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[. . . ] HONEYWELL
MicroniK 200
TEMPERATURE CONTROLLER WITH AND WITHOUT REAL-TIME CLOCK
INSTALLATION & START-UP INSTRUCTIONS
R7426A, B, C
GENERAL
This document provides instructions and procedures for installing and starting up the Micronik 200 R7426A, B, C controllers. No special tools are required for mounting and installation. The user interface and liquid-crystal display allow accurate and easy parameter setting and output adjustment.
BEFORE INSTALLATION NOTE
· · · Visually inspect equipment for shipping damage. Report any damage to the appropriate Honeywell representative. [. . . ] 3 and Table 11) · Temperature cascade control with heating, mixed air dampers, and cooling (see Table 11) In applications without cooling, the throttling range Xpc must be set to OFF 100% fresh air supply at actual temperature above the control point is required (outdoor and return air dampers fully open).
Y[%] 100
Y3
1/4 Xp1 if Xpc = Off
Damper
Y1
MINPOS
Heating
Cooling
if Xpc = Off
Y2
0 CTRPH CTRP1 Xph Xp1 CTRPC
Xwh / Xwc / Xwd Xpc T2
Fig. Temperature sequence control with heating, mixed air dampers, and cooling valve
In the case of combined action including proportional and integral components (P+I control), the reset time (tr) is defined as the required time after which the integral part is equal to the change due to the proportional action for a predetermined step change in the input variable. The control parameter tr1 sets the reset time of the P+I main temperature control loop. For limit or submaster cascade control the control parameter tr2 sets the reset time of these control loops, e. g. discharge temperature T2 (see Table 11). If only proportional control is required, parameter tr must be set to OFF.
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EN1B-0203GE51 R0507C
R7426A, B, C TEMPERATURE CONTROLLER WITH AND WITHOUT REAL TIME CLOCK
Setting Guidelines for Reset Time of P+I Control
The reset time tr should be adjusted to 2. . . 3 times of the response time Tu , which is the time interval between the beginning of a sustained disturbance (e. g. rapid step change of valve position) and the instant when the resulting change in the output signal reaches a specified fraction of its final steady-state value, either before overshoot or in the absence of overshoot. The response time Tu in discharge air control is normally in the range of 0. 1 to 0. 6 min, which allows adjustments of the reset time tr in a range of 0. 2 to 2 min. In room control the response time Tu is in the range of 0. 5 to 5 min, which results in a setting of 1 to 15 min.
Table 12. Calculation of summer/winter compensation control schedule room temp. (T1)
20°C 22°C Aut Wi = Winter
outdoor air temp. (T3/Tcomp)
20°C -15°C
throttling range (XP)
2°C 2°C
T1 + Xp 100% = t Outside Air (22 - 20) + 2 100% = 12% 35
20°C 35°C 2°C 2°C
20°C 26°C Aut Su = Summer
Start Point Ystart (P. 15)
This control parameter is available only on the single output controller R7426A and on the R7426B controller if the three 3position floating outputs are configured for 6-stage ON/OFF sequence control and on the R7426B, C controllers if YMode = 1 is selected. The start point determines the midrange shift of the output Y1 from the calculated control point. The start point is calibrated in degrees K and is the offset (plus or minus) from the set values or calculated control points at which the output Y1 is at 50%. Normally and especially in P+l control, the start point should be set at zero. A change is required only in specific applications where a asymmetrical arrangement results in improved control performance, e. g. if for heat-up of a large space in the morning a high heat capacity is needed and for normal control the valve must be opened by only a small amount.
T1 - Xp 100% = t Outside Air (26 - 20) - 2 100% = 27% 15
Compensation change-over at +20 °C outdoor air temperature NOTE: With P+I control Xp = 0
Occupied/Unoccupied Function SOFFS (P. 16)
A potential-free contact can be used between terminals 1 and 4 to switch the controller between occupied (contact closed) or unoccupied (contact open) mode. In occupied mode, the temperature set point W1 is used for the control point calculation. In unoccupied mode, the SOFFS parameter value is added (cooling) to or subtracted (heating) from the calculated control point. In the case of the R7426A controller, the parameter Y1CTRF must be set to 0 or 1 ( Cho) to match the required heating or cooling application. If the configuration parameter Y1CTRF is set to 2 (summer / winter changeover), the parameter SOFFS is not considered. In sequence applications of heating and cooling, the SOFFS parameter value is added to the control point for cooling (CTRPC) and subtracted from the control point for heating (CTRPH) (see Fig. [. . . ] If the occupancy input is inactive, the controller will be assumed as occupied.
OR TIME ADJUSTMENT TO ADJUST HOURS
OR
TO SELECT WEEKDAY, WEEK GROUPS, OR HOLIDAY TYPES
OR
TO ADJUST SCHEDULE POINT
Tu
OR
TO ADJUST SWITCHING TIME
Tu
OR
TO ADJUST CONTROLLER MODE
Tu
OR
TO ADJUST MINUTES
Fig. Standard schedule programming
Date
OR
TO ADJUST YEAR
DATE ADJUSTMENT
Date
OR
TO ADJUST MONTH
Date
OR
TO ADJUST DAY
Fig. Date and time adjustment mode
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EN1B-0203GE51 R0507C
R7426A, B, C TEMPERATURE CONTROLLER WITH AND WITHOUT REAL-TIME CLOCK
Programming Holiday Schedule (with RTC, only)
The holiday schedule programming is used to program each day of the year (01. 01 . . . 31. 12. ) as a holiday (day type = H1, H2 or H3) or as a normal day (day type = H0 is default). [. . . ]
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