my nh bng inox rulo 120x100mm 1400w 220v hiu dck ksn100 my delivers precise thermal control for demanding forming applications. Designed for reliability, this band heater combines stainless steel construction with intelligent power management to maintain stable temperatures on cylindrical profiles.
The unit integrates seamlessly with automation setups, offering fast heatup and consistent surface temperature across the rolling die. Operators benefit from clear terminal markings and robust insulation that minimize energy loss during extended runs.
| Model | Power | Voltage | Dimensions | Application |
|---|---|---|---|---|
| my nh bng inox rulo 120x100mm | 1400 W | 220 V | 120 x 100 mm | Rolling dies, profile heating |
| Insulation type | HIU DCK ceramic fiber | Connector type | Terminal caps | IP-enhanced protection |
| Maximum temperature | 300–350°C | Response time | <30 s (typical) | Suitable for continuous duty |
| Mounting options | Clamp or bolt-down | Ambient limit | Up to 50°C | Industrial extrusion lines |
Key Specifications and Electrical Ratings
Understanding the electrical and mechanical specs helps match the unit to your line voltage and thermal requirements. Confirm compatibility before integration to avoid derating or nuisance trips.
Insulation and Thermal Performance
HIU DCK ceramic fiber insulation provides rapid heatup while minimizing surface temperature rise on adjacent structures. This insulation also reduces heat loss, improving energy efficiency and part temperature uniformity.
The inner winding and outer sheath are selected to resist oxidation and mild chemical exposure common in extrusion environments. Proper installation ensures the band heater performs within the rated 1400 W at 220 V without hotspots.
Mechanical Fit and Mounting
Designed for 120 x 100 mm roll profiles, the inner bore and contour match standard industry tooling. Accurate alignment reduces mechanical stress on the heater and extends service life.
Use shielded wiring and strain relief to protect terminals from vibration. Confirm that clamping torque matches manufacturer guidance to preserve insulation integrity and avoid deformation of the band.
Operational Guidelines and Best Practices
Gradual power ramping lowers thermal shock, especially during startup of cold dies. Monitor inrush current and verify that downstream protection devices are correctly set for 1400 W operation at 220 V.
Periodic inspection of the outer sheath and cable entry points helps identify wear early. Keep the surface clean and free from residue to maintain heat transfer efficiency and process control.
Maintenance and Long-Term Reliability
Regular checks of electrical connections, insulation resistance, and sheath condition help prevent unplanned downtime. Record operating temperatures and power trends to spot degradation early.
- Verify tightening of terminal bolts during scheduled shutdowns
- Inspect for mechanical damage or abrasion on the outer sheath
- Measure insulation resistance with suitable test equipment
- Monitor temperature uniformity across the band surface
- Follow manufacturer guidance for reinstallation after cleaning
FAQ
Reader questions
What production environments is the my nh bng inox rulo 120x100mm 1400w 220v hiu dck ksn100 my suited for?
It is ideal for extrusion and profile rolling lines where cylindrical dies require tight temperature control and uniform heat distribution.
How does the HIU DCK insulation affect performance compared to standard band heaters?
HIU DCK ceramic fiber insulation lowers heat loss, speeds response time, and keeps outer surface temperatures lower, improving safety and energy efficiency.
What electrical protections should be used with a 1400 W 220 V band heater?
Size fuses and circuit breakers for the full load current at 220 V, and consider built-in thermal cutoffs and external controllers for safe operation.
Can this band heater be used for continuous 24/7 extrusion runs?
Yes, the design supports continuous duty when installed correctly, with adequate cooling around terminals and proper mechanical mounting to manage thermal cycling.