
Limited special edition - Workshop Trolley in Racing Design
On the occasion of LISTA’s 80th anniversary, the company is presenting an exclusive special edition workshop trolley - inspired by motorsport and the former LISTA owner and passionate racing driver Fredy Lienhard. With striking colours and lettering, robust workshop suitability and individual numbering, this collector’s item combines racing spirit with functionality and precision. A highlight for technology and motorsport enthusiasts - price and availability are available on request. Benefits at a glance Colours and lettering based on the iconic vehicles from racing history Robust workmanship for hard day-to-day workshop work Limited edition - a true collector’s item, individually numbered The anniversary workshop trolleys are limited and can be ordered now! HAS3 FORMULA V HAS4 FORMULA SUPER V PORSCHE 911 SR 2.5 PORSCHE 911 CARRERA RSR

Linear Electric Actuators

Linear Measurement Sensors
They have many names, Linear Potentiometers, Linear Pots, Linear position sensors but in essence they are one of the most common forms of measuring device for linear position. They are incredibly simple to use relative to other devices, infinite resolution, output is proportional to stroke length and very robust. Not all Linear pots are the same. Ours have unique features to ensure long trouble free life in the most harsh of environments from motorsport to structural monitoring. From measuring linear position or displacement in a wide variety and broad range of manufacturing and process equipment. Options include 4-20mA output, front or rear facing cable exits, Ingress protection IP65/67, spring return versions, rod ends or pop flanges.

Linear Rails & Carriages
Multiple styles and sizes available Sizes range from tiny to extra large, from the world’s smallest track rail featuring a 1-mm width to those built for high rigidity and load capacity in huge machines. Used in many industries such as semiconductor, medical, life sciences, solar, machine tool and construction. Available styles include roller type rolling guides, ball type rolling guides, ball splines, anti-creep crossed roller ways, ball slides, and both linear and rotary bushings to meet the needs of different applications and machine geometries.

Liquid Fluxes and Cleaners

Lithium based portable DC power

Lithium Battery Pack Design
Custom designed Lithium Packs

Lithium Coin Cells
Lithium batteries are available in many different versions, which differ in terms of cathode, electrolyte, and separator. They are available in different designs and sizes to accommodate a wide range of applications. Because of their high voltage of 3 volts, high capacity, wide temperature range, and long shelf life (due to low self-discharge) they have a wide range of applications. Main application areas are car keys, watches, medical equipment, toys, LED flashlights, and of course any form of memory back-up. They come in a variety of different sizes. The cells are used either in a battery holder or pins which are welded to the cell.

Lithium Cylindrical Batteries
Lithium batteries are available in many different versions, which differ in terms of the cathode, electrolyte and separator being used. They are available in different designs and sizes to accommodate a wide range of applications. Because of their high voltage of 3 volts, their high capacity, the wide temperature range, and long shelf life due its low self-discharge they have a wide range of applications. Main fields of application are cameras, medical devices, toys, LED flashlights and of course any form of memory back-up.

Lithium Iron Phosphate Batteries
Lithium Iron Phosphate Batteries are a type of lithium-ion battery with a cell voltage of 3.2 V or 3.3 V. Lithium Iron Phosphate (LiFePO4) is used as cathode material in place of conventional lithium cobalt oxide (LiCoO2). The anode is made of graphite or hard carbon with intercalated lithium. LiFePO4 was first used in 1997 as cathode material for lithium ion batteries. It replaces the commonly used lithium cobalt cathode. The main reasons to use it as a replacement are improved environmental performance and higher reliability. The main applications of this technology include military, electric mobility, storage, and mobile devices with a focus on safety, such as in medical technology.

