemical and metal-oxide semiconductor technologies, combined with micro-fan assemblies, to ensure accurate gas detection and quick response times.
Standard bulk items ship in 7 to 15 working days. Tailored OEM/ODM orders or custom API configurations generally require 3 to 5 weeks depending on project specifications.
Explore our advanced atmospheric pressure, multi-gas chemical transmitters, and dual-mode data loggers.
Precision environmental tracking that measures changes in air pressure to optimize cleanroom and HVAC systems.
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An all-in-one sensor array measuring volatile compounds, ozone, and temperature parameters for indoor building assessments.
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Industrial ethernet-connected gas monitor engineered for quick deployment in petrochemical and wastewater applications.
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Customizable industrial monitoring gateway featuring built-in relays and digital inputs for active alarm configurations.
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High-precision formaldehyde and volatile compound monitoring designed for building management systems (BMS).
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A heavy-duty sensor integrating temperature, humidity, carbon monoxide (CO), and Indoor Air Quality (IAQ) parameters.
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A customizable, direct-from-factory air quality sensor featuring PoE powering and direct JSON integration pipelines.
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Dual-mode network design. Uses wired Ethernet as the primary link and switches to Wi-Fi backup if the cable link goes down.
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