Campbell-scientific SR50-L CSC Ultrasonic Distance Sensor Uživatelský manuál

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Strany 1 - SR50 Sonic Ranging Senso

SR50 Sonic Ranging SensorRevision: 1/07Copyright © 1995-2007Campbell Scientific, Inc.

Strany 2 - Warranty and Assistance

SR50 Sonic Ranging Sensor 4 DISTANCE =READINGTKELVIN273.15SR50° FORMULA 1. Temperature Compensation The SR50 calculates a distance reading using the

Strany 3 - Table of Contents

SR50 Sonic Ranging Sensor 5 3.1.1 SDI-12 Wiring FIGURE 1. SDI-12 Wiring The order in which the connections are made is critical. Always connect Gr

Strany 4 - Appendices

SR50 Sonic Ranging Sensor 6 values that are arranged in order from closest to the furthest. If no targets were detected, the SR50 outputs three zeroe

Strany 5 - CAUTIONARY NOTES

SR50 Sonic Ranging Sensor 7 Probe is used and that the SR50 SDI-12/DATA Bus is wired to control port 1 (see Figure 2). This program is similar to th

Strany 6

SR50 Sonic Ranging Sensor 8 6: Z=X*Y (P36) 1: 2 X Loc [[ DEPTH ] 2: 5 Y Loc [ MULT ] 3: 2 Z Loc [[ DEPTH ] 7: Z=X+F (P

Strany 7

SR50 Sonic Ranging Sensor 9 TABLE 1. SR50 SDI-12 Command List CR10X and SDI-12 FUNCTION DATA OUTPUT CR23X P105 COMMANDS Parameter 2 When using

Strany 8 - 2. Introduction

SR50 Sonic Ranging Sensor 10 3.3 Pulse Train Output This option is most commonly used with 21X or CR10s without SDI-12. The SR50 sensor can also out

Strany 9 - 3. Operation

SR50 Sonic Ranging Sensor 11 3.3.1 Pulse Training Wiring FIGURE 3. Pulse Train Wiring The order in which the connections are made is critical. Alw

Strany 10 - 3.1 SDI-12 Operation

SR50 Sonic Ranging Sensor 12 3.4 Two 21X Program Examples for Pulse Train Output 1 2 3 A4 5 6 B7 8 9 C*0 # DI.D. DATA21X MICROLOGGERHL1HL2HL3HL4HL5H

Strany 11 - 3.1.1 SDI-12 Wiring

SR50 Sonic Ranging Sensor 13 The following instructions set the sensor enable line high long enough for the SR50 to detect it, then set it low. 1: Se

Strany 12 - SCIENTIFIC

Warranty and Assistance The SR50 SONIC RANGING SENSOR is warranted by CAMPBELL SCIENTIFIC, INC. to be free from defects in materials and workmanship u

Strany 13

SR50 Sonic Ranging Sensor 14 8: Z=SQRT(X) (P39) 1: 24 X Loc [ ATempComp ] 2: 24 Z Loc [ ATempComp ] 9: Z=X*Y (P36) 1: 21 X Loc [

Strany 14

SR50 Sonic Ranging Sensor 15 3.4.2 Pulse Train Programming Example 2 Example 2 will measure every execution interval. This program will measure the S

Strany 15 - SR50 Sonic Ranging Sensor

SR50 Sonic Ranging Sensor 16 If Flag 2 is high, compute the air temperature compensation factor and correct the distance-to-surface measurement for ai

Strany 16 - 3.3 Pulse Train Output

SR50 Sonic Ranging Sensor 17 Parameter 2 of P92 determines how often to measure. 12: If time is (P92) 1: 0 Minutes into a 2: 15 Minute Interval

Strany 17 - 3.3.1 Pulse Training Wiring

SR50 Sonic Ranging Sensor 18 -Input Locations- 10 SnowDepth 21 Dis2Surf 22 T_Kelvin 23 273_15 24 ATempComp 25 Temporary 3.5 ASCII Output The S

