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60 products
Vacuum membrane pump PL.HM02.02.10 Primelab
Vacuum membrane pump PL.HM02.02.10 Primelab
from 165 000 ₽
Vacuum membrane pump PL.HM02.02.10 Primelab is an effective, compact and powerful device for creating a vacuum or pumping gases. It makes virtually no noise, is suitable for constant use, and does not cause discomfort. Overheating protection is provided. All chambers are made of fluoroplastic, connections are coated with fluoroplastic, and valves are made of FFKM, which guarantees maximum safety of the device. Elements and parts of the device do not react with working substances. Device performance depends on the camera connection method: • Independent. Pumping speed – 38 l/min with a maximum of 45 mbar; • Parallel. Pumping speed – 76 l/min at a maximum pressure of 45 mbar; • Consistent. Pumping speed – 38 l/min at a maximum pressure of 10 mbar.
Primelab
Mytishchi
Produced in: Mytishchi, Moscow region
2VVN1-25 water ring vacuum pump
2VVN1-25 water ring vacuum pump
The use of a 2VVN1-25(H) water-ring vacuum pump for pumping out water-gas mixtures is allowed only if the bulk of the water is separated and discharged at the pump entrance. Failure to comply with this requirement may lead to unacceptable overload of the electric motor and destruction of the working parts of the 2VVN1-25(H) pump. The 2VVN1-25(H) vacuum water ring pump is manufactured in the climatic version of UHL 4 and O4 (i.e. for moderate and cold climate) according to GOST standard 15150-69, meets the requirements of technical specifications TU 3648-015-00218526-2000, designed and manufactured taking into account the requirements of GOST R 52615-2006. The quality of electricity must meet the requrimemnts of GOST 32144-2013.
Produced in: Kazan
Vacuum membrane pump PL.HM03.02.60 Primelab
Vacuum membrane pump PL.HM03.02.60 Primelab
from 100 000 ₽
The vacuum pump chamber is made of fluoroplastic, and other parts are coated with fluoroplastic, which ensures the high chemical resistance of the pump. It has a pumping speed of gases and vapors of 38 l/min at an extreme vacuum of 60 mbar. It is quite compact, so it can be placed in almost any already equipped space. Valve(s) material FFKM (Perfluoro rubber) Working medium Gas Country Russia Chemical resistance Yes Overall dimensions, L×W×H, mm 289.5x160x200 Protection class acc. to DIN EN60529 IP20 Noise level, dB 75 dB Power supply 230 V, 50 Hz Ultimate vacuum, mbar abs. 60 Excess pressure, bar. Max. permissible 0.5 bar Productivity, l/min 38 Drive rotation speed, rpm 1350 Maximum current, A 1.2 Device weight, kg 7.6 Working chamber material PTFE (polytetrafluoroethylene) Equipment: Vacuum pump, cable, instructions, passport, packaging (vacuum regulator and spare parts are not included in the kit and must be ordered separately).
Primelab
Mytishchi
Produced in: Mytishchi, Moscow region
2NVBM-400/6000 Booster high vacuum pump
2NVBM-400/6000 Booster high vacuum pump
The 2NVBM-400(R)/6000 booster pump consists of housings, a steam line, a trap and a heater. The required effective speed of action of the pre-vacuum pump (pumps) at a pressure of 200 Pa (1.5 mm Hg) at the outlet of the booster pump 2NVBM-400(R)/6000 is not less than 45 l/s. The maximum residual pressure of the pump 2NVBM-400(R)/6000, measured by the PMI-2 manometric ionization converter with nitrogen filled into its trap, is no more than 6.6 × 10-4 Pa (5 × 10-6 mmHg). The pressure of the cooling water at the inlet to the pump 2NVBM-400 (R)/6000 should be from 0.2 to 0.5 MPa (from 2 to 5 kgf / cm2). The drain from the pump should be free with a jet break. Cooling water consumption is 600 l/h. The total amount of working fluid for the 2NVBM-400(R)/6000 pump is 47 liters, the level of working fluid should be between the upper and lower marks of the level gauge. Replacement or refilling of the working fluid depends on the operating mode of the pump (inlet pressure, pumping duration, etc.) and the composition of the pumped medium, so the time after which the working fluid is replaced or refilled can be 100 hours or more. A large flow rate of the working fluid is observed when the pump is operating in the input pressure range from 1.33 to 13.3 Pa (from 1 ·10-2 to 1 ·10-1 mm Hg). The pump operating mode in the range from 13.3 Pa (0.1 mmHg) to the maximum residual pressure is cyclically irregular.
