Magnetic drive pump is a new product which applies the working principle of permanent magnet coupling shaft to centrifugal pump. It has the characteristics of reasonable design, advanced technology, full seal and no leakage.
Features:
- ETFE (carbon-fiber reinforced) wetted-end material.
- Able to handle many types of chemical and temperature up to 90 ℃.
- Available in flange connections.
Specification:
| Model |
CCHN-507PW-F |
| Specific Gravity |
1.2 |
| Frequency |
50Hz, 60Hz |
| Rated Voltage |
3-phase 380V (please contact us for other voltages) |
| Pump performance at specific point (M-L/min) |
50Hz |
21.5-600 |
| 60Hz |
22.5-600 |
| Motor Output |
7 HP (5.5 kW) |
| Flange Size |
50 mm (outlet); 65 mm (inlet) |
| Casing Material |
ETFE |
| Shaft Material |
ceramic |
| Bearing Material |
carbon |
| O-ring Material |
FKM |
| Interface Mode |
thread, flange |
| Net Weight |
99kg |
Structure:

Dimension (Unit: mm)

| Model |
W |
H |
L |
a |
b |
c |
d |
e |
f |
| 507PW-F |
260 |
319 |
676.5 |
311.5 |
300 |
123.2 |
220 |
162 |
89.5 |
Tips: Disadvantages of Magnetic Drive Pump
-
Limited Flow Rate. Magnetic drive pumps have a limited flow rate due to their design, which can restrict their use in high-volume applications.
-
Low Pressure. Magnetic drive pumps have lower pressure capabilities compared to other types of pumps, which may make them unsuitable for applications requiring high-pressure delivery.
-
Temperature Sensitivity. Magnetic drive pumps can be sensitive to temperature changes, which can affect their performance and durability.
-
Limited Viscosity Range. Magnetic drive pumps are typically only suitable for handling low to medium viscosity fluids, which can limit their versatility and utility.