| Description | The Oxygen Meter is a reliable measuring instrument for monitoring the oxygen concentration in ambient air. With a measuring range of 0 to 30% vol. oxygen and a resolution of 0.1% vol., the Oxygen Meter delivers precise readings for a wide range of applications in industry, laboratories, storage, The Oxygen Meter is a reliable measuring instrument for monitoring the oxygen concentration in ambient air. With a measuring range of 0 to 30% vol. oxygen and a resolution of 0.1% vol., the Oxygen Meter delivers precise readings for a wide range of applications in industry, laboratories, storage, and occupational safety.
In addition to oxygen measurement, the device also records temperature and humidity. The integrated oxygen, temperature, and humidity sensor enables comprehensive monitoring of ambient conditions. Oxygen measurement is performed with an accuracy of ±0.3% of reading, while temperature values in the range of -9 to 55°C and humidity values from 0 to 100% RH are displayed.
For easy evaluation, the Oxygen Meter features a graphical trend display. This makes it possible to track changes in measured values directly on the device. In addition, up to 100,000 data sets can be stored, allowing even longer measurement series to be documented reliably.
An adjustable alarm warns the user when oxygen values become critical. This makes the Oxygen Meter ideal for continuous monitoring of areas where a safe oxygen concentration is important. The built-in 3000 mA lithium battery ensures flexible mobile use and operation independently of a fixed power supply.
This Oxygen Meter is ideal for applications in industry, laboratories, warehousing, occupational safety, and building services. Wherever oxygen concentration needs to be monitored reliably, the Oxygen Meter supports control of room air and helps to identify critical oxygen values at an early stage.... Read More | The state-of-the-art Clamp Meter enables precise and comprehensive measurements in the areas of current, voltage, frequency, power, energy flicker and harmonics. It has been specially developed to provide reliable data both in industrial applications and when analyzing photovoltaic or inverter The state-of-the-art Clamp Meter enables precise and comprehensive measurements in the areas of current, voltage, frequency, power, energy flicker and harmonics. It has been specially developed to provide reliable data both in industrial applications and when analyzing photovoltaic or inverter systems.
Simultaneous monitoring of all three phases and the neutral conductor provides a complete picture of the electrical system. The efficiency measurement of inverters allows a detailed analysis of the energy conversion, while the grid signal monitoring continuously detects deviations and faults. This Clamp Meter is therefore an indispensable tool for professional energy analyses.
Thanks to modern communication interfaces such as Wifi, the Clamp Meter can be easily integrated into existing systems and enables wireless analysis of measurement data. The integrated logger function and the memory reliably save all relevant data for later analysis.
An integrated oscilloscope function allows the visual display of signal curves, including inrush currents, and thus supports the analysis of transient phenomena. The 7.8-inch touch display ensures intuitive operation and a clear presentation of all measured values, diagrams and analysis functions. The Clamp Meter fulfils the requirements of IEC 61000-4-30 Class A and thus guarantees standard-compliant analysis of the power quality parameters.
This Clamp Meter combines precision, versatility and modern user-friendliness and is ideal for energy analyses, fault diagnostics and efficiency tests in complex electrical systems.... Read More | The illuminometer has a large measuring range of 0 … 400 lux. The illuminance is measured using an external silicon photodiode with a spectral filter. This means that the illuminometer can be positioned appropriately for every measuring task.
- Measuring range: 0,0 … 400,000 Lux
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Resolution: 0.1 lux
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The illuminometer has a large measuring range of 0 … 400 lux. The illuminance is measured using an external silicon photodiode with a spectral filter. This means that the illuminometer can be positioned appropriately for every measuring task.
- Measuring range: 0,0 … 400,000 Lux
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Resolution: 0.1 lux
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Lux and footcandle units
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Micro-USB interface
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Incl. software
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Rechargeable battery
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Data memory: 32,000 sets of readings
... Read More | The Sound Sensor is ideal for all applications where ambient noise or noise levels need to be monitored precisely. Whether in urban noise measurement stations, on factory floors, in schools or in research projects - this Sound Sensor provides reliable measured values to fulfil safety and comfort The Sound Sensor is ideal for all applications where ambient noise or noise levels need to be monitored precisely. Whether in urban noise measurement stations, on factory floors, in schools or in research projects - this Sound Sensor provides reliable measured values to fulfil safety and comfort requirements. The sensor covers a measuring range of 30 ... 120 dBA and operates in the frequency range from 20 ... 12500 Hz. The resolution is typically 1 dB, which is sufficient for most practical applications, while the accuracy is ±2% of the measuring range plus ±0.5 dB, based on the reference tone of 94 dB at 1 kHz. The Sound Sensor therefore provides a precise and reliable basis for all acoustic measurements.
The specific technical features include a digital interface via RS-485 with Modbus RTU, which enables easy integration into existing systems. The sensor utilizes a high-quality condenser microphone with A-weighting, which takes into account the human sense of hearing. The response time is a maximum of 2 seconds. The Sound Sensor is suitable for wall mounting and has a weatherproof housing that is also designed for outdoor use. The device is particularly interesting for companies, authorities or research institutions that require continuous monitoring of noise sources, for example in production facilities, traffic controls or urban noise projects.... 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 |