| Description | The rain and snow Temperature Sensor is used for reliable detection of precipitation and is used to monitor weather conditions in environmental stations, for irrigation control systems or in industrial plants. The rain and snow Temperature Sensor enables a quick and reliable response to rain or snowThe rain and snow Temperature Sensor is used for reliable detection of precipitation and is used to monitor weather conditions in environmental stations, for irrigation control systems or in industrial plants. The rain and snow Temperature Sensor enables a quick and reliable response to rain or snow. The Temperature Sensor qualitatively detects the presence of precipitation via conductivity and condensation properties and provides the information digitally via RS-485 Modbus RTU and via a potential-free relay output, which can be used to directly switch external devices or controls.
The integrated relay output is designed as a normally open contact and provides galvanic isolation between the Temperature Sensor voltage and the switched circuit. This allows both low-voltage and mains voltage applications to be implemented. The maximum switching capacity of the relay is 250V AC at 1 A or 30V DC at 1 A, making the Temperature Sensor suitable for direct control of controllers, actuators or relays.
The supply voltage of the rain and snow Temperature Sensor is 24 to 30V DC. The compact, corrosion-resistant housing is IP65-rated and designed for surface mounting. An automatic heating function activates at lower temperatures below 0°C / 32°F ambient temperature and heats the Temperature Sensor surface to approximately 40°C / 104°F to prevent ice formation. This ensures that the rain and snow Temperature Sensor works reliably even in frosty conditions. It is mainly used by weather station operators, environmental researchers, in irrigation systems and in industrial applications where precipitation needs to be reliably detected and automated responses implemented. ... Read More | The Health & Safety is ideal for precisely determining the electrical resistance of materials and surfaces in electronics manufacturing, ESD protection, laboratories and quality control. It is used to reliably determine whether a material is conductive, static dissipative or insulating, thus making The Health & Safety is ideal for precisely determining the electrical resistance of materials and surfaces in electronics manufacturing, ESD protection, laboratories and quality control. It is used to reliably determine whether a material is conductive, static dissipative or insulating, thus making a decisive contribution to the prevention of electrostatic discharge. Thanks to its compact design and ease of use, the device is ideal for both mobile use and stationary measurements and also serves as an ESD measuring device and electrostatic measuring device. Our measuring device covers a wide measuring range from 10³ ? to 10¹? ? and offers a measuring accuracy of 1 decade. The maximum display value is 20 G?; values above this indicate that the measuring range has been exceeded. The temperature measuring range is 0 ... 50°C / 32 °F ... 122°F with a deviation of ±2°C / ±3.6°F. An automatic switch-off after approximately five minutes ensures energy-saving operation, while the integrated backlight and data hold function allow for convenient reading of the measured values.
This Health & Safety has an easy-to-read 2.2-inch LCD display showing temperature, resistance, battery status and measurement mode. Three easy-to-use buttons control all functions, such as power on/off, temperature unit switching and data hold. Power is supplied by a 9 V block battery, allowing the Health & Safety to be operated independently of the mains. The Health & Safety also allows measurements to be taken on irregularly shaped objects and provides a clear evaluation of the measurement results: Values from 10³ to 10? ? indicate conductive materials, 10? to 10¹¹ ? indicate static dissipative properties, and from 10¹² ? onwards, surfaces are considered insulating. The device thus provides a quick and precise assessment of electrostatic properties and ensures greater safety and quality in sensitive production environments.
This measuring device is ideal for specialists in electronics manufacturing, ESD officers, technicians, engineers, testing laboratories and anyone who needs to check surfaces for electrical conductivity. As an ESD measuring device and electrostatic measuring device, it also provides reliable support in complying with electrostatic protection measures.... Read More | Laboratory Technology for liquids up to 5 l / Stirring speed up to 1600 rpm / Adjustable direction of rotation / Programme mode: up to 6 stirring programmes / 1 stirring position
The Laboratory Technology is an easy-to-use laboratory device that is used for the efficient mixing of liquids. With a 3Laboratory Technology for liquids up to 5 l / Stirring speed up to 1600 rpm / Adjustable direction of rotation / Programme mode: up to 6 stirring programmes / 1 stirring position
The Laboratory Technology is an easy-to-use laboratory device that is used for the efficient mixing of liquids. With a 3.7 inch LCD display and user-friendly controls, the stirring speed, stirring time and direction of rotation can be customized. The stirring speed can be set within a range of 100 ... 1,600 rpm and has an accuracy of ± 10 rpm.
