Specifications
| Connection Inlet / Outlet Flange | DN 63 CF (4.5") / DN 16 ISO-KF (NW16) |
| Power Total Rated | 80.00 |
nEXT55D - Turbo Pump, DC 24V , 80 W, DN 63 CF (4.5"), D - Duplex
Variant
Explore the range of variants given below to compare the product
| Short Description | Part Number |
|---|---|
| B8A210101 | |
| B8A210A01 | |
| B8A210B01 | |
| B8A210C01 | |
| B8E210101 | |
| B8E210A01 | |
| B8E210B01 | |
| B8E210C01 |
Turbomolecular Pumps Mechanical
Turbomolecular pumps (TMPs) are kinetic vacuum pumps which operate using a very fast spinning rotor (usually rotating at between 24,000 and 90,000 RPM). Their typical operating pressures are in the high to ultra-high pressure range between 10-3 and 10-11 mbar, employing pumping speeds of between 10 and 4,000 l/s. They are widely used in scientific and industrial applications that require precise and clean vacuum environments, such as surface analysis, mass spectrometry, and vacuum deposition. They can operate continuously for long periods, making them ideal for many laboratory and manufacturing applications.
nEXT Pumps
nEXT turbomolecular pumps are hybrid bearing pumps with integrated controllers for pumping speeds from 47 to 1250 ls-1.
The nEXT is a hybrid bearing compound turbomolecular pump. nEXT pumps combine our proven bearing technology, an improved rotor design with a new molecular drag stage to deliver improved pumping speed and compression ratios, and user serviceability. They feature 24 V to 48 V DC sensorless motors with a built-in drive that is fully compatible with our range of TAG and TIC controllers.
nEXT55
With nEXT85 and nEXT55 Edwards offers a small and compact turbomolecular pump platform ideal for Analytical Instruments as well as for the R&D market.
nEXT55D - CF63 NW16 80W
is a turbo molecular pump - hybrid bearing with a D - Duplex design offering a balanced performance between good gas throughput and good light gas compression.
Features and Benefits
- Upper magnetic bearing - ensures clean vacuum, low power and low vibration.
- Optimised rotor designs - deliver high speeds and high compression.
- Range of variants suitable for many applications - D = standard nEXT pump variant, H = optimised rotor design for high light gas compression and T = additional regenerative stage for increased compression and higher backing pressure capability
- Integrated controller / electronics - offers direct I/O or serial control or can be connected to one of our TAG or TIC controllers for easy systemisation.
- Fully user serviceable - oil cartridge and bearings can be changed in the field with minimal tooling.
- Inlet screen - supplied as standard
General Product Information
| Dimension Height | 0.143 |
| Dimension Width | 0.117 |
| Noise / Sound Level | 34.00 db(A) |
| Connection Inlet / Outlet Flange | DN 63 CF (4.5") / DN 16 ISO-KF (NW16) |
| Dimension Comments | The dimensions length, width and height try to describe the outer shape of this particular product in its typical orientation when standing on the ground. We always recommend checking the detailed dimensions given in 2D drawings in the instruction manual or the 3D shapes given in 3D models. |
Environmental Conditions
| Temperature Ambient Operation Max | 313.15 |
| Temperature Ambient Operation Min | 278.15 |
| Temperature Ambient Storage Min | 243.15 |
| Temperature Ambient Storage Max | 343.15 |
| Magnetic Field Resistance Max (covering worst direction - come and consult us for more details) | 5.000 × 10⁻³ T |
Operation Conditions - Limitations
| Altitude Max | 2000.00 |
| Flow Cooling Water Min | 4.167 × 10⁻⁶ |
| Temperature Cooling Water Max | 313.15 |
| Temperature Cooling Water Min | 283.15 |
Classification
| Classification Dry or Wet Pump | Dry |
Performance Data
| Power Total Rated | 80.00 |
| Pressure Ultimate | 1.000 × 10⁻⁵ |
| Nominal rotational speed | 1500.00 |
| Power at Ultimate | 20.00 |
| Pumping Speed Air Nitrogen (@50Hz or max @default setting) | 0.055 |
| Ramp Up Time | 90.00 |
| Pumping Speed Argon | 0.055 |
| Pumping Speed Helium | 0.041 |
| Pumping Speed Hydrogen | 0.027 |
| Compression Ratio Argon | 1.000 × 10⁻¹¹ |
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