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Technical Manual  Stage Controller MSR 

eco

 3140

Page 4

 Parameter Pages

Relay

ON
OFF

1

2 3

4 5

Relay

ON
OFF

1

2 3

4 5

DI

4

3

230V

0V

2

1

Actual Values Page  

(L) 

 

Param  nA   Eb  Note 

 

range

L01

  .........X .....3,2 ...Actual temperature value of sensor 1  ................................................................................................-99,9...+100,0°C 

up to .........................(can be corrected ±10K, the function is defined in the Assignment Page)

L04

  .........X .....3,2 ...Actual temperature value of sensor 4 ....................................................................................... -99,9...+100,0°C

L05

  .........X .....3,2 ...Actual temperature value of input 5 (calculated from L15, pressure transmitter 1) ................ -99,9...+100,0°C

L06

  .........X .....3,2 ...Actual temperature value of input 6 (calculated from L16, pressure transmitter 2) ................ -99,9...+100,0°C

L10

  .........X ... 3,2,1 ..Actual value SP / HP, poss. alternating display, cooling symbol SP, fan symbol HP .............. -99,9...+100,0°C

L15

  .........X ... 3,2,1 ..Actual value of Pressure Transmitter 1 (4/20mA). Temperature L05 is calculated from this ..... -1,0...+160,0 bar

L16

  .........X ... 3,2,1 ..Actual value of Pressure Transmitter 2 (4/20mA). Temperature L06 is calculated from this ..... -1,0...+160,0 bar

L20

  .........X ... 3,2,1 ..Current Failure ..........................................................................................................................

   

                                                                    

Suction Pressure Actual Values

L21

  .........X ... 3,2,1 ..Current state of the stage control (SP) ..................................................................................... Forw., Backrun, Neutral (descr. page 3)

L22

  .........X ... 3,2,1 ..Motor Failure ............................................................................................................................. 0: o.k., 1: unit faulty, 

   

 

 

 

2: >50% faulty,  3: all faulty

L23

  .........X ... 3,2,1 ..Suction pressure failure ............................................................................................................ 0: o.k., 1: failure

L24

  .........X ... 3,2,1 ..Suction pressure pre-alarm ...................................................................................................... 0: o.k., 1: pre-alarm

L25

  .........X .....3,2 ...Remaining Time Superheat Compound Lock .......................................................................... seconds

L26

  .........X .....3,2 ...Remaining Time Superheat Warning ....................................................................................... seconds

L27

  .........X .....3,2 ...Suction Pressure Actual Superheat Value ............................................................................... in K

L30

  .........X ... 3,2,1 ..Current Setpoint ........................................................................................................................ in °C

L31

  .........X ......3,2 ..Current cumulated offset ........................................................................................................... in K

L32

  .........X ......3,2 ..Current suction pressure shift offset ......................................................................................... in K

L33

  .........X ....3,2,1 .Remaining forerun/backrun delay time .................................................................................... seconds

L34

  .........X ....3,2,1 .Remaining forerun/backrun time calculated (VBR) ................................................................. seconds

L35

  .........X ....3,2,1 .Remaining steady state time .................................................................................................... minutes

L36

  .........X .....3,2 ...Current load limitation (motors) ................................................................................................ 0...8 motors

L37

  .........X ....3,2,1 .Current forced backrun state .................................................................................................... 0 = no, 1 = forced backrun

L38

  .........X .....3,2 ...Remaining steady state time of motor 1 (CRII) ........................................................................ 0...900 sec.

L39

  .........X .....3,2 ...Remaining timeout time of motor 1 (CRII) ................................................................................ 0...900 sec.

