Tekmar Boiler Control 265 Скачать руководство пользователя страница 11

 

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 © 2010          D 265 - 07/10

BOILER DESIGN TEMPERATURE

The boiler design supply temperature is the supply water temperature 
required to heat the building when the outdoor air temperature is as cold 
as the outdoor design temperature.

BOILER INDOOR DESIGN TEMPERATURE

The indoor design temperature is the room temperature that was used in the original heat loss calculations for the building. This 
setting establishes the beginning of the characterized heating curve.

ROOM

The 

ROOM

 setting is the desired room temperature for the building and provides a parallel shift of the heating curve. The room 

temperature desired by the occupants is often different from the design indoor temperature. If the room temperature is not correct, 
adjusting the room setting increases or decreases the amount of heat available to the building. A room setting is available for both 
the occupied (day) and unoccupied (night) periods.

BOILER TARGET TEMPERATURE

The boiler target temperature is determined from the characterized heating curve settings and the outdoor air temperature. The 
control displays the temperature that it is currently trying to maintain as the boiler supply temperature. If the control does not 
presently have a requirement for heat, it does not show a boiler target temperature. Instead, “– – –” is displayed in the LCD.

TERMINAL UNITS

The control provides for a selection between six different terminal unit types: two types of radiant floor heat, fancoil, fin-tube 
convector, radiator and baseboard. When a terminal unit is selected, the control automatically loads the design supply temperature, 
maximum supply temperature, and minimum supply temperature. The factory defaults are listed below. These factory defaults can 
be changed to better match the installed system.

Terminal Unit

High Mass 

Radiant (1)

Low Mass

Radiant (2)

Fancoil

(3)

Fin-Tube

Convector (4)

Radiator

(5)

Baseboard

(6)

BOIL DSGN

120°F (49°C)

140°F (60°C)

190°F (88°C)

180°F (82°C)

160°F (71°C)

150°F (66°C)

BOIL MAX

140°F (60°C)

160°F (71°C)

210°F (99°C)

200°F (93°C)

180°F (82°C)

170°F (77°C)

BOIL MIN

OFF

OFF

140°F (60°C)

140°F (60°C)

140°F (60°C)

140°F (60°C)

High Mass Radiant (1)

This type of a hydronic radiant floor is embedded in either a thick concrete or gypsum 
pour. This heating system has a large thermal mass and is slow acting.

Low Mass Radiant (2)

This type of radiant heating system is either attached to the bottom of a wood sub-floor, 
suspended in the joist space, or sandwiched between the sub-floor and the surface. 
This type of radiant system has a relatively low thermal mass and responds faster than 
a high mass system.

CHARACTERIZED HEATING CURVE

The control varies the supply water temperature based on the outdoor air 
temperature. The control takes into account the type of terminal unit that 
the system is using. Since different types of terminal units transfer heat 
to a space using different proportions of radiation, natural convection 
and forced convection, the supply water temperature must be controlled 
differently. Once a terminal unit is selected, the control varies the supply 
water temperature according to the type of terminal unit. This improves 
the control of the air temperature in the building.

OUTDOOR DESIGN TEMPERATURE

The outdoor design temperature is the outdoor air temperature that is 
the typical coldest temperature of the year where the building is located. 
This temperature is used when doing the heat loss calculations for the 
building. If a cold outdoor design temperature is selected, the boiler 
supply temperature rises gradually as the outdoor temperature drops. 
If a warm outdoor design temperature is selected, the boiler supply 
temperature rises rapidly as the outdoor temperature drops.

BOIL MAX

BOIL DSGN

OUT DSGN

ROOM OCC

ROOM UNOCC

210
(99)

190
(88)

170
(77)

150
(66)

130
(54)

110
(43)

90
(32)

70
(21)   

50°F
(10°C)

-20

(-29)

0

(-18)

20

(-7)

40

(5)

60

(16)

80

(27)

Outdoor Air Temperature

Supply W

a

ter T

e

mperatur

e

Boiler Characterized

Heating Curve

Boiler Characterized

Heating Curve

BOIL MIN

BOIL INDR

WWSD OCC   

WWSD UNOCC

Содержание Boiler Control 265

Страница 1: ...dulating Boiler Output Boiler Enable Output Pump Output Boiler Enable or Pump Input Setpoint or DHW Demand Input 115 V ac Power Supply Output Primary Pump Input Timer or Switch Optional Output Combust...

