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Condensation is not permitted. The minimum coolant temperature to avoid condensation
(at an atmospheric pressure of 1 bar) is shown below as a function of relative humidity (RH)
and ambient temperature (
T
air
).
Min. T
coolant
(°C)
T
air
(°C)
RH = 40%
RH = 50%
RH = 65%
RH = 80%
RH = 95%
-7.4
-4.5
-0.9
1.9
4.3
5
-3.0
-0.1
3.7
6.7
9.2
10
1.5
4.6
8.4
11.5
14.2
15
6.0
9.4
13.2
16.5
19.2
20
10.5
13.8
17.9
21.4
24.1
25
15.0
18.4
22.7
26.2
29.1
30
19.4
23.0
27.4
31.1
34.1
35
23.8
27.6
32.2
35.9
39.0
40
28.2
32.1
36.8
40.8
44.0
45
32.8
36.7
41.6
45.6
49.0
50
37.1
42.2
46.3
50.4
53.9
55
= Not permitted as standard but the coolant temperature must be 0 °C (32 °F) or more.
At an air temperature of 45 °C and relative humidity of 65% the coolant temperature must
not be less than +36.8 °C
Example:
Maximum temperature rise:
Depends on heat losses and mass flow. Typically 10 °C (18
°F) with nominal losses and flow.
■
Pressure limits
Base pressure:
250 kPa (recommended); 300 kPa (maximum). “Base pressure” denotes
the pressure of the system compared with the atmospheric pressure when the cooling circuit
is filled with coolant.
Air counterpressure in expansion vessel (with ACS880-1007LC cooling unit):
80 kPa
Design pressure (PS):
600 kPa
Nominal pressure difference:
120 kPa with Antifrogen® L 25% coolant solution, 140 kPa
with Antifrogen® L 50% coolant solution. This has to be taken into account when
dimensioning the liquid cooling circuit.
Maximum pressure difference:
160 kPa
■
Coolant flow rate limits
The maximum coolant flow rate for all drive equipment is 1.3 × nominal. See the technical
data chapter for nominal values.
■
Cooling circuit materials
Materials used in the internal cooling circuit are listed below.
172 Internal cooling circuit
Summary of Contents for ACS880-37LC-0390A-7
Page 1: ... ABB INDUSTRIAL DRIVES ACS880 37LC drives Hardware manual ...
Page 2: ......
Page 4: ......
Page 13: ...16 Resistor braking Further information Table of contents 13 ...
Page 14: ...14 ...
Page 24: ...24 ...
Page 28: ...28 ...
Page 50: ...50 ...
Page 70: ...70 Mechanical installation ...
Page 110: ...10 110 Electrical installation ...
Page 113: ...With FDPI 02 modules OPEN TERMINATED 1 1 2 2 OPEN TERMINATED 3 Electrical installation 113 11 ...
Page 134: ...134 ...
Page 140: ...140 ...
Page 148: ...a b c 148 Maintenance ...
Page 151: ...4 5 6 Maintenance 151 ...
Page 164: ...164 ...
Page 174: ...174 ...
Page 196: ...196 ...
Page 199: ... Dimension drawing examples ACS880 37LC 0390A 7 with main contactor Dimensions 199 ...
Page 201: ...ACS880 37LC 1270A 7 with common motor terminal cubicle Dimensions 201 ...
Page 202: ...ACS880 37LC 1940A 7 with common motor terminal cubicle 202 Dimensions ...
Page 205: ...Location and size of input terminals Contact ABB for details Dimensions 205 ...
Page 206: ... 100 kA input cubicle option F274 206 Dimensions ...
Page 208: ...Inverter module cubicle with two R8i modules bottom cable exit 208 Dimensions ...
Page 209: ...Inverter module cubicle with three R8i modules bottom cable exit Dimensions 209 ...
Page 210: ...Brake chopper cubicle 210 Dimensions ...
Page 212: ...Cubicle width 300 mm top cable exit 212 Dimensions ...
Page 213: ...Cubicle width 400 mm bottom cable exit Dimensions 213 ...
Page 214: ...Cubicle width 400 mm top cable exit 214 Dimensions ...
Page 215: ...Cubicle width 600 mm bottom cable exit Dimensions 215 ...
Page 216: ...Cubicle width 600 mm top cable exit 216 Dimensions ...
Page 238: ...238 ...
Page 240: ...240 ...