JOY HC AO2DO RS485 Room Controller
Manual
Joy KNX Manual
Revision
Revision Date A 31.07.2024 B 20.11.2024
Joy KNX Soware SW-Ver. 1.0.x SW-Ver. 1.0.x
Descripon · First Release · Correcon
Author JD, NL, HoH JD, NL
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Table of contents
1. General informaon and safety instrucons ……………………………………………………………5
1.1. Intended use……………………………………………………………………………………………………………………………………………………. 5 1.2. Non-intended use …………………………………………………………………………………………………………………………………………….. 5 1.3. Limitaon of liability …………………………………………………………………………………………………………………………………………. 5 1.4. Support…………………………………………………………………………………………………………………………………………………………… 5
2. Funconal descripon …………………………………………………………………………………………6
2.1. Device versions ………………………………………………………………………………………………………………………………………………… 6 2.1.1. Overview of variants:…………………………………………………………………………………………………………………………………… 6 2.1.2. Device specific informaon (Start screen) ……………………………………………………………………………………………………….. 6
2.2. Screen…………………………………………………………………………………………………………………………………………………………….. 7 2.2.1. Value Screen ………………………………………………………………………………………………………………………………………………. 7 2.2.2. Header………………………………………………………………………………………………………………………………………………………. 8 2.2.3. Fooder ………………………………………………………………………………………………………………………………………………………. 8
2.3. Buons …………………………………………………………………………………………………………………………………………………………… 9 2.3.1. Customizable buons ………………………………………………………………………………………………………………………………….. 9 2.3.2. Center buon …………………………………………………………………………………………………………………………………………….. 9 2.3.3. Menu Navigaon ………………………………………………………………………………………………………………………………………… 9
2.4. (Surface) Cleaning mode ……………………………………………………………………………………………………………………………………. 9
3. Installaon, Commissioning & Configuraon………………………………………………………….10
3.1. Connecon ……………………………………………………………………………………………………………………………………………………. 10 3.1.1. KNX TP1 Installaon ………………………………………………………………………………………………………………………………….. 10 3.1.2. Electrical connecon………………………………………………………………………………………………………………………………….. 10
3.2. Commissioning ………………………………………………………………………………………………………………………………………………. 11 3.3. Configuraon / Device soware………………………………………………………………………………………………………………………… 11
3.3.1. Device soware (via SD-card) ……………………………………………………………………………………………………………………… 11 3.3.2. ETS Applicaon program…………………………………………………………………………………………………………………………….. 12 3.4. Parameter menu …………………………………………………………………………………………………………………………………………….. 13 3.4.1. Access parameter menu……………………………………………………………………………………………………………………………… 13 3.4.2. Navigaon parameter menu ……………………………………………………………………………………………………………………….. 13 3.4.3. Descripon parameter menu ………………………………………………………………………………………………………………………. 13 3.4.4. Forced calibraon CO2 Sensor …………………………………………………………………………………………………………………….. 14 3.4.5. ASC Automac Self Calibraon ……………………………………………………………………………………………………………………. 14 3.4.6. CO2 sensor factory reset …………………………………………………………………………………………………………………………….. 14 3.4.7. Diagnoscs menu ……………………………………………………………………………………………………………………………………… 14 3.4.8. Exit parameter menu / Apply configuraon …………………………………………………………………………………………………… 14
4. funconal descripon (controller)………………………………………………………………………..15
4.1. Device funcons …………………………………………………………………………………………………………………………………………….. 15 4.1.1. Sensors ……………………………………………………………………………………………………………………………………………………. 15 4.1.2. Inputs ……………………………………………………………………………………………………………………………………………………… 15
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Table of contents
4.1.3. Outputs …………………………………………………………………………………………………………………………………………………… 16 4.2. Regelung……………………………………………………………………………………………………………………………………………………….. 17
4.2.1. PI-controller……………………………………………………………………………………………………………………………………………… 17 4.2.2. Two-point controller ………………………………………………………………………………………………………………………………….. 17 4.2.3. Valve protecon funcon……………………………………………………………………………………………………………………………. 17 4.3. Operang modes ……………………………………………………………………………………………………………………………………………. 18 4.3.1. Room operang mode Comfort (occupied) ……………………………………………………………………………………………………. 18 4.3.2. Room operang mode Standby (unoccupied) ………………………………………………………………………………………………… 18 4.3.3. Room operang mode ECO …………………………………………………………………………………………………………………………. 18 4.3.4. Room operang mode Building Protecon (frost/heang protecon)………………………………………………………………… 18 4.3.5. Device operang mode Sleep mode……………………………………………………………………………………………………………… 18 4.3.6. Device operang mode Keycard mode ………………………………………………………………………………………………………….. 18
5. ETS- Configuraon parameter ……………………………………………………………………………..19
5.1. Configuraon parameter ,,General”……………………………………………………………………………………………………………………. 19 5.2. Configuraon parameter ,,HVAC” ………………………………………………………………………………………………………………………. 20 5.3. Configuraon parameter ,,Sensors”……………………………………………………………………………………………………………………. 22 5.4. Configuraon parameter ,,Inputs” ……………………………………………………………………………………………………………………… 22
6. Group objects …………………………………………………………………………………………………..23
6.1. Flags …………………………………………………………………………………………………………………………………………………………….. 23 6.2. Group object descripon………………………………………………………………………………………………………………………………….. 24
6.2.1. Group Objects ,,Operaon state” …………………………………………………………………………………………………………………. 24 6.2.2. Group Objects ,,Display” …………………………………………………………………………………………………………………………….. 24 6.2.3. Group Objects ,,Alert & Messages” ………………………………………………………………………………………………………………. 24 6.2.4. Group Objects ,,Date & Time” ……………………………………………………………………………………………………………………… 24 6.2.5. Group Objects ,,Light”………………………………………………………………………………………………………………………………… 24 6.2.6. Group Objects ,,Blind” ……………………………………………………………………………………………………………………………….. 25 6.2.7. Group Objects ,,HVAC”……………………………………………………………………………………………………………………………….. 25 6.2.8. Group Objects ,,Fan control” ……………………………………………………………………………………………………………………….. 26 6.2.9. Group Objects ,,Controller output” ………………………………………………………………………………………………………………. 26 6.2.10. Group Objects ,,Sensors”…………………………………………………………………………………………………………………………….. 27 6.2.11. Group Objects ,,Inputs”………………………………………………………………………………………………………………………………. 27
7. KNX Specificaon………………………………………………………………………………………………28
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1. General informaon and safety instrucons
A prerequisite for safe working is compliance with the specified safety instrucons and handling instrucons. The installaon and assembly of electrical devices (modules) may only be carried out by an authorised electrician.
Please read the operang instrucons carefully before using the appliance. · The device may only be used for the purposes and applicaons described in this operang manual. · The device should only be cleaned with a damp cloth. Do not use aggressive or solvent-based cleaning liquids. Failure to observe the safety instrucons may result in damage to the device and harm to the user. Detailed informaon can be found in the document Care_instrucons_for_room_operang_units_en.pdf ( hps://www.thermokon.de/direct/files/Care_instrucons_for_room_operang_units_en.pdf ) · A faulty connecon can lead to destrucon of the device or even the whole building system. · Addionally the instrucons in the applicable data sheet are to be observed.
1.1. Intended use
· The device is intended for the use in a KNX-network and can be comissioned with the ETS 5 or newer. · The room control unit is intended for use in offices, meeng or conference rooms, hotel, recepon/lobby areas, nursing homes and hospitals, and
generally in commecial and residenal buildings. The room control unit is used for local room control for lighng, blinds and HVAC applicaons. · The device may only be used and operated in a proper environment and according the corresponding specificaons.
