Physical Data 61Wg/30Wg/Wga Units With Hydraulic Module; Electrical Data 30Wg/Wga - Carrier AquaSnap 61WG Series Installation, Operation And Maintenance Instructions

Water-cooled/condenserless liquid chillers/water-sourced heat pumps with or without integrated hydraulic module
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4 - PHYSICAL AND ELECTRICAL DATA 61WG/30WG/30WGA

4.2 - Physical data 61WG/30WG/WGA units with hydraulic module

61WG/30WG/30WGA
Operating weight 30WG/61WG (option 116V + 270V)
Weight 30WGA (option 116V)
Height
(2)
Hydraulic module with option 293 or 293A
Maximum operating pressure
Water filter (max, removed particle diameter)
Expansion tank capacity
(3)
Water connections
61WG/30WG/30WGA
Operating weight 30WG/61WG (option 116V + 270V)
Weight 30WGA (option 116V)
Height
(2)
Hydraulic module with option 293 or 293A
Maximum operating pressure
Water filter (max, removed particle diameter)
Expansion tank capacity
(3)
Water connections
(1) Weight shown is a guideline only.
(2) The length and width dimensions are the same as for the standard unit.
(3)  When delivered, the standard pre-inflation of the tanks is not necessary the optimal value for the system. To permit changing the water volume, change the inflation 
pressure to a pressure that is close to the static head of the system. Fill the system with water (purging the air) to a pressure value that is 10 to 20 kPa higher than the
pressure in the tank.

4.3 - Electrical data 30WG/WGA

61WG without hydraulic module
Power circuit
Nominal voltage
Voltage range
Control circuit supply
Maximum start-up current draw (Un)
Standard unit
Unit with electronic starter option
Unit power factor at maximum capacity
Maximum operating power input
Nominal unit operating current draw
Maximum operating current draw (Un)
Maximum operating current draw (Un-10%)
Customer-side unit power reserve
Short-circuit stability and protection
(1) Maximum instantaneous start-up current at operating limit values (maximum operating current of the smallest compressor(s) + locked rotor current or limited start-up
current of the largest compressor).
(2) Maximum power input at the unit operating limits.
(3) Values obtained at standardised Eurovent conditions: evaporator entering/leaving water temperature 10 °C/7 °C. condenser entering/leaving water
temperature 30 °C/35 °C.
(4) Maximum unit operating current at maximum unit power input and 400 V.
(5) Maximum unit operating current at maximum unit power input and 360 V.
(1)
(1)
(1)
(1)
V-ph-Hz
(1)
(2)
(2)
(3)
(4)
(5)
20
25
30
kg
305
313
313
321
kg
250
258
258
263
mm
1463 1463 1463 1463 1463 1463 1463 1463 1463 1463 1463
kPa
300
300
300
300
mm
1,2
1,2
1,2
1,2
l
8
8
8
in
1,5
1,5
1,5
1,5
110
120
kg
1056
1082
kg
804
820
mm
1574
1574
kPa
400
400
mm
1,2
1,2
l
25
25
in
2,5
2,5
20
25
30
V
A
98,0 142,0 142,0 147,0 158,0 197,0 161,6 163,0 171,4 184,7 227,9
A
53,9
78,1
78,1
80,9
0,9
0,8
0,9
0,9
kW
9,5
11,3
12,4
14,4
A
10,6
12,9
13,3
15,2
A
16,1
19,6
21,1
24,4
A
17,9
21,8
23,4
27,1
Customer reserve at the 24 V control power circuit
See table below "Short-circuit stability current"
35
40
45
50
60
327
334
513
521
266
271
431
435
300
300
300
300
1,2
1,2
1,2
1,2
8
8
8
12
12
1,5
1,5
2
2
140
150
1108
1218
839
926
1574
1574
400
400
1,2
1,2
25
35
2,5
3
35
40
45
50
60
400-3-50
360-440
24 V, via internal transformer
86,9 108,4 97,7
99,2 105,2 113,6 139,2
0,9
0,9
0,8
0,9
15,9
18,2
22,5
24,9
16,5
19,7
25,8
26,6
26,7
30,9
39,2
42,2
29,7
34,3
43,6
46,9
70
80
90
533
544
574
442
449
465
300
300
300
1,2
1,2
1,2
12
12
12
2
2
2
170
190
1270
1301
964
986
1574
1574
400
400
1,2
1,2
35
35
3
3
70
80
90
0,9
0,9
0,9
28,7
31,8
36,4
30,4
33,0
39,4
48,8
53,4
61,8
54,2
59,3
68,7
29

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