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Hydraulic Double Headed Proportional Solenoids Manufacturers

  • DS3049 Double Headed Proportional Solenolds
    DS3049 Double Headed Proportional Solenolds
    DS3049 Double Headed Proportional Solenolds

    DS3049 Double Headed Proportional Solenolds

    Code Parametes

    Rated

    Current(A)

    Rated

    Force(N)

    Rated

    Stroke(mm)

    Full Stroke

    (mm)

    Duty Cycle(%) 

    Rated Hesistance(Ω) 

    Rated Force Hysteresis(%)

    Rated Curre Hysteresis(%)

    Repeat

    Accuracy(%) 

    Pressure

    Tightness(MPa) 

    DS3049

    0.63

    24N

    1.3

    1.7

    100

    27.2

    ≤5

    ≤2

    ≤1

    21

    ×
  • GV32 Proporional Solenoids tor Carridge Solenoid Valves
    GV32 Proporional Solenoids tor Carridge Solenoid Valves
    GV32 Proporional Solenoids tor Carridge Solenoid Valves

    GV32 Proporional Solenoids tor Carridge Solenoid Valves

    Code Parametes

    Rated Current(A)

    Rated Force(N)

    Rated Stroke(mm)

    Full Stroke (mm)

    Duty Cycle(%) 

    Rated Hesistance(Ω) 

    Rated Force Hysteresis(%)

    Rated Curre Hysteresis(%)

    Repeat

    Accuracy(%)

    Pressure
    Tightness(MPa)

    Degree of
    protection

    Insulation

    class

    HMGP15

    0.8

    32N

    1.3

    2.3

    100

    17.5

    ≤6

    ≤4

    ≤1

    16

    IP65

    Class H

    GP32/P17
    (SKY5P-17-A)

    0.7

    28N

     

     

    100

     

    ≤6

    ≤4

    ≤1

    16

    P65

    Class H

    GP32/G24
    (SKY5-G24-A)

    24

    30N

    1.3

    2.3

    100

    17.5

    ≤6

    ≤4

    ≤1

    16

    P65

    Class H

    ×
  • GP61 Proportional Solenoid for Hydraulics
    GP61 Proportional Solenoid for Hydraulics
    GP61 Proportional Solenoid for Hydraulics

    GP61 Proportional Solenoid for Hydraulics

    ×
  • GP45 Proportional Solenoid for Hydraulics
    GP45 Proportional Solenoid for Hydraulics
    GP45 Proportional Solenoid for Hydraulics

    GP45 Proportional Solenoid for Hydraulics

    Code/Parameters

    GV45-4-A

    GP45-4-A

    GP45A-4-A

    GH263-035

    Rated Current(A)

    0.8

    1.51

    1.51

    0.62

    Rated Resistance(Ω)

    19.5

    5.4

    5.4

    5.4

    Rated Force(N)

    90

    80

    80

    65

    Rated Stroke(mm)

    1.7

    3

    3

    2

    Full Stroke(mm)

    1.7

    6

    6

    2.3

    Rated Force Hysteresis(%)

    ≤3

    ≤3

    ≤3

    ≤5

    Rated Current Hysteresis(%)

    ≤3

    ≤3

    ≤3

    ≤3

    Repeat Accuracy(%)  

    ≤1

    ≤1

    ≤1

    ≤1

    Pressure Tightness(MPa)

    21

    21

    21

    21

    Degree of Protection

    IP65

    P65

    P65

    P65

    ×
  • Proportional Solenoid for Hydraulics GP45S GP63 etc
    Proportional Solenoid for Hydraulics GP45S GP63 etc
    Proportional Solenoid for Hydraulics GP45S GP63 etc

    Proportional Solenoid for Hydraulics GP45S GP63 etc

    Item

    unit

    Technical parameters

    GP45S-1C

    GP45S-1C/W

    GP45S-1P

    GP45S-1P/W

    Electromagnet

    Temperature Range

    -20~+70

    -20~+70

    -20~+70

    -20~+70

    Rated Stroks

    mm

    2

    2

    2

    2

    Full Stroke

    mm

    6+1

    6+1

    6+1

    6+1

    Rated Force

    N

    70

    70

    90

    90

    Sprng Force

    N

    4-12

    4-12

    4-12

    4-12

    F-S Hysteresis

    %

    5

    5

    5

    5

    I-F Hyeteresi

    %

    3

    3

    3

    3

    Resistance 20℃

    Ω

    2

    2

    2.7

    2.7

    Rated Current

    A

    2.5

    2.5

    2.5

    2.5

    Rated Powe

    W

    12.5

    12.5

    17

    17

    Sensor

    Measuring range

    mm

     

    ±2

     

    ±2

    Linear error

    %

     

    ±1

     

    ±1

    Temperature drift

    %/℃

     

    0.05

     

    0.05

    Repeatability

    %

     

