NOVUS · Temperature & Process Control

N1050

LCD PID controller for thermal applications that need clear local operation, ramp-and-soak programs, optional RS485 and model-dependent analogue output.

NOVUS N1050
RolePID controller with LCD interface and process programs
CategoryProcess Control & Indication
SelectionInput · output · control duty
SupportPrimionics application engineering
Engineering position

PID controller with LCD interface and process programs for industrial process control

The controller forms the closed-loop control layer between the process measurement and the final power or actuating device. Model selection should be based on sensor type and range, control algorithm, output hardware, panel format, supply, communication and the thermal dynamics of the application. LCD PID controller for thermal applications that need clear local operation, ramp-and-soak programs, optional RS485 and model-dependent analogue output.

Configured process inputMatch the ordered sensor/input version and usable measurement range to the actual process signal before panel design.
PID or ON/OFF control as documentedConfirm the required control mode, heating/cooling action, tuning behavior and process response for the selected model.
Alarm and output selectionAllocate control, alarm and auxiliary outputs against the load-interface and sequence requirements.
Panel integrationConfirm cutout, depth, supply, terminal access and front protection for the machine panel.
Current product position: Current NOVUS positioning combines an LCD interface, PID control, ramp-and-soak programs, optional RS485 and model-dependent analogue output.
System role

N1050 signal and system architecture

The architecture separates the field/process interface, the NOVUS function and the downstream control or information path. Exact electrical interfaces, protocol roles and accessories remain model-dependent.

01Supported sensor
02N1050
03Control output
04SSR / contactor
05Thermal process
Use the current NOVUS product page, manual and exact order code as the final authority for numeric ratings, approvals, firmware-dependent functions and supplied accessories.
Application scope

N1050 application environments

These application classes indicate the engineering context. Final selection still depends on the exact range, I/O, communication, installation and performance requirements.

01

Industrial heaters and ovens

Industrial heaters and ovens is a suitable application class when the selected N1050 input, control output and process-response capability match the sensor, load interface and thermal dynamics.

02

Packaging and sealing machinery

Packaging and sealing machinery is a suitable application class when the selected N1050 input, control output and process-response capability match the sensor, load interface and thermal dynamics.

03

Machine temperature control

Machine temperature control is a suitable application class when the selected N1050 input, control output and process-response capability match the sensor, load interface and thermal dynamics.

Technical data

Technical data and model boundaries

The table is a selection summary, not a substitute for the current NOVUS manual or ordering information. Product families and optional versions can differ in input, output, communication, supply and approvals.

InputsThermocouples J, K, T, S; Pt100
ControlPID/PWM with automatic tuning; heating or cooling
OutputsPulse/relay configurations; analogue output on supported version
Programs5 ramp-and-soak programs with 4 segments
CommunicationOptional RS485 Modbus RTU
ConfigurationUSB with NOVUS configuration software
Panel48 × 48 mm; IP65 front
Documentation & engineering inputs

Current NOVUS documentation and application data

Use the manufacturer page for the current orderable configuration, then provide the application information below so Primionics can review technical fit, accessories and commercial scope.

Process variableSensor type, normal range and maximum process temperature.
Control dutyHeating/cooling action, process dynamics, required stability and cycle profile.
Output stageRelay, SSR pulse, analogue output, alarm outputs and final load interface.
Panel integrationCutout, depth, supply voltage, wiring and environmental protection.
CommunicationStandalone operation, RS485/Modbus or connected/modular interface requirements.
Commercial scopeQuantity, required accessories, configuration support and delivery target.