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Automation and Robotics Week 01 Theory Notes 20ME51I.pdfTHANMAY JS
Identify the possibilities of automation in a production system Discuss Hierarchy of Industrial Automation,
Industrial Automation pyramid. Present an Overview on the Levels of Automation-
• Device level
• Machine Level
• Cell Level
• Plant Level
• Enterprise Level
Automation and Robotics Week 01 Theory Notes 20ME51I.pdfTHANMAY JS
Identify the possibilities of automation in a production system Discuss Hierarchy of Industrial Automation,
Industrial Automation pyramid. Present an Overview on the Levels of Automation-
• Device level
• Machine Level
• Cell Level
• Plant Level
• Enterprise Level
Ưu điểm của AC Servo Siemens Sinamics V90
HIỆU SUẤT TỐI ƯU
Tính năng Tuning một lần và cho phép tuning theo thời gian thực giúp tối ưu hóa hiệu suất của hệ thống.
Tần số xung ngõ vào cao lên đên 1MHz.
Encoder khác nhau giúp đáp ứng các yêu cầu ứng dụng khác nhau.
DỄ SỬ DỤNG
Kết nối đơn giản với hệ thống điều khiển
Điều chỉnh dể dàng và nhân bản thông số
Vận hành dễ dàng với SINAMICS V-ASSISTANT
Tích hợp dễ dàng qua PTI, PROFINET, USS, Modbus RTU
TIẾT KIỆM CHI PHÍ
Tích hợp: Pulse train positioning, internal positioning với traversing block hoặc Modbus
Tích hợp điện trở phanh trong tất cả các kích thước khung
Tích hợp holding brake switch (Frame size 400V)
HOẠT ĐỘNG TIN CẬY
Vòng bi motor chất lượng cao
Tiêu chuẩn cấp độ bảo vệ cho tất cả các loại motor IP65
Tích hợp tính năng bảo vệ Torque Off (STO)
Régulation de niveau en boucle fermée pour différents réglages PID, exercice ...Nicolas JOUVE
Le modèle de simulation dynamique de régulation de niveau est utilisé pour comparer les réponses en boucle fermée pour différents réglages du régulateur. Le procédé est ensuite identifié et les paramètres du régulateur PID calculés et testés.
Les actionneurs-et-les-capteurs-www.cours-online.commorin moli
Les actionneurs et les capteurs
Ce support de cours Capteurs et actionneurs en instrumentation est destiné aux étudiants génie électrique, électronique , électromécanique et mécatronique .
Automation and Robotics Week 04 Theory Notes 20ME51I.pdfTHANMAY JS
Working with HMI software Tool
• Configure PLC with HMI
• Animation with graphical objects
• Animate objects on an HMI screen to
monitor motor status
• Trend the data of a process parameter
using a trend tool.
• Create user groups and monitor
screens with proper authentication.
• Use security features to do tag logging
and command execution
Ưu điểm của AC Servo Siemens Sinamics V90
HIỆU SUẤT TỐI ƯU
Tính năng Tuning một lần và cho phép tuning theo thời gian thực giúp tối ưu hóa hiệu suất của hệ thống.
Tần số xung ngõ vào cao lên đên 1MHz.
Encoder khác nhau giúp đáp ứng các yêu cầu ứng dụng khác nhau.
DỄ SỬ DỤNG
Kết nối đơn giản với hệ thống điều khiển
Điều chỉnh dể dàng và nhân bản thông số
Vận hành dễ dàng với SINAMICS V-ASSISTANT
Tích hợp dễ dàng qua PTI, PROFINET, USS, Modbus RTU
TIẾT KIỆM CHI PHÍ
Tích hợp: Pulse train positioning, internal positioning với traversing block hoặc Modbus
Tích hợp điện trở phanh trong tất cả các kích thước khung
Tích hợp holding brake switch (Frame size 400V)
HOẠT ĐỘNG TIN CẬY
Vòng bi motor chất lượng cao
Tiêu chuẩn cấp độ bảo vệ cho tất cả các loại motor IP65
Tích hợp tính năng bảo vệ Torque Off (STO)
Régulation de niveau en boucle fermée pour différents réglages PID, exercice ...Nicolas JOUVE
Le modèle de simulation dynamique de régulation de niveau est utilisé pour comparer les réponses en boucle fermée pour différents réglages du régulateur. Le procédé est ensuite identifié et les paramètres du régulateur PID calculés et testés.
