Manuale d’uso / di manutenzione del prodotto SDM-SW8A del fabbricante Campbell Manufacturing
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SDM-SW8A 8 Channel Switch Closure Module Revision: 7/07 Copyright © 1987-2007 Campbell Scientific, Inc..
Warranty and Assistance The SDM-SW8A SWITCH CLOSURE INPUT MODULE is warranted by CAMPBELL SCIENTIFIC, INC. to be free from defects in m aterials and workmanship under norm al use and service for twelve (12) m onths from date of shipment unl ess specified otherwise.
SDM-SW8A Table of Contents PDF viewers note: These page numbers refer to the printed version of this document. Use the Adobe Acrobat® bookmarks tab for links to specific sections. 1. Function ..........................................................
SDM-SW8A Table of Contents List of Tables 1. Datalogger to SDM-SW8A Connections ................................................... 2 2. SDM-SW8A to SDM-SW8A Connections ................................................ 3 3. Address Jumpers ...........
SDM-SW8A Switch Closure Input Module 1. Function The 8 channel SDM-SW8A Switch Closure Input M odule (see Figure 1) measures up to 8 channels of swit ch closure or voltage pulse input s. Each channel may be confi gured to read single-pole double-throw (SPDT) swi tch closure, single-pole single- throw (SPST) switch closure, or voltage pulse.
SDM-SW8A Switch Closure Input Module 2. Specifications Operating voltage: 12 VDC nominal (9.6 to 16) Current drain: 3 mA quiescent, 6 m A active (max) Environmenta l: -25 to +50 o C, 0 to 90% RH, noncondensing Measurement types: Switch closure (SPDT, SPST) DC voltage pulse Input voltage threshol d: From below 0.
SDM-SW8A Switch Closure Input Module TABLE 2. SDM-SW8A to SDM-SW8A Connections SDM-SW8A SDM-SW8A that’s connected to a CR10(X), CR800, CR850, CR1000, CR23X, CR3000, CR5000, or CR7 SDM-SW8A that’s .
SDM-SW8A Switch Closure Input Module 4. Connections All connections to the dat alogger, power supply, and other SW8As are made from term inals located under "TO DATALOGGER" on the SW8A (refer to Figure 1). Sensor connections are ma de at the remaining t erminals.
SDM-SW8A Switch Closure Input Module TABLE 3. Address Jumpers Pins Address 1-8 2-7 3-6 4-5 00 c c c c 01 c c c nc 02 c c nc c 03 c c nc nc 10 c nc c c 11 c nc c nc 12 c nc nc c 13 c nc nc nc 20 nc c c c 21 nc c c nc 22 nc c nc c 23 nc c nc nc 30 nc nc c c 31 nc nc c nc 32 nc nc nc c 33 nc nc nc nc c = connected nc = not connected FIGURE 2.
SDM-SW8A Switch Closure Input Module 5.2 Measurement Jumpers Near each input channel is a jumper trip let used to configure the channel for the measurement type. The SDM-SW8A is shipped from the factory with each channel configured for DC Voltage pulse.
SDM-SW8A Switch Closure Input Module Parameter & Da t a T y pe Enter FunctOp Constant The FunctOp is used to determine the result that will be retu rn ed by the SW8A. Numeric Code Function 0 Returns the state of the sig nal at the time the instruction is executed.
SDM-SW8A Switch Closure Input Module Instruction 102 is not contai ned in all CR10 or 21X PROM S. To verify that the datalogger cont ains the Instruction, enter 102 i nto a datalogger Programming Table. If the Instruction is accepted, the PROM contains the Instruction.
SDM-SW8A Switch Closure Input Module 7. Datalogger Program Details 7.1 Datalogger Scan Rate The Module samples channel state every 2 ms and accum ulates the information for duty cycle and counts. Each channel has one 16 bit accumulator for duty cycle and one for counts.
SDM-SW8A Switch Closure Input Module forces a watchdog reset by addressing the Modul e and requesting sufficient information t o cause a minim um of 65 clock li ne transitions. Advantages to the trapping routine are: • The bombed processor is detect ed before erroneous values (-99999) are included in subsequent processing.
SDM-SW8A Switch Closure Input Module 8.2 SPST Switch Closure Single-pole single-throw swit ches are either open (high state) or connected t o ground (low state). Typical SPST switc hes include contact closure (reed switch) anemom eters, tipping bucket rain gauges, and open collectors (semiconductor switches).
SDM-SW8A Switch Closure Input Module 50% Duty Cycle - The "worst case" duty cycle m easurement error for a 50% duty cycle at a given i nput frequency is ± ERROR = Hz * 0.4 where ERROR = Actual Duty Cycle ± Measured Duty Cycle. For example, a 50% duty cy cle at 10 Hz could be measured as 46% t o 54% in the worst case.
SDM-SW8A Switch Closure Input Module addressed SW8A is present. The 21X works similarly, except the data from the SW8A is input to single ended analog channel 1, not C1. Depending on the Comm and, Reps, and Ch annel information, the module will shift out one or more by tes to the datalogger, again usi ng C2 as a clock driven by the datalogger.
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Appendix A. Program Example The Edlog program is an exam ple only and is not meant to be used verbati m. In application, the co ncepts illustrated here are likely to be only fragments of a larger program. The example program reads all 8 ports of an SW8A which is set t o address 00.
Appendix A. Program Example FIGURE A-1. Example Program Flow Chart PROGRAM EXAMPLE Input Locations Used: 1:STATE #1 13:DUTY #5 2:STATE #2 14:DUTY #6 3:STATE #3 15:DUTY #7 4:STATE #4 16:DUTY #8 5:STATE.
Appendix A. Program Example *Table 1 Programs 01: 1 Sec. execution interval 1: Do (P86) 1: 1 Call Subrout ine 1 If SDM-SW8A was just programmed or its processor is bombed, set intermediate processing disabl e flag.
Appendix A. Program Example 10: Do (P86) 1: 1 Call Subrout ine 1 11: Z=Z+1 (P32) 1: 25 Z Loc [:RESET CNT] 12: Do (P86) 1: 10 Set high Flag 0 (output) 13: Real Tim e (P77) 1: 110 Day,Hour-M inute 14: S.
Appendix A. Program Example 3: SDM-SW8A (P102) 1: 8 Reps 2: 00 Address 3: 1 Duty cycle funct ion 4: 1 Chan 5: 9 Loc [:duty #1 ] 6: 1 Mult 7: 0 Offset 4: SDM-SW8A (P102) 1: 8 Reps 2: 00 Address 3: 2 Co.
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Campbell Scientific Companies Campbell Scientific, Inc. (CSI) 815 West 1800 Nort h Logan, Utah 84 321 UNITED STATES www.campbellsci.com info@campbellsci.com Campbell Scientific Afri ca Pty. Lt d. (CSAf) PO Box 2450 Somerset West 7129 SOUTH AFRICA www.
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