Danfoss EKD 316 Manual Download Page 9

Menu survey

Function

Parameter Min.

Max.

Fac.

set-

ting

Application 

choice

menu = o61

The menus from either column 1 or column 2 are shown

1

2

Normal display

During regulation the actual level of superheating is displayed. 

(If you would like to see the expansion valve’s actual opening degree, press the bottom button for 

approx. one second.)

-

K

-

During control with an analogue signal the opening degree is displayed.

-

%

-

Reference

Units (0=°C+bar/1=°F+psig)

r05

0

1

0

Correction of signal from S2

r09

-10.0 K 10.0 K

0.0

Correction of signal from S4

r10

-10.0 K 10.0 K

0.0

Start/stop of refrigeration

r12

Off/0

On/1

Off/0

Alarm

Battery monitoring

A34

Off/0

On/1

Off/0

Regulating parameters

Valve definition: 

0 =   ETS 12.5, ETS 25, KVS 15

1 =    ETS 50, CCM 10, CCM 20, CCM 30

2 =    ETS 100, CCM 40

3 =       ETS 250, KVS 42

4 =    ETS 400

5 =    user-defined

6 =    Saginomiya UKV/SKV/VKV/PKV

7 =    ETS 6

8 =       CCMT 2, CCMT 4, CCMT 8

n03

0

8

1

On using external display EEKA 164A, please check page 9 section ETS valve

P: Amplification factor Kp

o56 = 1; n04 = 2.0

o56 = 2; n04 = 0.7

(

 

Warning

Changes to n04 are lost when changing o56)

n04

0.5

20

2.0/0.7

I:  Integration time T

n05

30 s

600 s

120

D: Differentiation time Td (0 = off)

n06

0 s

90 s

0

Max. value of superheat reference

n09

2 K

15 K

10

Min. value of superheat reference

n10

1 K

12 K

6

MOP (max = off)

n11

0.0 bar 200 bar 20

Signal reliability during startup. Safety time period.

Should only be changed by trained staff

n15

0 sek.

90 sek

0

Signal reliability during startup – opening degree’s start value. Should only be changed by trained 

staff.

n17

0%

100%

0

Stability factor for superheat control.

Changes should only be made by trained staff

n18

0

10

5

Damping of amplification around reference value

Changes should only be made by trained staff

n19

0.0

1.0

0.3

Amplification factor for superheat

Changes should only be made by trained staff

o56 = 1; n20 = 0.4

o56 = 2; n20 = 3.0

(

 

Warning

Changes to n20 are lost when changing o56)

n20

0.0

10.0

0.4/3.0

Definition of superheat control mode

1 = MSS, 

2 = LOADAP

n21

1

2

1

Value of min. superheat reference for loads under 10%

n22

1 K

15 K

4

Max. opening degree

Changes should only be made by trained staff

n32

0 %

100 %

100

Number of steps from 0-100% opening degree (only if n03 = 5 (User-defined))

 

Note

The display can only show three digits, but the setting value is four digits. 

Only the three most important are shown, i.e. a reading of e.g. 250 means a setting of 2500. (Auto-

matic setting when valve is selected in n03).

n37

10

(100 

stp)

990

(9990 

stp)

262

Number of steps per second

n38

5 stp/s 300 

stp/s

300

Start backlash (extra closing steps at 0% opening (in % of n37))

n39

0%

100%

10

Integration time for inner loop (TnT0)

n44

10 s

120 s

30

Compensation for spindle play

n40

0 stp

100 stp 23 stp

SW = 1.32

Appendix I

©Danfoss A/S (AC-MCI / sw), 2014-03 

DKRCC.PS.RP0.A1.02/520H7142 

 17

16 

DKRCC.PS.RP0.A1.02/520H7142 

©Danfoss A/S (AC-MCI / sw), 2014-03

Manual                      Superheat controller type EKD 316

Manual                      Superheat controller type EKD 316 

Configuration settings (n03, n37, n38, n39, n40, o03, o30, o56 and o61) available only when regulation is stopped (r12=off).

Factory settings are indicated for standard unit (see code number, page 1). Other code number have customised settings. 

Miscellaneous

Controller’s address

o03

0

240

240

If the valve’s opening degree should be controlled with an external signal, the signal is defined as:

0: no signal

1:  0-20 mA

2:  4-20 mA

3:  0-10 V

4: 1-5 V

o10

0

4

0

Manual control of outputs:

OFF: no manual control 

1: Manual control with "o45" enabled

2: Simulate Alarm off : connection between 24 and 25

3: Simulate Alarm on : connection between 24 and 26

o18

off/0

3

Off /0

Working range for pressure transmitter – min. value

o20

-1 bar

0 bar

-1.0

Working range for pressure transmitter – max. value

o21

1 bar

200 bar 12.0

Refrigerant setting

o30

0

37

0

1 = R12           

2 = R22 

3 = R134a 

4 = R502 

5 = R717

6 = R13

7 = R13b1   

8 = R23

9 = R500

10 = R503

11 = R114

12 = R142b

13 = User def.

