| Description | Portable 100 lpm aerosol hygiene monitoring device for airborne microbial, microbiological, bacterial, mold, fungi and virus analysis
PCE-AS1 is an air sampling meter used to assess microbiological pollution and monitor hygiene. Designed for use in hospitals, clean rooms and food and beverage, Portable 100 lpm aerosol hygiene monitoring device for airborne microbial, microbiological, bacterial, mold, fungi and virus analysis
PCE-AS1 is an air sampling meter used to assess microbiological pollution and monitor hygiene. Designed for use in hospitals, clean rooms and food and beverage, cosmetics and pharmaceutical production facilities, the PCE-AS1 air sampler meets the latest requirements for devices used for airborne microbial analysis. Optional ISO calibration lab certificate as an accessory.... Read More | The CO2 content in the air is an important measure for checking the ventilation behavior in offices, classrooms, lecture halls, etc. The CO2 / carbon dioxide measuring device helps to ensure that, for example, there is regular ventilation for employees in the office. The CO2 / carbon dioxide The CO2 content in the air is an important measure for checking the ventilation behavior in offices, classrooms, lecture halls, etc. The CO2 / carbon dioxide measuring device helps to ensure that, for example, there is regular ventilation for employees in the office. The CO2 / carbon dioxide measuring device checks indoor air quality via the CO2 content. If the CO2 concentration is below 1000 ppm, the indoor air quality is optimal. Good indoor air quality helps to promote concentration. It is also ensured that the aerosol concentration in the air is low, as the aerosols are repeatedly mixed with fresh air. The CO2 / carbon dioxide measuring device shows the air quality as a numerical measured value and as a traffic light indicator. At the push of a button, the CO2 content of the last five hours can be shown on the display. In addition to the CO2 measuring function, the CO2 / carbon dioxide measuring device is equipped with a sensor for temperature and humidity.... 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 | The Material Tester is a high-quality measuring instrument designed for calibrating torque sensors and for the precise measurement of the tightening torque of screws and other fasteners. The Material Tester offers a high accuracy of ±1% within the range of 10% ... 100% of the scale and can be The Material Tester is a high-quality measuring instrument designed for calibrating torque sensors and for the precise measurement of the tightening torque of screws and other fasteners. The Material Tester offers a high accuracy of ±1% within the range of 10% ... 100% of the scale and can be operated in both clockwise and anti-clockwise directions.
The Material Tester supports several operating modes, such as Peak Hold, MAX, and real-time measurement. In Peak Hold mode, the maximum value is automatically stored, and the measurement data can be transferred via USB to the software, which also enables a pass/fail evaluation. Tolerance ranges can be set directly on the device, allowing values to be checked quickly. An integrated LED traffic light display shows the measured value at a glance.
The choice between the units Newton-meter (N·m), kilogram-force-centimeter (kgf·cm), and pound-force-inch (lbf·in) enables flexible applications across various industries. With a storage capacity of 2,000 measurement groups and the option of data transfer via USB, the measuring instrument is ideal for use in the mechanical engineering industry and in scientific research facilities.
The Material Tester operates reliably at ambient temperatures of 5 to 40°C / 41 to 104°F and is powered by a 7.2 V NiMH battery, which is optimized for mobile use.... Read More | 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 |