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PCE Instruments
The dynamometer can be used to measure both tensile and compressive forces with high accuracy. Tensile and compressive forces are often measured in the test laboratory. For example, to determine the yield point, the tear-off force or the force required to actuate buttons or switches. The dynamometer is supplied with an external measuring cell and can measure forces of up to 10,000 N / 2,248.1 lbf. Various eyelets or hooks with M12 threads can be attached to the measuring cells. It is also possible to attach your own devices to the measuring cell with these threads.
The internal memory of 32 GB offers space for 30 million measuring points. This allows measurement logs to be created, saved and exported. The dynamometer has a USB-C interface that can be used to read the measurement data into the PC software. The dynamometer is equipped with a graphic LCD that displays the measured values both numerically and graphically. In addition, a bar chart shows the measured value in the selected measuring range. The measuring cell is protected to IP67 and can therefore also be used in harsh industrial environments.
Various force test stands are available for adapting the dynamometer. A special feature of the dynamometer is the possibility to exchange the measuring cell between the models. By entering the sensitivity in mV/V, all measuring cells can be used with just one handheld device.
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PCE Instruments
The Force Gauge / Digital Force Gauge can be used to measure both tensile and compressive forces with high accuracy. Tensile and compressive forces are often measured in the test laboratory. For example, to determine the yield point, the tear-off force or the force required to actuate buttons or switches. The Force Gauge / Digital Force Gauge is supplied with an external measuring cell and can measure forces of up to 100 kN / 100,000 N / 22,480.9 lbf. Various eyelets or hooks with an M33 thread can be attached to the measuring cells. It is also possible to attach your own devices to the measuring cell using these threads.
The internal memory of 32 GB offers space for 30 million measuring points. This allows measurement logs to be created, saved and exported. The Force Gauge / Digital Force Gauge has a USB-C interface that can be used to read the measurement data into the PC software. The Force Gauge / Digital Force Gauge is equipped with a graphic LCD that displays the measured values both numerically and graphically. In addition, a bar chart shows the measured value in the selected measuring range. The measuring cell is protected to IP67 and can therefore also be used in harsh industrial environments.
Various force test stands are available for adapting the Force Gauge / Digital Force Gauge. A special feature of the Force Gauge / Digital Force Gauge is the possibility to exchange the measuring cell between the models. By entering the sensitivity in mV/V, all measuring cells can be used with just one handheld device.
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PCE Instruments
The Tension Dynamometer / Tension Load Cell / Tension Load Cell can be used to measure both tensile and compressive forces with high accuracy. Tensile and compressive forces are often measured in the test laboratory. For example, to determine the yield point, the tear-off force or the force required to actuate buttons or switches. The device has an internal measuring cell and can measure forces up to 1000 N (224.8 lbf) . Various eyelets or hooks with M6 threads can be attached to the measuring cells. It is also possible to attach your own devices to the measuring cell with these threads.
The internal memory of 32 GB offers space for 30 million measuring points. This allows measurement logs to be created, saved and exported. The Tension Tension Dynamometer / Tension Load Cell / Tension Load Cell has a USB-C interface that can be used to read the measurement data into the PC software. The Tension Tension Dynamometer / Tension Load Cell / Tension Load Cell is equipped with a graphic LCD that displays the measured values both numerically and graphically. In addition, a bar chart shows the measured value in the selected measuring range. Various force test stands are available for adapting the force transducer.
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PCE Instruments
Both tensile and compressive forces can be measured with high accuracy using this Tension Dynamometer / Tension Load Cell. Tensile and compressive forces are frequently measured in test laboratories. For example, to determine the yield point, the tear-off force or the force required to actuate buttons or switches. The Tension Dynamometer / Tension Load Cell has an internal measuring cell and can measure forces up to 10 N / 2.2 lbf. Various eyelets or hooks with an M6 thread can be attached to the measuring cells. It is also possible to attach your own devices to the measuring cell using these threads.
The internal memory of 32 GB offers space for 30 million measuring points. This can be used to create, save and export measurement logs. The Tension Dynamometer / Tension Load Cell has a USB-C interface that can be used to read the measurement data into the PC software. The Tension Dynamometer / Tension Load Cell is equipped with a graphic LCD that displays the measured values both numerically and graphically. In addition, a bar chart shows the measured value within the selected measurement range.