1.2. Non-intended use
· The room operang units must not be used if a malfuncon of the device could endanger the life and limb of the user or third pares or cause damage to the product or other property.
· The device must not be used in potenally explosive atmospheres. · The device must not be used in an atmosphere in which a chemically acve substance is present. · Any use other than that described in these instrucons or any use other than that described here is considered improper and is prohibited.
1.3. Limitaon of liability
All informaon and notes in this manual have been compiled in accordance with the applicable standards and regulaons, the state of the art and our extensive knowledge and experience. The manufacturer’s warranty condions apply.
The manufacturer accepts no liability for damage due to: · Non-compliance with these instrucons or applicable documents · Unintended / improper use · Installaons conducted by non-professional persons · Unathorised technical modificaons
The actual scope of delivery may deviate from the explanaons and illustraons described here in the case of special designs, addional product opons or latest technical changes.
1.4. Support
Our support team is available for technical informaon . Informaon about the responsible contact person can be obtained at any me by telephone or e-mail. You may also visit our website for contact details: See hps://www.thermokon.de/en-gb/contact/contact-persons We appreciate your contribuons, feedback and user experiences in order to constantly improve our products!
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2. Funconal descripon
Das JOY ist ein Raumthermostat (RT) im hochwergen Design zur individuellen Temperatursteuerung in Wohn-, Gewerbe- und Geschäsräumen. Die Fan Coil-Variante dient, je nach Ausführung, der Ansteuerung eines 3-stufigen Lüers bzw. eines EC-Fan Coils (0-10V). Die Variante ist für Gebläse Konvektoren mit 2- und 4Rohrsystemen ausgelegt. Die HC-Variante ist ein reines Thermostat. Die Joy KNX Geräte sind mit einem Temperatur- und Feuchte-, sowie oponal mit einem CO2-Sensor ausgerüstet. Die Sensorwerte werden gemessen, können über BUS ausgegeben und auf dem Display angezeigt werden.
Die Ansteuerung der Venle erfolgt bei den 230V-Typen mit Relais (Zweipunktregler bzw. PWM eines PI-Reglers) und bei den 24V-Typen durch ein steges 0.10V Signal. Alternav kann bei der HC-Variante ein 6-Wege-Venl (Sauter oder Belimo) am drien 0…10 V Ausgang angesteuert werden.
Die Bedienung erfolgt über Touch-sensive Tasten. Mit dem modernen Design kombiniert das Gerät ein 2,5″ LCD Display mit einer Touch-Oberfläche.
Das Raumbediengerät bietet folgende Haupunkonen:
· Integraon bis zu drei verschiedener Sensoren (Temperatur, relave Feuchte und CO2) · Intuive und komfortable Steuerung des Raumklimas · Aufrufen eines ECO-Modus zur energiebewussten Klimasteuerung · Steuerung von Lüungsgeräten · Steuerung von Beleuchtung mit Dimmfunkonen sowie Beschaung · Anzeigen von Statusmeldungen, weiteren Betriebszuständen, wie ,,Fenster offen”, Raum belegt/unbelegt etc. · Übersichtliche Darstellung der Messwerte · Digitale Eingänge für externe Geräte (z.B. Fensterkontakte, Taupunktwächter etc.) · Temperatursensoreingang (NTC10k) zur Temperaturmessung (z.B.: Außentemperatur)
2.1. Device versions
The Joy room control unit is available in the in the variants HC, FC and on request as Custom.
HC (Heang/Cooling) Variant
FC (Fan Coil) Variant
Custom Variant
Illustraons exemplary, other colors and designs available.
2.1.1. Overview of variants:
Variant Joy KNX Fancoil 5 DO (FC5DO) Joy KNX Fancoil EC AO2DO (FCAO2DO) Joy KNX Fancoil EC 3AO (FC3AO) Joy KNX HC AO2DO Joy KNX HC 3AO
Measuring variables Temperature + Humidity (oponal CO2) Temperature + Humidity (oponal CO2) Temperature + Humidity (oponal CO2) Temperature + Humidity (oponal CO2) Temperature + Humidity (oponal CO2)
Control 3 Fan stages EC-Fan 0-10V EC-Fan 0-10V 6 way valve 6 way valve
2.1.2. Device specific informaon (Start screen)
Aer switching on the device, a start screen is displayed for approx. 5s, which shows device-specific informaon such as device type and firmware version.
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2.2. Screen
The Screen is divided into three areas: Header, Value Screen and Footer.
13:41
Th 06.08.25
23.3 °C
686
56.6
ppm
%rH
1 AUTO
Value Screen
Internal sensor values
External sensorvalues (configurable)
Controller mode
(Addional CO2 sensor values depending on device (configuriable)
13:41
Th 06.08.25
23.3 °C
686
56.6
p1p3:m41
Th 06.0%8r.H25
23.3 686
°C 1 AUTO
56.6
ppm
%rH
1 AUTO
Header (Display of values/ symbols)
Time, Weekday, date, ECO symbol (depending on mode) Alert symbol (overwrites ECO symbol)
protecon symbol
Fooder (Display of symbols) Symbols for states Heang, Cooling, Window, Dewpoint, Occupancy, Fan stage
ECO-Funcon GO 55 (Input), 54 (Output) ECO inacve = 0 | ECO acve = 1
Alert GO 16 (Input), 15 (Output)
Building Protecon Frost protecon GO 17 (Output) Heang protecon GO 18 (Output)
Cooling mode GO 101 (Input) ON = 0
Heang mode GO 101 (Input) ON = 1
Window open GO 61 (Input), GO 60 (Output) ON = 1 | OFF = 0
Dewpoint GO 59 (Input), GO 58 (Output) ON = 1 | OFF = 0
Occupancy GO 53 (Input), GO 52 (Output) Standby = 0 | Presence = 1
Fan stage
1 1 GO 83 (Input), GO 82 (Output) Integer value of the acve AUTO fan stage
2.2.1. Value Screen
The display on the main screen can be configured (General > Display > Homescreen). Available for selecon:
· Sensor values (Temperature, external temperature sensor, humidity or oponal CO2) · Absolute (=Base) setpoint · Setpoint offset
The sensor values of the internal temperature sensor are displayed in the middle by default. If an external temperature sensor is connected and the input is configured accordingly, its value is shown in the display. In addion, the relave humidity and the CO2 value can be displayed next to the central value. (Sensors > Humidity sensor / CO2 sensor > Show … )
The display of the controller mode (Auto / Heang / Cooling) is acvated / deacvated via ,,Show controller mode” (HVAC > controller general > show controller mode). Addional informaon about the controller: (,,Regelung” S.17)
When any buon is pressed, the display on the value screen changes and shows a symbol for the respecve funcon.
Symbol
Designaon Temperature / Setpoint
Light
Descripon
Displayed at Temperature value or setpoint change
Display of the lighng funcons ON/OFF | DIM/LIGHTER
Symbol
Designaon
1 Fan stage AUTO
Roller shuer / Shading
Descripon
Display of the fan stage (only FC variant)
Display of the roller shuer / shading funcons UP / DOWN
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2.2.2. Header
The header is used to display the date and me. An info symbol is also displayed here if required or depending on certain states/modes.
Date & Time (General > Date & Time) The date and me display can be switched on and the display format selected in drop-down menus. Synchronizaon of the currently valid values (date & me) can be acvated or deacvated.
ECO symbol The ECO symbol is displayed when the ECO funcon is acvated. Further informaon on the ECO funcon here: (,,Room operang mode ECO” S.18)
Alert symbol An alarm symbol can be displayed via group objects or a configured input (display overwrites ECO symbol). The backlighng also flashes.
2.2.3. Fooder
In the footer of the main screen, symbols for the states heang, cooling, room occupancy, window contact, dew point and fan levels can be shown or hidden via a group object (GO). The symbols are divided into symbol groups. Only one symbol per group can be displayed at a me. The symbols can be switched on or off as required.
