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.
Installation Indication
Follow these steps to put the drive on the door shaft:
Both the left and right sides of the drive can have mounting bracket 2 installed. Without tightening the screw, attach mounting washer bracket 2 to drive 5 and screw 1 in accordance with the chosen working position.
When you are ready to install the drive, mark the location of the mounting bracket fastening hole by attaching the mounting bracket to the base and the drive unit 5 to the three door shafts (wall or metal structure).
After removing the drive from the door axle, attach the mounting bracket to the base by carrying out the required installation tasks.
Put driver 5 on shaft 3 and install stop ring 4 on shaft 3. On shaft 3, install the necessary flat key 6. Secure attaching bracket number two to the base by tightening all of the screws. 1. Attach a second lock ring 4 to the door shaft 3. The two lock rings 4 are screwed into place and firmly positioned on either side of the drive.
Industrial Door Opener Operation
An industrial door opener is a machine that opens and closes industrial doors automatically. The following essential elements operate in concert to form its basic functioning principle:
Sensor: This is the industrial door opener's "eye" and is capable of sensing a variety of conditions surrounding the door. Common infrared sensors, for instance, can determine whether an object is approaching the entrance. The infrared rays are blocked when an object gets close, and the sensor detects the change in signal and sends it to the controller. Additionally, there are microwave sensors that use microwave emission and variations in reflected waves to detect object movement. Even if an object is not directly in the sensor's line of sight, it can nevertheless send out signals when it detects movement within a specific range. Furthermore, when metal objects like cars approach, geomagnetic sensors may identify changes in the geomagnetic field and send a signal to the door opener to open the door. These sensors' function is to make sure the door opens automatically when it's time to do so, increasing travel convenience and security.
Controller: The controller functions as the industrial door opener's "brain" After receiving signals from the sensor, it processes and analyzes them in accordance with the preprogrammed protocol. A microprocessor and associated circuit components are found in the controller. Based on the received signal, the microprocessor decides if the requirements for opening or closing the door are satisfied.For instance, the controller will command the motor to open the door if it receives a signal from an infrared sensor that an object is approaching and the signal satisfies predetermined distance and time requirements (for instance, the signal must be within a specific distance from the door and its duration must reach a predetermined value). Simultaneously, the controller has the ability to keep an eye on the door's operational status, including regulating the speed at which it opens and maintaining its open position for a predetermined amount of time. To accomplish more complicated tasks, the controller of some sophisticated industrial door openers can also speak with other gadgets (such security alarm systems, access control systems, etc.).
Motor: The industrial door opener's motor provides power. The motor begins to run when the controller commands the door to open or close. The door body moves in response to the motor's power delivery to it via the transmission mechanism. The kind and features of the motor also vary depending on the type of door opener.
For instance, DC motors, which offer the benefits of simple speed control and comparatively smooth start and stop, may be utilized by some small industrial swing door operators. On the other hand, AC motors, which have a high torque and can drive heavier doors, may be utilized for large industrial sliding or rolling doors. The controller carefully regulates the motor's speed and direction to guarantee that the door opens and closes smoothly as needed.
Transmission system: The transmission system is in charge of transferring the motor's power to the door so that it can move as intended. A few examples of common transmission mechanisms are gear drives, belt drives, and chain drives. Chain drives are appropriate for some heavier doors because of their great load-bearing capacity and transmission efficiency.
For instance, the chain in an industrial sliding door opener can translate the motor's rotational motion into the door's up-and-down sliding motion. Belt drives are frequently utilized in locations with strict noise regulations since they are reasonably stable and quiet. Some industrial door openers that need precise control over door movement employ gear drives because of their high torque transmission capability and exact transmission ratio. The door can open and close effectively and steadily in a variety of operating situations thanks to the collaboration of these motors and transmission mechanisms.
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