Danfoss EKD 316 Скачать руководство пользователя страница 10

Survey of functions

Function

Para- 

meter

Parameter by operation via 

data communication

Normal display

The superheat is normally shown.

The opening degree is displayed during manual operation or if the valve is under 

analogue control.

SH/OD%  

Reference

Miscellaneous

Unit

Here you select whether the controller is to indicate the temperature values in °C or in 

°F and pressure values in bar or psig.

If  indication in °F is selected, other temperature settings will also switch to Fahrenheit, 

either as absolute values or as delta.

The combination of temperature unit and pressure unit is depicted to the right.

r05

Units  (Menu = Misc.)

0: °C + bar

1: °F + psig

Correction of signal from S2

(Compensation possibility through long sensor cable).

r09

Adjust S2 

Correction of signal from S4

(Compensation possibility through long sensor cable).

r10

Adjust S4 

Start/stop of refrigeration

With this setting, refrigeration can be started and stopped. Start/stop of refrigeration 

can also be accomplished with the external switch function. See also appendix 1.

r12

Main Switch

Alarm

Alarm setting

If there is an alarm, the LEDs on the front of the external display will flash if it is con-

nected. The alarm relay in the controller is closed.

Battery alarm

Here it is defined whether the controller is to monitor the voltage from the battery 

backup. If there is low voltage, or no voltage, an alarm will be given

A34

Batt. alarm

Control parameters

Injection control

Valve definition

0 = ETS 12½, 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

Valve type

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

P: Amplification factor Kp

If the Kp value is reduced the regulation becomes slower.

n04

Kp factor

I: Integration time Tn

If the Tn value is increased the regulation becomes slower.

n05

Tn sec.

D: Differentiation time Td

The D-setting can be cancelled by setting the value to min. (0).

n06

Td sec.

Max. value for the superheat reference

n09

Max SH

Min. value for the superheat reference

 

Warning

Due to the risk of liquid flow, the setting should not be lower than approx. 2-4 K.

n10

Min SH

MOP

 

Note:

If no MOP function is required, select pos. Off. (A value of 200 corresponds to Off)

n11

MOP (bar)

Startup time for safety signal

If the controller does not obtain a reliable signal within this period of time the con-

troller will try to establish a stable signal in other ways. (A value that is too high may 

result in a flooded evaporator).

The value should only be changed by specially-trained staff .

n15

StartUp time

Signal safety during startup

The control function uses the value as a start value for the valve’s opening degree at 

each thermostat cut-in. By adaptive control the controller continuously calculates a 

new value.

The value should only be changed by specially-trained staff.

n17

Start OD%

Stability factor for regulation of superheat

With a higher value, the control function will allow a greater fluctuation of the super-

heat before the reference is changed. The value should only be changed by specially-

trained staff.

n18

Stability

Survey and function (continued)

Damping of amplification near reference value

This setting damps the normal amplification 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 superheat

This setting determines the valve’s opening degree as a function of the change in 

evaporating pressure. An increase of the evaporating pressure will result in a reduced 

opening degree. When there is a drop-out on the low-pressure thermostat during 

startup, the value must be raised slightly. If there is pendling during start-up, the 

value must be reduced slightly.

The value should only be changed by specially-trained staff.

n20

Kp T0 

Definition of superheat regulation (Ref. section "Operation")

1:  Lowest permissible superheat (MSS). Adaptive regulation.

2:  Load-defined superheat. The reference is established based on the line formed by 

the three points: n09, n10 and n22.

n21

SH mode

Value of min. superheat reference for loads under 10%

(The value must be smaller than "n10").

n22

SH Close

Max. opening degree

The valve’s opening degree can be limited. The value is set in %.

n32

ETS OD% Max

Number of steps from 0% to 100% open (User-defined valve, n03 =5)

(Automatic setting when valve is selected in n03).

n37

Max. steps (100 to 6000 step)

Spindle stroke speed (number of steps per second)

(Automatic setting when valve is selected in n03).

n38

Steps/sec (5 to 300 step/sec)

Integration time for the inner loop gain

Used only when o56 = 2

The value should only be changed by specially-trained staff.

n44

TnT0 sec

Miscellaneous

Miscellaneous

Address/data communication

The controller must always have an address. The factory-set address is 240. 

When an external display is connected, the display itself will find the address of the 

controller so that communication can take place. 

 Note:

A display and a system unit must not be connected at the same time. 

The display will not be able to communicate in this situation. 

If the controller is to be part of a network with other controllers and a system unit, the 

controller‘s address must be within the range 1 to 200. 

This address must EITHER be set via a display before it is connected to the data com-

munication and a scan of the network is performed 

OR the network is connected and a scan is performed. The address is then set after-

wards. A new scan is performed so that the new address is known.

Requirements for the installation and data communication cable are discussed in the 

separate document no. "RC8AC".

The controller can be operated via the 

system unit and AK service tool.

It cannot be operated via AKM type 

system software.

o03

Unit addr.

The address is set between 0 and 200.

(When the address is set, the system 

the system unit’s scan function should 

be activated)

Application mode

1:  The controller receives signals from another controller and must control the valve’s  

opening degree.

2:  Superheat regulation.

o61

Appl. mode

Input signal for external control of the valve

s opening degree

Only used if o61 is set to 1.

Definition of the signal's range.

0: No signal

1: 0-20 mA

2: 4-20 mA

3: 0-10 V

4: 1-5 V

(At the lower value the valve will be closed. At the upper value the value will be fully 

open. There is a linear relationship between the signal and the opening degree. The 

height of the valve is not taken into account.)

o10

AI type

©Danfoss A/S (AC-MCI / sw), 2014-03 

DKRCC.PS.RP0.A1.02/520H7142 

 19

18 

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 

Содержание EKD 316

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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...

Страница 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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