Les actionneurs-et-les-capteurs-www.cours-online.commorin moli
Les actionneurs et les capteurs
Ce support de cours Capteurs et actionneurs en instrumentation est destiné aux étudiants génie électrique, électronique , électromécanique et mécatronique .
Automation and Robotics Week 04 Theory Notes 20ME51I.pdfTHANMAY JS
Working with HMI software Tool
• Configure PLC with HMI
• Animation with graphical objects
• Animate objects on an HMI screen to
monitor motor status
• Trend the data of a process parameter
using a trend tool.
• Create user groups and monitor
screens with proper authentication.
• Use security features to do tag logging
and command execution
KLEA( ENERGY ANALYZER ) & ECRAS ( MULTIMETER ) -KLEMSAN ELECTRIC ELECTRONICdanto .
Who Should Use It?
Users who want to measure and report the energy quality of their establishment.
Users who want to have energy efficiency in their establishment.
Users who want to monitor and report the department energy costs in establishments.
Shinko FCL Series 1/32 DIN Digital Temperature Controller - Available at the ...Mod-Tronic
"Get Shinko's most compact and high performance temperature & recording instrumentation at unbelievingly lowest prices. This popular FCL Series 1/32 DIN Digital Temperature Controller from Shinko is also available in 1/16 DIN, 1/8 DIN and 1/4 DIN sizes.
Visit http://www.mod-tronic.com/shinko_fcl.html for detailed features and specifications of this product."
Siemens Terminal Box Controller (APOGEE Automation System )CONTROLS & SYSTEMS
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The main purpose of HVAC is to provide the people working inside the building with “CONDITIONED AIR” so that they will have a comfortable and safe work environment.
A BMS system collects the operating information required for intelligent building management.
It analyses the operation of the building systems by viewing all important temperatures, humidities and equipment status.
To:
Ensures energy savings
Improves building operations
Improves building operations allowing remote control/over-ride where necessary
Improves building management by means reporting and traceability
Improves building management by means reporting and traceability
Improves building management by having a faster reaction time to problems
Synco tm 700 controller operation and commissioning part 1CONTROLS & SYSTEMS
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In This PPT we are discussed about complete details of that product (Use,Operation, Technical details, Dimensions, Wiring, and etc..)
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In This PPT we are discussed about complete about Siemens Desigo V4_3rd-Party Lon-Integration IntoPX_Step by Step..
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Siemens GBB/GIB Rotary Actuator Installation InstructionsCONTROLS & SYSTEMS
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Fire safety is the set of practices intended to reduce the destruction caused by fire. ... Threats to fire safety are commonly referred to as fire hazards. A fire hazard may include a situation that increases the likelihood of a fire or may impede escape in the event a fire occurs.
We Provide Complete Automation Solution for Humidification Plants and We Supply AHU Control Panel,DDC Control Panel,Digital Thermostat,Humidity & Temperature sensors,Control Valves,Liquid Analyser,Gas Detector,Damper Actuators ,Vfd Drives,Monitoring & Recording system,and so on..
The Perfect solution to Balance Product Quality & Operating Cost
Our Solution Partner Building Technologies SIEMENS
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Water scarcity is the lack of fresh water resources to meet the standard water demand. There are two type of water scarcity. One is physical. The other is economic water scarcity.
Welcome to WIPAC Monthly the magazine brought to you by the LinkedIn Group Water Industry Process Automation & Control.
In this month's edition, along with this month's industry news to celebrate the 13 years since the group was created we have articles including
A case study of the used of Advanced Process Control at the Wastewater Treatment works at Lleida in Spain
A look back on an article on smart wastewater networks in order to see how the industry has measured up in the interim around the adoption of Digital Transformation in the Water Industry.
