VICKERS KBFDG4V-5-2C50N-Z-M1-PH7-H7-12

Description & Features

Designed for precision flow control in demanding industrial environments, the Vickers KBFDG4V-5-2C50N-Z-M1-PH7-H7-12 is a proportional directional control valve with on-board electronics (OBE), rated for a flow capacity of 50 litres per minute. Fluorocarbon seals provide reliable chemical resistance across a broad range of hydraulic fluids, making this valve well-suited for sustained service in challenging conditions.

Integrating the valve and electronics into a single package reduces installation complexity and minimises the potential for selection or wiring errors. This configuration is applicable across a wide range of industrial sectors, including machine tool, press, marine and offshore, die casting and foundry, primary metal and paper, turbine control, and test and simulation equipment. The 2.76-inch width profile supports compact installation in space-constrained manifold arrangements.

SKU: 858AN00021A

Supplier Part Number (MPN): 858AN00021A

Specifications

Alternate Part Numbers
Alternate Part Number MINO-00900X64338
Application
Die casting & foundry, Machine tool, Marine/Offshore, Press, Primary metal, paper, Test equipment & simulation, Turbine control (wind, steam, water)
Brand
Danfoss (Power Solutions II LLC)
Brand
Vickers
Pack Size
1.00
UOM
EA
Features
Simpler, faster and lower cost valve package installation|Reduced possibility of selection and installation errors|Optimized valve and electronics
Flow Rate1
50 litre per minute
ICC
IV Proportional Valves
Language
English
Product Width
2.76
Seal Material
Fluorocarbon
Special Features
None
Sub Brand
Vickers
Supplier Part Number
858AN00021A
Product Weight
16.76 lbs

Product Questions & Answers (1)

Question by: Ricky B on Sep 23, 2025, 2:55 PM
Will this here valve work okay with different hydraulic fluids?
Answer by: Customer Support on Sep 25, 2025, 8:53 AM
Fluorocarbon seals are used in this valve, which means it’s got good chemical resistance for a range of hydraulic fluids. So, it should hold up under demanding conditions.