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high quality hydraulic test bench booster factory price for pressurization

high quality hydraulic test bench booster factory price for pressurization
  • high quality hydraulic test bench booster factory price for pressurization
  • high quality hydraulic test bench booster factory price for pressurization
  • high quality hydraulic test bench booster factory price for pressurization
  • high quality hydraulic test bench booster factory price for pressurization
  • high quality hydraulic test bench booster factory price for pressurization
  • high quality hydraulic test bench booster factory price for pressurization
  • high quality hydraulic test bench booster factory price for pressurization
  • high quality hydraulic test bench booster factory price for pressurization

high quality hydraulic test bench booster factory price for pressurization

We can meet you any material requirements for hydraulic test bench, no matter plastic material , wooden material or other material. It's easy to assemble into the electronic devices
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Gas booster pump system


Suncenter - Gas booster systems are compact and delicacy solution tailored to customer specific requirements with gas boosters as well as all accessories to be fitted and installed in the frame or a closed cabinet.


To operate this system, the pressure gauges, valves and pressure regulators have to be fitted on panels. The outlet pressure is easily to be set through a simple air regulator.


The pump stops automatically when this end pressure is reached and restarts with a slight drop in the outlet pressure or an increase in the air drive pressure.


Suncenter - Pneumatic booster system are used for oil free compression of clean shop air as well as industrial gases like Argon, Helium, Oxygen, Hydrogen and Nitrogen,CO2, etc..Driven air from 3 bar to 8 bar (from air compressor).


Operating pressure up to 80 MPa, for higher pressure, pump with double driven heads is an ideal option.


Suncenter DGS Series Pneumatic (Air driven) Gas Booster Pump System


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DGS booster system = booster pump+ following valves, gages, and parts


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The hottest selling- model A and model C cabinet picture


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  • The standard gas booster pumps system including following parts:

  • Air –driven gas booster pump (DGA/DGD/DGT three series for choosing)

  • Stainless steel (carbon steel) material cabinet (Three models for choosing)

  • F.R.L combination for driven air (adjusts air pressure, add lubricating oil and water filter)

  • Driven air switch (Pump starting switch), driven air pressure gauge

  • Gas inlet switch, Gas inlet pressure gauge

  • Gas outlet switch, Gas outlet pressure gauge,  unloading valve, interconnecting pipes etc.

  • And we could also customize it according to clients’ special requirement.


Model

Pressure boost ratio

Min. gas
Inlet pressure
PA (bar)

Max.gas
Inlet pressure
PA (bar)

Max. gas
outlet pressure PB (bar)

 Driven air pressure  PL

Formula to
calculate gas outlet pressure PB

Connection:
Gas Inlet /
Gas outlet (NPT thread)

Max. flow at driven air pressure of 6bar (L/min)

DGS-DGA02

2:1

1.0

16

16

2bar-8 bar

2X PL

1/2 / 1/2

960 (at PA of 6 bar )

DGS-DGA05

5:1

0

40

40

2bar-8 bar

5XPL

1/2 / 1/2

680(at PA of 6 bar )

DGS-DGA06

6:1

2.0

48

48

2bar-8 bar

6XPL

1/2 / 1/2

360(at PA of 10 bar )

DGS-DGA10

10:1

3.5

80

80

2bar-8 bar

10XPL

3/8/ 3/8

210(at PA of 10 bar )

DGS-DGA15

15:1

3.5

120

120

2bar-8 bar

15XPL

3/8/ 3/8

190(at PA of 10 bar )

DGS-DGA25

25:1

7.0

200

200

2bar-8 bar

25XPL

1/4/ 1/4

120(at PA of 20 bar )

DGS-DGA40

40:1

10

320

320

2bar-8 bar

40XPL

1/4/ 1/4

200(at PA of 40 bar )

DGS-DGA60

60:1

20

480

480

2bar-8 bar

60XPL

1/4/ 1/4

180(at PA of 40 bar )

DGS-DGA100

100:1

25

800

800

2bar-8 bar

100XPL

1/4/ M14X1.5

136(at PA of 40 bar )


Technical specification for DGS-DGD Series:


Model

Pressure boost ratio

Min. gas
Inlet pressure
PA (bar)

Max.gas
Inlet pressure
PA (bar)

Max. gas
outlet pressure PB (bar)

 Driven air pressure  PL

Formula to
calculate gas outlet pressure PB

Connection:
Gas Inlet /
Gas outlet (NPT thread)

Max. flow at driven air pressure of 6bar (L/min)

DGS-DGD10

10:1

3.5

80

80

2bar-8 bar

10XPL+ PA

3/8/3/8

410(at PA of 6 bar )

DGS-DGD15

15:1

5

120

120

2bar-8 bar

15XPL+ PA

3/8/3/8

350 (at PA of 6 bar )

DGS-DGD25

25:1

10

200

200

2bar-8 bar

25XPL+ PA

1/4/1/4

396(at PA of 20 bar )

DGS-DGD40

40:1

15

320

320

2bar-8 bar

40XPL+ PA

1/4/1/4

320(at PA of 40 bar )

