Sonbus Km53b88 Rs485 Outdoor Aluminum Wind Speed And Direction Integrated Sensor User Manual

Sonbus Km53b88 Rs485 Outdoor Aluminum Wind Speed And Direction Integrated Sensor User Manual

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KM53B88
RS485 outdoor aluminum wind speed and direction integrated sensor
User Manual 
File Version: V21.8.30

SONBUS KM53B88 RS485 Outdoor Aluminum Wind Speed and Direction Integrated Sensor

KM53B88 using the standard RS485 bus MODBUS-RTU protocol, easy access to PLC, DCS, and other instruments or systems for monitoring wind speed, conductivity 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

Technical parameterParameter value
BrandKHA
Wind speed range0~30m/s
Start wind0.2m/s
Wind speed accuracy±3%
Shell materialaluminum
Wind direction range0~360°
Wind direction resolution22.5°
Communication InterfaceRS485
Default baud rate9600 8 n 1
PowerDC12~24V 1A
Running temperature-40~80°C

Product Size

SONBUS KM53B88 RS485 Outdoor Aluminum Wind Speed and Direction Integrated Sensor - Dayagrame

SONBUS KM53B88 RS485 Outdoor Aluminum Wind Speed and Direction Integrated Sensor - Dayagrame2

How to wiring?

SONBUS KM53B88 RS485 Outdoor Aluminum Wind Speed and Direction Integrated Sensor - wiring

Note: When wiring, connect the positive and negative poles of the power supply first and then connect the signal wire

Application solution

SONBUS KM53B88 RS485 Outdoor Aluminum Wind Speed and Direction Integrated Sensor - wiring2

SONBUS KM53B88 RS485 Outdoor Aluminum Wind Speed and Direction Integrated Sensor - wiring3

 

16-DIMENSIONAL MAP OF WIND DURATION

SONBUS KM53B88 RS485 Outdoor Aluminum Wind Speed and Direction Integrated Sensor - map

How to use it?

SONBUS KM53B88 RS485 Outdoor Aluminum Wind Speed and Direction Integrated Sensor - pic

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 is shipped, the default baud rate is 9600, 8, n, 1

Read Data (Function id 0x03)
Inquiry frame (hexadecimal), sending example: Query 1# device 1 data, the host computer sends the command:01 03 00 00 00 02 C4 0B.

Device IDFunction idStart AddressData LengthCRC16
010300 0000 02C4 0B

For the correct query frame, the device will respond with data:01 03 04 00 7A 00 00 DB EA, the response format is parsed as follows:

Device IDFunction idData LengthData 1Data 2Check Code
01030400 7900 7ADB EA

Data Description: The data in the command is hexadecimal. Take data 1 as an example. 00 79 is converted to a decimal value of 121. If the data magnification is 100, the actual value is 121/100=1.21. Others and so on.

Data Address Table

AddressStart AddressDescriptionData typeValue range
4000100 00wind speedRead Only0~65535
4000200 01conductivityRead Only0~65535
4010100 64model coderead/write0~65535
4010200 65total pointsread/write1~20
4010300 66Device IDread/write1~249
4010400 67baud rateread/write0~6
4010500 68moderead/write1~4
4010600 69protocolread/write1~10

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 use the command FA 03 00 64 00 02 90 5F Query device address.
FA is 250 for the general address. When you don’t know the address, you can use 250 to get the real device address, 00 64 is the device model register.
For the correct query command, the device will respond, for example, the response data is 01 03 02 07 12 3A 79, the format of which is shown in the following table:

Device IDFunction idStart AddressData LengthCRC16
FA0300 6400 0290 5F

FA is 250 for the general address. When you don’t know the address, you can use 250 to get the real device address, 00 64 is the device model register.
For the correct query command, the device will respond, for example, the response data is: 01 03 02 07 12 3A 79, the format of which is shown in the following table

Device IDFunction idStart AddressModel CodeCRC16
01030255 3C 00 013A 79

The response should be in the data, the first byte 01 indicates that the real address of the current device is, 55 3C converted to decimal 20182 indicates that the current device’s main model is 21820, the last two bytes 00 01 Indicates that the device has a status quantity.

Change devise address

For example, if the current device address is 1, we want to change it to 02, the command is:01 06 00 66 00 02 E8 14.

Device IDFunction idStart AddressDestinationCRC16
010600 6600 02E8 14

After the change is successful, the device will return information: 02 06 00 66 00 02 E8 27, its format is parsed as shown in the following table:

Device IDFunction idStart AddressDestinationCRC16
010600 6600 02E8 27

The response should be in the data, after the modification is successful, the first byte is the new device address. After the general device address is changed, it will take effect immediately. At this time, the user needs to change the query command of the software at the same time.

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

Device IDFunction idStart AddressData LengthCRC16
010300 6700 0135 D5

coded according to baud rate, 03 is 9600, ie the current device has a baud rate of 9600.

(1) Change the baud rate
For example, changing the baud rate from 9600 to 38400, ie changing the code from 3 to 5, the command is 01 06 00 67 00 05 F8 1601 03 00 66 00 01 64 15.

Device IDFunction idStart AddressTarget Baud RateCRC16
010300 6600 0164 15

Change the baud rate from 9600 to 38400, changing the code from 3 to 5. The new baud rate will take effect immediately, at which point the device will lose its response and the baud rate of the device should be queried accordingly. Modified.
5 Read 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 to be plus or minus 1000, that is, the value range is 0-1000 or 64535 -65535. For example, when the display value is too small, we can correct it by adding 100. The command is: 01 03 00 6B 00 01 F5 D6 . In the command 100 is hex 0x64 If you need to reduce, you can set a negative value, such as -100, corresponding to the hexadecimal value of FF 9C, which is calculated as 100-65535=65435, and then converted to hexadecimal to 0x FF 9C. The correction value starts from 00 6B. We take the first parameter as an example.  The correction value is read and modified in the same way for multiple parameters.

Device IDFunction idStart AddressData LengthCRC16
010300 6B00 01F5 D6

For the correct query command, the device will respond, for example, the response data is 01 03 02 00 64 B9 AF, the format of which is shown in the following table:

Device IDFunction idData LengthData valueCRC16
01030200 64B9 AF

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

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

Device IDFunction idStart AddressDestinationCRC16
010600 6B00 64F9 FD

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

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.
Contact Us
Company: Shanghai Sonbest Industrial Co., Ltd KLHA Brand Division
Address: Building 8, No.215 Northeast Road, Baoshan District, Shanghai, China

Sha nghai Sonbest Industrial Co., Ltd KLHA Brand Division

Web: http://www.klha.com
Web: http://www.klha.com
SKYPE: soobuu
Email: [email protected]
Tel: 86-021-51083595/66862055/66862075/66861077

References

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