Symbol groups
Presence (Standby/Comfort)
Heang / Cooling
Window/Dewpoint
Fan stage
1 AUTO
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2.3. Buons
There are buons on the touch surface for operang the configured funcons. Pressing the buon once triggers an acon. A long press of the buon causes a value to change cyclically at 0.5s intervals.Each me the buons are pressed, the ring on the power buon lights up as buon feedback. Buon operaon can be blocked as required via a group object (GO13).
Center buon / Confirmaon
Set point adjustment
If no buon is pressed for 3 seconds, the display returns to the main screen!
Fan stage adjustment (fan stage down / fan stage up)
Configurable buons
2.3.1. Customizable buons
The buon are divided in 2 buon types and 4 buon areas:
· 1 center buon in the center of the keypad. · 8 Adjustment / acvaon buons in 3 rows (square top / center / boom posioned around the central buon).
The adjustment / acvaon buons are divided into setpoint changes and 6 other buons that can be configured via the ETS, 2 of which are preconfigured with the fan speed adjustment as standard.
2.3.2. Center buon
Various funcons can be assigned to the central buon (ON/OFF), e.g. to change the presence status, acvate ECO mode or the buon can be locked. The configured funcon is triggered by a short press of the buon. A long press of the buon sll triggers the ON/OFF funcon (,,Room operang mode Comfort (occupied)” S.18). When using a keycard switch, the ON/standby (off) buon funcon (long buon press) is not possible. Linking the buon to the presence status does not exclude the use of a digital input as a presence detector! The last change (KO or buon press) is used.
2.3.3. Menu Navigaon
The menus are navigated using the UP, DOWN, CENTER LEFT, CENTER RIGHT and ENTER buons. The menus are structured hierarchically. Starng from the main window as the highest level, you can jump to the submenus and from there to further submenus.
To jump back one level, select the header and then press the center LEFT buon.
The UP / DOWN buons are used to select a menu line. The currently selected menu line is displayed inverted. A value can only be modified in the selected menu line.
Icons are used in the menus to provide beer orientaon when navigang through the menus:
Change of value v-/+w Center LEFT (-) / Center RIGHT (+) buons to change the value. No selecon via the ENTER buon is necessary.
Accessing the next menu
u
Center RIGHT buon to call up the next menu
Display value selected
The symbol is displayed when the corresponding value is selected.
Parameters for which no value change symbol is displayed can be selected using the ENTER buon.
Exing menus Menus can be exited by selecng the header in the main window and then pressing the LEFT buon. An automac return to the main menu takes place aer 10 minutes without user acon. Unconfirmed values are not accepted in this case.
2.4. (Surface) Cleaning mode
A cleaning mode can be acvated to avoid having to press a buon while the appliance is being cleaned. Cleaning mode is acvated using the key combinaon shown on the right:
3 Sek
Cleaning mode
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3. Installaon, Commissioning & Configuraon
Correct commissioning ensures trouble-free and safe use of the devices. It is therefore essenal to follow the instrucons in the data sheet.
3.1. Connecon
3.1.1. KNX TP1 Installaon
In general, the country-specific installaon regulaons (e.g. VDE 0100, etc.) and regulaons of the KNX standard must be observed. The room operang units load the bus with a load of 3mA (in accordance with the KNX standard).
Please note that KNX does not support a ring connecon!
3.1.2. Electrical connecon
The power supply and the KNX cables must be connected in accordance with the following connecon diagrams depending on the device variant. The power supply must come from sources that meet the requirements for 230V devices of the Low Voltage Direcve or the requirements for safety extra-low voltage (SELV), as well as the regulaons of the KNX standard. The device starts aer the power supply is switched on. Further Informaon is documented in the applicable data sheet.
Joy Fancoil 5DO KNX
Joy Fancoil EC 3AO KNX
Joy Fancoil EC AO2DO KNX
KNX KNX
– + GND
12 11 10
DI1
9
230V
1 2345678
ST3 ST2 ST1 C
H
LN L
Joy HC 3AO KNX
KNX KNX
– + GND
12 11 10
DI1
9
UUU
0-10V 0-10V 0-10V
1 2345678
DI2 FAN C
H GND GND
+-
24VAC/DC
Joy HC AO2DO KNX
KNX KNX
– + GND
12 11 10
DI1
9
U
0-10V
12
-+ FAN
4 56 7 8
CH
LN L
KNX KNX
– + GND
12 11 10
DI1
9
KNX KNX
– + GND
12 11 10
DI1
9
UUU
0-10V 0-10V 0-10V
1 2345678
DI2 6WV C
H GND GND
+-
24VAC/DC
U
0-10V
12
-+ 6WV
4 56 7 8
CH
LN L
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3.2. Commissioning
Once the device has been connected, it can be put into operaon. The following procedure should be followed:
· Connect the programming interface to the bus (e.g.: USB Interface KNX) · Switch on the bus and auxiliary power supply · Specifying the physical address and configuring the applicaon program using the ETS (5 or higher) · Press the “KNX programming mode” key combinaon. · Programming mode ” appears on the display · Programming the physical address and the applicaon program using the ETS · Check the parameterized funcons (e.g. using the ETS)
KNX programming mode
3.3. Configuraon / Device soware
The following opons are available for configuring the device: · Parameterizaon via desktop PC/laptop with the ETS soware, via USB interface KNX (art. no: 806190) · Updang the device soware, via micro SD card (art. no: 500098)
3.3.1. Device soware (via SD-card)
Notes on updang the device: MicroSD card specificaon: FAT file system (NTFS and exFAT file systems are not supported.)
Updang the device soware is only possible within the version main numbers. The soware version is displayed in the diagnoscs menu: (,,Diagnoscs menu” S.14) Follow the steps below to update the device soware:
1. Remove the top part 2. Insert MicroSD card with valid device soware file 3. Place upper part on lower part. 4. Valid device soware file is recognized and the installaon process is started (ring lighng flashes at 300ms intervals) 5. New device soware is started aer installaon (approx. 20-30 seconds). 6. Remove the upper part to remove the MicroSD card from the device!
Addional informaonen via www.thermokon.de
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3.3.2. ETS Applicaon program
The configuraon or parameterizaon is carried out- as is typical for KNX- via ETS. (ETS5.0 or higher) When parameterizing/configuring the devices, you should always proceed “from top to boom” in the menu. An applicaon program is available for this purpose, which summarizes the device-specific sengs in an intuive user interface. The user interface of the applicaon program is divided into the menu area and the respecve parameter pages.
Within the menu area, the individual tabs are divided into corresponding menu items, which open the respecve parameter pages by clicking on them. On the parameter pages, the device funcons can be set to suit the applicaon and requirements via corresponding parameters (e.g.: General > Display > Display brightness: 100%). The reference of the respecve parameter to the parameter page/menu item and to the tab is shown in this document as follows:
· Tab > Parameter page/menu item > Parameter: Selecon (e.g.: General > Date & me > Transfer me via ETS: Acve)
Dynamic structure
The applicaon program menu has a dynamic structure. This means that if certain funcons are acvated, funcons, parameters or communicaon objects dependent on this funcon are also acvated.
Example:
If parameter “General > Display > Font color” is set to “User-defined”, parameter “General > Display > Font color selecon” appears in order to be able to transfer the desired font color during programming.
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3.4. Parameter menu
The parameter menu contains the basic sengs of the device. Configuraon is carried out directly on the device.
3.4.1. Access parameter menu
The parameter menu is accessed via the following buon combinaon: center le, up, center right Manual access to the parameter menu can be blocked via the ETS.
