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The Baselift™ unit sets new standards for height adjustment of bases. The Baselift is the perfect choice for height adjustment in applications ranging from private kitchens to various counters in shops.
The Baselift is an obvious choice for a wide range of applications where sit-sit or stand-stand adjustment is needed to get an optimum working height and comfort.
With its compact size the Baselift only takes up 100 mm in height, which can typically be fitted into existing bases without compromising on space or storage room to get comfort.
The Baselift is compatible with all DESKLINE® control boxes CBD6S and DESKLINE controls, simply Plug & Play™.
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View the data sheet as an online magazine or download the PDF.
This user manual will tell you how to install, use and maintain your LINAK Baselift system.
A healthy working position is important in all our everyday activities, regardless of whether we are at work or at home. That is why LINAK developed Baselift for height adjustability of a kitchen tabletop.
Take your kitchen to the next level. The sky is the limit when it comes to how electric movement can improve tomorrow’s kitchen.
Propelled by LINAK electric actuators, height adjustable counters allow all members of staff to pick a position that is right for them, anytime of the day, whatever the task.
If you make any kind of desk, table or counter that people work behind, a height adjustable electric actuator solution is the flexible way to gain a competitive edge and improve your business.
We use high quality components, state-of-the art production and the most demanding testing standards in the industry to achieve excellent quality.
Baselift is a compact unit used for height adjustment of kitchens, cabinets and counters.
How do linear actuators work?
A common type of linear actuator is an electric linear actuator. It is made up of three main components: spindle, motor and gears. The motor can be AC or DC depending on the power needs and other influencing factors.
Once a signal is sent by the operator, which can be through a control as simple as a button, the motor converts the electric energy into mechanical energy, rotating the gears connected to the spindle. This rotates the spindle and causes the spindle nut and piston rod to travel outwards or inwards depending on the signal to the actuator.
As a rule of thumb, a high thread count and smaller spindle pitch will cause slow movement but a much higher load capacity. On the other hand, a low thread count, and higher spindle pitch, will favour fast movement of lower loads.
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What are the different types of electric linear actuators?
There are many types and sizes of electric linear actuators. From small and compact that fit into tight spaces, such as in wheelchairs, to large and powerful to move heavy items like a wheel loader engine hood. In addition to size and power, there are also many different designs of electric linear actuators.
The original design has a motor housing that is outside of the gear and spindle profile. But when space is limited, an inline actuator is used so that the motor only extends the shape of the profile. For desks and some medical applications, lifting columns are used for an inline motor housing with two and three-stage options.
Since the founder and CEO of LINAK, Bent Jensen, made his first electric linear actuator in 1979, the company has continued to develop new actuators and refine the innovative technology behind them to improve movement solutions for several industries.
LINAK designs and manufactures many types of linear actuators and lifting columns with various speeds, stroke lengths, and capacities. From the compact, inline LA20 to the robust LA36, LINAK actuators are built to fit almost any application.
With an almost endless list of customisation options to help design an actuator specifically to fit unique applications, the range of LINAK actuators is even greater than the vast product range listed.
What is an electric linear actuator?
A linear actuator is a device or machine that converts rotational motion into linear motion and linear movement (in a straight line). This can be done through electric AC and DC motors, as we do at LINAK, or the movement could be powered by hydraulics and pneumatics.
However, electric linear actuators are a preferred option when precise and clean movement is needed. They are used for all types of applications where tilting, lifting, pulling or pushing with force is needed.
What is an electric linear actuator used for?
Electric linear actuators are used in everything from private homes, the offices where we work, all areas of a hospitals, in production in factories, to farming equipment, and many other places. LINAK electric actuators create adjustment in both desks, kitchens, beds, and couches, as well as hospital beds, patient lifts, surgery tables among others in for example hospitals and medical centres.
Electric linear actuators can also replace hydraulic and pneumatic solutions in industrial and rugged environments – for example those found in agriculture, construction, and in industrial automation equipment.
Why use an electric linear actuator?
Electric linear actuators increase efficiency and give users precision movement through a variety of control options and accessories. Control options for electric linear actuators include handsets, footswitches, desk controls, computer software, mobile apps and much more.
With no need for hoses, oils, or valves, electric linear actuators require no maintenance and create a safe environment for users. High-quality electric actuators are also put through a variety of tests that push the actuators to extremes. This is done to ensure optimal performance at any given time in any situation. They are also designed, along with their accessories, to be easily mounted and installed in a variety of applications,
making it easy for anyone to add precision movement where they need it. Being electric enables the addition of smart features like CAN bus (LINAK offers CAN SAE J1939 and CANopen for actuator controls). Integrated Controller (IC) solutions can provide various position feedback options, virtual limits, soft start and stop, current limitation, and adjustable speed.
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