Страница 2: ...he 265 has four push buttons Menu Item for selecting and adjusting settings As you program your control record your settings in the ADJUST Menu table which is found in the second half of this brochure...

Страница 3: ...ontrol is in UnOccupied Mode Primary Pump Displays when the primary pump relay is turned on Occupied Schedule Displays when the control is in Occupied Mode Boiler Pump Displays which boiler pump relay...

Страница 4: ...ply water temperature to a hydronic space heating system or setpoint When using the control to provide Domestic Hot Water DHW requirements only two modulating boilers can be operated The supply water...

Страница 5: ...t setting This alert can be used to determine if the boilers have failed to fire To reset the alert press and hold the and buttons for 5 seconds while in the VIEW menu ROTATION The control includes an...

Страница 6: ...ATION Boiler 1 Boiler 2 Boiler 3 100 MOD OFF PARALLEL MODULATION Boiler 1 Boiler 2 Boiler 3 MOD MOD MOD SEQUENTIAL MODULATION The control offers a sequential modulation option This is selected by sett...

Страница 7: ...culate the Maximum Modulation use the following formulae For 4 to 20 mA Maximum Modulation 4 mA Boiler s Maximum Input Signal x 100 4 20 mA For 0 to 10 V dc Maximum Modulation 0 V dc Boiler s Maximum...

Страница 8: ...onse rate it may be necessary to increase the Motor Speed setting in order to increase the stability of the boiler modulation Example 1 A boiler s input signal range is 2 to 9 V dc The 265 control has...

Страница 9: ...ve PID logic in order to satisfy the boiler target temperature Fixed Differential If the user desires to have a fixed differential this is set using the boiler differential setting in the ADJUST menu...

Страница 10: ...to thermally shock a boiler when it is shut off at high fire The Soft Stop feature forces the boiler to modulate down to minimum before turning off This is designed to prevent large volumes of cold ai...

Страница 11: ...49 C 140 F 60 C 190 F 88 C 180 F 82 C 160 F 71 C 150 F 66 C BOIL MAX 140 F 60 C 160 F 71 C 210 F 99 C 200 F 93 C 180 F 82 C 170 F 77 C BOIL MIN OFF OFF 140 F 60 C 140 F 60 C 140 F 60 C 140 F 60 C High...

Страница 12: ...nter in the display When the control is in WWSD the Boiler Demand pointer is displayed if there is a boiler demand However the control does not operate the heating system to satisfy this demand The co...

Страница 13: ...HG The DHW demand overrides the boiler reset target temperature except when the boiler reset target is higher than the DHW Exchange setting DHW MODE AND PRIORITY OPERATION The control has five differe...

Страница 14: ...nues this purge for a maximum of two minutes or until the boiler supply water temperature drops 20 F 11 C below the boiler target temperature during the DHW operation The control also stops the purge...

Страница 15: ...the boiler supply temperature is sufficiently reduced the Boiler 3 DHW contact shuts off The heating system is turned on for a period of time to prevent the building from cooling off After a period o...

Страница 16: ...iler SETP MODE 2 Setpoint in Parallel with Priority Whenever a setpoint demand is present the boiler s is operated to maintain the setpoint target and the primary pump Prim P1 contact is opened It is...

Страница 17: ...mary pump and boiler pumps operate as described in section G INPUT SIGNAL The control can accept either a 0 10 V dc signal or a 2 10 V dc signal The External Input Signal setting must be set to the pr...

Страница 18: ...Pump Boiler Pumps Primary Pump Boiler Pumps Primary Pump Boiler Pumps OR Example Range 0 10 V dc Input 7 V dc 157 F 69 C Offset 5 F 3 C 5 F 3 C Boiler Target 162 F 72 C CONVERSION TABLE 0 10 0 20 mA 0...

