Linak TD1 Mounting instructions welding, Welding diagram, Dimensions drawing of the twist bracket

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Mounting instructions (welding):

For the TD1 it is important that one does not weld on the outside of the Twist Bracket because there is not room for a welding seam in the motor housing. One may weld the bracket along the whole length of its ends.

Welding diagram:

To maintain the correct angle of rotation of the head rest and the foot rest it is important that the Twist bracket is welded according to the above instructions. Non compliance with the instructions could lead to a smaller angle of rotation or in a worst case damage to TD1.

Dimensions drawing of the twist bracket:

LINAK part number 0701030

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Contents Features OptionsCable for LA31 Dimensions axle distance Mounting instructions Mounting instructions for TwindrivetmDimensions drawing of the twist bracket Welding diagramMounting instructions welding Initialisation of the TD1 memory and infrared system Removal / fitting of the 9V batteriesSpeed RpmTorque Nm Technical specifications Compability with standard handsetsOrdering example TD 1 0 1 0 0 0 0 a 0 0 0 0 Cable = Straight 3.2 m EU wall plugIP degree = Standard Mains cut-off = None Without non detachable cable 3.2 m= Internal mains cut-off = None standard

TD1 specifications

The Linak TD1 is an innovative actuator designed to enhance the functionality and efficiency of various applications. Leveraging cutting-edge technology and robust engineering, the TD1 offers a range of features that cater to the needs of modern users.

One of the standout characteristics of the Linak TD1 is its compact design. Measuring just a few centimeters in height, this actuator can be seamlessly integrated into numerous products without compromising aesthetics or functionality. This compactness is particularly beneficial for applications where space is at a premium, allowing manufacturers to create sleeker designs while maintaining powerful performance.

The TD1 actuator operates with exceptional precision, thanks to its advanced electronic control systems. These systems facilitate smooth and accurate adjustments, making the TD1 suitable for various tasks, from lifting and lowering to tilting and rotating. Whether it is employed in height-adjustable desks, chairs, or different medical equipment, the actuator ensures optimal usability and comfort.

One of the core technologies behind the TD1 actuator is its brushless motor. This motor is designed to operate silently and efficiently, reducing energy consumption and extending the lifespan of the device. The brushed motor also eliminates the need for maintenance associated with traditional motor types, making the TD1 a low-effort solution for users.

The actuator provides a load capacity of up to 1,000 Newtons, showcasing its strength and reliability for heavy-duty applications. Additionally, it features built-in overload protection, ensuring safety for both users and the equipment in which it is installed. This level of safety is particularly important in medical and industrial environments, where equipment failure can have significant consequences.

The Linak TD1 is not only technologically sophisticated but also environmentally friendly. It complies with various international standards regarding energy efficiency and sustainability. The use of recyclable materials in its construction further aligns with the increasing need for eco-conscious manufacturing processes.

In terms of connectivity, the TD1 actuator can be integrated with smart control systems. This feature allows users to operate multiple actuators simultaneously or monitor their status remotely, enhancing operational efficiency and providing valuable data for maintenance planning.

In conclusion, the Linak TD1 actuator stands out for its compact design, robust performance, and smart technology integration. Its features and capabilities make it ideal for a wide range of applications, ensuring reliability and user satisfaction in both residential and industrial contexts. With a focus on innovation and sustainability, the TD1 represents a significant advancement in actuator technology.