3.4.2. Navigaon parameter menu
The parameter menu is navigated using the following buons:
> 3 Sek
Access parameter menu (Center le, up, center right)
Navigaon parameter menu (up / down / center le / center right)
Center buon / confirmaon
3.4.3. Descripon parameter menu
Menu Time/Date The me and date can be configured in the Time/date menu.
Menü
Uhrzeit/Datum Sensor Einstellungen Allg. Einstellungen
Zeiteinstellung/Uhrzeit
Zeiteinstellung/Datum
Stunde Minute
-/+
15 Tag
-/+
15 Monat
Jahr
-/+
15
-/+
05
-/+
25
KNX-Adresse: 1.1.1
Datum
Menu Sensor sengs In the Sensor sengs menu, offset correcons can be made to the connected internal/external sensors, values of the internal/external sensors can be displayed and the CO2 sensor can be calibrated.
Menü Uhrzeit/Datum Sensor Einstellungen Allg. Einstellungen
KNX-Adresse: 1.1.1
Sensor Einstellungen
Offset int.
-/+
Wert int.
Offset ext.
-/+
Wert ext.
0.6 K 22.1°C
0.2 K 22.1°C
CO2/Feuchte
Sensor Einstellungen
Offset rH -/+ Wert rH Kalib. CO2 -/+ ASC CO2 Wert CO2
+0.0% +46.8% +560ppm
OFF +643ppm
Offset int. An offset can be configured to compensate for the self-heang of the internal temperature sensor. Offset ext. An offset can be configured for temperature compensaon of a connected external NTC10K. Offset rH A humidity offset can be configured to compensate for constant measured value deviaons.
The parameter menu must be exited to accept the configured offset values. (,,Exit parameter menu / Apply configuraon” S.14)
Calib. CO2 A measured value can be entered here which is determined with a reference measuring device close to the appliance. (siehe ,,Kalibraon CO2 Sensor (Forced)” S.14) ASC CO2 Switches the ASC (Automac Self Calibraon) funcon ON / OFF (factory seng ON) (siehe ,,ASC Automac Self Calibraon” S.14)
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Menu Allg. Einstellungen Configuraon of the contrast values, as well as the factory seng opon
Menü
Uhrzeit/Datum Sensor Einstellungen Allg. Einstellungen
Einstellungen
Kontrast
-/+
Werkseinstellung 56 Werkseinstellung
KNX-Adresse: 1.1.1
Werkseinstellung
Factory Reset When the factory seng is selected, the room thermostat performs a restart and is reset to the delivery status. (Selecon and confirmaon)
3.4.4. Forced calibraon CO2 Sensor
The key combinaon (top le + top right) is used to calibrate the currently detected air mixture in the device with the value configured in the display. This key combinaon only works in the CO2 sensor sengs menu.
Aenon: CO2 sources (e.g. breathing air) influence the measured value recording!
The ASC funcon is deacvated during a forced calibraon.
CO2 Sensor Calibraon (up le + up right)
3.4.5. ASC Automac Self Calibraon
The ASC funcon sets the lowest recorded CO2 value (7-day period) as the reference value for the measured value recording.
A sufficient supply of fresh air within the 7-day period is necessary to ensure a correct measurement result.
3.4.6. CO2 sensor factory reset
To reset the sensor to factory sengs, use the key combinaon. This key combinaon only works in the CO2 sensor sengs menu.
Sensor factory reset (up right + down le)
3.4.7. Diagnoscs menu
The diagnoscs menu displays various informaon, such as device type, soware version, status of the inputs and outputs, controller status (current actuang value) and serial numbers. To access the diagnoscs menu, navigate to the header in the start window of the parameter menu and press the central buon.
3.4.8. Exit parameter menu / Apply configuraon
Mark the header with the “up / down” buons and press the “center le” buon to exit the parameter menu.
The configured values are only applied when you exit the parameter menu.
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4. funconal descripon (controller)
4.1. Device funcons
4.1.1. Sensors
Sensor measured values can be read out via KNX or shown on the display. A variant-specific configuraon corresponding to the hardware version is required via the ETS.
Temperature By default, the value of the internal temperature sensor is used as the actual value for the internal controller. The universal input can be parameterized as a sensor input for an external sensor (NTC10K) and used as an actual value transmier for the controller. The sensor value of the external sensor is shown in the display as a temperature display. The measuring range of the sensors is 0…50°C, (resoluon: 0.1°). Both sensors can be offset to adjust the measured value.
Humidity The measuring range of the sensor is 0…100% (resoluon 0.1%). The sensor can be offset to adjust the measured value. The value is not processed internally!
CO2 The measuring range of the sensor is 0…2000 ppm, (resoluon 10 ppm). It is possible to adjust the measured value for the sensor (for calibraon with an external measuring device. The value is not processed internally!
4.1.2. Inputs
The KNX version of the device has 2 inputs. The internal input states are OR-linked with the corresponding Group Objects when configured as window, dew point and presence contact. With change-over configuraon, the corresponding group object overrides the internal status! Room occupancy, change-over and keycard can only be assigned to one input; the other funcons can be used on several inputs simultaneously. Universal Input 1 (low voltage) Connecon of an NTC10K or a potenal-free contact Input 2 (AO2DO=230V, 3AO=low voltage) Connecon of a potenal-free contact. ATTENTION 230V! Observe wiring diagram!
Configurable funcons: · External temperature sensor
NTC10K connecon opon for recording and using temperature values away from the devicev · Change over sensor / DI
In a 2-pipe system, the heang or cooling mode is specified for the controller via a change-over contact. The change-over funcon is acvated via the configuraon of a digital input or specified via a group object. An input acvated as a change-over contact deacvates the specificaon via KNX. If the input is configured as a normally open contact, heang mode is enabled when the input is open and cooling mode is enabled when the input is closed. If a change-over sensor is selected, cooling mode <22° is enabled and heang mode is enabled from a temperature of >25°C. Aenon: When using the change-over funcon, the heang (terminal 5) and cooling (terminal 4) outputs are controlled in parallel. · Window If the window contact is acve (window open = energy block acve), the setpoints for heang and cooling are automacally set to frost protecon or heat protecon. The fan switches to automac mode and returns to the previous state aer leaving the energy block. The window contact/energy lock funcon is acvated via the configuraon of the digital input or via Group object. The last changed value determines the status. When the funcon is acvated, the window symbol is automacally displayed in the “Window open” state if the symbol has been assigned a posion in the footer and the heang and cooling controllers regulate to the frost protecon or heat protecon setpoint value. · Presence When using the presence funcon, a disncon is made between the comfort and standby room operang modes. In standby, the setpoint is lowered (heang) or raised (cooling) by the setpoint shi standby parameter. Comfort corresponds to normal operaon of the controller. · Dewpoint An acve dew point contact blocks the cooling controller. When the dew point is acve, the dew point symbol is automacally displayed if the symbol has been assigned a posion in the footer. · Keycard Switch Without a card in the keycard switch, operaon of the buons is disabled, the display is switched off and the controller regulates to the setpoints of the “Standby” state (decrease setpoint heang by parameter setpoint shi standby and increase setpoint cooling by configured value). If the keycard is not inserted, the device can be switched on and comfort mode acvated using the “Central buon”. · Alert message An alarm symbol can be displayed in the header. (see ,,Header” S.8)
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4.1.3. Outputs
The outputs are assigned fixed funcons. Depending on the device type, these can be manually overridden in different ways. For example, the digital outputs can only be manually overridden in conjuncon with the controller mode or the fan speed. The analog outputs can be used freely.
Configuraon of the outputs (Relay: 5DO-, EC/HC AO2DO variant | Analogue Output: EC 3AO-, HC 3AO variant) For the two relay / analog outputs (heang / cooling), the direcon of acon can be changed for adaptaon to the exisng actuator (normally closed or normally open).