Various force test stands are available for adapting the Tension Dynamometer / Tension Load Cell.
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PCE Instruments
The differential pressure transducer has user selectable pressure ranges, selectable analogue outputs, and an optional LCD display. These differential pressure transducers are supplied via the operating network. You can reconfigure the measuring devices on-site at any time with just a few simple steps. The long-term stability is better than 0.5% based on the full measuring range. The microprocessor-controlled electronics guarantee high accuracy (± 0.5% of the measuring range). In addition to being used in the process (to power a remote display or a regulator) as fixed or wall-mounted units, the differential pressure transducers can also be used as an on-site meter or even mobile. The optional LCD display allows on-site reading. With the help of the automatic zero setting, the measuring devices can be quickly reset on site. The analogue output can also be used in combination with the optional datalogger offered by us in the accessories. This allows you to record the differential pressure readings over a longer period of time, later transfer the stored data to a computer and analyze it there.
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PCE Instruments
The Crane Scale is the ideal tool for weighing big loads and for measuring strong tensile forces. The Crane Scale is delivered in a protective carrying case and includes two shackles made of heavy-duty aluminum. The instrument is manufacturer calibrated, but can be certified to ISO standards for an additional fee. Despite its high measurement capacity, the Crane Scale is a compact portable device with a low net weight. Interesting functions of the Crane Scale are the peak hold function, summation function, and the ability to select different units of measurement such as kg / t / lbs / N / kN. The instrument is only suitable for weighing and for tension force testing. For compression force testing, please see the PCE-FB series force gauges.
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PCE Instruments
The Hanging Scale is the ideal tool for weighing big loads and for measuring strong tensile forces. The Hanging Scale is delivered in a protective carrying case and includes two shackles made of heavy-duty steel. The instrument is manufacturer calibrated, but can be certified to ISO standards for an additional fee. Despite its high measurement capacity, the Crane Scale is a compact portable device with a low net weight. Interesting functions of the Hanging Scale are the peak hold function, summation function, and the ability to select different units of measurement such as kg / t / lbs / N / kN. The instrument is only suitable for weighing and for tension force testing. For compression force testing, please see the PCE-FB series force gauges.
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PCE Instruments
The Crane Scale is the ideal tool for weighing big loads and for measuring strong tensile forces. The Crane Scale is delivered in a protective carrying case and includes two shackles made of heavy-duty steel. The instrument is manufacturer calibrated, but can be certified to ISO standards for an additional fee. Despite its high measurement capacity, the Crane Scale is a compact portable device with a low net weight. Interesting functions of the Crane Scale are the peak hold function, summation function, and the ability to select different units of measurement such as kg / t / lbs / N / kN. The instrument is only suitable for weighing and for tension force testing. For compression force testing, please see the PCE-FB series force gauges.
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PCE Instruments
The clamp meter has a measuring range of 0… 1000 A AC/DC. The current is measured inductively using the clamp on the measuring device. Live supply lines with a diameter of up to 32 mm (1.2") can be connected to the clamp meter. With the optional Rogowski coil, the measuring range of the clamp meter can be extended to up to 3000 A AC. The clamp meter has sub-functions for current measurement. The inrush current can be measured with the clamp meter. This is a particularly important function, as motors such as those installed in ventilation systems or hall lighting require a particularly high current when switched on.
In addition to current measurement, the clamp meter can also measure voltages from 0… 1000V AC/DC, resistances, frequencies and capacitances. The functions can be set using the rotary selector switch on the clamp meter. With the NCV function, the clamp meter can be used to determine the absence of voltage without contact. As soon as a voltage of 150V AC is applied, this is indicated by an additional red LED. This function is active for every measuring function selected using the rotary selector switch. An LED lamp is integrated in the clamp meter for optimal illumination of the measuring point.
The clamp meter can be connected to an Android or iOS device via the Bluetooth interface. With the free app for the clamp meter, the measured values can be displayed, saved and further processed. The clamp meter thus covers a wide range of measuring tasks due to the multitude of functions.
