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Product

 [QM8765]  Industrial stainless steel noise sensor

QM8765 QM8765

Technical Parameters


Technical parameterParameter value
BrandTRANBALL
Noise range30~130dB
Noise accuracy±3%
InterfaceRS485/4-20mA/DC0-5V
PowerDC12~24V 1A
Running temperature-30~85℃
Working humidity5%RH~90%RH

Product Selection


    Product DesignRS485,4-20mA,DC0-5VMultiple output methods, the products are divided into the following models depending on the output method.
Product model output method
QM8765BRS485总线
QM8765M4-20mA
QM8765V5DC0-5V

Product Size


QM8765

Why choose this product?


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How to use?


QM8765

Application solution


QM8765 QM8765

Product List


QM8765

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 .
Address Function Code Start Address Data Length Check Code
010300 0000 0184 0A
    For the correct query frame, the device will respond with data: 01 03 02 00 79 79 A6 , response format:
Address Function Code LengthData 1Check Code
0103 0200 79 79 A6
    Data description: The data in the command is hexadecimal, take data 1 as an example, 02 18 is converted to decimal value as 536, assuming the data magnification is 10, the real value is 536/10=53.6, Others and so on.
2. Common data address table
Configuration Address Register Address Register Description Data Type Value Range
4000100 00noiseRead Only0~65535
4010100 64Model CodeRead/Write0~65535
4010200 65 total number of measuring points read/write 1~20
4010300 66device addressread/write1~249
4010400 67baud rateread/write0~6
4010500 68communication moderead/write1~4
4010600 69protocol typeread/write1~10

  For example, the range is 0~130dB, the analog output is 4~20mA current signal, noise and current The calculation relationship is as shown in the formula: C = (A2-A1) * (X-B1) / (B2-B1) + A1, where A2 is noise 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 noise value, and C is the calculated current value. The list of commonly used values is as follows:
current(mA)noiseValue (dB) Calculation Process
40.0(130-0)*(4-4)÷(20-4)+0
58.1(130-0)*(5-4)÷(20-4)+0
616.3(130-0)*(6-4)÷(20-4)+0
724.4(130-0)*(7-4)÷(20-4)+0
832.5(130-0)*(8-4)÷(20-4)+0
940.6(130-0)*(9-4)÷(20-4)+0
1048.8(130-0)*(10-4)÷(20-4)+0
1156.9(130-0)*(11-4)÷(20-4)+0
1265.0(130-0)*(12-4)÷(20-4)+0
1373.1(130-0)*(13-4)÷(20-4)+0
1481.3(130-0)*(14-4)÷(20-4)+0
1589.4(130-0)*(15-4)÷(20-4)+0
1697.5(130-0)*(16-4)÷(20-4)+0
17105.6(130-0)*(17-4)÷(20-4)+0
18113.8(130-0)*(18-4)÷(20-4)+0
19121.9(130-0)*(19-4)÷(20-4)+0
20130.0(130-0)*(20-4)÷(20-4)+0
    As shown in the above formula, when measuring 8mA, current current is 36.5dB。
  For example, the range is 0~130dB, the analog output is 0~5V DC0-5Vvoltage signal, noise and DC0-5Vvoltage The calculation relationship is as shown in the formula: C = (A2-A1) * (X-B1) / (B2-B1) + A1, where A2 is noise range upper limit, A1 is the lower limit of the range, B2 is DC0-5Vvoltage output range upper limit, B1 is the lower limit, X is the currently read noise value, and C is the calculated DC0-5Vvoltage value. The list of commonly used values is as follows:
DC0-5Vvoltage(V)noiseValue (dB) Calculation Process
00.0(130-0)*(0-0)÷(5-0)+0
126.0(130-0)*(1-0)÷(5-0)+0
252.0(130-0)*(2-0)÷(5-0)+0
378.0(130-0)*(3-0)÷(5-0)+0
4104.0(130-0)*(4-0)÷(5-0)+0
5130.0(130-0)*(5-0)÷(5-0)+0
    As shown in the above formula, when measuring 2.5V, current DC0-5Vvoltage is 65dB。
software for test product
After downloading, please read the readme.txt documentation

[RV1000] DEGBUG AND TEST SOFTWARE

Data and Software

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