Micro water quality automatic monitoring instrument: The unified collection of global data can support trend analysis and risk prediction. By comparing the changes in indicators between blind spots and core areas (such as the rise and diffusion of ammonia nitrogen from the catchment of landscape water blind spots to the core area during the rainy season), potential pollution risks in blind spots can be identified in advance, triggering preventive warnings, avoiding the spread of pollution in blind spots to the whole area, and upgrading water quality control from "passive response" to "active prevention and control".
Micro water quality automatic monitoring instrumentUnified collection of global data can support trend analysis and risk prediction. By comparing the changes in indicators between blind spots and core areas (such as ammonia nitrogen rising first and then spreading to the core area during the rainy season in landscape water blind spots), potential pollution risks in blind spots can be identified in advance, triggering preventive warnings to prevent blind spot pollution from spreading to the whole area, and upgrading water quality control from "passive response" to "active prevention and control".Micro water quality automatic monitoring instrument
1、 Product Introduction
1. Overview
QSZ05 Water Supply Quality Station is a comprehensive sensor acquisition, display, and analysis system based on Internet of Things technology. It is a microsystem for water supply quality monitoring, consisting of a stable flow exhaust unit, analysis and testing unit, system control unit, and remote communication unit. It has complete functions such as power supply, lightning protection, and network communication.
2. Product positioning
QSZ105 Micro Water Quality Automatic Monitoring Station
The water quality automatic monitoring station has an automatic monitoring function, and the main monitoring items of the integrated extraction micro water quality automatic monitoring station are: pH, temperature, turbidity, conductivity, dissolved oxygen, etc COD、 Ammonia nitrogen, suspended solids, etc. It adopts highly integrated technology to achieve automatic water quality monitoring function in one cabinet.
This device can be widely used for online monitoring of water quality in rivers, urban or rural water plants, water supply pipelines, secondary water supply, user terminals, indoor swimming pools, large-scale water purification equipment, and direct drinking water. It is an indispensable online analysis device in the fields of water plant production process control, water conservancy and water management, and health supervision.

3. Functions and Features
·GPRS networking 4G
·Support expanding RJ45 networking
·Support remote transmission of extended sensors
·Support LED screen display and 7.0-inch touch control screen
·Support expanding Android screen display and storage
·Expand Android screen support for 2G data storage and USB data export
·Support one RS485 Modbus RTU protocol slave station
·Support multi-channel RS485 modbus RTU sensor expansion
·Supporting IoT data display, storage, and analysis platform
·The platform supports multiple protocols such as TCP short links and HTTP protocol for data forwarding
2、 System composition
The water quality monitoring microsystem for water supply consists of a power supply unit, a water pump control unit, an analysis and testing unit, a display unit, a water pump unit, a remote communication unit, and an integrated box main unit.
1. Power supply unit
The power supply is AC220V.
2. Water pump control unit
Intelligent self-priming pump, high head: 25m, opening flow rate: 1.8m3/h
3. Analyze the testing unit
The analysis and testing unit mainly consists of pH, dissolved oxygen, conductivity, turbidity ORP、 The temperature sensor is composed of threads or tight fitting fasteners fixed to the circulation pool. The main parameters of the sensor are as follows:
| serial number |
sensor type |
measurement range |
Measuring principle |
measurement accuracy |
configuration |
| 1 |
temperature |
0~50℃ |
High precision digital sensor |
±0.3℃ |
√ |
| 2 |
conductivity |
0~5000uS/cm,0~10000uS/cm |
Contact electrode method |
± 1.5% |
√ |
| 3 |
pH |
0~14(ph) |
Electrochemistry (salt bridge) |
± 0.1PH |
√ |
| 4 |
dissolved oxygen |
0~20mg/L |
Fluorescence lifetime method |
± 2% |
√ |
| 5 |
ammonia nitrogen |
0-1000.00mg/L (default) 0-1000mg/l/(customizable) |
Ion selective electrode method |
10% of the reading, ± 0.5 ℃ |
√ |
| 6 |
turbidity |
0~40NTU (optional) |
scattered light method |
± 1% |
|
| 7 |
COD |
0~500mg/ L |
UV254 absorption method |
±5% |
|
Attention: The sensor should not be installed upside down or horizontally, and should be installed at an angle of at least 15 degrees. The working environment of the above water quality sensors is 0-50 ℃,<0.3Mpa
4. Display unit
Multi parameter monitoring device, installed at the cabinet door, for data collection, analysis, display, communication, and data storage operations,
·Android version: 4.4.2 · CPU: quad core Cortex ™- A7 · RAM/ROM: 512M/4G · Screen: 7-inch capacitive touch screen · Power supply: 12V/1A · Supports USB expansion and memory card expansion
5. Remote communication
RS485 interface MODBUS-RTU communication protocol factory equipment address 6 decimal support 03 function code reading data
6. Equipment box main unit
| Installation method |
The cabinet is installed on the ground with a base. |
| Overall dimensions |
1684mm * 560mm * 510mm 50-100mm adjustable |
| Shell material |
216 stainless steel. |
| Protection level |
IP54 |
| power supply |
AC 220V mains power |
| water inlet |
4-point PE pipe |
| 出水口 |
6-point water purifier PE pipe |
| outfall |
4-point water purifier hose, (can also be manually drained regularly) |
| self-priming pump |
Motor power: 200W |
| Rated voltage: AC220V/50hz |
| Pump size 210 * 145 * 245/mm |
| Large suction range: 8m High lift: 25m |
| Open flow rate: 1.8m3/h |
| Supporting sensors (optional) |
PH: 0-14 Dissolved oxygen: 0-20mg/L Turbidity: 0-40NTU Conductivity: 0-5000us/cm Temperature: 0 ° C~50 ° C |