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptxR&R Consult
CFD analysis is incredibly effective at solving mysteries and improving the performance of complex systems!
Here's a great example: At a large natural gas-fired power plant, where they use waste heat to generate steam and energy, they were puzzled that their boiler wasn't producing as much steam as expected.
R&R and Tetra Engineering Group Inc. were asked to solve the issue with reduced steam production.
An inspection had shown that a significant amount of hot flue gas was bypassing the boiler tubes, where the heat was supposed to be transferred.
R&R Consult conducted a CFD analysis, which revealed that 6.3% of the flue gas was bypassing the boiler tubes without transferring heat. The analysis also showed that the flue gas was instead being directed along the sides of the boiler and between the modules that were supposed to capture the heat. This was the cause of the reduced performance.
Based on our results, Tetra Engineering installed covering plates to reduce the bypass flow. This improved the boiler's performance and increased electricity production.
It is always satisfying when we can help solve complex challenges like this. Do your systems also need a check-up or optimization? Give us a call!
Work done in cooperation with James Malloy and David Moelling from Tetra Engineering.
More examples of our work https://www.r-r-consult.dk/en/cases-en/
Final project report on grocery store management system..pdfKamal Acharya
In today’s fast-changing business environment, it’s extremely important to be able to respond to client needs in the most effective and timely manner. If your customers wish to see your business online and have instant access to your products or services.
Online Grocery Store is an e-commerce website, which retails various grocery products. This project allows viewing various products available enables registered users to purchase desired products instantly using Paytm, UPI payment processor (Instant Pay) and also can place order by using Cash on Delivery (Pay Later) option. This project provides an easy access to Administrators and Managers to view orders placed using Pay Later and Instant Pay options.
In order to develop an e-commerce website, a number of Technologies must be studied and understood. These include multi-tiered architecture, server and client-side scripting techniques, implementation technologies, programming language (such as PHP, HTML, CSS, JavaScript) and MySQL relational databases. This is a project with the objective to develop a basic website where a consumer is provided with a shopping cart website and also to know about the technologies used to develop such a website.
This document will discuss each of the underlying technologies to create and implement an e- commerce website.
COLLEGE BUS MANAGEMENT SYSTEM PROJECT REPORT.pdfKamal Acharya
The College Bus Management system is completely developed by Visual Basic .NET Version. The application is connect with most secured database language MS SQL Server. The application is develop by using best combination of front-end and back-end languages. The application is totally design like flat user interface. This flat user interface is more attractive user interface in 2017. The application is gives more important to the system functionality. The application is to manage the student’s details, driver’s details, bus details, bus route details, bus fees details and more. The application has only one unit for admin. The admin can manage the entire application. The admin can login into the application by using username and password of the admin. The application is develop for big and small colleges. It is more user friendly for non-computer person. Even they can easily learn how to manage the application within hours. The application is more secure by the admin. The system will give an effective output for the VB.Net and SQL Server given as input to the system. The compiled java program given as input to the system, after scanning the program will generate different reports. The application generates the report for users. The admin can view and download the report of the data. The application deliver the excel format reports. Because, excel formatted reports is very easy to understand the income and expense of the college bus. This application is mainly develop for windows operating system users. In 2017, 73% of people enterprises are using windows operating system. So the application will easily install for all the windows operating system users. The application-developed size is very low. The application consumes very low space in disk. Therefore, the user can allocate very minimum local disk space for this application.
Explore the innovative world of trenchless pipe repair with our comprehensive guide, "The Benefits and Techniques of Trenchless Pipe Repair." This document delves into the modern methods of repairing underground pipes without the need for extensive excavation, highlighting the numerous advantages and the latest techniques used in the industry.
Learn about the cost savings, reduced environmental impact, and minimal disruption associated with trenchless technology. Discover detailed explanations of popular techniques such as pipe bursting, cured-in-place pipe (CIPP) lining, and directional drilling. Understand how these methods can be applied to various types of infrastructure, from residential plumbing to large-scale municipal systems.
