TMH Series, Controllers - Process, Temperature

Results:
7
Manufacturer
Series
Output Type
Display Characters - Height
Ingress Protection
Termination Style
Control Method
Communications
Number of Characters Per Row
Panel Cutout Dimensions
Mounting Type
Type
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Voltage - Supply
Input Range
Features
Results remaining7
Applied Filters:
TMH
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ImageProduct DetailPriceAvailabilityECAD ModelIngress ProtectionMounting TypeDisplay TypeVoltage - SupplyOutput TypeTermination StylePanel Cutout DimensionsDisplay Characters - HeightSeriesNumber of Characters Per RowInput RangeControl MethodCommunicationsFeatures
TMHE-82RE
MULTI-CH MODULAR PID CONTROL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
DIN Rail
-
24VDC
Relay
Screw Terminal
-
-
TMH
-
-200°C ~ 2300°C
On/Off, Proportional (PID)
RS-485 (Modbus)
Limit Function
TMH2-42CB
MULTI-CH MODULAR PID CONTROL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
DIN Rail
-
24VDC
Relay, Voltage (External SSR)
Screw Terminal
-
-
TMH
-
-200°C ~ 2300°C
On/Off, Proportional (PID)
RS-485 (Modbus)
Limit Function
TMH2-22CB
MULTI-CH MODULAR PID CONTROL
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
DIN Rail
-
24VDC
Relay, Voltage (External SSR)
Screw Terminal
-
-
TMH
-
-200°C ~ 2300°C
On/Off, Proportional (PID)
RS-485 (Modbus)
Limit Function
TMH4-N2CE
MULTI-CH MODULAR PID CONTROL
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
DIN Rail
-
24VDC
Relay, Voltage (External SSR)
Screw Terminal
-
-
TMH
-
-200°C ~ 2300°C
On/Off, Proportional (PID)
RS-485 (Modbus)
Limit Function
TMH2-22CE
MULTI-CH MODULAR PID CONTROL
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
DIN Rail
-
24VDC
Relay, Voltage (External SSR)
Screw Terminal
-
-
TMH
-
-200°C ~ 2300°C
On/Off, Proportional (PID)
RS-485 (Modbus)
Limit Function
TMH4-N2CB
MULTI-CH MODULAR PID CONTROL
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
DIN Rail
-
24VDC
Relay, Voltage (External SSR)
Screw Terminal
-
-
TMH
-
-200°C ~ 2300°C
On/Off, Proportional (PID)
RS-485 (Modbus)
Limit Function
TMH2-42CE
MULTI-CH MODULAR PID CONTROL
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
DIN Rail
-
24VDC
Relay, Voltage (External SSR)
Screw Terminal
-
-
TMH
-
-200°C ~ 2300°C
On/Off, Proportional (PID)
RS-485 (Modbus)
Limit Function

About  Controllers - Process, Temperature

Process and temperature controllers are essential devices used in various settings to maintain a process variable, specifically temperature, at a desired set point. These small, integrated devices are designed to monitor and regulate temperature by using sensors such as a thermocouple or RTD, which is usually located external to the controller. The basic function of these controllers is similar to that of a household thermostat. They provide an on/off signal that can be used to control a device such as a heater or furnace to maintain a specific temperature at a desired set point. The controller continually monitors the temperature and sends signals to the device to turn it on or off as needed to maintain the desired temperature. More advanced process and temperature controllers come with higher-level communication capabilities and sophisticated control algorithms to improve connectivity and temperature control performance. Advanced controllers use more complex algorithms that enable them to predict temperature changes and make adjustments to the heating or cooling system accordingly, resulting in more precise temperature control and improved energy efficiency. Additionally, advanced process and temperature controllers can be integrated into a larger system, allowing for remote monitoring and control of multiple devices. This feature is particularly useful in industrial settings where multiple devices need to be controlled and monitored from a central location. In summary, process and temperature controllers are small, integrated devices used to maintain a process variable, usually temperature, at a desired set point. They use sensors to monitor and regulate temperature and provide an on/off signal to control devices such as heaters or furnaces. Advanced controllers come with higher-level communication capabilities and sophisticated control algorithms to improve connectivity and temperature control performance. They can also be integrated into a larger system, enabling remote monitoring and control of multiple devices.