CALEFFI 152 Series Quick Start Manual Download Page 7

Example of safety thermostat application on system low
temperature branch circuit

Frost protection function

When the selector, point 6 on the front panel, is positioned 
to     or     , there are two types of intervention:

a) If the flow temperature is below 7°C, the controller activates the

operation of the unit until a flow temperature of 20°C is reached.
When this value is reached, it will return to the inactive status.

b) If the outside temperature is below 5°C (+2 -0), the controller

keeps the pump running.

Anti-seize function

If the pump remains inactive for twenty four hours, the following
program automatically comes into operation, with:
mixing valve open for 30 seconds,
mixing valve closed for 30 seconds,
pump ON for 60 seconds.
When this function is operating, it cannot be interrupted.

Manual control

To carry out adjustment:
- Remove the servomotor fixing screws.
- Lift the servomotor. This gives access

to the control knob.

Refer to the information given on
the knob itself.

Options

Room thermostat, code 151000.

The regulating unit can be
supplemented with a room
thermostat, able to adjust the
value of the flow temperature
according to the actual room
temperature. This configuration
makes it possible to take account
of gratuitous heat gains, by
refining the value of the flow
temperature, with optimum results
in terms of comfort and energy
saving. In cooling conditions, the
setting on the thermostat should
be increased by 2°C.

Operation of the room thermostat

The room thermostat makes it possible to optimise the operation of
the system, as it modifies the regulating curve automatically.
Depending on the time periods for comfort and set-back selected
on the clock and the room temperature setting, it will read the actual
room temperature. On the basis of this parameter, it will make any
necessary modification to the characteristic curve (A) for the
purpose of accelerating operation and preventing excessive
heating or cooling of the room.
The difference between the actual room temperature measured by
the thermostat and the set temperature produces an amplified
effect in relation to that produced by a similar variation in the
outside temperature.
A difference of 1°C in the room temperature causes a move of the
characterisitc curve equal to 7°C of the outside temperature, with
the corresponding variation in flow temperature.
For example, if T

room

set = 20°C and T

room

measured = 19°C, than the

difference of 1°C will cause a movement of the characteristic curve
of 7°C towards the left (B). The flow temperature will consequently
be raised. In the case of a negative difference, the movement will
take place on the curve C.
This behaviour is applicable for a maximum difference of 3°C in the
room temperature.
In addition, the maximum temperature limit set at item 6 on the PCB
remains active.
In the set-back band, the set room temperature is automatically
reduced by 2°C, thus defining T

set set-back

.

This reduction will cause a move to the right of the characteristic
curve, equating to 14°C of the outside temperature (D), with a
corresponding variation in flow temperature.
Whenever the measured room temperature falls below T

set set-back

,

the initial characteristic curve (A) will be restored with the set-back
correction set at point 12 on the front panel.

Curve with room thermostat regulation

Room thermostat electrical connection

Install the room thermostat and connect by sheathed 2-core cable
(2x0,75) to the terminal strip of the regulator PCB, as shown in the
diagram below.

WARNING

- if the connecting cable between the thermostat

and the control unit is not sheathed, it must be run in its own
ducting.
The maximum length is 150 m.

Auf

Open

Ouvrir

V

or

la

uft

em

pera

tur für Fußbodenh

eiz

un

g

be

ac

ht

en

Beipassnic

ht v

on

H

an

d

sch

lie

ßen

M

isc

he

r

Zu Cl

os

e

Fe

rm

é

16

18

20

22

24

CALEFFI

10

20

25

30

35

40

45

50

55

60

25

20

15

10

5

0

-5

-10

-15

T

FLOW

 (

°

C)

T

OUTSIDE

 (

°

C)

15

B

A

C

D

TA 1

LH side

ter

minal strip

Room thermostat

TA1

TA

TA

12

3

6

9

18

17

16

15

14

1

3

12

1

1

10

9

8

7

6

5

4

3

2

1

24

23

22

21

20

19

WATCH

CALEFFI

30

40

50

60

70

80

90

-25%

+25%

-50%

0

22

24

26

28

30

32

34

Summary of Contents for 152 Series

Page 1: ...88 03 GB Function The temperature regulating unit is designed to guarantee the correct contribution of heating energy required by the user by measuring the outside and room temperature values to regul...

Page 2: ...25 60 code 152651 GRUNDFOS UPS 25 80 04 Differential by pass valve with graduated scale 05 Flow temperature sensor 06 Outside temperature sensor connected via terminal 07 Circuit flow and return therm...

Page 3: ...personal control of the operation of the system If this value matches the setting on the main printed circuit board item 6 PCB the regulation complies with the calculation criteria given by the chara...

Page 4: ...actory setting 18 C An outside temperature higher than the set value will cause the following state circulator OFF and mixing valve closed An outside temperature 4 C higher than the set value will cau...

Page 5: ...the primary It can be used to shut down the pump of the primary circuit or the boiler 10 UR Relative humidity sensor wiring This sensor is used to detect the limiting value of relative humidity to pr...

Page 6: ...imit sensor Safety If the flow or outside sensor shows an ohm resistance value outside its working range damaged or disconnected sensor the following operating state is automatically activated Pump OF...

Page 7: ...rence between the actual room temperature measured by the thermostat and the set temperature produces an amplified effect in relation to that produced by a similar variation in the outside temperature...

Page 8: ...ics power supply 230 V 50 Hz rating 10 VA cycle time 240 s torque 10 N m Pump UPS 25 80 By pass valve with regulating scale from 0 05 channel clock for daily weekly programming Flow temperature sensor...

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