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E1CG4880210
E1CG4880210
[Water-Cooled Model]
[Water-Cooled Model]
* Hoshizaki recommends that the water-cooled Condenser should be connected to a closed
* Hoshizaki recommends that the water-cooled Condenser should be connected to a closed
circuit recirculating type cooling system utilizing a tower, water chiller or similar (see Fig. 30
circuit recirculating type cooling system utilizing a tower, water chiller or similar (see Fig. 30
and 31). Water make up should be via a ball valve/break tank arrangement.
and 31). Water make up should be via a ball valve/break tank arrangement.
* Whilst connecting a water-cooled Condenser to a mains water (potable) supply will not
* Whilst connecting a water-cooled Condenser to a mains water (potable) supply will not
affect the performance of the machine, it will most certainly cause a high use/waste of a
affect the performance of the machine, it will most certainly cause a high use/waste of a
valuable resource and is not recommended.
valuable resource and is not recommended.
* The services of a licensed or coded plumber should be used to ensure a correct installation.
* The services of a licensed or coded plumber should be used to ensure a correct installation.
* The connections should be made properly in compliance with the applicable national or
* The connections should be made properly in compliance with the applicable national or
local regulations.
local regulations.
[a] Standard connections according to WRC regulations in U.K. (Fig. 30 and 31)
[a] Standard connections according to WRC regulations in U.K. (Fig. 30 and 31)
* When selecting a Cooling Tower, refer to the following peak values of heat flow in the
* When selecting a Cooling Tower, refer to the following peak values of heat flow in the
Condenser:
Condenser:
Model
Model
IM-240DW/XW:
IM-240DW/XW:
5235W
5235W
* Pipes between the Cooling Tower and the icemaker should be at least 20 mm DIA to reduce
* Pipes between the Cooling Tower and the icemaker should be at least 20 mm DIA to reduce
pressure loss, even though the icemaker fittings are 13 mm DIA.
pressure loss, even though the icemaker fittings are 13 mm DIA.
* Pressure loss in the water circuit inside the unit will be 5 to 6 m when the cooling water flows
* Pressure loss in the water circuit inside the unit will be 5 to 6 m when the cooling water flows
at the ratio of 4 to 5 lit/min.
at the ratio of 4 to 5 lit/min.
* Select a Circulating Pump referring to the above values of heat flow.
* Select a Circulating Pump referring to the above values of heat flow.
* Do not use a Cascade Pump, or the Water Regulator will vary the flow and stop it during the
* Do not use a Cascade Pump, or the Water Regulator will vary the flow and stop it during the
defrost cycle.
defrost cycle.
* The Strainer must be cleaned periodically.
* The Strainer must be cleaned periodically.
[Icemaker Connections]
[Icemaker Connections]
1) Attach the angled end of white flexible inlet hose (accessory) to the G3/4 fitting on the left
1) Attach the angled end of white flexible inlet hose (accessory) to the G3/4 fitting on the left
side of the icemaker as indicated, ensuring rubber sealing washer is correctly positioned.
side of the icemaker as indicated, ensuring rubber sealing washer is correctly positioned.
Hand tighten sufficiently to provide leak free joint.
Hand tighten sufficiently to provide leak free joint.
2) Attach the other end of inlet hose to the water tap (Fig. 29), noting washer is correctly
2) Attach the other end of inlet hose to the water tap (Fig. 29), noting washer is correctly
positioned before hand tightening as above.
positioned before hand tightening as above.
Note: If filtration or treatment is used, ensure icemaker section only is on treated water
Note: If filtration or treatment is used, ensure icemaker section only is on treated water
supply, not the Condenser.
supply, not the Condenser.
Summary of Contents for IM-240AME
Page 6: ...2 2 E1CG4880210 E1CG4880210 b IM 240DWME Water cooled b IM 240DWME Water cooled ...
Page 7: ...3 3 E1CG4880210 E1CG4880210 c IM 240DSME Remote Air cooled c IM 240DSME Remote Air cooled ...
Page 8: ...4 4 E1CG4880210 E1CG4880210 d IM 240XME Air cooled d IM 240XME Air cooled ...
Page 9: ...5 5 E1CG4880210 E1CG4880210 e IM 240XWME Water cooled e IM 240XWME Water cooled ...
Page 10: ...6 6 E1CG4880210 E1CG4880210 f IM 240XSME Remote Air cooled f IM 240XSME Remote Air cooled ...
Page 11: ...7 7 E1CG4880210 E1CG4880210 g IM 240AME Air cooled g IM 240AME Air cooled ...
Page 62: ...58 58 E1CG4880210 E1CG4880210 b IM 240DWME IM 240XWME b IM 240DWME IM 240XWME ...
Page 63: ...59 59 E1CG4880210 E1CG4880210 c IM 240DSME IM 240XSME c IM 240DSME IM 240XSME ...
Page 64: ...60 60 E1CG4880210 E1CG4880210 d IM 240AME d IM 240AME ...