Issue:
Programming and wiring up a water solution card on the ATV61 drives?
Product line:
Altivar ATV61 with water solutions option card VW3A3503.
Environment:
All models, all serial numbers
Cause:
Water Solution Card set up configuration.
Resolution:
First, go through the Pre-Configuration section in the manual. Transducer is 0-145 PSI with 4-20mA Output. There are 2 additional External pumps. Go to Page 86 to set System Units =1 (Imp, Gallon and Degree Fahrenheit) Water Solutions/Expansion/PID PID Ref Local (Local PID reference will appear under Water Solutions menu) PID Max Ref 100 psi PID Feedback Drive AI2 PID Gain 50 PID Integral 1 Water Solutions/Expansion/Sensors Outlet Transducer Maximum 145 psi Pressure Units PSI Water Solutions/Expansion/Start Set Setpoint Ramp 5.0 Water Solutions/Expansion/Stage Number of External Pumps 1 Stage Speed 50 hZ Jumper: +24 to CI_LI54 External Pump 1 No Fault +24 to CI_LI55 External Pump 2 No Fault +24 to CI_LI57 Auto enable The Feedback Pressure(monitored under water Solution menu) must be lower than the Start Pressure(programmed in Start Set) when closing CI_LI57 and want the unit to start.
Wiring examples:
CLI57= auto enable or start
CLI58= fault reset
Transducer input
AI2= Analog input on the drive
AI52 and AI51= analog inputs on the water solutions card
Fault feedback inputs from aux pump overload relays
CLI54= for fault input for Aux pump 1
CLI55= for fault input for Aux pump 2
CLI56= for fault input for Aux pump 3
Aux pump outputs
CLO51= Aux output for pump 1
CLO52= Aux output for pump 2
CLO53= Aux output for pump 3
Status outputs from the WSC
CLO55= Run status
CLO56= Fault status
Jockey pump option
CLO56= Jockey or priming pump output
Water Solution Control Card User manual
Programming and wiring up a water solution card on the ATV61 drives?
Product line:
Altivar ATV61 with water solutions option card VW3A3503.
Environment:
All models, all serial numbers
Cause:
Water Solution Card set up configuration.
Resolution:
First, go through the Pre-Configuration section in the manual. Transducer is 0-145 PSI with 4-20mA Output. There are 2 additional External pumps. Go to Page 86 to set System Units =1 (Imp, Gallon and Degree Fahrenheit) Water Solutions/Expansion/PID PID Ref Local (Local PID reference will appear under Water Solutions menu) PID Max Ref 100 psi PID Feedback Drive AI2 PID Gain 50 PID Integral 1 Water Solutions/Expansion/Sensors Outlet Transducer Maximum 145 psi Pressure Units PSI Water Solutions/Expansion/Start Set Setpoint Ramp 5.0 Water Solutions/Expansion/Stage Number of External Pumps 1 Stage Speed 50 hZ Jumper: +24 to CI_LI54 External Pump 1 No Fault +24 to CI_LI55 External Pump 2 No Fault +24 to CI_LI57 Auto enable The Feedback Pressure(monitored under water Solution menu) must be lower than the Start Pressure(programmed in Start Set) when closing CI_LI57 and want the unit to start.
Wiring examples:
CLI57= auto enable or start
CLI58= fault reset
Transducer input
AI2= Analog input on the drive
AI52 and AI51= analog inputs on the water solutions card
Fault feedback inputs from aux pump overload relays
CLI54= for fault input for Aux pump 1
CLI55= for fault input for Aux pump 2
CLI56= for fault input for Aux pump 3
Aux pump outputs
CLO51= Aux output for pump 1
CLO52= Aux output for pump 2
CLO53= Aux output for pump 3
Status outputs from the WSC
CLO55= Run status
CLO56= Fault status
Jockey pump option
CLO56= Jockey or priming pump output
Water Solution Control Card User manual
Released for: Schneider Electric Ireland
Issue:
Programming and wiring up a water solution card on the ATV61 drives?
Product line:
Altivar ATV61 with water solutions option card VW3A3503.
Environment:
All models, all serial numbers
Cause:
Water Solution Card set up configuration.
Resolution:
First, go through the Pre-Configuration section in the manual. Transducer is 0-145 PSI with 4-20mA Output. There are 2 additional External pumps. Go to Page 86 to set System Units =1 (Imp, Gallon and Degree Fahrenheit) Water Solutions/Expansion/PID PID Ref Local (Local PID reference will appear under Water Solutions menu) PID Max Ref 100 psi PID Feedback Drive AI2 PID Gain 50 PID Integral 1 Water Solutions/Expansion/Sensors Outlet Transducer Maximum 145 psi Pressure Units PSI Water Solutions/Expansion/Start Set Setpoint Ramp 5.0 Water Solutions/Expansion/Stage Number of External Pumps 1 Stage Speed 50 hZ Jumper: +24 to CI_LI54 External Pump 1 No Fault +24 to CI_LI55 External Pump 2 No Fault +24 to CI_LI57 Auto enable The Feedback Pressure(monitored under water Solution menu) must be lower than the Start Pressure(programmed in Start Set) when closing CI_LI57 and want the unit to start.
