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System configuration – REMKO RVS 60 H User Manual

Page 7

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System configuration

Operation

The system can be easily operated

via the fully automatic controller

μC2SE. If due to local conditions

programming via the internal con-

trol course difficulties, the system

can also be programmed via a ca-

bled remote controller (accessory)

or an external ON/OFF-Switch.
A centralised fault contact, part of

the standard equipment, can be

If a combination of letters /
numbers is shown in the dis-
play, then there is a malfunc-
tion in the unit (see chapter on
trouble-shooting and customer
service).

!

CAUTION

The medium can be circulated

to the room to be cooled via the

floor, or via the ceiling depending

on where the unit is mounted.

For each of the different systems, a

minimum flow volume and a mini-

mum medium volume is needed

for safe operation.

Chilled water system

System configuration

Medium intake

Medium outlet

Indoor area 1

Outdoor area

Indoor area 2

Indoor area 3

Room temperature control Room temperature control

Infrared remote control

Chilled water

appliance

Chilled water

appliance

Chilled water

appliance

Condensate drain

Condensate line (only

units with HP-function)

Condensate drain

Condensate drain

Condensate collecting drain

used for the external signalling of

a fault.
The system is designed as a two

pipe system.
The system has 2 medium pipes

(supply and return) for cooling

using a cold medium or heating

using a warm medium.

Methods of operation

Centralised

fault signal

Cable

remote control

Enable contact

On/OFF Cooling/Heating

(e.g. building management

system)

(Standard equipment)

(Standard equipment)

(Accessories)

Controller μC

2

SE

(Standard equipment)

Help save on energy consump-
tion in stand-by mode! If the
device, system or component
is not in use, we recommend
disconnecting the power sup-
ply. Components with a safety
function is excluded from our
recommendation!

TIP

NOTE

The escape of refrigerant con-

tributes to climatic change. In

the event of escape, refrigerant

with a low greenhouse poten-

tial has a lesser impact on glo-

bal warming than those with a

high greenhouse potential.

This device contains refrige-

rant with a greenhouse poten-

tial of 1975. That means the

escape of 1 kg of this refrige-

rant has an effect on global

warming that is 1975 times

greater than 1 kg CO2, based

on 100 years. Do not conduct

any work on the refrigerant

circuit or dismantle the de-

vice - always enlist the help of

qualified experts.

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