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PCE Instruments
Regular calibration of temperature sensors is crucial, as they are exposed to a variety of mechanical, thermal and chemical stresses that can lead to drift over time. This drift can cause the measured temperature to deviate from the actual temperature. Through regular calibration, the differences between the actual and measured temperature can be determined, making the specific drift behaviour visible. Dry-block calibrators are effective instruments for checking and calibrating a wide range of temperature measuring devices and temperature sensors.
The calibrator / simulator is used to calibrate temperature sensors such as Pt100, Pt1000 and many other temperature sensors. The dry block function offers a practical solution for calibrating temperature sensors in the laboratory and in the field. The use of the correct "transition sleeve" ensures optimum thermal coupling between the dry block and the test item to be calibrated.
The versatility of the calibration insert makes it possible to calibrate a wide range of straight temperature sensors with different lengths and diameters with the calibrator / simulator. This significantly increases the flexibility and applicability of the dry block. Another advantage of the dry block function is that it covers the entire temperature range without having to change the calibration medium. This significantly reduces the effort for the user, as no special precautions need to be taken for different viscosities, flash points or outgassing.
Overall, the calibrator / simulator offers an efficient and user-friendly method for calibrating temperature sensors, both in the laboratory and in field applications.
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PCE Instruments
With this electromagnetic field meter it is possible to measure magnetic fields up to 999.9 mG directly. At the same time, the electromagnetic field meter displays the strength of the magnetic field numerically using an X, Y and Z axis. The electromagnetic field meter is a multifunctional 3-in-1 meter for electric fields (EF), magnetic fields (MF) and radio frequency fields (RF). The default mode is EF mode when the electromagnetic field meter is turned on. The measured value can be affected by the influence of the electric field of the environment.
The electromagnetic field meter is equipped with a built-in electromagnetic radiation sensor that displays the radiation value on the LCD screen. You can take appropriate precaution or take effective measures against the electromagnetic radiation according to the test result.
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PCE Instruments
The Force Gage is a portable, hand-operated device that measures the force required to pull a specific test diameter of coating from a substrate using hydraulic force. The measured force is shown on the LCD and represents the adhesion strength of the coating to the substrate. This device is used to evaluate the adhesion (peel strength) of a coating by determining the maximum tensile force it can withstand before it peels off. Breakage points, which appear as cracks along the weakest layer in the system of carrier, adhesive, coating layers and substrate, are visualised by the Force Gage.
Equipped with a hand-operated hydraulic pump, our Force Gage enables precise and repeatable application of the required tensile force. Thanks to a selection of different dolly sizes, the device can be flexibly adapted to different test requirements, making it particularly versatile.
In addition, the Force Gage offers a mini-USB interface for easy transfer of measurement data to external devices. The data can be saved in practical CSV format, which enables easy processing and analysis. You can find some additional as well as replacement measuring heads as well as the right base for your needs in the accessories.
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PCE Instruments
The torque meter for drinking bottles was developed to determine the torque of screw caps on drinking bottles and similar containers in a stationary manner. This measurement with the torque meter for drinking bottles is particularly important to find out whether the containers are properly closed. If the containers are not properly closed, the food they contain could rot prematurely, for example. Therefore, this measuring method with the torque meter for drinking bottles is particularly necessary in the food industry.
It doesn't matter whether the bottle torque meter is used in the laboratory or in production. The turntable of the torque meter for drinking bottles can hold samples with a diameter between 20 and 200 mm. A crank attached to the side of the torque meter for drinking bottles enables stepless and flexible adjustment of the transducer. Thanks to the crank, samples can be mounted quickly and easily.
Various functions are available for the analysis of the torque meter for drinking bottles. For example, the current measured values can be displayed on the torque meter for drinking bottles. The peak value (PEAK) can also be displayed on the torque meter for drinking bottles.
A direct connection to a PC can be established via the USB interface on the torque meter for drinking bottles. The software can then be used to depict a graphical and tabular course of the measurement process from the torque meter for drinking bottles. The measurement data stored by the torque meter for drinking bottles can also be called up and processed using the software.
The recorded measurement data can be printed out at the touch of a button via the printer integrated on the side of the torque meter for drinking bottles. In order not to print all memory locations at the same time, the torque meter for drinking bottles offers the option of limiting the memory locations when printing.