    0.40

     

    0.40

     

    Iten

    unit

    Technical parameters

    GP45S-2C

    GP45S-2P

    GP45S-3C

    GP45S-3P

    Electromagnet

    Temneratre Range

    -20~+70

    -20~+70

    -20~+70

    -20~+70

    Rated Strokt

    mm

    3

    3

    3

    3

    Full Stroke

    mm

    6+1

    6+1

    3.5

    3.5

    Rated Force

    N

    65

    65

    60

    65

    Spring Force

    N

    4-12

    4-12

    可调

    可调

    F-S Hysteresi

    %

    5

    5

    5

    5

    I-F Hysteresis

    %

    3

    3

    3

    3

    Resistance 20℃

    Ω

    2

    2

    5

    2

    Rated Curren

    A

    2.5

    2.5

    1.5

    2.5

    Rated Power

    W

    12.5

    12.5

    11.5

    12.5

     

    Item

    unit

    Technical parameters

    GP63S-1C

    GP63S-1CW

    GP63S-1P

    GP63S-1P/W

    GP63S-2C

    GP63S-2P

    Electromagnet

    Temperature Range

    -20~+70

    -20~+70

    -20~+70

    -20~+70

    -20~+70

    -20~+70

    Rated Stroke

    mm

    4

    4

    4

    4

    4

    4

    Full Stroke

    mm

    9+1

    9+1

    9+1

    9+1

    9+1

    9+1

    Rated Force

    N

    200

    200

    180

    180

    165

    165

    Spring Force

    N

    5-18

    5-18

    5-18

    5-18

    5-18

    5-18

    F-S Hysteresis

    %

    5

    5

    5

    5

    5

    5

    I-F Hysteresis

    %

    3

    3

    3

    3

    3

    3

    Resistance 20℃

    Ω

    4.1

    4.1

    3.7

    3.7

    2

    2

    Rated Curren

    A

    2.6

    2.6

    2.5

    2.5

    3.3

    3.3

    Rated Powe

    W

    28

    28

    23

    23

    22

    22

    Max power

    W

    42

    42

    42

    42

    42

    42

    Sensor

    Measuring range

    mm

     

    ±4

     

    ±4

     

     

    Linear error

    %

     

    ±1

     

    ±1

     

     

    Temperature drif

    %/℃

     

    0.05

     

    0.05

     

     

    Repeatability

    %

     

    0.40

     

    0.40

     

     
    ×
  • GP80 AB Proportional Solenoids
    GP80 AB Proportional Solenoids
    GP80 AB Proportional Solenoids

    GP80 AB Proportional Solenoids

    Code Paramete

    Rated
    Current(A)

    Rated Force(N)

    Rated Stroke(mm)

    Full Stroke (mm)

    Duty Cycle( % )

    Rated esistance(Ω)

    Rated Force Hysteresis(%)

    Rated Current Hysteresis(%)

    Repeat
    Accuracy(%)

    Pressure
    Tightness(MPa)

    GP80-A

    0.6

    90N

    9

    10

    100

    41

    ≤3.8

    ≤3

    ≤1

    21

    GP80-B

    0.6

    90N

    9

    10

    100

    41

    ≤3.8

    ≤3

    ≤1

    21

    ×
  • GP37/GP37W Proportional Solenoids
    GP37/GP37W Proportional Solenoids
    GP37/GP37W Proportional Solenoids

    GP37/GP37W Proportional Solenoids

    Parameters\Type

    Linear travel(mm)

    Full travel(mm)

    Rated Stroke(mm)

    Rated Force(N)

    Rated Current(A)

    Force – displacement hysteresis(%)

    Power – Current Hysteresis(%)

    GP37

    ≥2

    2.3

    2

    50

    0.68

    ≤4

    ≤2

    Frequency Response(HZ)

    Step

    Response(ms)

    Normal resistance(20℃)

    Repeatabi(%)

    Hydraulic resistance(MPa)

    Working oil temperature

    Enclosure protection clas

    ≥25

    ≤2.5

    22.5

    ≤1

    21

    -20~+70

    IP65

    ×
  • GV40 Proportional Solenoid for Hydraulics
    GV40 Proportional Solenoid for Hydraulics
    GV40 Proportional Solenoid for Hydraulics

    GV40 Proportional Solenoid for Hydraulics

    Code Paramete

    Rated Current(A)

    Rated Force(N)

    Rated Stroke(mm)

    Full Stroke (mm)

    Duty Cycle(%) 

    Rated esistance(Ω)

    Rated Force Hysteresis(%)

    Rated Current Hysteresis(%)

    Repeat
    Accuracy(%)

    Pressure
    Tightness(MPa)