6 Way valve applicaon (HC AO2DO-, HC 3AO-, EC 3AO variant) In addion to various 6-way valve types, you can select whether the control value of the heang or cooling controller is also output on the 6-way valve output as a connuous 0-10V signal in parallel with the heang or cooling output. If 0: 0-10V connuous heang and cooling signal is selected, the 6-way valve output runs as a 010V signal in both cases! If a 6-way valve type is selected for the EC-3AO variant, both the heang and cooling outputs simultaneously output the signal converted to the configured 6-way valve type!
Controller override The control funcons can be decoupled from the internal controller and overridden and specified externally via communicaon objects.
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4.2. Regelung
The JOY has a PI or two-point controller for heang and cooling. The control variable is output via the relays/outputs. The controller starts aer a cold start (voltage on) of the device with a 30-second delay.
rY[%] 100
Heating
ECO Dead band Comfort
Dead band
Cooling
Comfort Unoccupied
ECO Building protection
Comfort Unoccupied
ECO
Building protection
0
0
7
16 19 20 22 23 26
35 rX [°C]
4.2.1. PI-controller
The me response of the PI controller is determined by the parameters Xp and Tn. Due to the proporonal component, the control value reacts immediately to any control difference, while the integral component only takes effect over me. The resulng control value is output as a pulse-width modulated signal, as a connuous signal (3AO) or as an analog signal adapted to the corresponding 6-way valve type.
Proporonal band Xp heang/cooling The proporonal range specifies the deviaon at which the controller outputs the maximum control value (100%). A small Xp leads to a stronger control intervenon of the proporonal component with small deviaons, but increases the oscillaon tendency of the control loop.
Adjustment me Tn heang/cooling The me that elapses unl the I component generates the same control amplitude as is generated immediately as a result of the P component. To increase the integral component of the controller, the reset me must be reduced.
Cycle me The cycle me when using the PI controller with digital valve switching outputs. The switch-on/switch-off me of the outputs is calculated as a funcon of the control value. Example: PWM me=30min, control value y=50%-> Tone=15min, Toff=15min
4.2.2. Two-point controller
If the heang setpoint minus half the hysteresis is undershot, the controller switches the heang output on and if the heang setpoint plus hysteresis threshold is exceeded, it switches it off. It behaves accordingly in cooling mode.
Hysteresis Determines the switch-on/switch-off behavior of the two-point controller. The heang controller switches on when the actual value falls below the heang setpoint minus half the hysteresis and heats unl the actual value has exceeded the heang setpoint plus half the hysteresis. The hysteresis prevents the actuator from “flickering” when the actual value is within the setpoint range.
4.2.3. Valve protecon funcon
A valve protecon funcon is implemented to ensure that the valves remain funconal even if they are not used for a longer period of me. Valve protecon is only started if the corresponding valve (heang or cooling) has not been acvated for more than 96 hours.
The me is set to Friday 5:00h (heang valve) or 5:30h (cooling valve). The respecve valve is then switched on for 5 minutes. The valve protecon funcon can be deacvated.
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4.3. Operang modes
The operang modes are switched via communicaon objects (KO), operang procedures, inputs or internal funcons and are divided into two groups: Room operang modes: Comfort (occupied) | Standby (unoccupied) | ECO | Building Protecon (frost protecon/heat protecon) Device operang modes: Sleep mode | Keycard mode
4.3.1. Room operang mode Comfort (occupied)
In comfort or normal mode, the controller works with the heang and cooling setpoint calculated from the basic setpoint GO71 and the (manual) setpoint set by the user on the device. The device is fully operaonal, the display and buons can be used depending on the configuraon The comfort room operang mode can be specified via GO51 (room operang mode default HVAC mode) or GO53 (room operang mode default switchover presence/ standby).
4.3.2. Room operang mode Standby (unoccupied)
In standby room operang mode, the controller works with the heang and cooling setpoint calculated from the basic setpoint GO71 and the setpoint configured for the setpoint increase/decrease. The respecve setpoints for the “Standby” room operang mode can be configured via the ETS in the configuraon parameter Controller seng “Heang” > Setpoint reducon “Standby” (heang) or Controller seng cooling > Setpoint increase “Standby” (cooling). The device is ready for operaon, the display is switched on and the device switches to the “Comfort” room operang mode when the buons are pressed. The room operang mode standby can be specified via GO51 (room operang mode default HVAC mode) or GO53 (room operang mode default switchover presence/ standby).
4.3.3. Room operang mode ECO
In ECO room operang mode, the controller works with the heang and cooling setpoint calculated from the basic setpoint GO71 and the setpoint configured for the setpoint increase/decrease. The respecve setpoints for the “ECO” room operang mode can be configured via the ETS in the configuraon parameter Controller seng “Heang” > Setpoint reducon “ECO” (heang) or Controller seng cooling > Setpoint increase “ECO” (cooling). The device is ready for operaon, the display is switched on and the device switches to “Comfort” operang mode when the buons are pressed. If ECO mode is acve, the ECO symbol is shown in the header of the main screen. (,,Screen” S.7) The ECO mode can be preset via GO51 (room operang mode default HVAC mode) or GO55 (room operang mode default ECO mode). Alternavely, ECO mode can be acvated/deacvated using the configured middle buon! The last changed default seng determines the status. Special feature GO55 If ECO mode is acve via GO55, the value of the setpoint offset is not taken into account if the presence funcon is not used at the same me. If the presence funcon is used in parallel, it is possible to configure whether the OCCUPIED state overrides an acve ECO mode (overme funcon). If presence mode is used, the behavior of the setpoint set depends on the communicaon object.
4.3.4. Room operang mode Building Protecon (frost/heang protecon)
When the Building Protecon room operang mode is acve, the controller works with internal values to perform a frost protecon / heat protecon funcon. If the temperature falls below (frost protecon) or exceeds (heat protecon) the previously configured temperature limit values (HVAC > Controller general), the configured outputs are acvated to prevent a further reducon (frost protecon) or increase (heat protecon) of the temperature. If the Building Protecon room operang mode is acve, the display is switched on and the corresponding symbol is shown in the header of the main screen. (,,Screen” S.7). The Building Protecon room operang mode can be specified via GO51 (default HVAC mode room operang mode) or GO57 (default frost/heat protecon room operang mode).
4.3.5. Device operang mode Sleep mode
When the device operang mode Sleep mode is acve, the controller works with internal values to perform a frost protecon / heat protecon funcon. The control funcon corresponds to the Building Protecon room operang mode. If the device operang mode Sleep mode is acve, the display is switched off and the buons, with the excepon of the ENTER buon, are locked. The device operang mode Sleep mode can be specified via GO12 (Display default status device ON/OFF). Alternavely, the sleep mode can be acvated/deacvated by a long press on the middle buon! The last changed seng determines the status. The device can only be switched off manually if no keycard funcon is used.
4.3.6. Device operang mode Keycard mode
When keycard mode is acvated, the appliance operates in comfort (occupied) or standby (unoccupied) mode. In contrast to the room operang mode Standby, the display is switched off in the device operang mode Keycard mode. The device operang mode Keycard mode can be acvated via a configured input (,,Inputs” S.15). If the keycard is not inserted, the device can be switched on with the “Central buon” and the Comfort room operang mode can be acvated.
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5. ETS- Configuraon parameter
The following parameters are shown/hidden depending on the version and configuration.
5.1. Configuraon parameter ,,General”
PARAMETERPAGE
PARAMETER Device name
Idenfication
Device type
Temperature sensor Humidity sensor CO2 Sensor
DESCRIPTION
Maximum 24 ASCII characters. Device type selecon:
– FC 5DO – FC EC AO2DO – FC EC 3AO
– HC AO2DO – HC 3AO
Selecon of activated sensor parameter pages under the “Sensors” tab, as well as function-specific parameters.
