Specification
|
Item No. |
Output torque |
Rate speed |
Maximum number of output shaft revolutions |
Maximum weight of the door leaf. |
Voltage |
Power |
Gearbox Ratio |
Protection class |
Maximum time of continuous operation |
|
IN-I |
35N.m |
31RPM |
17 revolutiongs |
180KG |
AC110V-AC220V/50Hz-60Hz |
750W |
48:1 |
IP65 |
10 min |
|
IN-II |
50N.m |
24RPM |
17 revolutiongs |
260KG |
AC110V-AC220V/50Hz-60Hz |
670W |
58:1 |
IP65 |
10 min |
|
IN-III |
50N.m |
24RPM |
17 revolutiongs |
260KG |
AC110V-AC220V/50Hz-60Hz |
610W |
58:1 |
IP65 |
15 min |
|
IN-IV |
100N.m |
24RPM |
17 revolutiongs |
500KG |
AC380V/50Hz |
1000W |
58:1 |
IP65 |
15 min |
|
IN-V |
130N.m |
18RPM |
17 revolutiongs |
650KG |
AC380V/50Hz |
1000W |
80:1 |
IP65 |
15 min |
Features
- Large warehouses or labor plants employ this door opener.
- A sophisticated restricted switch design allows for precise adjustment.
- Higher IP class, less noise.
- Installation is simple. After releasing the clutch, the gate can be manually opened and closed in the event of a power outage.
- There is an overheat protection mechanism on the door opener.
- Maintenance-free door opening machine with improved grease.
Benefits
To accommodate different voltages, a range of types are offered.
There are variations in the highest weight that can be transported.
Superior protection, resilient to damage, and adaptable to different pressure levels.
The new style is more atmospheric and beautiful than the previous one.
Method For Debugging An Industrial Door Opener
Verify again that the wiring is correct and that all installation components are sturdy before troubleshooting. To make sure the door body can move freely, look for any obstructions surrounding it. After that, switch on the electricity and check to see whether the door opener is vibrating or making strange noises. The power should be cut off right away for examination if an unusual scenario is discovered, and following troubleshooting, the next stage of debugging should be performed.
When the door body's running direction is not what is expected, such as when the door opener is turned on, the door body closes rather than opens, or vice versa. The incorrect controller setting or the incorrect motor wiring phase sequence could be the cause of this. Any two phases of the motor power line can be switched to correct the incorrect motor wiring phase sequence. According to the controller documentation, the running direction of the door body must be reset if the controller is configured incorrectly.
To make sure that the door body can be precisely opened and closed to the preset position, limit debugging is an essential step. Different limit techniques, such as mechanical, electrical, or a combination of the two, may be used by various kinds of door openers. To stop the motor from running, set the limit switch's position so that when the door is opened and closed, it will activate the limit switch. This is known as the mechanical limit. For instance, the sliding door's upper limit adjustment can be set to simply trigger the upper limit switch after the door has been raised to its completely open position. Setting the specifications for the door's opening and closing positions in the controller is necessary for electronic limits. Usually, the controller's operation panel or remote control can be used to set it. Precise changes must be made during the setting procedure based on the door's actual dimensions and operating needs.
Adapt the door's operating speed to the real requirements of the manufacturing facility. Certain door openers have a potentiometer or controller parameter adjustment that allows you to change the speed. For instance, increasing the rolling door's opening speed may be required in some logistics warehouses to boost the efficiency of items entering and leaving. However, it is important to be cautious not to increase the speed too much as this could compromise the door's stability and safety. To make sure the door operates smoothly and without unusual shaking or noise, increase the speed gradually and watch how the door moves after each change.
The real usage circumstance should be taken into consideration while adjusting the sensor's sensitivity. The door may not react in time if the sensor sensitivity is set too low; if it is set too high, it may cause false triggering, such as interpreting an unneeded object movement as a signal for the door to open. By turning the sensor's sensitivity adjustment knob, you can alter the infrared sensor's detection range and sensitivity. To change the sensitivity of microwave sensors, you might need to modify the controller's pertinent parameters. To check if the sensor sensitivity is suitable, you can mimic real-world traffic situations throughout the debugging process, such as the typical flow of people or cars.
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