Wiring examples:
CLI57= auto enable or start
CLI58= fault reset
Transducer input
AI2= Analog input on the drive
AI52 and AI51= analog inputs on the water solutions card
Fault feedback inputs from aux pump overload relays
CLI54= for fault input for Aux pump 1
CLI55= for fault input for Aux pump 2
CLI56= for fault input for Aux pump 3
Aux pump outputs
CLO51= Aux output for pump 1
CLO52= Aux output for pump 2
CLO53= Aux output for pump 3
Status outputs from the WSC
CLO55= Run status
CLO56= Fault status
Jockey pump option
CLO56= Jockey or priming pump output
Water Solution Control Card User manual
Programming and wiring up a water solution card on the ATV61 drives?
Product line:
Altivar ATV61 with water solutions option card VW3A3503.
Environment:
All models, all serial numbers
Cause:
Water Solution Card set up configuration.
Resolution:
First, go through the Pre-Configuration section in the manual. Transducer is 0-145 PSI with 4-20mA Output. There are 2 additional External pumps. Go to Page 86 to set System Units =1 (Imp, Gallon and Degree Fahrenheit) Water Solutions/Expansion/PID PID Ref Local (Local PID reference will appear under Water Solutions menu) PID Max Ref 100 psi PID Feedback Drive AI2 PID Gain 50 PID Integral 1 Water Solutions/Expansion/Sensors Outlet Transducer Maximum 145 psi Pressure Units PSI Water Solutions/Expansion/Start Set Setpoint Ramp 5.0 Water Solutions/Expansion/Stage Number of External Pumps 1 Stage Speed 50 hZ Jumper: +24 to CI_LI54 External Pump 1 No Fault +24 to CI_LI55 External Pump 2 No Fault +24 to CI_LI57 Auto enable The Feedback Pressure(monitored under water Solution menu) must be lower than the Start Pressure(programmed in Start Set) when closing CI_LI57 and want the unit to start.
Wiring examples:
CLI57= auto enable or start
CLI58= fault reset
Transducer input
AI2= Analog input on the drive
AI52 and AI51= analog inputs on the water solutions card
Fault feedback inputs from aux pump overload relays
CLI54= for fault input for Aux pump 1
CLI55= for fault input for Aux pump 2
CLI56= for fault input for Aux pump 3
Aux pump outputs
CLO51= Aux output for pump 1
CLO52= Aux output for pump 2
CLO53= Aux output for pump 3
Status outputs from the WSC
CLO55= Run status
CLO56= Fault status
Jockey pump option
CLO56= Jockey or priming pump output
Water Solution Control Card User manual
Released for: Schneider Electric Ireland




1. 什么是工业物联网?
这一概念将工业机械和设备与先进的传感器、软件和网络技术相结合。通过这种方式,您可以创建并连接一个自动化的生态系统。这样的数字化使智能工厂能够提高效率、员工安全性和可持续性。
工业物联网在制造业中的应用以及工业物联网解决方案的使用加速了制造过程并减少了浪费。因此,在保证地球安全的同时,生产力也得到提高。显然,它还可以减少停机时间,降低维护成本,因为它能够提供实时数据,从而引入预测性维护。
2.工业物联网解决方案如何推动工业4.0?
工业4.0指的是工业革命的一个新阶段,主要关注互连互通、自动化、机器学习和实时数据。工业4.0(也称为IIoT技术或智能制造)将物理生产和运营与智能数字技术、机器学习和大数据相结合。所有这些都为专注于制造和供应链管理的公司创造了一个更全面、更互联互通的生态系统。
工业物联网解决方案可应用于解决物流、制造和供应链问题,使制造商和消费者都获益。在现有企业中利用工业物联网是工业物联网实施的一个互利方面,它可以降低运营成本,同时确保行业各种流程中的最高质量。
3.使用我们的工业物联网解决方案有何益处?我们的工业物联网解决方案非常适合各种行业的多任务处理服务。过程自动化、机械、食品和饮料、水和废水、能源和化学品、水泥、金属和采矿等行业使用这些解决方案可提高工作环境的安全性、提高效率并减少碳足迹。
显然,使用工业物联网解决方案有助于整个生态系统,并会带来大量创新性变化,这对于要求非常高的正常运行时间和期待预测性维护的行业来说至关重要。