Our Laboratory Technology automatically saves the last set working parameters and up to six individually programmed stirring cycles. This enables a quick restart with the desired settings. The stirrer also has an integrated timer that allows precise time control from one second to 99 hours and 59 minutes.
The use of a brushless motor ensures maintenance-free and quiet operation. The robust acrylic stirring plate measuring 173 × 180 mm provides a stable base for a wide range of stirring tasks, even for longer operating times. The Laboratory Technology can process liquid volumes up to a maximum of 5 litres and is operated via a power supply of AC 100 ... 240V at 50 Hz.
It is a good solution for laboratory work where reliable and reproducible mixing without heating is required. It impresses with its robust design and easy handling in research facilities and industrial laboratories.... Read More | Thickness Gauge with the unique swivelling probe / Easy measurements in hard-to-reach areas / For FE and nFE metals / Wireless interface for Windows, iOS and Android
The Thickness Gauge has a globally unique measuring probe that can be swiveled through 90°, allowing you to always carry out Thickness Gauge with the unique swivelling probe / Easy measurements in hard-to-reach areas / For FE and nFE metals / Wireless interface for Windows, iOS and Android
The Thickness Gauge has a globally unique measuring probe that can be swiveled through 90°, allowing you to always carry out precise coating thickness measurements. The Thickness Gauge with the compact, lightweight devices is barely larger than a measuring probe and is therefore ideal for on-site applications in hard-to-reach places. The handy metal housing is splash-proof to IP 64 for interference-free measurements in harsh environments. A coating thickness tester with flowing water protection is also available as an option. For a long service life with frequent measurements on rough surfaces, the measuring probe has a wear-resistant ruby probe pole.
With a single button and the self-explanatory, multilingual menu navigation, the Thickness Gauge is very easy to operate.
A Thickness Gauge is usually used in the quality assurance of coating processes. For example, to determine the paint thickness of a coating, when testing vehicles or steel structures or in fire protection (determining the coating thickness of steel doors). However, it is not only a Thickness Gauge, but can also be used to reliably measure rubber coatings, anodizing and galvanic coatings.
The Thickness Gauge uses a combined probe to measure insulating layers of paint, varnish, plastic, rubber, ceramic and galvanic coatings (excluding nickel) using the magnetic induction measuring method. The device is used on iron and steel substrates. It is also suitable for measuring insulating coatings (paint, plastic, etc.) using the eddy current method on non-ferrous metals such as aluminum, brass, copper, bronze and non-magnetic stainless steels in accordance with ISO 2178 and ISO 2360.
To further process your measurement data, you can connect your Thickness Gauge to mobile Android and iOS devices. Or you can communicate with a Windows PC. Wireless technology makes it possible. With the Lima Connect app, you can manage projects and allocate the measuring points on a photo. The measurement results can be statistically analysed and displayed graphically. The app for Android, iOS and Windows is free of charge.... Read More | The digital Torque Wrench combines state-of-the-art technology with a robust design and guarantees maximum precision for a wide range of assembly tasks. With its two intelligent operating modes, comprehensive protective functions and reliable 220V power supply, this Torque Wrench is the ideal The digital Torque Wrench combines state-of-the-art technology with a robust design and guarantees maximum precision for a wide range of assembly tasks. With its two intelligent operating modes, comprehensive protective functions and reliable 220V power supply, this Torque Wrench is the ideal solution for industrial, workshop and assembly applications.
In torque mode, the desired torque can be set quickly and continuously. The value can be conveniently adjusted using the operating buttons and the screwdriving process begins with a simple pull of the trigger. Torque + Angle Mode enables controlled tightening not only via the torque, but also via the angle of rotation - perfect for applications that require maximum precision.
Other highlights of the Torque Wrench include precise torque adjustment with high repeat accuracy, a multi-stage gearbox for reliable power transmission and alarm and control functions that help the user to assess the tightening result. Integrated protective functions such as temperature monitoring prevent overheating and extend the service life of the tool. Thanks to the mains-powered design, continuous work is possible without charging breaks.
Another highlight is the software supplied, which can be used to conveniently read out all the recorded screwdriving data. This allows users to document and analyze torque values, results and process data. The software also allows centralized settings to be made directly on the device.
The torque screwdriver is ideal for precise screw connections in mechanical and plant engineering. It also ensures reliable results when assembling wind turbines and steel structures. In the automotive sector, it is an indispensable tool for maintenance and repairs. It can also be used in a wide range of applications in heavy industry and construction. ... Read More |