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PCE Instruments
The torque meter for drinking bottles was developed to determine the torque of screw caps on drinking bottles and similar containers in a stationary manner. This measurement with the torque meter for drinking bottles is particularly important to find out whether the containers are properly closed. If the containers are not properly closed, the food they contain could rot prematurely, for example. Therefore, this measuring method with the torque meter for drinking bottles is particularly necessary in the food industry.
It doesn't matter whether the bottle torque meter is used in the laboratory or in production. The turntable of the torque meter for drinking bottles can hold samples with a diameter between 20 and 200 mm. A crank attached to the side of the torque meter for drinking bottles enables stepless and flexible adjustment of the transducer. Thanks to the crank, samples can be mounted quickly and easily.
Various functions are available for the analysis of the torque meter for drinking bottles. For example, the current measured values can be displayed on the torque meter for drinking bottles. The peak value (PEAK) can also be displayed on the torque meter for drinking bottles.
A direct connection to a PC can be established via the USB interface on the torque meter for drinking bottles. The software can then be used to depict a graphical and tabular course of the measurement process from the torque meter for drinking bottles. The measurement data stored by the torque meter for drinking bottles can also be called up and processed using the software.
The recorded measurement data can be printed out at the touch of a button via the printer integrated on the side of the torque meter for drinking bottles. In order not to print all memory locations at the same time, the torque meter for drinking bottles offers the option of limiting the memory locations when printing.
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PCE Instruments
The torque meter for drinking bottles was developed to determine the torque of screw caps on drinking bottles and similar containers in a stationary manner. This measurement with the torque meter for drinking bottles is particularly important to find out whether the containers are properly closed. If the containers are not properly closed, the food they contain could rot prematurely, for example. Therefore, this measuring method with the torque meter for drinking bottles is particularly necessary in the food industry.
It doesn't matter whether the bottle torque meter is used in the laboratory or in production. The turntable of the torque meter for drinking bottles can hold samples with a diameter between 20 and 200 mm. A crank attached to the side of the torque meter for drinking bottles enables stepless and flexible adjustment of the transducer. Thanks to the crank, samples can be mounted quickly and easily.
Various functions are available for the analysis of the torque meter for drinking bottles. For example, the current measured values can be displayed on the torque meter for drinking bottles. The peak value (PEAK) can also be displayed on the torque meter for drinking bottles.
A direct connection to a PC can be established via the USB interface on the torque meter for drinking bottles. The software can then be used to depict a graphical and tabular course of the measurement process from the torque meter for drinking bottles. The measurement data stored by the torque meter for drinking bottles can also be called up and processed using the software.
The recorded measurement data can be printed out at the touch of a button via the printer integrated on the side of the torque meter for drinking bottles. In order not to print all memory locations at the same time, the torque meter for drinking bottles offers the option of limiting the memory locations when printing.
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PCE Instruments
The clamp meter is the ideal measuring device for measuring voltages up to 1500 V AC/DC and currents up to 1000 A AC/DC. The current measurement with the clamp meter is inductive. To do this, the supply line is placed in the clamp meter. This has the particular advantage that the current can be measured during operation. This means that the clamp meter is used, for example, for maintenance work on a photovoltaic system. Photovoltaic systems consist of many different solar cells that are connected in series with one another. Here, the current clamps can be used to measure the individual currents of individual rows in order to limit possible errors.
In addition to normal voltage and current measurements, the clamp meter can also measure the inrush current. Inrush currents are currents that are particularly high when the device is switched on. These currents arise when motors start up for ventilation systems, for example, or when stadium lighting is switched on. This measurement with the clamp meter is particularly important for dimensioning the supply line and fuses. Frequency converters are converters that output the voltage on the primary side with a changed frequency and amplitude on the secondary side. With the clamp meter and the VFD measurement function, measurements can be carried out up to a frequency of 45 Hz ... 1 kHz.
The clamp meter also has a Bluetooth 4.0 interface. With this interface on the clamp meter, a connection to an Android and iOS device can be established. With the free “Meterbox Pro” app, the values measured by the clamp meter can be displayed and saved for later analysis.
