SERIES MPS – electric chain stainless steel double link
Electric chain actuator projected with very small dimensions for use in concealed installations (inside frame) with a consequent fully disappearance. The use of this item is essential in residential constructions or buildings where also industrial design is a fact of primary importance. Particulary suitable for pivotel windows. Actuator movemented by a stainless steel double link chain put in a proper place inside the case. Push – pull force 200N.
Available in operating voltage 24V d.c. and 230V a.c.
Stroke 300mm
All fixing kits for top hung installation are supplied.
SELECT COLOUR AND VOLTAGE TO SHOW THE SKU
LINEAR ACTUACTOR: FOR LOUVRES, SKYLIGHTS AND DOMES
Chain actuator: for bottom hinged windows (hinges on the bottom side, inside opening); for top hinged windows (hinges on the top side outside opening)
Linear actuator: for louvres, skylights and domes
To calculate the window opening and closing force please refer to the following semplified formulas
remember that 1 N (Newton) is about 0.1 kg (kilograms)
Operating voltage | 24V d.c. and 230V a.c. |
Available stokes | 300mm |
Maximum tensile load | 200N |
Maximum thrust load | 200N |
Power | 15W – 20W |
Travel speed without load | 9mm/s |
Connection | 1200mm cable |
Kind of service | Continuous |
Operating temperature | -15° +45° |
Protection | IP32 |
Push points | 1 |
Electronic speed control | Yes |
Link adjustment of moving part | No (automatic) |
Parallel connection | Yes |
End of stroke | Electronic with current absorption |
Dimension stroke 300mm | 29x42x335 |
ACTUATOR FORCE (F) FOR VERTICAL WINDOWS

Force calculation example
F = (WINDOW LEAF WEIGHT /2) X (ACTUATOR STROKE / WINDOW LEAF HEIGHT)
WINDOW LEAF WEGHT (P) = 100 kg
ACTUATOR STROKE (C) = 250 mm
WINDOW LEAF HEIGHT (H) = 1000 mm
THE REQUIRED FORCE (F) IS:
F= (P:2)X(C:H)
F= (100 : 2) X (250 : 1000) =
12.5 kg (125 N)

ACTUATOR FORCE (F) FOR HORIZONTAL WINDOWS

Force calculation example
F = WINDOW LEAF WEIGHT / 2
WINDOW LEAF WEIGTH (P) = 100 kg
THE REQUIRED FORCE (F) IS:
F= P: 2
F= 100 : 2 = 50 kg (500 N)
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