XUNCHIP XM8171 Pipeline CO2 Sensors User Manual

June 1, 2024
XUNChip

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual

monitoring carbon dioxide state quantities. The internal use of high-precision sensing core and related devices to ensure high reliability and excellent long-term stability, can be customized RS232,RS485,CAN,4-20mA,DC0~5V\10V,ZIGBEE,Lora,WIFI,GPRS and other output methods.

Technical Parameters

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Technical
Parameters

Product Selection

Product DesignRS485,4-20mA,DC0-10VMultiple output methods, the products are divided into the following models depending on the output method.

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Product
Selection

Product Size

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Product
Size

Communication protocols

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Communication
Protocols XUNCHIP
XM8171 Pipeline CO2 Sensors User Manual - Communication
Protocols

Wiring

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual -
Wiring XUNCHIP XM8171 Pipeline CO2
Sensors User Manual - Wiring

In the case of broken wires, wire the wires as shown in the figure. If the product itself has no leads, the core color is for reference.

How to use?

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - How to
use

Product List

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Product
List

Communication Protocol
The product uses RS485 MODBUS-RTU standard protocol format, all operation or reply commands are hexadecimal data. The default device address is 1 when the device leaves the factory, and the module or NON-Recorder default baud rate is 9600,8,n,1 ,but data recorder default baud rate is 115200 .

1. Read data (function code 0x03)
Inquiry frame (hexadecimal), sending example: query 1 data of 1# device, the upper computer sends the command: 01 03 00 00 00 01 84 0A .

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Read
data

Data description: The data in the command is hexadecimal, take data 1 as an example, 00 79 is converted to decimal value as 121, assuming the data magnification is 100, then the real value is 121/100=1.21, Others and so on.

2. Common data address table

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Common data address
table XUNCHIP
XM8171 Pipeline CO2 Sensors User Manual - Common data address
table

3 Read and modify device address
(1) Read or query device address
If you don’t know the current device address and there is only one device on the bus, you can query the device address through the commandFA 03 00 66 00 01 71 9E .

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Read or query device
address

(2) Change device address
For example, if the current device address is 1 and we want to change it to 02, the command is:

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Change device
address

In the response data, after the modification is successful, the first byte is the new device address.
Generally, after the device address is changed, it will take effect immediately. At this time, the user needs to change the query command of his software accordingly. .

4 Read and modify baud rate
(1) Read baud rate
The default factory baud rate of the device is 9600. If you need to change it, you can change it according to the following table and the corresponding communication protocol. For example, to read the baud rate ID of the current device, the command is: 01 03 00 67 00 01 35 D5 , the format is parsed as follows.

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Read baud
rate

According to the baud rate code, 03 is 9600, that is, the baud rate of the current device is 9600.
(2) Change the baud rate
For example, change the baud rate from 9600 to 38400, that is, change the code from 3 to 5, the command is: 01 06 00 67 00 05 F8 16 .

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Change the baud
rate

Change the baud rate from 9600 to 38400, that is, change the code from 3 to 5. The new baud rate will take effect immediately, and the device will lose response at this time, and the baud rate of the device needs to be checked accordingly Modified.

5 Read and modify correction value
(1) Read correction value

When there is an error between the data and the reference standard, we can reduce the display error by adjusting the correction value. The correction difference can be modified in a rang e of plus or minus 1000, that is, the value range is 0-1000 or 64535 -65535. For example, when the displayed value is too small by 100, we can correct it by adding 100. The command is: 01 03 00 6B 00 01 F5 D6 . In the command, 100 is hexadecimal 0x64 ;If you need to reduce it, you can set a negative value, such as -100,
the corresponding hexadecimal value is FF 9C, the calculation method is 100-65535=65435, and then converted to hexadecimal, it is 0x FF 9C. Device The correction value starts from 00 6B. We take the first parameter as an example to illustrate. When there are multiple parameters, the correction value is read and modified in the same way.

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Read correction
value

In the response data, the first byte 01 represents the real address of the current device, and 00 6B is the first state correction value register. If the device has multiple parameters, other parameters operate in the same way as this The same, generally temperature and humidity have this parameter, and lighting generally does not have this parameter.

(2) Change the correction value
For example, if the current state is too small, we want to add 1 to its real value, and add 100 to the current value. The correction operation command is: 01 06 00 6B 00 64 F9 FD .

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - Change the correction
value

After the operation is successful, the device will return the information: 01 06 00 6B 00 64 F9 FD , after the successful change, the parameters will take effect immediately.

For example, the range is 400~5000ppm, the analog output is 4~20mA current signal, carbon dioxide and current The calculation relationship is as shown in the formula: C = (A2-A1) * (X-B1) / (B2-B1) + A1, where A2 is carbon dioxide range upper limit, A1 is the lower limit of the range, B2 is current output range upper limit, B1 is the lower limit, X is the currently read carbon dioxide value, and C is the calculated current value. The list of commonly used values is as follows:

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual - After the operation is
successful

For example, the range is 400~5000ppm, the analog output is 0~10V DC0-10Vvoltage signal, carbon dioxide and DC0-10Vvoltage The calculation relationship is as shown in the formula: C = (A2-A1) * (X-B1) / (B2-B1) + A1, where A2 is carbon dioxide range upper limit, A1 is the lower limit of the range, B2 is DC0-10Vvoltage output range upper limit, B1 is the lower limit, X is the currently read carbon dioxide value, and C is the calculated DC0-10Vvoltage value. The list of commonly used values is as follows:

XUNCHIP XM8171 Pipeline CO2 Sensors User Manual -
DC0-10Vvoltage

Disclaimer

This document provides all information about the product, does not grant any license to intellectual property, does not express or imply, and prohibits any other means of granting any intellectual property rights, such as the statement of sales terms and conditions of this product, other issues. No liability is assumed. Furthermore, our company makes no warranties, express or implied, regarding the sale and use of this product, including the suitability for the specific use of the product, the marketability or the infringement liability for any patent, copyright or other intellectual property rights, etc. Product specifications and product descriptions may be modified at any time without notice.

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