Produced in: Kazan
Vacuum membrane pump PL.HM01.02.6 Primelab
Vacuum membrane pump PL.HM01.02.6 Primelab
from 200 000 ₽
Vacuum membrane pump PL.HM01.02.6 Primelab is a compact, efficient and durable device for creating a vacuum or pumping gases and vapors in laboratory conditions. It has a low noise level (up to 75 dB) and does not require regular maintenance. Warranty and post-warranty service is available in Russia. The equipment is suitable for working with chemically active and toxic substances and does not react with them. The cameras are made of fluoroplastic, and all its parts have a fluoroplastic coating. The pump capacity is 38 l/min at a maximum vacuum of 6 mbar.
Primelab
Mytishchi
Produced in: Mytishchi, Moscow region
NVDM-160 High-vacuum Diffusion Pump
NVDM-160 High-vacuum Diffusion Pump
The operation of the NVDM-160 diffusion pump is based on the capture and transfer of the pumped gas by a steam jet flowing from the slit gaps of the steam line nozzles towards the outlet flange. The oil reflector of the NVDM-160 diffusion pump is a flange with a cooling tube passing through it, soldered to a cap located in the center of the flange. The NVDM-160 closed-type diffusion pump heater consists of tubular electric heaters fixed in the heater housing. During the operation of the pump, it is necessary to monitor the flow rate and temperature of the cooling water, the level of the working fluid and its temperature. Replacement or refilling of the working fluid depends on the operating mode of the pump (inlet pressure, pumping duration, etc.) and the composition of the pumped medium. Therefore, the time after which the working fluid is replaced or refilled can be from 100 to 1000 or more hours. A large flow rate of the working fluid is observed when the pump is operating in the range of inlet pressures from 6.6×10-2 to 13.3 Pa (from 5×10-4 to 1×10-1 mm Hg). Water at the inlet to the cooling systems of the housing and oil reflector must be supplied with a pressure of no more than 0.5 MPa (5 kgf / cm2) and temperature from plus 40C to plus 250C. The recommended cooling water consumption is 60+10 l/h and is regulated by the outlet water temperature, which should not exceed plus 400C. The water drain should be free (with a jet break). Not allowed: operation of the pump without water cooling, exceeding the maximum exhaust pressure of 33.3 Pa (0.25 mm Hg). The level of the working fluid during operation, at which the parameters of the NVDM-160 pump are provided, must correspond to min 10mm, max 17mm. The volume of the filled working fluid is 0.3 liters
Produced in: Kazan
High-vacuum turbomolecular pump VEGA ProVac 2000
High-vacuum turbomolecular pump VEGA ProVac 2000
The complex includes: VEGA ProVac 2000 turbomolecular high vacuum pump; frequency converter; a set of mounting parts. For connection to the pre-vacuum pumping system, the pump is equipped with an ISO-KF40 exhaust flange. Pump cooling is combined. Based on the operating conditions, the complex can work both with forced air cooling and with water cooling. The working orientation in space is vertical.
Produced in: Vladimir
Vacuum membrane pump PL.HM01.01.8 Primelab
Vacuum membrane pump PL.HM01.01.8 Primelab
from 150 000 ₽
The Primelab vacuum diaphragm pump PL.HM01.01.8 has excellent performance - up to 38 l/min at a maximum vacuum of 8 mbar. Suitable for a wide range of industrial and laboratory applications. It is used for working with chemically active substances due to the use of high-quality materials in its design that do not react with toxic reagents. The chambers are made of fluoroplastic, all parts have a fluoroplastic coating. Complies with IP20 protection class. Supplied complete with equipment sufficient for quick assembly and operation of the device. Namely this: vacuum pump, cable, instructions, passport, packaging (vacuum regulator and spare parts are not included in the kit and must be ordered separately).