Basic seings Display Date & time
Keys
Outputs active Display language Send ,,in operation” Reset via GO Device state aer reset Values after reset Send warnings, notices, alerts Display brightness Ring brightness Standby via GO
Home Screen
Symbol 1 (footer) Symbol 2-5 (footer) Lock parameter menu Show me Show date Synchronize date & me Funcon center key (ON/OFF)
Funcon upper le key
Funcon upper right key Funcon lower le key Funcon lower right key
Lock / unlock active outputs
Sets the display language.
Activates Group object 1. The operang status is output via the object in the parameterized cycle.
Activates Group object 10.
Sets the device state aer reset (idle state / last state / on)
Sets which values are to be used aer a reset. (keep last values / reset values)
Sets the interval for sent warnings/messages/states
Sets the display brightness
Sets the ring brightness
Sets whether the standby mode can be activated via group object
Sets the display on the main screen:
– Room temperature – Setpoint absoulute – Setpoint offset – Fan stage
– Setpoint offset integer – Setpoint offset without unit – Setpoint offset Kelvin
Sets the symbols for the footer:
– no symbol – Controller operating mode – Presence
– Window / dewpoint – Fan
See symbol 1
Lock / unlock parameter menu
Activates the display of the clock and sets the display format.
Activates the display of the date and sets the display format.
Aktivates Group objects 12 & 13.
Sets the function of the middle buon (ON/OFF):
– No special funcon – Toggle presence – Occupied
– Unoccupied – Toggle ECO Mode – Key locked
Sets the button funcon:
– Light 1 toggle – Light 2 toggle – Light 3 toggle – Light 1 On – Light 1 Off – Light 2 On – Light 2 Off – Light 3 On – Light 3 Off – Light 1 Dimm Up – Light 1 Dimm Down – Light 2 Dimm Up – Light 2 Dimm Down – Light 3 Dimm Up – Light 3 Dimm Down – Light 1 On/Dimm Up – Light 1 Off/Dimm Down
– Light 2 On/Dimm Up – Light 2 Off/Dimm Down – Light 3 On/Dimm Up – Light 3 Off/Dimm Down – Blind 1 Up – Blind 1 Down – Blind 2 Up – Blind 2 Down – Blind 3 Up – Blind 3 Down – Controller mode toggle – Controller mode
Heating/Cooling/Auto – Controller mode
Heating/Cooling/Auto/Off – Controller mode Heating – Controller mode Cooling
See function upper le key
See function upper le key
See function upper le key
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5.2. Configuraon parameter ,,HVAC”
PARAMETERPAGE
PARAMETER Output HVAC Mode
HVAC general
HVAC mode aer reset
Override ECO mode
Setpoint format
Setpoint
Setpoint increment Base setpoint Setpoint range
Offset behaviour at change of presence
Send setpoint Heartbeat Setpoint Change of Value greater
Controller mode
Deadband Base setpoint Show controller mode Valve protection Frost protection Overheat protecon Minimum controller value behavior Send controller mode Hearbeat controller mode
Controller general
6-way valve
Controller sengs ,,heang”
Heating 100% (generic 6 way valve) Heating 0% (generic 6 way valve) Cooling 100% (generic 6 way valve) Cooling 0% (generic 6 way valve) Send controller value Change of value greater Heartbeat controller value Setpoint lowering ,,Standby” (Heang) Setpoint lowering ,,ECO” (Heang)
Controller characteristic
Hysteresis (Heating) Cycle me Analog output direction “Heating”
PI controller parameter (Xp/Tn)
DESCRIPTION Sets the room operaon mode ouput. Sets the room operang mode after a reset until the first communicaon with the building control system (last value / ECO / Comfort / Standby) Keep ECO / overwrite ECO Sets the setpoint format. (setpoint offset / setpoint absolute / setpoint offset integer / setpoint offset unitless / setpoint offset Kelvin ) Sets the increment of the set value. (0,1 K / 0,5 K / 1 K ) Sets the base setpoint. Sets the setpoint range. Sets the offset behaviour regarding the setpoint offset during occupaon change – Keep value – Reset value – Reset value (unoccupied) / keep setpoint (occupied) Sets the setpoint transmission behavior. (Change of Value / cyclic / Change of Value & cyclic) Sets the setpoint heartbeat Sets the required size for a change of value. Sets the controller mode (Heang mode / Cooling mode / heang/cooling mode (2 pipe) / Auto (4 pipe) ) Sets the deadband around the base setpoint Activates / Deactivates the display of the controller mode Activates / Deactivates the valve protecon function Sets the temperature limit for the frost protecon funcon. Sets the temperature limit for the heat protecon funcon. See illustration: Active / Inactive Sets the controller mode transmission behavior. (Change of Value / cyclic / Change of Value & cyclic) Sets the transmission cycle for the operang mode.
Sets the 6-way valve – Inactive – 2-10V (e.g. Belimo) – 2-10V inverted (e.g. Belimo) – 0-10V DN15 (e.g. Sauter) – 0-10V DN15 inverted (e.g. Sauter) – 0-10V DN20 (e.g. Sauter) – 0-10V DN20 inverted (e.g. Sauter) – 0-10V constant signal heating – 0-10V constant signal cooling – 10-0V constant signal heating – 10-0V constant signal cooling – User defined 6 way valve
Sets the required size for a value change.
Sets the value for lowering the setpoint in “Standby”. Sets the value for lowering the setpoint in “ECO”. Sets the controller characteristic of the device. (PI / 2 point)
Sets the cycle me
Normally open / normally closed
– Radiator (5K/120min) – Floor heating (4K/100min) – Electric heater(4K/100min)
– Fan coil(4K/90min) – Split unit(4K/90min) – User defined
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Controller sengs ,,cooling” Fan
Xp (user defined) Tn (user defined) Digital output direcon”Heang” Analogue output direcon “Heang” Minimum controller value ,,Heang” Maximum controller value ,,Heang”
Send controller value
Change of value greater Hearbeat controller value Setpoint increase ,,Standby” (Cooling) Setpoint increase ,,ECO” (Cooling)
Controller characteristic
Cycle me
PI controller parameter (Xp/Tn)
Xp (user defined) Tn (user defined) Digital output direcon,,Cooling” Minimum controller value ,,Cooling” Maximum controller value ,,Cooling”
Send controller value
Change of value greater Heartbeat controller value Fan stages Fan assignment Threshold Fan stage 1 Threshold Fan stage 2 Threshold Fan stage 3 Threshold maximum fan stage (100%)
Fan stage “AUTO”
Fan minimum Fan stage minimal Fan maximum Fan start at controller value Start up time fan Follow up time fan Fan stage limit “AUTO”
Output active fan stage
Send controller value
Change of value greater Heartbeat controller value
Sets the actuating variable transmission behavior. (Change of Value / cyclic / Change of Value & cyclic)
Sets the value for increasing the setpoint in “Standby” Sets the value for increasing the setpoint in “ECO”. Defines the control characteristic of the device. (PI / 2 point) Sets the cycle me – Chilled ceiling (5K/240min) – Fan coil (4K/90min) – Split unit (4K/90min) – User defined
Normally open / normally closed
Sets the control variable transmission behavior (Change of Value / cyclic / Change of Value & cyclic)
FC-Variant: Value 1-3 | HC-Variant: Value 1-5 Heating / Cooling / Heating & Cooling
– without AUTO – with AUTO – with AUTO, without manual OFF – without AUTO, without manual OFF
– 1 bit GO – 1 byte percent GO – 1 byte integer GO Sets the controller transmission behavior. – (Change of value/ cyclical / change of value & cyclical)
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5.3. Configuraon parameter ,,Sensors”
PARAMETERPAGE
PARAMETER
Description
Internal temperature sensor External temperature sensor
Offset
Send value
Change of Value greater Heartbeat value
See temperature
Description
Offset
Humidity sensor
Show humidity Send value
Change of Value greater Heartbeat value Description Threshold CO2-alarm Elevation above sea level
CO2 Sensor
Show CO2
Send value
Change of Value greater Heartbeat value
5.4. Configuraon parameter ,,Inputs”
PARAMETERPAGE
PARAMETER
Universal input 1
Type of input
Input direction Send state of input (DI) Heartbeat state of input
Input 2 (230V)
Type of input
Input direction Send state of input (DI) Heartbeat state of input
DESCRIPTION Is displayed in the respective channel. Maximum 12 ASCII characters. Sets the specific offset (sensor correction value). Determines whether the measured value is to be displayed with a specific value change, cyclically, or both. Sets the required value change until the measured value is transferred.
