PBM blowers, with forward curved impeller, compact EC motor drives optimized single inlet scroll housing.
The fans could be installed at any directions with fixed riveting nut at scroll housing metal ring, optimized radial scroll housing design and plastic, metal sheet optional impeller to output higher air pressure at customer requested working point in their ventilation duct system or unit box of different materials, such as galvanized metal, aluminum, copper, PE, PVC, polyfoam etc.
AC and DC power supply are available for entire range of fans with integrated and intelligence EC technology motor with inside or outside mounted international standard remote control R485 communication protocol that's suitable to be adopted in IoE(Internet of Everything), IoT(Internet of Things), smart home system, Industry 4.0 and committed to Carbon Neutrality climate change by reducing customers carbon footprints.
PFC(Power Factor Correction), up to λ>96%, is optional for electricity grad stabilization compliance in certain circumstances of applications. ErP2015 (Energy-related Products) Directive conformity, COMMISSION REGULATION (EU) No 327/2011 of 30 March 2011 implementing Directive 2009/125/EC of the European Parliament and of the Council with regard to eco-design requirements for fans driven by motors with an electric input power between 125 W and 500 kW.
Impeller Sizes: From 120mm to 280mm diameter;
Sound Level: From 50dBA to maximum 79dBA according different rotation speed;
Airflow: Maximum to 3,000CMH, Cubic Meter per Hour, equal to approx. 1,766CFM , Cubic Feet per Minute;
Air Pressure: Maxim to 900Pa, equal to 91.84mm H2O and to 3.62 inches H2O;
Power: Maximum motor input power goes to 950W (equal to 1.29hp, horsepower) at motor diameter 138mm.
Outline Drawing
Note:
1.Connection line: AC(3×AWG20#),DC(4×AWG22#)
2.AC: Brown=Live Line,Blue=Null Line,Green & Yellow=Protecting Earthing;
3.DC: Red=Voltage Output +10VDC, Yellow=0-10VDC/PWM, White=FG, Blue=GND;
Performance Curve
Testing Condition:
Input Voltage----Operating voltage (230VAC/50Hz)
Temperature-----Room temperature
Humidity---------65%RH
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Same Series Parameter Table
Model |
Rated Voltage |
Rated Power |
Rated Speed |
Air Flow |
Air Pressure |
EC/DC/AC |
PS3N100B24M |
24 VDC |
24 W |
2800 RPM |
113.4 M³/H |
338 Pa |
DC |
PS3N100B48M |
48 VDC |
24 W |
2800 RPM |
113.4 M³/H |
338 Pa |
DC |
PS3N120B2EM |
230 VAC |
55 W |
2400 RPM |
317 M³/H |
471 Pa |
EC |
PS3N120B24M |
24 VDC |
72 W |
2800 RPM |
317 M³/H |
471 Pa |
DC |
PS3N120B48M |
48 VDC |
72 W |
2800 RPM |
317 M³/H |
471 Pa |
DC |
PS3N133B24M |
24 VDC |
60 W |
2200 RPM |
238 M³/H |
525 Pa |
DC |
PS3N133B48M |
48 VDC |
60 W |
2200 RPM |
238 M³/H |
525 Pa |
DC |
PS3N140B2EM |
230 VAC |
170 W |
2600 RPM |
567.7 M³/H |
696 Pa |
EC |
PS3N140B24M |
24 VDC |
80 W |
1800 RPM |
450 M³/H |
420 Pa |
DC |
PS3N150B24M |
24 VDC |
105 W |
2400 RPM |
500 M³/H |
750 Pa |
DC |
PS3N150B48M |
48 VDC |
105 W |
2400 RPM |
500 M³/H |
750 Pa |
DC |
PS3N160B2EM |
230 VAC |
170 W |
1950 RPM |
688 M³/H |
810 Pa |
EC |
PS3N160B24M |
24 VDC |
105 W |
1950 RPM |
550 M³/H |
620 Pa |
DC |
PS3N160B48M |
48 VDC |
105 W |
1950 RPM |
550 M³/H |
620 Pa |
DC |
PS3N180B2EM |
230 VAC |
170 W |
1500 RPM |
820 M³/H |
900 Pa |
EC |
PS3N180B24M |
24 VDC |
90 W |
1250 RPM |
600 M³/H |
600 Pa |
DC |
PS3N180B48M |
48 VDC |
90 W |
1250 RPM |
600 M³/H |
600 Pa |
DC |
Certifications
Certificate Show:UL / CE / Rohs
Application Scopes

Exhibition Showcase
Packing Detail
FAQ
Q: What are electronically commutated motors?
Electronically Commutated motors are brushless DC motors where the direction of the electric current is switched using electronic controllers. As the switching of the current is technically known as 'commutating', brushless motors are also called 'electronically commutated' motors. EC motors provide the advantages of brushed DC motors in terms of the ability to have variable speed control, but without the drawbacks of brushes.
Q: What are the advantages of EC motors?
EC motors are very high efficiency electric motors (80%) and maintain a high efficiency level at part speed. This means that in most cases they use less than one third to half of the electricity used by traditional induction motors, which in turn translates into lower operating costs and short payback periods. As EC motors have a higher efficiency this ensures that the motors run cooler in application which ensures a longer life for the motor.
In terms of speed control and features, because the motor's operation is controlled by software, EC motors allow customers to optimize and integrate the motor, fan and controller with the application, and to include features like data communications, constant volume control, variable speed.
Features & Advantages
Q: What about cost?
The initial outlay for an EC motor is more expensive than the traditional induction / shaded pole motors and this is mainly due to the electronic components required to drive the commutation. In recent years the cost of electronic components has reduced dramatically as volumes increase.
The huge energy savings provided by EC motors, mean equally large savings in operating costs, which in turn translate in payback periods as short as a few months combined with a longer life expectancy.
In our case, together with high energy savings, low use of raw material, low part count and simple electronics, have allowed us to make our motor price very competitive.
Q: How are EC motors 'sustainable'?
The huge energy savings provided by our EC motors directly translate into large carbon emissions savings.
By using an EC motors in your application we are able to assist our customers in dramatically reducing the air pollution (CO2) generated by their applications. This is due to the motors high efficency & low energy costs which helps to preserve the world for a 'greener' future.
EC Motors are designed & manufactured using 70% less copper and 80% less steel than traditional induction and shaded pole motors which has a dramatic reduction in environmental impact in producing these raw material components.
services to the clients.
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