Siemens 125-699 Day.Ngt, CLG CMP1 on, CLG CMP1 OFF, CLG CMP2 on, CMP3 on, CLG CMP2 OFF, CMP3 OFF

Page 29

Point Database

Description

Address

Application

Description

 

 

 

 

DAY.NGT

{29}

2583, 2584, 2590

Indicates the mode in which the controller is operating.

 

 

 

Day temperature setpoints are used in day mode.

 

 

 

Night temperature setpoints are used in night mode. This

 

 

 

point is normally set by the field panel.

 

 

 

 

CLG CMP1 ON

30

2584

Value, in percent, that the cooling temperature control loop

 

 

 

output must exceed for cooling compressor 1 to turn ON.

 

 

 

Actual turn on is subject to the CLG1 MlN OFF time being

 

 

 

expired.

 

 

 

 

CLG CMP1 OFF

31

2584

Value, in percent, that the cooling temperature control loop

 

 

 

output must go below for cooling compressor 1 to turn OFF.

 

 

 

Actual turn off is subject to the CLG1 MlN ON time being

 

 

 

expired.

 

 

 

 

CLG1 MlN OFF

32

2584

Minimum time, in minutes, that cooling compressor 1 will

 

 

 

remain OFF before turning ON.

 

 

 

 

CLG1 MlN ON

33

2584

Minimum time, in minutes, that cooling compressor 1 will

 

 

 

remain ON before turning OFF.

 

 

 

 

CLG CMP2 ON

34

2584

Value, in percent, that the cooling temperature control loop

 

 

 

output must exceed for cooling compressor 2 to turn ON.

 

 

 

Actual turn on is subject to the CLG 2 MIN OFF time being

 

 

 

expired.

CMP3 ON

34

2583

Value, in percent, that the active temperature control loop

 

 

 

output must exceed for compressor 3 to turn ON. Actual

 

 

 

turn on is subject to the CMP3 MlN OFF time being expired.

 

 

 

 

CLG CMP2 OFF

35

2584

Value, in percent, that the cooling temperature control loop

 

 

 

output must exceed for cooling compressor 2 to turn OFF.

 

 

 

Actual turn off is subject to the CLG2 MIN ON time being

 

 

 

expired.

CMP3 OFF

35

2583

Value, in percent, that the active temperature control loop

 

 

 

output must go below for compressor 3 to turn OFF. Actual

 

 

 

turn off is subject to the CMP3 MlN ON time being expired.

 

 

 

 

CLG2 MIN OFF

36

2584

Minimum time, in minutes, that cooling compressor 2 will

 

 

 

remain OFF before turning ON.

CMP3 MlN OFF

36

2583

Minimum time, in minutes, that compressor 3 will remain

 

 

 

OFF before turning ON.

 

 

 

 

CLG2 MlN ON

37

2584

Minimum time, in minutes, that cooling compressor 2 will

 

 

 

remain ON before turning OFF.

CMP3 MlN ON

37

2583

Minimum time, in minutes, that compressor 3 will remain ON

 

 

 

before turning OFF.

 

 

 

 

DAMPER TYPE

38

2583, 2584

FLOAT indicates that a floating control damper is used.

 

 

 

SPRING indicates that a spring return damper is used.

 

 

 

Valid input: FLOAT or SPRING.

AO DIR.REV

39

2583, 2584

Configuration setup code for AO. Allows the AO to be direct

 

 

 

(normally closed) or reverse acting (normally open).

 

 

 

 

AOV1

{40}

2583, 2584, 2590

Analog output 1 controls a 0 to 10V signal.

 

 

 

 

Siemens Building Technologies, Inc.

21

Image 29
Contents 125-699 Rev. BA, July Siemens BACnet Heat Pump Controller MultiPage Credits Service StatementTo the Reader Page Table of Contents Reversing Valve Operation Manual Organization How to Use This ManualManual Conventions Convention ExampleGetting Help Manual SymbolsNotation Symbol Meaning Application Application Description Number Product OverviewOrdering Notes Hardware Outputs Hardware InputsReference Actuators Controller LED IndicatorsTemperature Sensors Related Equipment Siemens Building Technologies, Inc Day/Night Mode Control Temperature SetpointsNight Mode Override Switch ApplicationsCalibration Electric Reheat Heating and Cooling SwitchoverCompressor Operation Fan OperationCentralized Alarm Monitoring Power Failure RecoveryOverriding DOs Fail-safe OperationUsing Auxiliary Points Application Notes Compressor StagingReversing Valve Operation Application 2583 Control Drawing Compressor/Electric Heat Staging AppIication 2584 Control Drawing Using the Controller as a Point Extension Device Application 2590 BACnet Heat Pump Slave ModeApplications Description Address Application Point DatabaseRM Stpt MAX Wall SwitchRM Stpt Dial Stpt DialNGT Ovrd Ovrd TimeRmtmp Offset Rmtmp Offset + Room Temp = CTL TempCLG CMP1 on DAY.NGTCLG CMP1 OFF CLG CMP2 onHTG CMP Elec HeatREV Valve CompressorDmpr POS MTR SetupMTR1 POS FANFree CLG on Cycle FANFree CLG OFF CLG P GainSwitch Limit Rval SwitchSwitch Time HTG LoopoutCAL Timer Switch DbandError Status NGT MA CTLPoint Database Preventive Maintenance TroubleshootingBasic Service Information Controller LEDs Safety FeaturesGlossary English units Control loopEquipment controller Field panelSlave mode Override switchLps LoopoutUnbundle Stand-alone controlFLN IndexBST LED TX LED PIDRTS RX LED

125-699 specifications

The Siemens 125-699 is a state-of-the-art industrial control product that showcases Siemens’ commitment to innovation and quality in automation technology. This device is specifically designed for various industrial applications, providing exceptional performance and reliability.

One of the main features of the Siemens 125-699 is its robust processing capabilities. Equipped with a high-speed processor, it can handle complex control tasks efficiently, ensuring smooth operation even under demanding conditions. This makes it suitable for a wide range of applications, from manufacturing to process automation.

The device supports multiple communication protocols, which enhances its versatility. It is compatible with popular industrial communication standards such as Profinet, Profibus, and Ethernet/IP. This flexibility allows for seamless integration into existing systems and facilitates communication between various devices on the network, making it an ideal solution for modern interconnected factories.

In terms of user interface, the Siemens 125-699 offers an intuitive design with a user-friendly programming environment. The platform supports advanced programming languages, including Ladder Logic and Structured Text, enabling engineers to develop and modify control algorithms with ease. This capability not only improves efficiency but also reduces the time needed for troubleshooting and maintenance.

Another characteristic that sets the Siemens 125-699 apart is its rugged construction. Designed for harsh industrial environments, it features a durable housing that protects against dust, moisture, and extreme temperatures. This robustness ensures longevity and reliability, even in challenging conditions, which is crucial for minimizing downtime and promoting continuous operation.

Additionally, the Siemens 125-699 incorporates advanced diagnostic tools. These tools enable real-time monitoring of the system's performance, allowing operators to detect and address potential issues before they escalate. This proactive approach to maintenance is vital in enhancing productivity and ensuring the smooth operation of industrial processes.

In conclusion, the Siemens 125-699 is a comprehensive solution for industrial automation needs. Its combination of high processing power, versatile communication options, user-friendly interface, rugged design, and advanced diagnostic capabilities makes it a leading choice for companies looking to enhance their automation systems and improve operational efficiency. With Siemens' reputation for quality and innovation, the 125-699 stands as a testament to the company's dedication to advancing industrial technology.