DGS-DGD60

60:1

25

480

480

2bar-8 bar

60XPL+ PA

1/4/1/4

215(at PA of 40 bar )

DGS-DGD100

100:1

35

800

800

2bar-8 bar

100XPL+ PA

1/4/M14*1.5

300(at PA of 60 bar )

DGS-DGD130

130:1

50 

1040

1040 

2bar-8 bar

130XPL+ PA

1/4/M14*1.5

180(at PA of 60 bar )


Technical specification for DGS-2DGD Series:


Model

Pressure boost ratio

Min. gas
   Inlet pressure
PA (bar)

Max.gas
Inlet pressure
PA (bar)

Max. gas
outlet pressure PB (bar)

 Driven air pressure  PL

Formula to
calculate gas outlet pressure PB

Connection:
Gas Inlet /
Gas outlet (NPT thread)

Max. flow at driven air pressure of 6bar (L/min)

DGS-2DGD10

10:1

3

80

80

2bar-8 bar

10XPL+ PA

1/2 / 1/2

980(at PA of 6 bar )

DGS-2DGD25

25:1

6

200

200

2bar-8 bar

25XPL+ PA

3/8 / 3/8

560(at PA of 10 bar )

DGS-2DGD40

40:1

25

320

320

2bar-8 bar

40XPL+ PA

3/8 / 3/8

480(at PA of 40 bar )

DGS-2DGD60

60:1

30

480

480

2bar-8 bar

60XPL+ PA

3/8 / 3/8

320(at PA of 40 bar )


Technical specification for DGS-DGT Series:


Model

Pressure boost ratio

Min. gas
Inlet pressure
PA (bar)

Max.gas
Inlet pressure
PA (bar)

Max. gas
outlet pressure PB (bar)

 Driven air pressure  PL

Formula to
calculate gas outlet pressure PB

Connection:
Gas Inlet /
Gas outlet (NPT thread)

Max. flow at driven air pressure of 6bar (L/min)

DGS-DGT15

15:1

0.1

56

120

2-8 bar

15XPL

3/8/ 1/4

230(at PA of 8 bar )

DGS-DGT25

25:1

0.1

10

200

2-8 bar

25XPL

3/8/ 1/4

156(at PA of 8 bar )

DGS-DGT7/25

25:1

5

56

200

2-8 bar

25XPL

3/8/ 1/4

156(at PA of 8 bar )

DGS-DGT40

40:1

0.1

10

320

2-8 bar

40XPL

3/8/ 1/4

124(at PA of 8 bar )

DGS-DGT15/40

40:1

5

120

320

2-8 bar

40XPL

3/8/ 1/4

124(at PA of 8 bar )

DGS-DGT60

60:1

0.1

10

480

2-8 bar

60XPL

3/8/ 1/4

80(at PA of 15 bar )

DGS-DGT15/60

60:1

6

120

480

2-8 bar

60XPL

3/8/ 1/4

80(at PA of 15 bar )

DGS-DGT100

100:1

0.1

10

800

2-8 bar

100XPL

3/8/ 1/4

63(at PA of 8 bar )


Technical specification for DGS-2DGT series:


Model

Pressure boost ratio

Min. gas
Inlet pressure
PA (bar)

Max.gas
Inlet pressure
PA (bar)

Max. gas
outlet pressure PB (bar)

 Driven air pressure  PL

Formula to
calculate gas outlet pressure PB

Connection:
Gas Inlet /
Gas outlet (NPT thread)

Max. flow at driven air pressure of 6bar (L/min)

DGS-2DGT7/15

15:1

4

56

120

2bar-8 bar

15XPL

3/8 / 3/8

430(at PA of 10 bar )

DGS-2DGT7/25

25:1

5

56

200

2bar-8 bar

25XPL

3/8 / 3/8

300(at PA of 10 bar )

DGS-2DGT15/40

40:1

7

120

320

2bar-8 bar

40XPL

3/8 / 3/8

180(at PA of 10 bar )

DGS-2DGT15/60

60:1

7

120

480

2bar-8 bar

60XPL

3/8 / 3/8

120(at PA of 10 bar )


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  • DGS series gas boosters working pictures


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DGS-DGD40 gas booster system for nitrogen gas spring filling

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DGS-DGT series gas boosters for gas cylinder transfer and filling


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hydraulic test bench is manufactured by the material of hydraulic pump test bench. This product is mainly applied in the electronic industry
These unique ideas, styles, and design features will add personality to your hydraulic test bench. Its thickness can be customized based on requirements
The selection of hydraulic test bench depends on the quality of hydraulic pump test bench to a large extent. The product has good, stable frequency characteristics
Such structures of hydraulic test bench are characterized by hydraulic test bench. The product has good, stable frequency characteristics
Our hydraulic test bench are in various style, including hydraulic pump test bench. The product produces very low audible noise
Our professional and skilled quality controllers carefully inspect the product at every step of the production process to ensure that its quality remains excellent without any defects. It makes the components of electronic devices lighter and compact
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