Abstract:
The present invention discloses an illumination device comprising a base, a yoke connected to and rotatable relative to the base and a head connected to and rotatable relative to the yoke. The head comprises at least one light source generating light and the yoke comprises at least one yoke shell part and at least one motor connected to a bearing through a belt. The yoke shell part comprises belt tensioning means adapted to tighten the belt upon mounting of said yoke shell part. The present invention discloses further a method of manufacturing such illumination device. The method comprises the steps of arranging at least one motor on the yoke, arranging at least one bearing on the yoke, connecting the motor and the bearing by arranging a belt there between and arranging a yoke shell part on the and tightening the belt using said belt tensioning means.
Abstract:
The present invention discloses an illumination device comprising a base, a yoke connected to and rotatable relative to the base and a head connected to and rotatable relative to the yoke. The head comprises at least one light source generating light a light beam and wherein the light sources are arranged in a bucket shaped outer shell. The present invention relates also to a method of manufacturing such moving head light fixture. Further the present invention relates to a moving head light fixture where the head comprises a number of light sources generating a light beam; means for receiving user input from a user; and means for providing visual feedback to the user.
Abstract:
An adaptor (8) for an axle where the axle defines the centre of rotation for transmission of the rotational movement to at least one access or attachment point (6), which is eccentric with the axis of rotation, where the adaptor (8) is disc-shape with an outer perimeter (7) and an inner perimeter (9), where the inner perimeter (9) has a shape which fits the axle, and furthermore where the adaptor (8) includes securing means for securing the adaptor (8) to the axle. This adaptor (8) is distinctive by a cut-out (10) connects the inner perimeter (9) with the outer perimeter (7), and the securing means consist of a shank portion (15) and a tread portion (14) where the shank portion (15) is larger than the tread portion (14). Hereby reducing the permanent deformation of the adaptor (8) as well as the axle as the shank portion (15) will provide most of the elasticity for the clamping force rendering it possible to transmit torque as well as reduce angle deformation.