14 = R32

15 = R227

16 = R401A

17 = R507

18 = R402A

19 = R404A

20 = R407C

21 = R407A

22 = R407B

23 = R410A

24 = R170

25 = R290

26 = R600

27 = R600a

28 = R744

29 = R1270

30 = R417A

31 = R422A

32 = R413A

33 = R422D

34 = 427A

35 = R438A

R36 = 

Opteon XP10

37 = R407F

Manual control of the valve’s opening degree. The function can only be operated if o18 has been set to 

"1".

This function is only for manual operation. It must not be used for as a regulation function.

o45

0 %

100 %

0

Selection of control mode:

1=Normal  

2 = With inner loop (S media temperature less T0)

o56

1

2

1

Application mode. Menus blanked out so only the shaded menus are seen. See the two columns to the 

right.

1: Controlling a valve with an analogue signal

2: Superheat regulation

o61

1

2

2

1

2

Service

Analog input (21-22)

u06

mA (V)

Read status of input DI (20-21)

u10

on/off

Temperature at S2 sensor

u20

°C

Superheat

u21

K

Superheat reference

u22

K

Read valve’s opening degree

u24

%

Read evaporating pressure

u25

bar

Read evaporating temperature

u26

°C

Temperature at S4 sensor

u27

°C

Valve overview

n03

Valve type

n37

n38

0

ETS 12½, ETS 25, KVS 15

262

300

1

ETS 50, CCM 10, CCM 20, CCM30

262

300

2

ETS 100, CCM 40

353

300

3

ETS 250, KVS 42

381

300

4

ETS 400

381

300

5

-

6

Saginomiya 

24

30

7

ETS 6

24

30

8

CCMT 2, CCMT 4, CCMT 8

110

300

Summary of Contents for EKD 316

Page 1: ...hus a high suction pressure EKD 316 is a superheat controller for the stepper motor valve that can be used where there are requirements for accurate control of superheat in connection with refrigerati...

Page 2: ...e sensor AKS 21A and pressure transmitter AKS 32R have been shown as an example Function overview Minimum Stable Superheat MSS The controller will search for the minimum stable superheat between an up...

Page 3: ...y are 18 24 V d c See also page 12 Max distance between controller and valve 30 m Accessories Pressure transducer Temperature sensor External display Programming key AKS 32R NSK AKS 21 AKS 11 EKA 164A...

Page 4: ...ible to connect the EKA 164A universal display in this configuration Configuration Valve driver Via Analog Signal This is where the controller receives signals from another controller after which it c...

Page 5: ...that motor cable corrections are correct and the cable length is less than 30 meters Output relay contact The contact of the alarm relay will be made when there is an alarm Battery back up A battery...

Page 6: ...EKD 316 Valve definition Valve type Display EKA 164A Valve type Display EKA 164A n03 0 ETS 12 5 ETS 25 KVS 15 1 ETS 50 CCM 10 CCM 20 CCM 30 2 ETS 100 CCM 40 3 ETS 250 KVS 42 4 ETS 400 25 50 100 250 40...

Page 7: ...implicity and being easier to tune In water chillers where the S4 sensor is located at the leaving water outlet the double loop gives some advantage in terms of being less susceptible to compressor or...

Page 8: ...ing of the valve The force opening of valve function has been implemented in the EKD 316 controller After startup this function will provide a constant set minimum opening degree during a set time per...

Page 9: ...p 990 9990 stp 262 Number of steps per second n38 5 stp s 300 stp s 300 Start backlash extra closing steps at 0 opening in of n37 n39 0 100 10 Integration time for inner loop TnT0 n44 10 s 120 s 30 Co...

Page 10: ...Kp but only just around the reference value A setting of 0 5 will reduce the KP value by half The value should only be changed by specially trained staff n19 Kp Min Amplification factor for the superh...

Page 11: ...logue input Read status of input DI start stop input u10 DI Read the temperature at the S2 sensor u20 S2 temp Read superheat u21 SH Read the control s actual superheat reference u22 SH ref Read the va...

Page 12: ...scaling 10 means that the read value is 10 times larger than the actual value Parameter PNU R W Config lock Min Max Default Actual value Scale Injection control 1 n04 Kp factor 3003 R W 0 5 20 0 2 0...

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