Ideal for homeowners, contractors, engineers, and anyone interested in modern plumbing solutions, this guide provides valuable insights into why trenchless pipe repair is becoming the preferred choice for pipe rehabilitation. Stay informed about the latest advancements and best practices in the field.
Quality defects in TMT Bars, Possible causes and Potential Solutions.PrashantGoswami42
Maintaining high-quality standards in the production of TMT bars is crucial for ensuring structural integrity in construction. Addressing common defects through careful monitoring, standardized processes, and advanced technology can significantly improve the quality of TMT bars. Continuous training and adherence to quality control measures will also play a pivotal role in minimizing these defects.
Forklift Classes Overview by Intella PartsIntella Parts
Discover the different forklift classes and their specific applications. Learn how to choose the right forklift for your needs to ensure safety, efficiency, and compliance in your operations.
For more technical information, visit our website https://intellaparts.com
2. Overview of SyncoTM Communication
ERR
RXB
Clima
RMU..
Heating
RMH
Room
QAW
+ -
T
+
RMU...RMH... RXB QAW740
Process integration Optimum control thanks to data
exchange between SyncoTM devices
Integration of
operation
Using the OCI700.1, the controllers
can be operated via bus
3. Straight forward Commissioning
Basic settings
Device address: 1
Dec bus power supp: On
Clock time op: Master
Rem set clock slave: Yes
Commissioning of bus on site with the
operator unit, no tools required
Automatic data exchange between the
selected zones (KNX LTE mode)
Primary controllers receive all relevant
data via bus (-> optimum operation)
Bus is powered via the controllers (every
controller delivers its share)
To activate communication, a specific
controller device address must be entered
and, depending on demand, the bus
power supply must be activated.
5. Device / physical or individual address
0 . 2 . 13
Physical address
• or
Individual address
Area Line Device
address
Why do we need a device address?
Thedevice addressreferstoa specific device. Thiswill ensurethefeatures
Settingsofparameterswith ACS,ascommunicationbetween ACSandbusdevice
usesonlythis addresstype
Demandalgorithmforheatingandcooling demandwill be abletoidentifythe
devices
Detectionofcommunicationfaults
(e.g. >1 outsidetemperaturesensor)
Attention:
Devices address andgeographicalzonearedifferent settingsandhavenothing to
do witheachother!
6. Zone Concept
T Outside Z1 T Outside Z1T Outside Z1
T Room GZ1 T Room GZ1
Outside temperature zone Z1
Geographical zone GZ1
Automatic data exchange by selecting a zone:
Geographical zone
Heat distribution / refrigeration distribution / DHW zone
Outside temperature / solar and wind zone
Holidays / special day zone
7. Planning- and Commissioning Report
Possible Settings RMU RMH QAW RXB 1 2 3 4
Plant HVAC Heating
Room description Hall Hall Hall
Device name X X - - HVAC Heating
Type of Device
RMU
7..
RMH,
RMZ
QAW
740
RXB
.... RMU710 RMH760 QAW740
Basic type X X - X A03 0-2
Device address [ 0...255 ] X X X X 1 2 3
Decentral bus pow er supply [ Off, On ] X X - - On On
Clock time operation [ Autonomous, Slave, Master ] X X - - M S
Remote setting clock slave [ No, Yes ] X X - - Yes Yes
Remote reset fault [ No, Yes ] X X - - No No
Geographical zone (Apartment) [ 1...126 ] X2 2X X - 1 1 1Room
Basic settings
In general
Well planed is half solved
All for the communication relevant data can be entered in the planning- and
commissioning report, as an overview of all devices
Example:
8. “Operating zone”
All Information about operating mode and Set point/actual value are linked within
one zone setting.
