Campbell RAWS-P Handbuch Seite 1

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Inhaltsverzeichnis

Seite 1 - Automated Weather Station

RAWS-P RemoteAutomated Weather StationRevision: 4/12Copyright © 2006-2012Campbell Scientific, Inc.

Seite 2

RAWS-P Remote Automated Weather Station 2. Getting Started Set up and test your station before field deployment. NOTE Keep this manual and the CR10

Seite 3 - Warranty

RAWS-P Remote Automated Weather Station CR1000KD packed in foam (may go here) FIGURE 2-1. Inside environmental enclosure (optional equipment shown)

Seite 4 - Assistance

RAWS-P Remote Automated Weather Station Use the CR1000KD Keyboard Display to see the “Public Variables” shown in Table 2-1. NOTE • Connect the CR100

Seite 5 - RAWS-P Table of Contents

RAWS-P Remote Automated Weather Station 3. Station Siting and Orientation 3.1 General Description Selecting an appropriate site for the RAWS is crit

Seite 6

RAWS-P Remote Automated Weather Station 3.6 Barometric Pressure The barometric pressure sensor is mounted to the back plate inside the RAWS environm

Seite 7 - Figures

RAWS-P Remote Automated Weather Station 4.2 Rain Gage 4.2.1 General Description, Rain Gage (part #TE525-LQ) The Texas Electronics Rain Gage (part #

Seite 8

RAWS-P Remote Automated Weather Station 4.3.3 Troubleshooting, Pyranometer (part #CS300-LQ) Check the sensor cable. Disconnect the connector and use

Seite 9 - Station

RAWS-P Remote Automated Weather Station 4.4.2 2-D WindSonic 4.4.2.1 General Description, 2-D WindSonic (part #WindSonic-LQ) The Gill Instruments 2

Seite 10 - 2. Getting Started

RAWS-P Remote Automated Weather Station CS100 Barometric Pressure Sensor wires attached to CR1000 Wiring Panel CS100 Blue wire to CR1000 wiring pane

Seite 11

RAWS-P Remote Automated Weather Station Connector Panel “FM/FT” connector COLOR CODED BROWN Connector Pin A 107-LQ Temp. Signal to CR1000 4L Connec

Seite 13 - 3.4 Solar Radiation

RAWS-P Remote Automated Weather Station current flow from the battery to the solar panel, and 2) limits the source current to the battery. 5.1.3 Trou

Seite 14 - 3.6 Barometric Pressure

RAWS-P Remote Automated Weather Station 5.2.2 Wiring, 12 V Charger/Regulator (part #CH100) The leads from the RAWS connector panel “BATT CHARGER/SOLA

Seite 15 - 4.3 Solar Radiation

RAWS-P Remote Automated Weather Station 5.3 Battery 5.3.1 General Description, Battery The RAWS battery is a rechargeable 12 volt battery. The bat

Seite 16

RAWS-P Remote Automated Weather Station The TX320 transmitter has two siting requirements for proper operation. The GOES antenna must have a clear vi

Seite 17 - 4.5 Barometric Pressure

RAWS-P Remote Automated Weather Station 5.4.2 Wiring, GOES Transmitter (part #TX320) The GOES transmitter (part #TX320) is mounted inside the RAWS e

Seite 18 - (part #CS516-LQ)

RAWS-P Remote Automated Weather Station FIGURE 5.5-1. Voice radio interface 5.5.2 Wiring, Voice Radio Interface (part #VSP3) The Voice Radio Interf

Seite 19 - 5.1 Solar Panels

RAWS-P Remote Automated Weather Station 5.6 CR1000 Keyboard/Display 5.6.1 General Description, CR1000 Keyboard/Display (part #CR1000KD) The CR1000

Seite 20 - 5.2 Charger/Regulator

RAWS-P Remote Automated Weather Station Consult the CR1000 manual for more information. NOTE 5.7 CR1000 Datalogger (part #CR1000) 5.7.1 General Des

Seite 21

RAWS-P Remote Automated Weather Station 5.7.2 Wiring, CR1000 Datalogger (part #CR1000) The CR1000 datalogger is mounted inside the RAWS environmental

Seite 22 - 5.4 GOES Transmitter

RAWS-P Remote Automated Weather Station 7. Sensor and Equipment Maintenance 7.1 Sensor and Equipment Maintenance Proper maintenance of weather stati

Seite 23

Warranty “PRODUCTS MANUFACTURED BY CAMPBELL SCIENTIFIC, INC. are warranted by Campbell Scientific, Inc. (“Campbell”) to be free from defects in materi

Seite 24 - 5.5 Voice Radio Interface

RAWS-P Remote Automated Weather Station EPA, (1989): Quality Assurance Handbook for Air Pollution Measurement Systems, EPA Office of Research and Deve

Seite 25

RAWS-P Remote Automated Weather Station FIGURE 8.3-2. A declination angle East of True North (positive) is subtracted from 360 (0) degrees to find T

Seite 26

RAWS-P Remote Automated Weather Station FIGURE 8.3-4. USGS Web Calculator In the example above the declination for Logan, UT is 12º 24′ or 12.4º. A

Seite 28 - 6. Desiccant

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

Seite 29 - 8. References

Assistance Products may not be returned without prior authorization. The following contact information is for US and international customers residing

Seite 30 - 8.3 RAWS Orientation

RAWS-P Table of Contents PDF viewers: These page numbers refer to the printed version of this document. Use the PDF reader bookmarks tab for links t

Seite 31 - 8.3.2 USGS Web Calculator

RAWS-P Table of Contents 4.6 Fuel Moisture and Fuel Temperature... 10 4.6.1 General Description, F

Seite 32

RAWS-P Table of Contents 8.3 RAWS Orientation ...22 8.3.1 Determining

Seite 33

RAWS-P Table of Contents iv

Seite 34

RAWS-P Remote Automated Weather Station 1. Introduction The RAWS environmental enclosure can be used for configuring a custom Remote Automated Weathe

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