230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial

Product Details
Customization: Available
Material: Metal
Blade Material: Galvanized Sheet Steel
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  • 230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
  • 230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
  • 230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
  • 230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
  • 230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
  • 230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
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Basic Info.

Model NO.
PB3N250B2EM
Type
Centrifugal Fan
Electric Current Type
AC
Mounting
Free Standing
Certification
RoHS, CE
Product Name
250*128.5mm Ec-AC Backward Curved Centrifugal Fan
Motor Type
Ec Brushless External Rotor Motor
Fan Feature
0~10VDC/PWM Speed Control, Tach Output
Rated Voltage
230VAC
Air Flow
1, 700 M3/H
Static Pressure
716 PA
Protection Type
IP44
Insulation Class
B
Operating Temperature
-25~+60
Weight
3 Kg
Transport Package
Standard Exporting Package
Specification
CE, ROHS
Trademark
PBM
Origin
Suzhou, Jiangsu
HS Code
8414593000
Production Capacity
50, 000PCS/Year

Packaging & Delivery

Package Size
34.00cm * 34.00cm * 24.00cm
Package Gross Weight
3.270kg

Product Description

230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
Modelo No.: PB3N250B2EM
230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
1.Carácter universal
   Modelo    PB3N250B2EM
   Tensión Nominal
230VAC
   Tensión de Funcionamiento
184-276VAC
   Velocidad Nominal
2780RPM
   Corriente de Entrada
1.13A
   Potencia de Entrada
155W
   Flujo de Aire
1700 m3/H / 1000.45CFM
   Presión Estática
716 Pa / 2.86inH2O
   Nivel Sonoro
75 dB(A)
   Esperanza de Vida   50.000 horas (l10)
  Temperatura ambiente 40 ° c, humedad 15% a 65% RH
   Nivel de aislamiento    Class B
   Protección del Motor   Protección del rotor de bloqueo
  Protección polar
  Función de reinicio automático
   Control de Velocidad    Entrada de control 0~10VDC / PWM
   Tipo de protección
IP44
   Salida de señal    FG (Generador de frecuencia)

2.Características Mecánicas
   Dimensión
250mm X118mm (Ver mapa de tamaño)
   Material del impulsor    Carcasa metálica galvanizada
   Número de hojas
11
   Sistema de rodamientos    Rodamientos de bolas NMB
   Línea de alimentación
AC(AWG20#),DC(AWG22#)

3.Características ambientales
   Operación Temperatura -25ºC to 60ºC
   Temperatura de Almacenamiento -40ºC to 75ºC
   Humedad de Trabajo 5% to 90% RH
   Operación de humedad de almacenamiento
   Temperatura
5% to 95% RH

4.Curva de Rendimiento
230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
5.El dibujo de Esquema
230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
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Certificate Show:UL / CE / Rohs
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230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration IndustrialSobre BM: Ventiladores EC de Alta Calidad / Precios Competitivos / Equipos Fuertes / Longevidad / Entrega Rápida / Personalizable / Servicio Atento / Asistencia Profesional
230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration IndustrialLaboratorio / Método de Embalaje / Taller / Almacén

230V Ec-AC Backward Curved Centrifugal Fan for Refrigeration Industrial
FAQ
Electronically Commutated Motors (EC Motors) also known as Brushless DC Motors (BLDC) are synchronous electric motors powered by direct-current (DC) electricity and having electronic commutation systems, rather than mechanical commutators and brushes. The current-to-torque and voltage-to-speed relationships of BLDC motors are linear.
As mentioned EC Motors are always synchronous & the conventional AC motors are not synchronous.
This is explained in more detail below:
A 2 pole motor @ 50 Cycle will run slightly below 3000rpm, whilst a 4 pole motor @ 50 Cycle will run slightly below 1500rpm - this difference in speed is commonly known as the 'slip'.
Although the efficiency on a conventional AC Shaded Pole motor can be relatively good at or near this normal slip, as the motor is forced down in speed to increase this slip, the efficiency can drop away dramatically with the majority of the wasted electrical energy being turned into heat emanating from the motor coils. This has a detrimental affect on the life of the bearings and necessitates thermal devices to be added to the coils to ensure safety and prevent electrical insulation fatigue.
The further we reduce the speed of the AC Shaded Pole Motor below its optimum full speed point, the more difficult it becomes to stabilize the speed and it is not uncommon for this type of motor to hunt between two speeds.

               
An Electronically Commutated DC motor (EC) will always run at synchronous speed, with the motor coils being close loop controlled. That is unless there are other external controls; the motor speed is controlled only by the motor design and application load. Although the efficiency does vary with speed, the variation is small as compared with an AC Shaded Pole Motor.

Unfortunately, EC motors are inherently more expensive to produce due to the addition of an el ronic commutation circuit, however, with advances and demand in the semi-conductor marketsincreasing, the controls are often straightforward and relatively low cost.

Frequently Asked Question
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.
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