Each partial plant has got its individual operating zone
Geographical zone operating zone for room control
(Adjustable for: RXB.., RMH760 Heating circuit 1 and Heating circuit 2, RMU Base type A and Base
type U, QAW740)
Heat distr zone consumer side” resp. Refrig distr zone consumer side operating
zone for demand-dependent Primary Controller
(Adjustable for: RMH760 Primary controller and Boiler, RMU Basic type C)
DHW zone operating zone for DHW control
(Adjustable for: RMH760 DHW)
9. Concept of “geographical Zone”
Example: Offices with RXB
App. 3
Room 1
App. 3
Room 2
App. 4
Room 1
App. 3
Room 3
App. 3
Room 4
App. 4
Room 2
App. 4
Room 3
App. 4
Room 4
Example: Heating zones
Each partial plant with its own room operating mode
and its own setpoints is assigned to a “geographical
zone”
Devices (e.g. controller and room unit) for the same
room must have the same “geographical zone”
Automatic data exchange between all relevant
devices within the “geographical zone”, e.g.:
Exchange of time switch, room operating mode, room
temperature Exchange between controller and room
unit.
10. M
M
M M
2
2
T
pp
p
T
Example: Setting the “geographical Zone”
1
Device type RMU710 QAW740
Room Geogr. Zone (Ap) [ 1…126 ] 1 1
Settings:
Room unit: A 1
Ventilation unit: ... > Commissioning > Communication > Room > Geographical zone (apartment): 1
11. VT
M M
TT
TT T
V
T
M
M
M M
2
2
T
pp
p
T
M
M
Concept of demand-dependent Primary Controller
Heat distribution zone 2
Heat distribution zone 1
Refrigeration distr. zone 1
A distribution zone is assigned to each distribution line
• Heat distribution zone
• Refrigeration distribution zone
Automatic data exchange within the distribution zone, e.g.:
• Demand (on command)
• Required flow temperature
• Current valve position
• Locking signals / forced signals
12. Example: Setting the Distribution Zones, Heating
M M
TT
TT T M M
TT
M M
TT
TT T M M
TT
Controller 1 Controller 2Heat source
Consumer
1 1
2
Device type
Heat zone source [ ---, 1…31 ]Distribution
zones
Heat zone consumer [ 1…31 ] 1
1
RMH760 RMH760
2
13. Heat Source / Consumer Zone ?
DistributionConsumptionGeneration
Heat distribution zone
source side
Heat distribution zone
consumer side
2
Heat distribution zone
source side
Heat distribution zone
consumer side
1
T
T T
T
14. Heat Demand and calculating the Flow Temperature
M
T
M
T
TT TTT T M
T
RMH x-2
MM MM MM
RMH x-4 RMU A..
RXB2..
RXB1..
TM
max
max
average
1
OTS [°C]
FT [°C]
T
Y G0
M
T
Heat demand
% Valve position
DC 0…10V
M
16. Exercise 1: Solution
Device type
Device address [ 1…255 ]
Dec bus power supp [ Off, On ]
Basic settings
Clock time op
[ Autonomous, Slave, Master ]
Room Geogr zone (ap) [ 1…126 ] 1
2
RM.. RM..
2
3
QAW740
1
1
On On
Master Slave
Settings on the room unit
• Geographical zone (zone address A): 1
• Device address: 3
(search run for a free device address can be triggered by pressing the Timer button)
17. Faults on the Bus
Fault status signal bus
Device address: 0.2.18
Fault extension module
Fault no: 7101
28.03.2007 18:32
All faults are always passed on via bus
On every controller, the faults of other controllers connected to the bus can be
viewed
... > Faults > Error message bus
18. Exchange of Outside Temperature Signal
Outside temp.
zone 1:
5.7 °C
I have an
independent
outside temp.
Aha,
Outside temp.
5.7 °C
Aha,
Outside temp.