Страница 19: ...g to cross between sections as the wires will interfere with safety dividers which should be installed at a later time Power must not be applied to any of the wires during the rough in wiring stage Al...

Страница 20: ...DHW MODE must also be set to 1 through 4 Setpoint Demand To generate a Setpoint Demand a voltage between 24 V ac and 230 V ac must be applied across the Setp DHW Dem and Com Dem terminals 31 and 30 T...

Страница 21: ...There is no power available on these terminals from the control These terminals are to be used as a switch to enable the modulating boiler Since this is an isolated contact it may switch a voltage be...

Страница 22: ...to 0 to 10 V dc using an external 500 resistor across the Mod 1 Mod 2 Mod 3 terminals The 4 to 20 mA output can be converted to a 0 135 output for a Modutrol IV gas valve actuating motor using a 0 135...

Страница 23: ...the control to measure the boiler supply water temperature Boiler Return Sensor Connect the two wires from the Boiler Return Sensor 071 to the Com and Boil terminals 1 and 3 The boiler return sensor i...

Страница 24: ...3 and 14 using an AC voltmeter the reading should be between 103 5 and 126 5 V ac Test the Powered Inputs Boiler Demand If a boiler demand is used measure the voltage between the Boil Dem and Com Dem...

Страница 25: ...2 are running If the boiler s operates properly disconnect the power and remove the jumper Boiler 3 DHW Contact Boiler Operation If a boiler is connected to the Boiler 3 DHW contact 21 and 22 make sur...

Страница 26: ...switch settings change the items that are available to be viewed and or adjusted in the User Interface If a DIP switch is changed while the control is powered up the control responds to the change in...

Страница 27: ...h is set to Exercise the pumps are operated for 10 seconds after every three days of inactivity Parallel Sequential The Parallel Sequential DIP switch selects whether to modulate the boilers using par...

Страница 28: ...0 Boiler 2 Modulation Current percent modulation of the boiler s burner This item is only available when Boiler 2 is set to Au automatic or CP1 copy 1 0 to 100 Boiler 3 Modulation Current percent modu...

Страница 29: ...Default Au B Boiler 2 Selects whether or not boiler 2 is operational CP1 copies the settings of Boiler 1 to Boiler 2 CP1 Au Auto OFF Default CP1 B Boiler 3 Selects whether or not boiler 3 is operation...

Страница 30: ...iler and when the burner actually fires This item is only available when Boiler 1 is set to Au automatic 0 00 to 4 00 minutes 1 sec increment Default 0 10 min B Boiler Mass 1 The thermal mass characte...

Страница 31: ...hour This item is only available when Boiler 2 is set to Au automatic or CP1 copy 1 1 to 1999 Default 10 B Maximum Boiler 2 Output The maximum boiler 2 output in 10 000 s of BTU hour This item is onl...

Страница 32: ...t to Au automatic or CP1 copy 1 and DHW MODE is set to OFF 0 to 50 Default 0 B Maximum Modulation 3 The maximum percent modu lation of the burner This item is only available when Boiler 3 is set to Au...

Страница 33: ...C WWSD Occupied The system s warm weather shut down temperature during the Occupied period This item is only available when the External Input Stand Alone DIP switch is set to Stand Alone 35 to 100 F...

Страница 34: ...If Boiler 3 is set to OFF and DHW MODE is set to 3 or 4 the DHW contact is closed and the primary pump stays on If Boiler 3 is set to OFF and DHW MODE is set to 1 or 2 the DHW contact is closed and th...

Страница 35: ...it The control will not operate the boiler s until the sensor is repaired Locate and repair the problem as described in the Data Brochure D 070 To clear the error message from the control after the se...

Страница 36: ...HEALTH OR SAFETY LEGISLATION THE TERM OF ANY OTHER WARRANTY NOT HEREBY CONTRACTUALLY EXCLUDED IS LIMITED SUCH THAT IT SHALL NOT EXTEND BEYOND TWENTY FOUR 24 MONTHS FROM THE PRODUCTION DATE TO THE EXT...

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