Is displayed in the respective channel. Maximum 12 ASCII characters. Sets the specific offset (sensor correction value). Activates / deactivates the display of measured humidity values on the main screen Defines when the measured value is to be transferred. (Change of Value / cyclic / Change of Value & cyclic) Sets the required value change until the measured value is transferred.
Is displayed in the respective channel. Maximum 12 ASCII characters. Sets the threshold value for a CO2-alarm. Sets the height above sea level of the device locaon Activates / deactivates the display of measured CO2 values on the main screen Defines when the measured value is to be transferred. (Change of Value / cyclic / Change of Value & cyclic) Sets the required value change until the measured value is transferred.
DESCRIPTION Defines the type of input. – Inactive – External temperature sensor – Change over sensor – Change-over DI – Window – Presence – Dew point – Keycard Switch – Alert Set the direcon of the input (normally open / normally closed) Defines when the state of the input is to be transferred. (Change of Value / cyclic / Change of Value & cyclic)
Defines the type of input. – Inactive – Change-Over-DI – Window – Presence – Dew point – Keycard Switch – Alarm message Sets the direction of the input. (normally open / normally closed) Defines when the state of the input is to be transferred. (Change of Value / cyclic / Change of Value & cyclic)
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6. Group objects
The group object structure of all Joy KNX devices is uniform. Depending on the version and configuraon, certain group objects are hidden or not available. In the following the group objects are structured according to their funcon and described accordingly.
6.1. Flags
The communicaon behavior of the individual objects is determined by the so-called flags.
FLAG C-flag R-flag W-flag T-flag
U-flag
I-Flag
DESCRIPTION Activate / deactivate communicaon of objects.
Object reacts to a GroupValueRead telegram from the bus and sends a GroupValueResponse telegram to the bus. (set flag) Object reacts to a GroupValueWrite telegram coming from the bus and overwrites the previous object value. (set flag)
Object outputs each updated value: it sends a GroupValueWrite telegram to the bus. (set flag) The device will respond to a GroupValueResponse telegram coming from the bus for this object, so it overwrites the object value. For a switching actuator, for example, this means that a relay represenng this object is opened or closed. (set flag) Object sends a Group Value Read telegram aer reseing the device to request the object value via a GroupValueResponse. The reason for reseng the device could be a power failure, a reset of the bus or an explicit request for reseng the device via a telegram. (set flag)
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6.2. Group object descripon
The descripon contains the idenficaon (ID), the name and the object function, the data point type, the effective direction (IN = receive / OUT = send), the validity fort he respective device type (FC 5DO, FC EC AO2DO, HC AO2DO, FC EC 3AO), a description of the function, as well as the sowie parameter-specific dependencies.
6.2.1. Group Objects ,,Operaon state”
NR. NAME
OBJECT FUNCTION
DPT
1 Operaon state Send in Operaon
1.001
IN / OUT DESCRIPTION
OUT
Object value = 1 cyclical, if the device is funconing correctly.
DEPENDENCIES General > Basic sengs > send ,,in operation” (interval chosen)
6.2.2. Group Objects ,,Display”
NR. NAME
OBJECT FUNCTION
10
Display
Enforced Software Reset
11
Display
Device state
12
Display
Input device state
13
Display
HMI lock
14
Display
HMI lock fan control
DPT 1.003 1.001 1.001 1.003 1.001
IN / OUT DESCRIPTION
Object value = 1: Soware reset in IN Device (Display).
GO is reset aer execution.
DEPENDENCIES General > Basic settings > Reset via GO: Acve
OUT ON / OFF = Idle state
IN
Object value = 1: Device ON, Object value = 0: Device OFF (Standby)
(Building protecon active)
General > Display > Standby via GO: Acve
IN
Object value = 1: HMI locked, no interaction possible
IN
Object value = 1: Fan stage adjustment locked
6.2.3. Group Objects ,,Alert & Messages”
NR. NAME
OBJECT FUNCTION
DPT
15
Alert & Messages
Alert
1.001
16
Alert & Messages
Input alert
1.002
17
Alert & Messages
Frost alert
1.002
18
Alert & Messages
Overheat alert
1.002
19
Alert & Messages
CO2 value passed
1.002
IN / OUT DESCRIPTION
DEPENDENCIES
OUT
Object value = 1: Warning symbol active. backround lighting flashing
IN
Object value = 1: Warning symbol and backround lighting flashing is activated.
OUT
Active when temperature falls below set temperature
OUT
Active when temperature exceeds set temperature
OUT
Active when set CO2 Value exceeds set value
6.2.4. Group Objects ,,Date & Time”
NR. NAME
OBJECT FUNCTION
20
Time
Time synchronizaon
DPT IN / OUT DESCRIPTION 10.001 IN Time synchronized via GO.
21
Date
Date synchronizaon 11.001 IN Date sychronized via GO.
DEPENDENCIES
General > Date & time > Synchronise date and time: Acve
6.2.5.
NR. 30
Group Objects ,,Light”
NAME
OBJECT FUNCTION
Light 1
Switch
31
Light 1
State Switch
32
Light 1
33
Light 2
34
Light 2
35
Light 2
36
Light 3
37
Light 3
38
Light 3
Dimming relative
Switch State Switch Dimming relative
Switch State Switch Dimming relative
DPT 1.001
1.001
3.007 1.001 1.001 3.007 1.001 1.001 3.007
IN / OUT DESCRIPTION
OUT
Object value = Status of the operating element (buon) set on the device
IN
Object value = Status change of the operating element (push-buon)
OUT
Object value = Dimming value of the control element set on the device
OUT See light 1 Switch
IN See light 1 State Switch
OUT See light 1 Dimming relative
OUT See light 1 Switch
IN See light 1 State Switch
OUT See light 1 Dimming relative
DEPENDENCIES
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6.2.6.
NR. 39
40
41
Group Objects ,,Blind”
NAME
OBJECT FUNCTION
Blind 1
Up / down (long press)
Blind 1
Lamella / stop (short press)
Blind 1
Up / Down (relative)
DPT IN / OUT DESCRIPTION 1.008 OUT 1.009 OUT
3.008 OUT
42
Blind 2
Up / down (long press) 1.008 OUT
43
Blind 2
Lamella / stop (short press)
1.009
OUT
Object value = Status according to actuation of the operating elements
(buons)
44
Blind 2
Up / Down (relative) 3.008 OUT
45
Blind 3
Up / down (long press) 1.008 OUT
46
Blind 3
Lamella / stop (short press)
1.009
OUT
47
Blind 3
Up / Down (relative) 3.008 OUT
DEPENDENCIES
6.2.7.