6.1 °C
Outside temp.
zone 2:
6.1 °C
T TT
Outside temperature zone [ ---, 1…31 ]Distribution
zones
(With sensor)
1 ---- 1 2 2
yes yes
Outside temperature signal can be exchanged via bus
For that, outside temperature zones must be assigned
(e.g. zone 1: North, zone 2: South)
19. Synchronization of Time of Day and Date
Aha, time has
been changed
To all: It is
now 08:12
My time has
been changed
It is now
08:12
Aha,
08:12
I have an
independent
clock
Aha,
08:12
Clock time op
[ Autonomous, Slave, Master ]
Basic settings
Rem set clock slave [ No, Yes ]
Yes
Slave Autonomous
Yes
SlaveMaster
Yes
Slave
Time of day and date can be exchanged via bus
Setting choices:
•Autonomous (neither transmitting nor receiving)
•Slave (receives synchronization signal via bus)
•Master (transmits synchronization signal via bus)
With the slave, remote control can be activated
20. Common Holiday / Special Day Program
I am on
holiday
zone 1:
Holiday
Hello,
I am on
holiday too
I work
normally
I have my own
holiday/special
day program
I work
normally
zone 2:
Normal
Holidays/spec days
[ Autonomous, Slave, Master ]
Holidays /
special
days Hol/spec day zone [ 1…31 ]
Slave Autonomous
2
MasterMaster
1
Slave
1 2
Holiday / special day program can be exchanged via bus
Setting choices:
•Autonomous (neither transmitting nor receiving)
•Slave (receives calendar information via bus)
•Master (transmits calendar information via bus)
In addition, the zone must be set
21. Time Switch on the Bus
Time switch:
Comfort
Aha,
Time switch:
Comfort
I work
according to
my own time
switch
Geogr zone (ap) [ 1…126 ]
Time switch op
[ Autonomous, Slave, Master ]
Room
TS slave (apartm) [ 1…126 ]
AutonomousMaster
1
Slave
1 2 3 4 5
1 1
Aha,
Time switch:
Comfort
Aha,
Time switch:
Comfort
Different plants can be operated with the same time switch
Setting choices
• Autonomous (neither transmitting nor receiving)
• Slave (receives time switch via bus)
• Master (transmits time switch via bus)
Same time switch = same holiday and special day program
Slave must have the geographical zone of the time switch master
22. Exercise 2
Trigger fault, read fault on some other device
Time synchronization; make setting such that time of day can be set from any of the controllers
(2 demo cases, time of day can be readjusted on both, can be checked on the room unit)
Exchange of outside temperature signal (2 demo cases, deactivate the outside temperature on one
of the cases)
23. Exercise 2: Solution
Clock time op
[ Autonomous, Slave, Master ]
Basic settings
Rem set clock slave [ No, Yes ]
Master
Yes
Slave
Outside temperature zone [ ---, 1…31 ]Distribution
zones
(With sensor)
1 1
yes
Exchange of outside temperature signal
2 demo cases, deactivate the outside temperature on one of the cases
No setting required, on what cases the outside temperature is connected
Time synchronization; make setting such that time of day can be set from any of the controllers
2 demo cases, time of day can be readjusted on both
Trigger fault, read fault on some other device
Faults from other devices can be read under
... > Main menu > Faults > Fault status signal bus
(the most important fault in the system will be displayed)
24. Control Strategy
“Radiator and Underfloor Heating
System in the same Room“
Common control strategy when room is operated with static room heating and
underfloor heating system.
Optimum control thanks to data exchange via bus (the right way to heat is
activated at the right moment in time)
Same room operating mode for both controllers (time switch program,
holiday/special day program, interventions by operator)
Room influence can be adjusted
25. October 2007
RMH760 RMZ781 RMZ782QAW740
Basic type 3-4
Example: Settings for Control Strategy
“Radiator and Underfloor Heating System“
Possible Settings RMU RMH QAW RXB 1 2 3
Plant Radiator Floor htg
Room description Hall Hall Hall
Device name X X - - Htg Hall
Type of Device
RMU
7..