Primelab
Mytishchi
Produced in: Mytishchi, Moscow region
ND-400 High-vacuum Diffusion pump
ND-400 High-vacuum Diffusion pump
The working condition of the ND-400(R) diffusion pump depends on the temperature of the working fluid in the pump boiler. During the initial filling, it is recommended to fill the maximum volume of the working fluid. Working fluid is "VACMA OIL 500" vacuum oil (under technical specifications TU 19.20.29-061-00218526-2019). The total amount of working fluid in the ND-400(R) diffusion pump is a maximum of 5 liters, a minimum of 3.3 liters. The viewing window for visual inspection of the working fluid has marks of its maximum and minimum amounts. During normal operation of the pump, the level of the working fluid practically does not change. The temperature of the working fluid when the pump is operating at the maximum residual pressure is about 240°C to 255°C. It is recommended to monitor the operation of heaters in the ND-400(R) diffusion pump using one temperature sensor. The temperature sensor must be installed in a special radiator socket above the heater. If there is a loss of working fluid and an increase in the temperature of the radiators of the ND-400(P) diffusion pump to 320°C, the temperature sensor must give the command to automatically turn off the heaters. The subsequent activation of the pump heaters should not be automatic and should be performed only after cooling the system. Water at the inlet to the cooling systems of the housing and the oil reflector must be supplied with a pressure of 0.3 MPa (3 kgf/cm2) to 0.5 MPa (5 kgf/cm2) and a temperature of plus 4°C to plus 25°C. The recommended cooling water consumption for the housing is 250 l/h, for the oil reflector it is 40 l / h. It is regulated by the outlet water temperature, which should not exceed plus 40°C. The water drain should be free (with a jet break).
Produced in: Kazan
Vacuum membrane pump PL.HM02.01.4 Primelab
Vacuum membrane pump PL.HM02.01.4 Primelab
from 250 000 ₽
The vacuum membrane pump PL.HM02.01.4 is a universal device made in Russia from the Primelab company. Made from high-quality materials, including fluoroplastic, used to create sealed chambers, and a protective coating for safe operation of the device. The technical characteristics of the pump depend on the method of connecting the chambers. With a series connection, the performance will be 38 l/min at a maximum vacuum of 4 mbar. Parallel and independent connections will allow you to achieve completely different performance indicators of the device. The vacuum diaphragm pump PL.HM02.01.4 Primelab is convenient to use. It has a light weight of 9 kg, compact dimensions (321.5x160x200 mm) and creates a minimum of noise (up to 75 dB).
Primelab
Mytishchi
Produced in: Mytishchi, Moscow region
VEGA ProVac 1500 high-vacuum turbomolecular pump
VEGA ProVac 1500 high-vacuum turbomolecular pump
The complex includes: VEGA ProVac 1500 turbomolecular high vacuum pump; frequency converter; set of mounting parts; operation manual. For connection to the pre-vacuum pumping system, the pump is equipped with an ISO-KF40 exhaust flange. Pump cooling is combined. Based on the operating conditions, the complex can work both with forced air cooling and with water cooling. The working orientation in space is vertical.
Produced in: Vladimir
Vacuum turbomolecular complex KW-150
Vacuum turbomolecular complex KW-150
The complex includes: single-flow turbomolecular vacuum pump VGTN-150; frequency converter; set of mounting parts; operation manual. For connecting to the pre-vacuum pumping system, the pump is equipped with an ISO-KF25 exhaust flange. If necessary, it can be upgraded with an ISO-KF16 flange for purging the pump with inert gas. Pump cooling is combined. Based on the operating conditions, the complex can work both with forced air cooling and with water cooling. The working orientation in space is arbitrary. One of the key features of the pump is that a breakthrough of the atmosphere is possible. This has become possible due to the production of a turbine from a solid billet and a special, rigid design of the bearing assembly.
Produced in: Vladimir