Danfoss EIM 336 Manual Download Page 3

© Danfoss A/S (AC-MCI / sw), 2014-11 

DKRCC.PS.RQ0.B7.02 /520H8832   

 3

Manual 

Superheat Controller EIM 336

Applications

Regulation

The evaporator superheat is controlled by one pressure sensor Pe 

(evaporator pressure) and one temperature sensor S2 (refrigerant 

temperature). Alternatively the pressure and temperature signals 

can be received as data via modbus. This can be useful if the 

pressure and temperature sensors are mounted on a separate 

controller. 

Fitting the S4 (evaporator medium outlet temperature) is optional 

and has no effect on regulation, it is a readout value only. S4 can 

however be setup as a hardware main switch instead to provide an 

external ON/OFF function for the controller. 

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Function overview

Minimum Stable Superheat (MSS)

The controller will search for the minimum stable superheat 

between an upper and lower boundary. If the superheat has 

been stable for a period of 6 minutes, the superheat reference is 

decreased. If the superheat becomes unstable, the reference is 

raised again. This process continues as long as the superheat is 

within the bounds set by the user. The purpose of this is to search 

for the lowest possible superheat that can be obtained while still 

maintaining a stable system. The superheat reference can also be 

fixed, in which case this function is disabled.

Maximum Operating Pressure (MOP)

In order to reduce the strain on the compressor, a maximum 

operating pressure can be set. If the pressure comes above 

this limit the controller will control the valve to provide a lower 

pressure instead of a low superheat. The limit for this function 

is usually a fixed pressure, but it is possible to offset the limit 

temporarily.

Evaporator temperature (Te) control for de-humidifying

A function is provided to control on the evaporator temperature 

instead of the superheat. This can be used to de-humidify the 

air flowing through the evaporator. By lowering the evaporators 

surface temperature, the water vapor in the air is condensed.

Superheat close

When the superheat is below a set minimum value, the valve will 

close faster in order to protect the compressor from the risk of 

getting liquid in the suction line.

Manual control

The valve can be controlled manually by setting the desired 

opening degree via modbus. 

Start/stop of regulation

The start or stop of the regulation can be controlled by setting 

the software main switch, which is accessible via modbus. It is 

however also possible to use a digital input from an external 

hardware main switch.

Loss Of Charge indication (LOC)

A function is provided to indicate loss of refrigerant charge. This is 

only indicated by setting an alarm flag which can be accessed via 

modbus. No special action is performed by the controller.

External sensor values

The EIM 336 has sensor inputs for the suction pressure and 

evaporator temperature (S2). It is however possible to substitute 

these sensor inputs by sending external sensor values via modbus. 

These external values need to be updated frequently.

Forced opening during startup

In some applications it is necessary to open the valve quickly when 

the compressor turns on, to prevent too low suction pressure. This 

is ensured by setting a fixed opening degree and a startup time for 

the controller. Note that this will give a fixed opening degree for 

the duration of the start time, regardless of the superheat value. 

Forced opening during off

In some applications the valve must remain open when the 

controller is off. This can be done by setting a fixed opening 

degree. When normal control is switched off with the main switch, 

the valve will keep this opening degree.

Defrost

The controller does not itself handle defrost of the evaporator. It is 

however possible to enter a special defrost sequence, which will 

overrule the normal control of the valve. 

Standalone function

The EIM 336 is designed to operate in conjunction with a system 

master controller, which will control the EIM 336 via modbus. It is 

however possible to use it in a standalone mode with no external 

control, except a digital input from the hardware main switch. 

In this configuration some of the other functions will not be 

available. 

Summary of Contents for EIM 336

Page 1: ...ess noise The EIM 336 is the superheat controller that can be used to control the opening degree of a valve based on the superheat of the evaporator This is applicable in applications such as air cond...

Page 2: ...allation sensors 17 Warnings 17 Acronyms and abbreviations used in this manual LOC Loss of charge indication SH Superheat MOP Maximum operating pressure MSS Minimum stable superheat Te Saturated sucti...

Page 3: ...densed Superheat close When the superheat is below a set minimum value the valve will close faster in order to protect the compressor from the risk of getting liquid in the suction line Manual control...

Page 4: ...S2 PT1000 S4 PT1000 or digital input from external contact EEV driver Max current 150 mA EEV Uni or bipolar coil Data communication RS485 Modbus RTU Environment Storage 34 C to 71 C 30 F to 160 F Ope...

Page 5: ...odbus address stored in PNU no 40041 default 165 Jumper not mounted Outdoor unit condenser Modbus address stored in PNU no 40042 default 164 Com KM5 1 Drain D 2 RS485 TxD RxD 3 RS485 TxD RxD 4 Not Use...

Page 6: ...trol mode does not depend on the r12 Main Switch and will set the opening degree regardless of its setting Setting o18 Manual ctrl to 0 again the controller will assume normal control and will open or...

Page 7: ...secondary address is 164 Note Changes to these parameters will become active immediately This means that a modbus tool or controller that changes these settings will loose connection to the EIM 336 an...

Page 8: ...e controller is powered the valve will first be closed fully so that the controller starts from a known opening degree 0 In order to make sure that it is fully closed the valve will be closed 100 plus...

Page 9: ...sensor value will be used 5 Configuring the superheat control The superheat control algorithm will attempt to regulate the superheat down to the lowest stable value between the minimum superheat sett...

Page 10: ...um operation pressure If Pe goes above this value the controller will control on Pe and not on superheat Kp MOP 3113 Kp proportional gain while in MOP control mode Tn MOP 3114 Tn integration time whil...

Page 11: ...05 Timer to trigger LOC alarm LOC Alarm 50006 Loss of charge alarm flag 0 no alarm 1 LOC alarm LOC SH Trig 50007 SH error trigger level for LOC alarm LOC Tmr 3102 Loss Of Charge time readout displays...

Page 12: ...t regulation response Very low value give the risk of unstable regulation For Danfoss only 3105 SHL SH Low 3 20 6 K Superheat low setting for non linear control 3106 SHH SH High 8 40 16 K Superheat hi...

Page 13: ...ext S2 temp 200 200 0 C External S2 This value can be used instead of a sensor This register must be written at least every 5 seconds otherwise the sensor value will be used 2646 TS4 ext S4 Air temp 2...

Page 14: ...ain Switch 64309 Manual OD as steps 0 1 0 Enable the manual OD in o45 to be entered as halfsteps Readouts are still in percent Service Alarm 2046 RAL Reset alarm 0 1 0 1 clear alarm 20001 EKC Error 0...

Page 15: ...troller will go to either the low or high boundary de pending on the error The highest value will be shown if the signal is above the maximum value The lowest value will be shown if the signal is belo...

Page 16: ...it 3 Bit 2 Bit 1 Bit 0 Unused MOP Active Close Timer active Sensor Errors Control state Variables parameters CTRLstatus bit 0 3 Controlstate 0 closed 1 Error 2 Inject 3 De humidify 4 Force OD 5 Defros...

Page 17: ...ght after the evaporator If the measured value is 1 2 K lower than the actual value of Pe right after the evaporator it may cause the evaporator to flood This is the case when the pressure transmitter...

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