Strany 18 - Clear Black

SR50 Sonic Ranging Sensor 19 TABLE 2. Address Jumper Settings for Pulse Train and ASCII Outputs ADDRESS OUTPUT FORMAT 0 Pulse Train 1000 Hz 2.5mm

Strany 19

SR50 Sonic Ranging Sensor 20 HEIGHTRADIUS22 Deg. FIGURE 5. SR50 Cone Angle The SR50’s mounting stem (1.25” outside diameter) enables various installa

Strany 20

SR50 Sonic Ranging Sensor 21 2.3 Meter 1-1/4 Inch Pipe L1049 Clamp 120 FIGURE 6b. SR50 Tower Mount The SR50 should be mounted perpendicula

Strany 21

SR50 Sonic Ranging Sensor 22 Unobstructed Path 22 Deg. 22 Deg. Perpendicular to Surface 22 Deg.22 Deg. FIGURE 7. SR50 Mounting Considerations 5. Da

Strany 22

SR50 Sonic Ranging Sensor 23 If multiple targets are requested, the distance values will be reported from closest target to furthest. When using mult

Strany 23

i SR50 Sonic Ranging Sensor Table of Contents PDF viewers note: These page numbers refer to the printed version of this document. Use the Adobe Acro

Strany 24 - 3.5 ASCII Output

SR50 Sonic Ranging Sensor 24 7. Assembly/Disassembly Procedures It is important to follow these instructions to disassemble the SR50. Disassembly is

Strany 25

SR50 Sonic Ranging Sensor 25 1. If the sensor is in operation, always disconnect the SR50 from the datalogger before disassembling. 2. To remove t

Strany 26 - CLAMP 120

SR50 Sonic Ranging Sensor 26 CAPD10.0022 F1N5388A1N5388A1KD3D4100pFF1G2G37-35pfB6TRANSFORMERD8F61.5K10KB61.0mH0.01 F 5%D10D12D130.1 F33

Strany 27 - Clamp 120

A-1 Appendix A. Making Concurrent Measurements with the SR50 Concurrent Measurement ability allows the datalogging system to initiate measurements in

Strany 28 - 5. Data Interpretation

Appendix A. Making Concurrent Measurements with the SR50 A-2 Place measurement in Loc X. If measurement is > -1000 then use measurement Else Add 1

Strany 29 - 6. Maintenance

Appendix A. Modifying the Non-Volatile Memory A-3 4: If (X<=>F) (P89) 1: 3 X Loc [ Raw_Dist ] 2: 3 >= 3: -1000 F 4: 30 Then

Strany 30

Appendix A. Making Concurrent Measurements with the SR50 A-4 14: End (P95) 15: End (P95) ; Apply air temperature correction to the reading...

Strany 31

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Strany 32 - ADDRESS/OPTION JUMPERS

Campbell Scientific Companies Campbell Scientific, Inc. (CSI) 815 West 1800 North Logan, Utah 84321 UNITED STATES www.campbellsci.com info@campbells

Strany 33 - Measurements with the SR50

SR50 Sonic Ranging Sensor Table of Contents ii Tables 1. SR50 SDI-12 Command List ...

Strany 34

CAUTIONARY NOTES 1. The order in which the connections are made is critical. Always connect Ground first, followed by +12V and then the remaining S

Strany 35

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Strany 36

1 SR50 Sonic Ranging Sensor 1. SR50 Specifications Power Requirements: 9-16 VOLTS D.C. Power Consumption: 2 mA (Quiescent) 250 mA (Measureme

Strany 37 - This is a blank page

SR50 Sonic Ranging Sensor 2 Measurement Range: 0.5 to 10 meters Accuracy: ±1 cm or 0.4% of distance to target (whichever is greater) requires

Strany 38

SR50 Sonic Ranging Sensor 3 3. Operation The SR50 has several output formats: SDI-12, Pulse Train, and serial ASCII output. A group of four jumpers

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