LCD temperature PID controller Novus N1050 LCD, PID, Timer, USB, Temperature Controller is an advanced high-performance PID temperature controller with a bright LCD easy-to-read multicolour 11-segment display.Besides the PID auto-tuning capability, the N1050 outputs PWM control mode through pulse or relay. Up to three optional output relays can be selected. It also features 5 ramp-and-soak profile programs, soft start output and timer function which complement the advanced features of the controller. It comes with password protection. All parameters are configurable by the display menu or via the USB port or optional RS485 Modbus interface.Easy to install and maintain due to its detachable connector, the N1050 offers the lowest power consumption in the market. Housed in anti-flame material, it has 48x48 mm (DIN 1/16) format and low profile front panel. Suitable for hostile environments, it complies with standard EMC regulations, providing robustness and reliability including untapped temperature applications.These controllers are great alternatives to the similar Omron E5CC models
Features
- Display: LCD type, alphanumeric with 11 segments
- Ramp & Soak: 5 Programs, 4 Segments
- Input Type: Thermocouple J, K T, S and Pt100
- PID Features: PWM, Autotune
- Control Action: 1 Loop (Heat or Cool)
- Output Control:1 Pulse and up to 3 Relays
- Sampling Period: 100 ms
- Communication: RS485 Modbus RTU (optional)
- Power Consumption: 6 VA
- Special Functions: Soft-Start, PID Loop Break, Ramp and Soak event, 2 Alarms (7 alarm types) and Timer Function
- Configuration: Software NOVUS NConfig, via USB (micro-B type)
- Certifications: CE, UL and cUL
- Power Supply: 100-240 Vac/dc or 12-24 Vdc (Optional)
- Operate Conditions: Temperature: 0 to 50 °C ( 32 to 122 °F), Humidity: 80 % @ 30 °C (86 °F)
- Front Panel: IP65, Polycarbonate (PC) UL94 V-2
- Enclosure: 48x48 (DIN 1/16), ABS+PC UL94 V-0
What is PID?
PID Controllers
A proportional–integral–derivative controller (PID or three-term controller) is a control loop feedback used on applications that require continuous control operation. A PID controller continuously calculates an error value as the difference between the setpoint (SP) and a measured process variable (PV) and applies a correction based on proportional, integral, and derivative terms (denoted P, I, and D, respectively), hence the name. For more information about PID controllers, you can click here.
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