High power variable speed 3HP EC BLDC motor for farm duty fan
Introduction
This page shows a high power EC/BLDC fan motor used in fan blower or air conditioner units and similar applications, which need to drive fan blowers.
Till now, Hengsheng has a various of specifications of AC BLDC motors, and different induction motor, geared motor, PM motor with gearbox. Because of its long working life, stable performance and low failure rate, our products are well received by customers. We have got the certification of CCC, RoHS and ISO9001:2008.
Features of BLDC motor
1. Rated Voltage:200-240V 50Hz/60Hz
2. Output power range: 750W-2.2KW
3. Speed 300-1000 adjustable
4. The driver adopts the structure of aluminum shell completely closed, which has high protection level and is safe and reliable.
5. The driver adopts independent installation structure, which is convenient for disassembly and maintenance after sale.
6. The driver is integrated with three-speed, VSP10V,AC24V,PWM/PWF, RS485 control mode, and the function of speed feedback is optional.
7.Using infrared remote control, adjustable constant speed,constant torque, fan coil unit load, cassette fan coil unit load.clockwise or counterclockwise rotation
8.Using the same structure and installation method as the single-phase electric power, it is more convenient to replace and popularize
9.Rated speed 1070 RPM, rated output power 750W, Max Torque 6.5 Nm.
Specification
140&160mm motor specification | |||||||||||
PN | A | B | C | D | E | F | G | H | K | Specification | Rotation |
12411001 | 6 | φ25.4 | M12*P1.75 | 35 | 35 | 49 | 84.7 | 102 | 325 | 160-220V-1.2KW-450rpm | CCW |
12511001 | 6 | φ25.4 | M12*P1.75 | 35 | 35 | 49 | 84.7 | 102 | 325 | 160-380V-1.2KW-600rpm | CCW |
16911006 | 6 | φ24 | M12*P1.75 | 35 | 35 | 49 | 84.7 | 102 | 325 | 160-380V-1.5KW-940rpm | CCW |
13411003 | 8 | φ24 | M12*P1.75 | 35 | 35 | 49 | 84.7 | 102 | 325 | 160-220V-1.5KW-940rpm | CCW |
16311001 | 6 | φ25.4 | M12*P1.75 | 35 | 35 | 49 | 84.7 | 102 | 325 | 160-380V-1.8KW-950rpm | CCW |
14711001 | 6 | φ25.4 | M12*P1.75 | 35 | 35 | 49 | 84.7 | 102 | 325 | 160-380V-2KW-1400rpm | CCW |
16411001 | 8 | φ24 | M16*P1.5 | 26 | 40 | 70 | 93 | 110 | 333 | 160-380V-2.2KW-950rpm | CCW |
12411003 | 8 | φ24 | M20*P1.5 | 30 | 45 | 78 | 95 | 112 | 335 | 160-220V-1.1KW-600rpm | CW |
12411005 | 8 | φ24 | M20*P1.6 | 30 | 45 | 78 | 95 | 112 | 335 | 160-110V-1.1KW-600rpm | CW |
12811003 | 6 | φ25.4 | M12*P1.75 | 35 | 35 | 49 | 51 | 72 | 289 | 140-220V-0.375KW-730rpn | CCW |
13011001 | 6 | φ25.4 | M12*P1.75 | 35 | 35 | 49 | 51 | 72 | 289 | 140-380V-0.375KW-500rpn | CCW |
12811001 | 6 | φ25.4 | M12*P1.75 | 35 | 35 | 49 | 51 | 72 | 289 | 140-220V-0.55KW-560rpm | CCW |
12911001 | 6 | φ25.4 | M12*P1.75 | 35 | 35 | 49 | 51 | 72 | 289 | 140-380V-0.55KW-890rpm | CCW |
12911003 | 8 | φ24 | M12*P1.75 | 35 | 35 | 49 | 51 | 72 | 289 | 140-380V-0.55KW-940pm | CCW |
12811006 | 8 | φ24 | M12*P1.75 | 35 | 35 | 49 | 51 | 72 | 289 | 140-220V-0.75KW-940rpm | CCW |
16911003 | 14 | φ15 | M10*P1.5 | 21 | 30 | 53 | 71 | 88 | 304 | 140-380V-1.1KW-940pm | CCW |
16311001 | 14 | φ15 | M10*P1.5 | 21 | 30 | 53 | 71 | 88 | 304 | 140-380V-0.75KW-940pm | CW |
More information of Brushless DC Motor
Brushless DC motor usually the rotor magnetic pole adopts tile magnet, after the magnetic circuit design, the air gap magnetic density of the trapezoidal wave can be obtained, and the stator winding mostly adopts a concentrated integer winding, so the induced back EMF is also trapezoidal wave. The control of brushless DC motor requires position information feedback, and there must be a position sensor or adopt positionless sensor estimation technology to form an automatic speed regulation system. When controlling, the current of each phase is also controlled into a square wave as much as possible, and the inverter output voltage can be controlled according to the method of PWM of the brushed DC motor. In essence, brushless DC motor is also a permanent magnet synchronous motor, and speed regulation actually belongs to the category of variable voltage and variable frequency speed regulation. The difference between the two can be considered as the difference in design concepts caused by square wave and sine wave control.