With the data logging function, the clamp meter can save all measured values at any set interval. After a measurement, the values can be graphically displayed using the clamp meter. Each individual measuring point can also be read individually from the clamp meter. The storage capacity of the clamp meter has a size of 16 groups and a total storage capacity of 100,000 measured values. With the clamp meter, the measured value is saved with the date and time.
The clamp meter can be expanded with an optional current clamp. The additional current clamp to the clamp meter is flexible and can therefore be adapted to the measuring task. With the extended clamp-on ammeter, current measurements of up to 3000 A AC can be carried out. The flexible current clamp is connected to the voltage input of the clamp meter. The current clamp converts the voltage value into a usable current value and shows it on the display.
Because of its many different functions and the high measuring range, the clamp meter is used, for example, for checking photovoltaic systems, hydroelectric power plants, wind power plants or for installing immovable electrical machines.
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PCE Instruments
A portable handheld single-axis radioactivity meter or electromagnetic radiation detector for measuring electromagnetic fields (EMFs). This user-friendly radioactivity meter is ideal for assessing risks associated with exposure to electromagnetic radiation emitted from electric power lines, home appliances and industrial devices.
Designed and calibrated to measure EMF radiation at different bandwidths, the radioactivity meter provides a quick, easy and reliable way to measure electromagnetic field radiation levels.
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PCE Instruments
The coating thickness gauge can reliably determine the thickness of, for example, plastics, paints and other coatings on ferrous and non-ferrous metals. With a measuring range of up to 0 ... 5000 µm on ferrous metals, the coating thickness gauge covers a wide range of measuring tasks. Because of the accuracy of up to ±(1.0% of mv. + 0.5 µm), the coating thickness gauge is a very precise measuring device. The sensor on the coating thickness gauge has a V-groove. Thanks to this V-groove, it is possible to carry out measurements on convex surfaces with the coating thickness gauge. In addition to the convex surfaces, measurements can also be carried out on concave surfaces with the coating thickness gauge.
During the measurements, the measured values can be saved on the coating thickness gauge. A memory of a maximum of 2,000 measured values is available for the coating thickness gauge. After a measurement run, the measured values from the coating thickness gauge can be transferred to a computer and analyzed using the software. For further processing of the measured values, they can be exported in CSV format.
A target/actual range can be stored with the limit value alarm function on the coating thickness gauge. If the test object is within the stored area at the coating thickness gauge, this is signaled by a green LED. If the measured value is outside the set range, this is indicated by a red LED from the coating thickness gauge. Because of the limit value alarm function, the coating thickness gauge is used, for example, in incoming and final inspection for quality assurance.
For a special protection of the electronics, the housing of the coating thickness gauge is additionally rubberized. Optionally, the coating thickness gauge can be equipped with an ISO calibration certificate.
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PCE Instruments
The coating thickness gauge can reliably determine the thickness of, for example, plastics, paints and other coatings on ferrous and non-ferrous metals. With a measuring range of up to 0 ... 5000 µm on ferrous metals, the coating thickness gauge covers a wide range of measuring tasks. Because of the accuracy of up to ±(1.0% of mv. + 0.5 µm), the coating thickness gauge is a very precise measuring device. The sensor on the coating thickness gauge has a V-groove. Thanks to this V-groove, it is possible to carry out measurements on convex surfaces with the coating thickness gauge. In addition to the convex surfaces, measurements can also be carried out on concave surfaces with the coating thickness gauge.
During the measurements, the measured values can be saved on the coating thickness gauge. A memory of a maximum of 2,000 measured values is available for the coating thickness gauge. After a measurement run, the measured values from the coating thickness gauge can be transferred to a computer and analyzed using the software. For further processing of the measured values, they can be exported in CSV format.
A target/actual range can be stored with the limit value alarm function on the coating thickness gauge. If the test object is within the stored area at the coating thickness gauge, this is signaled by a green LED. If the measured value is outside the set range, this is indicated by a red LED from the coating thickness gauge. Because of the limit value alarm function, the coating thickness gauge is used, for example, in incoming and final inspection for quality assurance.
For a special protection of the electronics, the housing of the coating thickness gauge is additionally rubberized. Optionally, the coating thickness gauge can be equipped with an ISO calibration certificate.