    GV40-A

    0.8

    48N

    3.2

    3.8

    100

    10.5

    ≤3

    ≤2

    ≤1

    21

    GV40-B

    0.8

    42N

    3.2

    3.5

    100

    10.5

    ≤3

    ≤2

    ≤1

    21

    ×
About us
Ningbo Yinzhou TONLY Hydraulic Electrical Factory
Ningbo Yinzhou TONLY Hydraulic Electrical Factory

Ningbo Yinzhou TONLY Hydraulic Electrical Factory was established in 1989, which is a professional manufacturer of various On/Off and proportional solenoids for hydraulics. The factory is 10000m2. Thereinto, architecture covers 7000m2. As a famous China Double Headed Proportional Solenoids Manufacturers and Proportional Solenoids for Hydraulics Suppliers, the factory owns advanced high-precision CNC lathes, an automatic stitch welding machine, a BMC plastic package machine controlled by PLC, a plastic injection molding machine, a solenoid features tester, a solenoid tube oil-pressure-resistant test stand, a solenoid tube pulse fatigue test stand, an excitation coil parameters, and other testers. Through importing, absorbing, and technical upgrading. At present, we have an annual production capacity of 2,4 million pieces of hydraulic solenoids. All the products are produced according to JB/T5244-2001, VDE0580 standard and satisfy international advanced technical requirements. The performance is reliable and the quality is steady. Matched with REXROTH type, Northman type, YUKEN type, and VICKERS type, the products can be widely applied in machine tools, plastics machinery, engineering, aerospace, automotive, post and telecommunications, etc. The products are sold to the mainland, United States, Sweden, Korea, Taiwan, and other countries and regions.

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Proportional Solenoids for Hydraulics Industry knowledge

1. Why do Proportional Solenoids for Hydraulics occupy such an important position in hydraulic systems?
With the rapid development of hydraulic technology today, Proportional Solenoids (proportional solenoid valves) have become an indispensable key component in hydraulic systems.
Proportional Solenoids have highly precise control capabilities. Compared with traditional solenoid valves, proportional solenoid valves can achieve continuous and precise control of flow, pressure and direction in hydraulic systems, which makes it irreplaceable in high-precision and high-demand hydraulic applications.
Proportional Solenoids have the characteristics of fast response speed and good stability. In hydraulic systems, fast and stable response is the key to ensuring efficient and safe operation of the system. Proportional solenoid valves use advanced electromagnetic technology and precise mechanical design, which can respond to control signals in a very short time and maintain a stable working state.
Proportional Solenoids also have the advantages of energy saving and environmental protection. By accurately controlling the flow and pressure in the hydraulic system, the proportional solenoid valve can reduce the energy consumption and emissions of the system, which meets the requirements of modern industry for energy saving and environmental protection.
The reason why Proportional Solenoids occupy such an important position in hydraulic systems is that it has highly precise control capabilities, fast and stable response, and energy saving and environmental protection.

2. In which hydraulic applications do Proportional Solenoids for Hydraulics perform best?
In the field of industrial automation, Proportional Solenoids play a vital role. On the automation equipment on the production line, proportional solenoid valves can achieve precise control of various actions, improve production efficiency and product quality. For example, on equipment such as injection molding machines and die-casting machines, proportional solenoid valves can accurately control the opening and closing speed and pressure of the mold to ensure the accuracy and stability of the product.
In the field of engineering machinery, Proportional Solenoids also perform well. In engineering machinery such as excavators and loaders, proportional solenoid valves can achieve precise control of hydraulic cylinders and motors, improving the operating efficiency and operating comfort of the equipment. By adjusting the control parameters of the proportional solenoid valve, different working modes can be switched to meet different operating requirements.
In high-end manufacturing fields such as aerospace and shipbuilding, Proportional Solenoids also play an important role. In these fields, the control accuracy and stability of the hydraulic system are extremely high, and proportional solenoid valves can meet these requirements to ensure the safe and reliable operation of the system.

3. What is the development trend of Proportional Solenoids for Hydraulics in the future?
With the continuous development of hydraulic technology and the continuous expansion of application fields, Proportional Solenoids are also constantly improving and developing.
Intelligence will be an important development direction of Proportional Solenoids in the future. By introducing advanced sensors and control technologies, proportional solenoid valves will be able to realize functions such as self-monitoring, self-diagnosis and adaptive control, and improve the intelligence level and operation efficiency of the system.
Energy saving and environmental protection will be another important development direction of Proportional Solenoids in the future. With the global emphasis on environmental protection and sustainable development, the energy saving and environmental protection requirements of hydraulic systems are also getting higher and higher. In the future, proportional solenoid valves will pay more attention to reducing energy consumption and emissions and improving the environmental performance of the system.
High precision and high reliability are also important development directions of Proportional Solenoids in the future. With the continuous advancement of manufacturing technology and the continuous improvement of application needs, the control accuracy and reliability requirements of proportional solenoid valves are also getting higher and higher. In the future, proportional solenoid valves will adopt more advanced materials and processes to improve the performance and quality of products.