RMH,
RMZ
QAW
740
RXB
.... RMH760 RMZ782 QAW740
Basic type X X - X 3-4
Device address [ 0...255 ] X X X X 1 2
Decentral bus pow er supply [ Off, On ] X X - - On
Clock time operation [ Autonomous, Slave, Master ] X X - - M
Remote setting clock slave [ No, Yes ] X X - -
Remote reset fault [ No, Yes ] X X - - No
Geographical zone (Apartment) [ 1...126 ] X2 2X X - 1 1 1
** Room control combination [ Master,
Slave external setpoint, Slave internal setpoint ] - 2X - - M Sl ext Setp
** Main menu > Commissioning > Extra configuration > Heating circuit 1 / 2 > Functions > Room control combination
Room
Basic settings
26. Control Strategy
“Heating and Ventilation in the same Room“
M
T
M
M
M M
2
2
T
pp
p
T
Common control strategy when room uses heating and ventilation:
Simultaneous heating and cooling not permitted
Same room operating mode for both controllers (time switch program, holiday/special day program,
interventions by operator)
Automatic changeover of ventilation control (from supply air temperature control (winter) to
room/supply air temperature cascade control (summer))
27. October 2007
Example: Settings for
“Common Control Strategy Heating / Ventilation“
M
T
M
M
M M
2
2
T
pp
p
T
• RMU710
Grundtyp: A03
RMH760
Grundtyp: 0-2
Possible Settings RMU RMH QAW RXB 1 2
Plant HVAC Heating
Room description Hall Hall
Device name X X - - HVAC Heating
Type of Device
RMU
7..
RMH,
RMZ
QAW
740
RXB
.... RMU710 RMH760
Basic type X X - X A03 0-2
Device address [ 0...255 ] X X X X 1 2
Decentral bus pow er supply [ Off, On ] X X - - On On
Clock time operation [ Autonomous, Slave, Master ] X X - - M S
Remote setting clock slave [ No, Yes ] X X - - Yes Yes
Remote reset fault [ No, Yes ] X X - - No No
Geographical zone (Apartment) [ 1...126 ] X2 2X X - 1 1
(w ith ow n room sensor) [ -, Yes ] X1 2X X X Yes
* Control strategy [ Cascade, Constant, Alternating ] X4 - - - Alternating
** Room control combination [ Master,
Slave external setpoint, Slave internal setpoint ] - 2X - - Sl int Setp
* Main menu > Commissioning > Settings > Controller 1 > Cascade controller > Control strategy
** Main menu > Commissioning > Extra configuration > Heating circuit 1 / 2 > Functions > Room control combination
Room
Basic settings
28. M
+
+
Example: Settings for “Individual Room Control with RXB..
and Energy Handling with RMU..“
Geographical zone 1 (= 1.1.1)
Heat‘zone cons: 1
Refr‘zone cons: 1
Geographical zone: 1.3.1
Time switch of zone: 1.1.1
Heat‘zone source: 1
Refr‘zone source: 1
Geographical zone: 1.2.1
Time switch of zone: 1.1.1
Heat‘zone source: 1
Refr‘zone source: 1
M
+
+
30. Exercise 3: Solution
Possible Settings RMU RMH QAW RXB 1 2
Plant Substation Ventilation
Device name X X - - Group VAC VAC Hall
Type of Device
RMU
7..
RMH,
RMZ
QAW
740
RXB
.... RMH760 RMU710
Basic type X X - X 2-0 A
Device address [ 0...255 ] X X X X 1 2
Decentral bus pow er supply [ Off, On ] X X - - On On
Clock time operation [ Autonomous, Slave, Master ] X X - - S M
Remote setting clock slave [ No, Yes ] X X - - Yes Yes
Remote reset fault [ No, Yes ] X X - - No No
Heat distribution zone source side [ ----, 1...31 ] X1 X5 - X 1 2
Heat distribution zone consumer side [ 1...31 ] - X6 - - 2
Distribution
zones
Basic settings
Demand-dependent pre-control of heating Configuration of heating
... > Commissioning > Basic configuration
Basic type: 2-0
Setting Communication
Test
Shift room temperature of the ventilation plant below the setpoint:
Heating plant will be switched on