L41

  .........X ... 3,2,1 ..Number of running stages of motor 1 (SP) .............................................................................. 0....8 stages 

L42

  .........X ... 3,2,1 ..Number of running stages of motor 2 (SP) .............................................................................. 0....8 stages

L43

  .........X ... 3,2,1 ..Number of running stages of motor 3 (SP) .............................................................................. 0....8 stages

L44

  .........X ... 3,2,1 ..Number of running stages of motor 4 (SP) .............................................................................. 0....8 stages

L45

  .........X ... 3,2,1 ..Number of running stages of motor 5 (SP) .............................................................................. 0....8 stages

L46

  .........X ... 3,2,1 ..Number of running stages of motor 6 (SP) .............................................................................. 0....8 stages

L47

  .........X ... 3,2,1 ..Number of running stages of motor 7 (SP) .............................................................................. 0....8 stages

L48

  .........X ... 3,2,1 ..Number of running stages of motor 8 (SP) .............................................................................. 0....8 stages

L51

  .........X .....3,2 ...State of stage 1 (SP) ................................................................................................................. 0 = not available

   

 

 

 

1 = autom. off, 2 = manually off

   

 

 

 

3 = autom. on without feedback signal 

   

 

 

 

4 = autom. on with feedback signal  

   

 

 

 

5 = manually on, 6 = failure state set

L52

  .........X .....3,2 ...State of stage 2 (SP) ................................................................................................................. ditto.

bis

L58

  .........X .....3,2 ...State of stage 8 (SP) ................................................................................................................. ditto.

   

 

 

                                                

High Pressure Actual Values

L60

  .........X ... 3,2,1 ..Current state of the stage control (HP) ..................................................................................... Forw., Backrun, Neutral (descr. page 3)

L61

  .........X ... 3,2,1 ..High pressure failure (HP)  ....................................................................................................... 0: o.k., 1: failure

L62

  .........X .....3,2 ...High pressure pre-alarm (HP)................................................................................................... 0: o.k., 1: pre-alarm

L63

  .........X ... 3,2,1 ..Current Switch-off point (HP) .................................................................................................... in °C

L64

  .........X ... 3,2,1 ..Current Switch-on point (HP) .................................................................................................... in °C

L65

  .........X ... 3,2,1 ..Current Offset (HP) ................................................................................................................... in K

L66

  .........X .....3,2 ...Remaining forerun/backrun delay time (HP) ............................................................................ seconds

L71

  .........X .....3,2 ...Number of running stages of motor 1 (HP) .............................................................................. 0....8 stages 

L72

  .........X .....3,2 ...Number of running stages of motor 2 (HP) .............................................................................. 0....8 stages 

L73

  .........X .....3,2 ...Number of running stages of motor 3 (HP) .............................................................................. 0....8 stages 

L74

  .........X .....3,2 ...Number of running stages of motor 4 (HP) .............................................................................. 0....8 stages

L75

  .........X .....3,2 ...Number of running stages of motor 5 (HP) .............................................................................. 0....8 stages 

L76

  .........X .....3,2 ...Number of running stages of motor 6 (HP) .............................................................................. 0....8 stages 

L77

  .........X .....3,2 ...Number of running stages of motor 7 (HP) .............................................................................. 0....8 stages 

L78

  .........X .....3,2 ...Number of running stages of motor 8 (HP) .............................................................................. 0....8 stages 

L81

  .........X .....3,2 ...State of stage 1 (HP) ................................................................................................................. 0 = not available

   

 

 

 

1 = autom.off, 2 = manually off

   

 

 

 

4 = autom.on  

   

 

 

 

5 = manually on, 6 = failure state set

L82

  .........X .....3,2 ...State of stage 2 (HP) ................................................................................................................. ditto.

bis

L88

  .........X .... 3,2 ....State of stage 8 (HP) ................................................................................................................. ditto.

L93

  .........X ... 3,2,1 ..State of the day/night switching ................................................................................................

n

i

t

 (night), 

dA4

 (day)

L94

  .........X ... 3,2,1 ..Display of the running SP stages .............................................................................................

L95

  .........X ... 3,2,1 ..Display of the running HP stages .............................................................................................

L96

  .........X ... 3,2,1 ..Current value of the analogue output ....................................................................................... 0-100%

L97

  .........X ... 3,2,1 ..Current status of the digital inputs DI 1 up to DI 4 ...................................................................

L98

  .........X ... 3,2,1 ..Current status of the relays of the auxiliary BMR module .......................................................

L99

  .........X ... 3,2,1 ..Current status of the relays 1-5 ................................................................................................

DI

4

3

230V

0V

2

1

2     4  6    8

1     3  5    7

2     4  6    8

1     3  5    7

Hinweis

Parameters marked with "

nA

" are for 

information only and cannot be changed. 

