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Battery mode
In case of the UPS works in battery mode, the
buzzer beeps once every 4 seconds.
When the mains power is low or unstable, UPS
will turn to the battery mode and LCD displays
‘batt’.
ECO mode
The UPS works in ECO mode in case of the
input mains meet the input range of the ECO
mode and the ECO function is on, the UPS
works in ECO mode. If input mains exceed the
range of ECO several times within one minute
but stays in inverter input range, UPS will
work in inverting mode automatically. LCD
displays ‘ECO’.
CUCF mode
Frequency conversion mode is mainly to
provide a stable voltage and frequency . After
starting this mode, its output will not be
affected by utility to meet input needs of some
precision equipment and make users’ load
more stable and secure. After opening CUCF
mode setup, LCD displays ‘CUCF’. Under the
CUCF mode, when the output frequency is set
to 50HZ, the load capacity decreased to 80%
of the original volume; when the output
frequency is set to 60HZ, the load capacity
decreased to 70%. The output frequency is
fixed with the setting values, it doesn’t vary
with utility change. And the UPS cannot be set
to going bypass under this mode.
Summary of Contents for SMALLT1
Page 1: ...User s Manual Small Tower 1000 3000 Uninterruptible Power Supply Small Tower 1000 3000 VA...
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Page 9: ...7 1 SMALLT1 SMALLT2 SMALLT3 2 125167 4 8 6 9 7 800 250 52 63 service dkc ru...
Page 10: ...8 3 3 1 Small Tower 3 2 1...
Page 11: ...9 3 3 1 2 3 1 3 4 3 4 1 2 15 3 4 3 5...
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Page 15: ...13 4 3 Small Tower IGBT VFI IEC EN62040 1 2...
Page 16: ...14 2 4 4 4 4 1 4 4 2...
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Page 18: ...16 4 5 2 4 5 3 4 6 4 6 1...
Page 20: ...18 1 4 1 2 3 4 4 7 4 7 1 RS232 USB RS232 port 1 2 3 4 5 6 7 8 9...
Page 24: ...22 AS400 7 DB 9 5 24 DB9 AS400 11 D8 D6 D2 D8 D9 D2 D7 D8 D9 D1 D2 D8 K1 K1 7 DB 9...
Page 25: ...23 5 5 1 8 0 5 0 5 1 1 15 2 2...
Page 26: ...24 0 5 2 0 5 2 2 2 0 5 2 0 5 2 2 0 5 2 8...
Page 27: ...25 5 2 9 0 25 26 50 51 75 76 100 0 25 26 50 51 75 and 76 100...
Page 28: ...26 ECO CUCF 20 20 STDBY BYPASS LINE BAT BATT ECO SHUTDN CUCF 9 5 3 5 3 1 OFF ON...
Page 29: ...27 ON 0 5 ON 0 5 5 3 2 OFF 0 5 BPS ON OFF 7 5 4 2...
Page 30: ...28 3 8 5 4 ON ON Line...
Page 31: ...29 bat 4 ECO ECO ECO ECO ECO...
Page 32: ...30 CUCF CUCF CUCF 50 CUCF 80 60 CUCF 70 OFF 10 5 5 0 5 2...
Page 33: ...31 220 50 800 1 0 v1 7 40 220 50 24 100 11...
Page 34: ...32 5 6 2 0 5 2 0 5 2 0 5 2 1 2 0 5 2 208 220 230 240...
Page 35: ...33 9 8 9 9 10 10 2 10 5 dEF dEF 21 5 CF ON OFF 50 60 ON OFF...
Page 37: ...35 EPO EP EPO ON EPO OFF EPO 6 6 1 1 2 3...
Page 38: ...36 6 2 6 3 1 15 25 C 2 6 3...
Page 39: ...37 4 2 5 6 8 8 2 30 1 2 3 4 5...
Page 43: ...41 10 0 1 2 3 4 5 6 7 8 9 A B...
Page 44: ...42 C D E F 0 1 2 3 4 5 6 7 8 9 A B C D E F EEPROM Median 0 1 2 3 4 5 6 7 8 9 A B...
Page 45: ...43 C D E F 4 0 1 2 3 4 5 6 7 14 2000 7 2 11 00 14...
Page 46: ...44 15 24 25 39 40 44 10 45 49 50 54 55 59 NTC 60 64...
Page 47: ...45 65 69 On 2 3 15...
Page 50: ...48 13 SMALLT1A10 14 SMALLT2A5...
Page 51: ...49 15 SMALLT2A10 16 SMALLT3A5...
Page 52: ...50 17 SMALLT3A10...
Page 54: ...52 8 5 004 2011 020 2011 9 2 batt dkc ru service_center...
Page 55: ...53 8 800 250 52 63 service dkc ru www dkc ru...
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Page 57: ...55 English language...
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Page 99: ...97 Figure 15 Runtime graph of SMALLT2A5 Figure 16 Runtime graph of SMALLT2A10...
Page 100: ...98 Figure 17 Runtime graph of SMALLT3A5 Figure 18 Runtime graph of SMALLT3A10...
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