Mini WM3 IM160J Stock unit - Available immediately

These options are currently not available.

Temperature range up to C°
Heating capacity in kW
Cooling capacity in kW
Max. flow rate in l/min
Max. pressure in bar
Product number: IM160J
Product information "Mini WM3 IM160J Stock unit - Available immediately"

MINI WM3 IM160J - Stock unit - Available immediately !

SMALL FORMAT. STRONG PERFORMANCE.


High tech in the smallest space. The new SINGLE Mini WM3 series convinces in maximum precision and reliability. With their compact design, the WM3 mini temperature control units take up extremely little space in production. All in proven SINGLE quality. This means: long service life and low energy consumption. Mini WM3 - the state-of-the-art temperature control unit.

Equipment Mini WM3 IM160J
  • Pressure gauge at the flow
  • Ball valve G 1/2" completely mounted on the unit
  • Booster pump to increase the make-up pressure
  • SBC-T plus controller
  • Pressure transducer
  • Pressure transducer, ext. PT100
  • Return temperature indicator
  • Flow measurement
  •  If a residual current device (RCD) is provided on site, type B must be used If the rated current of the RCD is 30mA, only one temperature control system can be operated via a RCD.
  • Mold draining suction
  •  Suction of the external consumer
  •  Current interface 20mA TTY via 9-pin D-Sub connector - 9-pin D-Sub
  • Connector 16 A plug / CEE completely mounted
  •  Euromap 82 based on OPC UA 
  • RJ45 connection in front door
File Category Size Filetype
Mini WM3 IM160J Data Sheet Produkt-Downloads 64.70 KB pdf
Mini WM3 IM160J Datenblatt Produkt-Downloads 68.08 KB pdf

Accessory Items

SFC water manifold SEPARATE
The separate SFC water distributor is for various single temperature control systems with SSC controller. The variant can be operated independently of a single temperature control unit with SSC controller. In this case, the SSC unit controller controls the unit and water distributor.

 

The illustrations and drawings, size, weight, consumption, performance, chemical and physical data are always approximate.