Complete Mechanical Controller with Adjustable Brake - 16.8 Ohm

Complete Mechanical Controller with Adjustable Brake - 16.8 Ohm

Complete Mechanical Controller with Adjustable Brake - 16.8 Ohm

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MB20202B

79,50 €

Complete Mechanical Controller with Adjustable Brake - 16.8 Ohm

 

New MBSLOT controller with adjustable brake .

The braking system is composed of a potentiometer 10 Ohm - 5 watts and a diverter.
The potentiometer allows adjustment of the braking, the diverter excludes the potentiometer , excluding the potentiometer has a controller with the maximum possible braking

Mechanically it is identical to the version without adjustable brake and displays the same improvements over the old series .

- The base plate has been redesigned , streamlined and improved in the tracks

- I have already entered two new mounts for the end position of the trigger, adjustable via allen and inserting the pin of the simple axle spacers .

The post - trigger now has a longer screw and a nut to prevent loosening

- The tablet has been improved in the form to ensure better contact and a better glide . Moreover, the same is fixed to the tongue in harmonic steel using a screw and a spacer 4 m2 x 3 mm instead of being riveted as previously.

The resistance mounted on epoxy glass button is easily replaceable in a minute or less without losing time to adjust the right position unlike traditional Parma Economy . The contact between the pad and the resistance should be cleaned and lubricated. You can use a contact cleaner or other oily enough to degrease and lubricate then allows for an optimal flow . The resistor is mounted on the printed circuit board button with nut , bolt and spacer that raises the resistance at the right height . Resistance values to date are 14.4 Ohm 18.0 Ohm 21.6 Ohm 26.4 Ohm The various resistances have constant values and the provision in the guide is very fluid . When you find the right value of the resistance performance is assured. The double spring mounted on the trigger gives the advantage of having a constant progression of the force to be applied on the trigger and in the return of the same .

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