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Stainless Steel Pneumatic Manifold Quick Coupler Plug 1/4Outlet Ports

Place of Origin: Zhejiang

Company Profile

Location: Hangzhou, Zhejiang, China (Mainland)
Business Type: Manufacturer
Main Products: CNC Milling Spindle, CNC High Speed Spindle, PCB Drilling Spindle

Product Detail

Model No.: 03W-USF-A-202N-A-40

Product Description

 
Stainless Steel Pneumatic Manifold Quick Coupler Plug 1/4”Outlet Ports
 
Description:
 
1:Available with 1/4”,3/8”1/2”outlet ports and one inlet
2:Easy installation
3:Branches can be connected by multiple outlet hoses
4:Wide variety provides best choice according to appliances
5:Fitting to all size of Industrial plugs Automotive plug ARO plugs and High flow plugs
6:Available material: Stainless steel Aluminum Carbon steel
7:Available finish: Zinc plating EN plating Hard Anodize, Anodize
8:Available color: Natural Color, Blue, Green, Black, Titanium Res Etc
 
The material is SS316,SS304, SS316L ect.
 
Specifications:
 
 

 
 

Item number

END TYPE SIZE(NPT)

Body Class

Total length

Max.Operating
 pressure

Operating
 temperature

03W-USF-A-202N-A-41

1/4"

1/4"

78

300PSI

-10°F~212°F

03W-USF-A-303N-A-40

3/8"

3/8"

92

300PSI

-10°F~212°F

03W-USM-A-202N-A-41

1/4"

1/4"

86

300PSI

-10°F~212°F

03W-USM-A-303N-A-40

3/8"

3/8"

112

300PSI

-10°F~212°F

03W-HSF-A-202N-A-41

1/4"

1/4"

76

300PSI

-10°F~212°F

03W-HSM-A-202N-A-41

1/4"

1/4"

84

300PSI

-10°F~212°F

03W-HSM-A-202N-A-40

3/8"

3/8"

108

300PSI

-10°F~212°F

 

 
 
 
 

Item number

END TYPE SIZE(NPT)

Body Class

Total length

WIDTH

Max.Operating
 pressure

Operating
 temperature

04W-USM-A-202N-A-30

1/4"

1/4"

126

77

300PSI

-10°F~212°F

04W-HSF-A-202N-A-30

1/4"

1/4

176

75

300PSI

-10°F~212°F

 
Competitive Advantage:
 
1.Certificate:ISO9001:2009/TS16949
2.15 Years Experience
3.High quality and reasonable price
4.Delivery on time
5.Disassembly,durability and versatility, goof chill stability and thermostability
6.Strong shock resistance and corrosion resistance and are bale to maintain astable under the extreme 
pressure of air flow
 
 

 

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