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PCE Instruments
The coating thickness gauge can reliably determine the thickness of, for example, plastics, paints and other coatings on ferrous and non-ferrous metals. With a measuring range of up to 0 ... 5000 µm on ferrous metals, the coating thickness gauge covers a wide range of measuring tasks. Because of the accuracy of up to ±(1.0% of mv. + 0.5 µm), the coating thickness gauge is a very precise measuring device. The sensor on the coating thickness gauge has a V-groove. Thanks to this V-groove, it is possible to carry out measurements on convex surfaces with the coating thickness gauge. In addition to the convex surfaces, measurements can also be carried out on concave surfaces with the coating thickness gauge.
During the measurements, the measured values can be saved on the coating thickness gauge. A memory of a maximum of 2,000 measured values is available for the coating thickness gauge. After a measurement run, the measured values from the coating thickness gauge can be transferred to a computer and analyzed using the software. For further processing of the measured values, they can be exported in CSV format.
A target/actual range can be stored with the limit value alarm function on the coating thickness gauge. If the test object is within the stored area at the coating thickness gauge, this is signaled by a green LED. If the measured value is outside the set range, this is indicated by a red LED from the coating thickness gauge. Because of the limit value alarm function, the coating thickness gauge is used, for example, in incoming and final inspection for quality assurance.
For a special protection of the electronics, the housing of the coating thickness gauge is additionally rubberized. Optionally, the coating thickness gauge can be equipped with an ISO calibration certificate.
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PCE Instruments
The coating thickness gauge can reliably determine the thickness of, for example, plastics, paints and other coatings on ferrous and non-ferrous metals. With a measuring range of up to 0 ... 5000 µm on ferrous metals, the coating thickness gauge covers a wide range of measuring tasks. Because of the accuracy of up to ±(1.0% of mv. + 0.5 µm), the coating thickness gauge is a very precise measuring device. The sensor on the coating thickness gauge has a V-groove. Thanks to this V-groove, it is possible to carry out measurements on convex surfaces with the coating thickness gauge. In addition to the convex surfaces, measurements can also be carried out on concave surfaces with the coating thickness gauge.
During the measurements, the measured values can be saved on the coating thickness gauge. A memory of a maximum of 2,000 measured values is available for the coating thickness gauge. After a measurement run, the measured values from the coating thickness gauge can be transferred to a computer and analyzed using the software. For further processing of the measured values, they can be exported in CSV format.
A target/actual range can be stored with the limit value alarm function on the coating thickness gauge. If the test object is within the stored area at the coating thickness gauge, this is signaled by a green LED. If the measured value is outside the set range, this is indicated by a red LED from the coating thickness gauge. Because of the limit value alarm function, the coating thickness gauge is used, for example, in incoming and final inspection for quality assurance.
For a special protection of the electronics, the housing of the coating thickness gauge is additionally rubberized. Optionally, the coating thickness gauge can be equipped with an ISO calibration certificate.
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PCE Instruments
The coating thickness gauge can reliably determine the thickness of, for example, plastics, paints and other coatings on ferrous and non-ferrous metals. With a measuring range of up to 0 ... 5000 µm on ferrous metals, the coating thickness gauge covers a wide range of measuring tasks. Because of the accuracy of up to ±(1.0% of mv. + 0.5 µm), the coating thickness gauge is a very precise measuring device. The sensor on the coating thickness gauge has a V-groove. Thanks to this V-groove, it is possible to carry out measurements on convex surfaces with the coating thickness gauge. In addition to the convex surfaces, measurements can also be carried out on concave surfaces with the coating thickness gauge.
During the measurements, the measured values can be saved on the coating thickness gauge. A memory of a maximum of 2,000 measured values is available for the coating thickness gauge. After a measurement run, the measured values from the coating thickness gauge can be transferred to a computer and analyzed using the software. For further processing of the measured values, they can be exported in CSV format.
A target/actual range can be stored with the limit value alarm function on the coating thickness gauge. If the test object is within the stored area at the coating thickness gauge, this is signaled by a green LED. If the measured value is outside the set range, this is indicated by a red LED from the coating thickness gauge. Because of the limit value alarm function, the coating thickness gauge is used, for example, in incoming and final inspection for quality assurance.