NR. 50
51 52 53 54 55 56 57 58
59
60
61 70 71 72 73
Group Objects ,,HVAC”
NAME
OBJECT FUNCTION
Room operaon mode
HVAC-Mode
Room operaon mode
Input HVAC-Mode
Room operaon mode
Presence/Standby
Room operaon mode
Input Presence/Standby
Room operaon mode
Output ECO-Mode
Room operaon mode
Input ECO-Mode
Room operaon mode
Building protection
Room operaon mode
Input Building protection
Energylock
Condensaon
Energylock
Input Condensation
Energylock Output Window switch
Energylock Input Window switch
Setpoint
Output setpoint (absolute)
Setpoint Output setpoint (relative)
Setpoint Setpoint
Input setpoint (absolute) Input setpoint (relative)
DPT 20.102
20.102 1.011 1.011 1.011 1.011 1.011 1.011 1.011
1.011
1.019
1.019 9.001 9.002 9.001 9.002
IN / OUT DESCRIPTION
DEPENDENCIES
Object value = Active room operating
OUT
mode. 1: Comfort | 2: Standby | 3: ECO |
HVAC > HVAC general > Output HVAC-
4: Building Protecon
mode:
Object value = sets room operating mode 1 Byte-GO / both
IN 1: Comfort | 2: Standby | 3: ECO |
4: Building Protecon
OUT
Object value = 1: Symbol is shown on the display, Function is active
IN
Object value = 1: Symbol is activated on the display, Room operating mode is set
OUT IN
Object value = 1: Symbol is shown on the display, Function is active Object value = 1: Symbol is activated on the display, Room operating mode is set
HVAC > HVAC general > Output HVACmode: 1 Bit-GO / both
OUT
Object value = 1: Symbol is shown on the display, Function is active
IN
Object value = 1: Symbol is activated on the display, Room operating mode is set
Object value = 1: Symbol is shown on the
OUT display, controller operating: Additional
cooling controller locked
Object value = 1: Symbol is activated on
IN the display, Controller operating: cooling
controller lock is set
Object value = 1: Symbol is shown on the
OUT
display Controller operating: Addional Energy
lock active
Object value = 1: Symbol is activated on
IN the display, Controller operating: Energy
lock is set
OUT
Object value = (absolute) Setpoint of the device (e.g.: 23°C)
Object value = (relative) Setpoint of the
OUT device (Setpoint shi to the base
setpoint e.g.: +2K)
IN
Object value = absolute setpoint (e.g.: 23°C)
IN
Object value = Setpoint relative (Setpoint shi to base setpoint e.g.: +2K)
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6.2.8.
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82
83 84 85 86 87 88 89 90 91 92 93
Group Objects ,,Fan control”
NAME
OBJECT FUNCTION
Fan control
Fan stage [%]
Fan control
Input fan stage [%]
Fan control
Fan stage integer
Fan control Input fan stage integer
Fan control Fan control Fan control Fan control Fan control Fan control Fan control Fan control Fan control Fan control
Fan stage 1 active Fan stage 2 active Fan stage 3 active Fan stage 4 active Fan stage 5 active Fan stage auto active Input fan stage auto
active Input fan stage integer
Fan stage 1 active
Fan stage 2 active
DPT 5.001
5.001
5.100 5.100 1.001
IN / OUT DESCRIPTION
DEPENDENCIES
Object value = Fan stage Percentage
OUT IN
value scaled to the parameterized
number of fan stages (2 fan stages: LS0 = 0%, LS1 = 50%, LS2 = 100%)
Object value = sets the fan stage percentage value scaled to the parameterized number of fan stages (2
General > Identification > Device type: FC 5DO / FC EC AO2DO / FC 3AO HVAC > Fan > Output active fan stage: 1 Byte percent GO
fan stages: LS0 = 0%, LS1 = 50%, LS2 =
100%)
Object value = integer value of the active
OUT fan stage
(2 LS: LS0 = 0, LS1 = 1, LS2 = 2)
HVAC > Fan > Output active fan stage:
Object value = sets the value o he
1 Byte integer GO
IN active fan stage
(2 LS: LS0 = 0, LS1 = 1, LS2 = 2)
OUT 3 stage type only
1.001 OUT 3 stage type only
1.001 OUT 3 stage type only
1.001 1.001
OUT 5 stage type only OUT 5 stage type only
HVAC > Fan > Output active fan stage: 1 Bit GO
1.001 OUT 5 stage type only
1.001 OUT 5 stage type only
1.001 1.001 1.001
OUT 5 stage type only
OUT
Object value = 1, if fan stage active, 0, if fan stage not active
IN
Object value = 1, to set fan stage active, 0, to set fan stage not active
6.2.9. Group Objects ,,Controller output”
NR. NAME
OBJECT FUNCTION
DPT IN / OUT DESCRIPTION
100 Controller mode Heating/cooling
1.100 OUT Object value = 1: heang mode active
DEPENDENCIES
101 Controller mode Change over input
1.100
IN Object value = 1: heang mode is acvated
102
Output 6 way valve
Output value PI
5.001
110
Controller output heang
Controller value heating
5.001
111
Controller output heang
Output value 2 point/PWM
1.001
112
Controller output heang
Input value
5.001
113
Controller output heang
Input value continous
1.015
114
Controller output heang
Output active
5.001
115
Controller output heang
Output value cooling
1.001
120
Controller output cooling
Output value 2 point/PWM
5.001
OUT
HVAC > Regler general > Output 6 way valve: 6 way valve
OUT
Object value shows the controller heang variable
OUT
Object value shows the controller heang variable
General > Identification > Device selection: FC 5DO / FC EC AO2DO / HC AO2DO
OUT
General > Identification > Device selection: FC 3AO / 3AO
IN
Object value sets the controller automatic mode
IN Object value sets the controller variable
OUT
OUT
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Controller output cooling
Input value
1.001 OUT
122
Controller output cooling
Input value continous
5.001
OUT
123
Controller output cooling
Output active
1.015
IN
124
Controller output cooling
Heating/cooling
5.001
IN
125
Controller output cooling
Change over input
1.001 OUT
6.2.10. Group Objects ,,Sensors”
NR.
NAME
OBJECT FUNCTION
130
Sensors
Temperature
External 140 Temperature
sensor
141 Temperature
Temperature
Overwrite internal temperature value
150
Humidity
Relative humidity
160
CO2
CO2
DPT IN / OUT DESCRIPTION 9.001 OUT Object value = Sensor value
9.001 OUT Object value = Sensor value
9.001 9.007 9.008
IN Object value = Sensor value OUT Object value = Sensor value OUT Object value = Sensor value
6.2.11. Group Objects ,,Inputs”
NR.
NAME
OBJECT FUNCTION
170 Digital input
State digital input 1
DPT IN / OUT DESCRIPTION 1.011 OUT Object value = Input state
180 Digital input
State digital input 2
1.011 OUT Object value = Input state
DEPENDENCIES General > Identification > Temperature sensor: Active
General > Identification > Temperature sensor: Active
General > Identification > Temperature sensor: Active General > Identification > humidity sensor: Active General > Identification > CO2 sensor: Active
DEPENDENCIES Inputs > Universal input 1 > type of input: External temperature sensor / Change over DI / Window / Presence / Dewpoint / Key card / Alert Input > Input 2 (230V) > type of input: Change over DI / Window / Presence / Dewpoint / Key card / Alert
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7. KNX Specificaon
The Joy KNX devcies have been developed in accordance with the current KNX specification v2.1. Further information can be found at:
https://my.knx.org/
Thermokon Sensortechnik GmbH
Thermokon Sensortechnik GmbH Platanenweg 1
35756 Mittenaar-Offenbach Germany
www.thermokon.com
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Documents / Resources
![]() |
thermokon JOY HC AO2DO RS485 Room Controller [pdf] Instruction Manual JOY HC AO2DO RS485 Room Controller, JOY HC AO2DO RS485, Room Controller, Controller |