Swegon IQlogic+ Function Manual Download Page 4

GB.BlueBox.180415

Swegon reserves the right to alter specifications.

4     www.swegon.com

BT1

BT50

BT40

MF1

BT30

3.1.3 Reversible chiller/heat pump

The heating or cooling capacity of the supply air is con-
trolled via an IQlogic

+

 module (extra regulation sequence 

function, see separate instructions for the TBIQ IQlogic

+

 

module) preset for heating and cooling (0-10 V). The 
function can be activated in the hand-held terminal of the 
GOLD air handling unit (see the Operation and Mainte-
nance Instructions for the GOLD).
Communication with the reversible chiller/heat pump 
can be activated under Functions in the hand-held micro 
terminal of the GOLD unit. See Section 5.

Cooling

If temperature sensor BT1 calls for cooling, the function 
transmits a start signal for cooling and a refrigerant set-
point (12°C*) to the reversible chiller/heat pump via Mod-
bus.
If the temperature by temperature sensor BT50 is lower 
than the temperature by temperature sensor BT30**, the 
function allows valve MF1 to regulate the flow.
If the temperature by temperature sensor BT50 is higher 
than the temperature by temperature sensor BT30**, the 
function does not allow valve MF1 to regulate the flow 
(forces it to close).

Optimisation function active:

To ensure the best functionality when the optimisation 
function is activated, the value for cooling diff.  (2 K*) 
should be set to the same value as that set in the reversible 
chiller/heat pump. See Section 5.  
If the temperature by temperature sensor BT40 (reference 
water) is within 2K* from the refrigerant  temperature 
setpoint and if it has been so during a continuous period 
of more than 60 seconds* the optimisation function is 
allowed.
If the optimisation function is allowed and valve MF1 is 
fully open (100%*) the controller decreases the refriger-
ant temperature setpoint at a rate of 0.3K/minute*.
If the optimisation function is allowed and valve MF1 is 
open less than 80%*, the controller increases the refriger-
ant temperature setpoint at a rate of 0.6K/minute*.

Heating

If temperature sensor BT1 calls for cooling, the function 
transmits a start signal for heating and a heating medium 
setpoint (40°C*) to the reversible chiller/heat pump via 
Modbus.
If the temperature by temperature sensor BT50 is higher 
than the temperature by temperature sensor BT30**, the 
function allows valve MF1 to regulate the flow.
If the temperature by temperature sensor BT50 is lower 
than the temperature by temperature sensor BT30**, the 
function does not allow valve MF1 to regulate the flow 
(forces it to close).

Modbus

0-10 V

GOLD

Supply 

air

Swegon chiller/heat pump 

A pump and accumulator tank can be 
added and, depending on the size of 
the system, can be located inside or 
outside the chiller/heat pump. For more 
information, see the Swegon product 
brochure.

Optimisation function active: 

To ensure the best functionality when the optimisation 
function is activated, the heating diff. value (3 K*) should 
be set to the same value as that set in the reversible 
chiller/heat pump. See Section 5. 
If the temperature by temperature sensor BT40 (reference 
water) is within 3K* from the heating medium tempera-
ture setpoint and if it has been so during a continuous 
period of more than 60 seconds* the optimisation func-
tion is allowed.
If the optimisation function is allowed and valve MF1 is 
fully open (100%*) the controller increases the heating 
medium temperature setpoint at a rate of 0.3K/minute*.
If the optimisation function is allowed and valve MF1 is 
open less than 80%*, the controller decreases the heating 
medium temperature setpoint at a rate of 0.6K/minute*.

* Factory setting. The value can be changed. 
** Estimated temperature in the GOLD RX.

Summary of Contents for IQlogic+

Page 1: ...nsumption The supply air energy to a water coil is controlled by a valve Optimisation of the valve position so that it always strives to be fully open and instead control the water temperature saves e...

Page 2: ...egulate the flow If the temperature by temperature sensor BT50 is higher than the temperature by temperature sensor BT30 the function does not allow valve MF2 to regulate the flow forces it to close O...

Page 3: ...nsor BT50 is higher than the temperature by temperature sensor BT30 the function allows valve MF1 to regulate the flow If the temperature by temperature sensor BT50 is lower than the temperature by te...

Page 4: ...y open 100 the controller decreases the refriger ant temperature setpoint at a rate of 0 3K minute If the optimisation function is allowed and valve MF1 is open less than 80 the controller increases t...

Page 5: ...emperature by temperature sensor BT50 is higher than the temperature by temperature sensor BT30 the function does not allow valve MF2 to regulate the flow forces it to close If dehumification is activ...

Page 6: ...BT1 calls for heating the function transmits a start signal and heating medium setpoint 40 C to the heat pump via Modbus If the temperature by temperature sensor BT50 is higher than the temperature by...

Page 7: ...on is allowed If the optimisation function is allowed and valve MF1 is fully open 100 the controller decreases the refriger ant temperature setpoint at a rate of 0 3K minute If the optimisation functi...

Page 8: ...Links cubicle The chiller s water temperature setpoint is controlled by the GOLD unit and is determined by the cooling load in the ventilation system The temperature setpoint from the AYC function is...

Page 9: ...us contact on the cable adapter The communication cable between the chiller heat pump control equipment and TBLZ 64 cable adapter should be wired according to one of the alternatives below The cables...

Page 10: ...external SMART Link communications interface Wiring terminals SMART Link communications interface Wiring terminals for the TBLZ 64 cable adapter 1 2 3 4 Wiring terminals junction box chiller heat pum...

Page 11: ...Connection via built in SMART Link communications interface Wiring terminals for the TBLZ 64 cable adapter 1 2 3 4 A4 A2 Wiring terminals SMART Link communications interface Communications interface...

Page 12: ...m 4 1 4 Alternative 4 Connection via internal iPro link communications interface ASM1 iPro link SERI1 485 TTL A2 IC208CX Wiring terminals for the cable adapter 1 2 3 4 SERI1 A2 ASM1 Cable adapter TBLZ...

Page 13: ...ight to alter specifications www swegon com 13 4 1 5 Alternative 5 Connection via external A2 com munications interface RS485 slave Wiring terminals for the TBLZ 64 cable adapter 1 2 3 4 A2 A2 RS485 s...

Page 14: ...19 Heat Cool 20 C 21 NO 22 C 23 NO 24 C 25 NO 26 C 27 NO 28 P 29 G 30 G0 31 G 32 G0 24V AC Sensor 1 Sensor 2 Sensor 4 Sensor 3 Com 6 Com 7 Com 8 Com 9 Com 10 Com 11 33 34 G 35 G0 36 Y 37 U 38 39 40 2...

Page 15: ...temperature of the refrig erant and heating medium returning to the chiller heat pump Set the limit for the outdoor temperature mini mum permitted operating temperature The function for the optimizati...

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