For a special protection of the electronics, the housing of the coating thickness gauge is additionally rubberized.
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PCE Instruments
The coating thickness gauge can reliably determine the thickness of, for example, plastics, paints and other coatings on ferrous and non-ferrous metals. With a measuring range of up to 0 ... 5000 µm on ferrous metals, the coating thickness gauge covers a wide range of measuring tasks. Because of the accuracy of up to ±(1.0% of mv. + 0.5 µm), the coating thickness gauge is a very precise measuring device. The sensor on the coating thickness gauge has a V-groove. Thanks to this V-groove, it is possible to carry out measurements on convex surfaces with the coating thickness gauge. In addition to the convex surfaces, measurements can also be carried out on concave surfaces with the coating thickness gauge.
During the measurements, the measured values can be saved on the coating thickness gauge. A memory of a maximum of 2,000 measured values is available for the coating thickness gauge. After a measurement run, the measured values from the coating thickness gauge can be transferred to a computer and analyzed using the software. For further processing of the measured values, they can be exported in CSV format.
A target/actual range can be stored with the limit value alarm function on the coating thickness gauge. If the test object is within the stored area at the coating thickness gauge, this is signaled by a green LED. If the measured value is outside the set range, this is indicated by a red LED from the coating thickness gauge. Because of the limit value alarm function, the coating thickness gauge is used, for example, in incoming and final inspection for quality assurance.
For a special protection of the electronics, the housing of the coating thickness gauge is additionally rubberized. Optionally, the coating thickness gauge can be equipped with an ISO calibration certificate.
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PCE Instruments
The thickness meter is a measuring device for the non-destructive measurement of coatings (varnishes, paints, plastics ...) on steel / iron and non-ferrous metals. Thanks to the externally connected sensor on the coating thickness gauge, measuring points that are difficult to access can also be easily reached. The menu navigation of the coating thickness gauge allows easy adjustment and setting to new parameters and makes this handy coating thickness gauge an indispensable measuring device for control measurements in production, workshop and quality assurance.
The thickness meter is also ideal for immediately determining and assessing accident damage to vehicles, for example, but the coating thickness gauge can also be used optimally in the industrial sector for incoming and outgoing inspection and material testing in production.
The ergonomically designed thickness meter with external sensor allows you to rapidly determine measurement results with high accuracy. The coating thickness gauge measures non-magnetic layers such as paint, plastic, chrome, copper, zinc, enamel, etc. on steel/iron, as well as non-conductive layers such as paint, plastic, enamel, paper, glass, rubber, etc. on copper, aluminum , brass and stainless steel, as well as anodized aluminum.
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PCE Instruments
The thickness meter is a measuring device for the non-destructive measurement of coatings (varnishes, paints, plastics ...) on steel / iron and non-ferrous metals. Thanks to the externally connected sensor on the coating thickness gauge, measuring points that are difficult to access can also be easily reached. The menu navigation of the coating thickness gauge allows easy adjustment and setting to new parameters and makes this handy coating thickness gauge an indispensable measuring device for control measurements in production, workshop and quality assurance.
The thickness meter is also ideal for immediately determining and assessing accident damage to vehicles, for example, but the coating thickness gauge can also be used optimally in the industrial sector for incoming and outgoing inspection and material testing in production.
The ergonomically designed thickness meter with external sensor allows you to rapidly determine measurement results with high accuracy. The coating thickness gauge measures non-magnetic layers such as paint, plastic, chrome, copper, zinc, enamel, etc. on steel/iron, as well as non-conductive layers such as paint, plastic, enamel, paper, glass, rubber, etc. on copper, aluminum , brass and stainless steel, as well as anodized aluminum.
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PCE Instruments
The thickness meter is a measuring device for the non-destructive measurement of coatings (varnishes, paints, plastics ...) on steel / iron and non-ferrous metals. Thanks to the externally connected sensor on the coating thickness gauge, measuring points that are difficult to access can also be easily reached. The menu navigation of the coating thickness gauge allows easy adjustment and setting to new parameters and makes this handy coating thickness gauge an indispensable measuring device for control measurements in production, workshop and quality assurance.
