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CHK Power Quality MIRO PQ25 User Manual

CHK Power Quality MIRO PQ25
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CHK Power Quality Pty Ltd, User Manual Miro Power Quality Logger and Analyser, 15 August 2016
Website: www.chkpowerquality.com.au; Enquiries: sales@chkpowerquality.com.au; Page 58
Address: Unit 1, 3 Tollis Place, Seven Hills, NSW 2147, Sydney, Australia; ABN: 53 169 840 831; Telephone: +61 2 8283 6945;
Fax: +61 2 8212 8105; Website: www.chkpowerquality.com.au
Figure 5.4.10.13.1
Once the clock has been adjusted the date time will change its colour to green, as shown in
figure 5.4.10.13.2, indicating that the instrument time is now locked to GPS time.
Figure 5.4.10.13.2
Now, if the GPS antenna is removed, the date time will soon revert back to the colour black
and the instrument will retain its GPS date time.
5.4.10.14 Common page information
Each page is numbered and displays the date, time and log status ‘Log: ON’ or ‘Log: OFF’ at
the bottom of each page on a single line as shown in figure 5.4.10.14.1.
Figure 5.4.10.14.1
The user can pre-set future date-times for the ‘Log start:’ and ‘Log stop:’ for a delayed log
start. In this case the log status will display ‘Log: WAIT until the date-time reaches the pre-
set ‘Log start:’ value. Once the date-time reaches the ‘Log stop:’ value, the log status will
display ‘Log: FIN, indicating that the instrument has finished logging.
If the start time is in the past, then the Miro will start logging immediately on power up.
5.4.11 Comms
The Comms tab shown in figure 5.4.11.1 is for the configuration of cellular communications.
The user has the option to disable the communications by selecting ‘Disabled’.

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CHK Power Quality MIRO PQ25 Specifications

General IconGeneral
Device TypePower Quality Analyzer
Frequency Range45 Hz to 65 Hz
HarmonicsUp to 50th order
Communication InterfacesUSB, Ethernet
Safety StandardIEC 61010-1
Accuracy±0.5% of reading
Dimensions240 x 180 x 80 mm
Weight1.5 kg
DisplayColor LCD
Data LoggingYes, with internal memory
Power Supply50/60 Hz
Current RangeDepends on CT used
Power RangeCalculated based on voltage and current input