Lithium Thionyl Chloride Batteries
With its high energy density and cell voltage as well as a low self-discharge rate, the Lithium Thionyl Chloride Battery clearly stands out from other primary batteries. This makes it particularly suitable for use in numerous applications with low power requirements over a long period of time. Lithium Thionyl Chloride Batteries are available in many different sizes and forms and can therefore be used flexibly. They are used in numerous applications and are characterized by their high energy density. This density is higher than that of all other primary cells, making Lithium Thionyl Chloride Batteries particularly suitable for applications with low power requirements over a long period of time. In typical applications such as timers, locking cylinders, heating/hot water meters, toll systems, etc., Lithium Thionyl Chloride Batteries can be used for months and years without having to be replaced. The longevity of Lithium Thionyl Chloride Batteries is demonstrated not only in use but also during storage. Due to their extremely low self-discharge rate of just 1% per year, batteries of this technology can be stored over a longer period of time.

Lithium-Ion Batteries
The high energy density of Lithium-Ion Batteries is leading to ever new areas of application. Today, they can be found, for example, in cell phones, laptops, tablets, cameras, vacuum cleaners, tools, vehicles or in so-called storage applications - large energy storage units for storing energy from solar cells. Lithium-Ion Batteries are also increasingly being used in applications that previously could not be operated by battery. Lithium ions (Li+) - which is what gave these batteries their name - can freely move through the electrolyte between the two electrodes of the battery. Lithium-Ion Cells are characterized by a high energy density. The life cycle often lasts several years. However, this is highly dependent on its use and storage conditions. Lithium-Ion Cells are especially negatively affected by overcharging. Therefore, lithium-Ion Batteries are provided with a protection circuit that protects the battery from overcharging. Only compatible chargers should be used. Lithium is a chemical element and the lightest metal. It has two advantages for use in batteries: It possesses the largest negative voltage potential and is also the lightest element in solid form. The underlying idea of storing electrical energy by means of chemical processes is more than 200 years old. Galvanic cells are utilized both for single as well as for multiple use for this purpose, either individually or interconnected. Such an element, also called a battery cell, contains two electrodes of conductive material and usually a liquid electrolyte.

Lithium-Polymer Batteries
When designs need to be flexible, Lithium-Polymer Batteries are the ideal solution. One advantage is the almost infinite number of sizes since steel housings are not required. A plastic-coated aluminium foil is used instead of such housing. Therefore, very thin cells can be manufactured. Lithium-Polymer Cells are also a bit lighter than Lithium-Ion Cells. Moreover, the variety of different sizes presents greater freedom in the design of the final product. Custom sizes are available at relatively low production volumes so that the existing space for the battery can be utilized optimally. Lithium-Polymer cells are negatively affected by overcharging. Therefore, Lithium-Polymer Batteries are provided with a protection circuit that protects them from overcharging. These batteries should only be charged with chargers specified for that battery’s chemistry. Lithium-Polymer cells are also called soft or pouch cells.

LM Series stainless steel EHEDG certified hygienic levelling foot
LM.F-HD-SST levelling elements for ground mounting are intended for use in environments where high hygiene is required and are certified according to EHEDG guidelines. The surface beneath the base is protected by rings that prevent dirt from entering, when the levelling element is mounted onto the supporting floor with screws through the holes provided in the element itself. The mounting and correct positioning of the holes is therefore essential for the sealing of the various rings. For optimum mounting of the levelling element it is required the use of screws NT-HD-SST. The adjustable protective sleeve, which covers the threaded part of the stem, is provided both at the top and bottom with a protective ring, as well as the base of the threaded stem. These rings prevent access to dirt inside the coupling between the threaded stud and the adjustable protective sleeve. The finish quality of stainless steel parts prevents dirt adhering and facilitates cleaning. The static load values in the table below are the result of laboratory tests in which the load has been applied perpendicularly to the base. Such values have to be considered as purely indicative and must be verified under the specific conditions of use. Under common working conditions, side or angular loading increases the stress on the levelling element and reduces its carrying capacity. It's the user's responsibility to determine, case by case, whether the product is suitable for the intended use.

Lock Out Tag / Isolate System
Manage isolated machines with a simple a simple cost effective solution
2–4 February 2027
Farnborough International Exhibition Centre
2–4 February 2027
Farnborough International Exhibition Centre