Summary of Contents for MSR eco 3140

Page 1: ...n the Actual Values Page at L98 and L99 Programming The MSR eco parameters are simple to access view and change During normal operation or if no key is pressed for at least 3 minutes the MSR eco will...

Page 2: ...current typ 1mA 4 20 mA max shunt resistance 500 ohms Display Parameter Ranges see parameter pages Data Interfaces 3x RS 485 Data Storage unlimited Real Time Clock automatic summer winter switch 10 d...

Page 3: ...pecific sensor So1 40 25 C customer specific sensor So2 50 50 C The type of sensor can be set by h20 Assignment Page Pressure Transmitter Pressure Transmitters with 4 20mA output can be used They must...

Page 4: ...SP 0 8 stages L43 X 3 2 1 Number of running stages of motor 3 SP 0 8 stages L44 X 3 2 1 Number of running stages of motor 4 SP 0 8 stages L45 X 3 2 1 Number of running stages of motor 5 SP 0 8 stages...

Page 5: ...nimal superheat 0 0 25 0 K 0 0 K 0 0 K 0 0 K 0 0 K 0 0 K switched off P15 oem 3 2 Compound lock delay minimal superheat 5 900 sec 5 sec 5 sec 5 sec 5 sec P20 oem 3 2 Sending date and time to connected...

Page 6: ...0 sec 1 sec 1 sec 1 sec 1 sec r29 oem 3 2 VBR Forerun Backrun Range Time max 1 900 sec 20 sec 20 sec 20 sec 20 sec r41 3 2 1 Forerun Delay Time stage 1 the first turn on stage 0 900 sec 10 sec 10 sec...

Page 7: ...sec 0 sec 0 sec 0 sec d51 tec 3 2 Backrun Delay Time Stage 1 the last off stage 0 900 sec 10 sec 0 sec 0 sec 0 sec d52 tec 3 2 Backrun Delay Time Stage 2 0 900 sec 10 sec 0 sec 0 sec 0 sec d53 tec 3...

Page 8: ...tages SP motor 3 0 8 0 1 1 1 h54 tec 3 2 Number of stages SP motor 4 0 8 0 0 0 0 h55 tec 3 2 Number of stages SP motor 5 0 8 0 0 0 0 h56 tec 3 2 Number of stages SP motor 6 0 8 0 0 0 0 h57 tec 3 2 Num...

Page 9: ...ng S2 Relais K2 1 2 4 3 5 Relais K1 Digital eingang DI 1 6 10 7 9 8 Relais K3 Relais K4 Digital eingang DI 2 20 23 24 21 22 19 16 17 18 DO NDO GND Netz werk 13 14 relay K1 N 1 2 3 L 4 5 6 7 8 9 1 24 2...

Page 10: ...cted to the device Wire should be 0 5mm at a minimum Mounting the device in close proximity to power relays is NOT recommended Strong electro magnetic interference may cause the device to malfunction...

Page 11: ...trol method can be activated by the pa rameter h49 With this method only one of the compressors can be controlled Characteristicforthiscompressortypeisthefactthat the first stage generates no refriger...

Page 12: ...ctivated if the suction pressure goes beyond the hysteresis range Above and below the hysteresis range are definable areas VBR Forerun Range r41 respective VBR Backrun Range r42 If the suction pressur...

Page 13: ...01 h09 Any of these relays can also be switched on manually The relay output is switched OFF on The relay output is switched ON manually permanent alA Warning Alarm SuA Warning Suction Overheat L1 The...

Page 14: ...bus which enables up to 78 controllers to communicate For communication the E LINK transmission protocol is used Each controller in a network has its individual address P90 Mode Page Never use address...

Page 15: ...valve 1 3 St 4 CRII valve 1 2 St 3 Motor 1 CR St 1 CRII valve 1 1 St 2 1 0 1 1 1 4 0 0 0 1 Conv Compressor 20 2x1 stages Alarm Motor 1 Stage1 Motor 2 Stage 2 0 0 0 0 0 1 1 0 0 0 21 3x1 stages Alarm M...

Page 16: ...11 2016 A1 2017 EN 61010 1 2010 EN 61326 1 2013 CE marking of year 2018 This statement is made for the manufacturer importer by ELREHA Elektronische Regelungen GmbH Werner Roemer Technical Director D...

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