The thickness meter is also ideal for immediately determining and assessing accident damage to vehicles, for example, but the coating thickness gauge can also be used optimally in the industrial sector for incoming and outgoing inspection and material testing in production.
The ergonomically designed thickness meter with external sensor allows you to rapidly determine measurement results with high accuracy. The coating thickness gauge measures non-magnetic layers such as paint, plastic, chrome, copper, zinc, enamel, etc. on steel/iron, as well as non-conductive layers such as paint, plastic, enamel, paper, glass, rubber, etc. on copper, aluminum , brass and stainless steel, as well as anodized aluminum.
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PCE Instruments
The thickness meter is a measuring device for the non-destructive measurement of coatings (varnishes, paints, plastics ...) on steel / iron and non-ferrous metals. Thanks to the externally connected sensor on the coating thickness gauge, measuring points that are difficult to access can also be easily reached. The menu navigation of the coating thickness gauge allows easy adjustment and setting to new parameters and makes this handy coating thickness gauge an indispensable measuring device for control measurements in production, workshop and quality assurance.
The thickness meter is also ideal for immediately determining and assessing accident damage to vehicles, for example, but the coating thickness gauge can also be used optimally in the industrial sector for incoming and outgoing inspection and material testing in production.
The ergonomically designed thickness meter with external sensor allows you to rapidly determine measurement results with high accuracy. The coating thickness gauge measures non-magnetic layers such as paint, plastic, chrome, copper, zinc, enamel, etc. on steel/iron, as well as non-conductive layers such as paint, plastic, enamel, paper, glass, rubber, etc. on copper, aluminum , brass and stainless steel, as well as anodized aluminum.
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PCE Instruments
The thickness meter is a measuring device for the non-destructive measurement of coatings (varnishes, paints, plastics ...) on steel / iron and non-ferrous metals. Thanks to the externally connected sensor on the coating thickness gauge, measuring points that are difficult to access can also be easily reached. The menu navigation of the coating thickness gauge allows easy adjustment and setting to new parameters and makes this handy coating thickness gauge an indispensable measuring device for control measurements in production, workshop and quality assurance.
The thickness meter is also ideal for immediately determining and assessing accident damage to vehicles, for example, but the coating thickness gauge can also be used optimally in the industrial sector for incoming and outgoing inspection and material testing in production.
The ergonomically designed thickness meter with external sensor allows you to rapidly determine measurement results with high accuracy. The coating thickness gauge measures non-magnetic layers such as paint, plastic, chrome, copper, zinc, enamel, etc. on steel/iron, as well as non-conductive layers such as paint, plastic, enamel, paper, glass, rubber, etc. on copper, aluminum , brass and stainless steel, as well as anodized aluminum.
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PCE Instruments
The material thickness meter is a measuring device for the non-destructive measurement of coatings (varnishes, paints, plastics ...) on steel / iron and non-ferrous metals. Thanks to the externally connected sensor on the coating thickness gauge, measuring points that are difficult to access can also be easily reached. The menu navigation of the coating thickness gauge allows easy adjustment and setting to new parameters and makes this handy coating thickness gauge an indispensable measuring device for control measurements in production, workshop and quality assurance.
The material thickness meter is also ideal for immediately determining and assessing accident damage to vehicles, for example, but the coating thickness gauge can also be used optimally in the industrial sector for incoming and outgoing inspection and material testing in production.
The ergonomically designed material thickness meter with external sensor allows you to rapidly determine measurement results with high accuracy. The coating thickness gauge measures non-magnetic layers such as paint, plastic, chrome, copper, zinc, enamel, etc. on steel/iron, as well as non-conductive layers such as paint, plastic, enamel, paper, glass, rubber, etc. on copper, aluminum , brass and stainless steel, as well as anodized aluminum.
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PCE Instruments
The Thickness Gauge has a measuring range of 0 ... 2000 µm. The Thickness Gauge can measure the coating thickness on ferrous (Fe) and non-ferrous (NFe) metals. For a better analysis of the measurements, the coating thickness gauge has a measuring function based on the SSPC standards. With this function, the corrosion protection of a coating can be checked with the Thickness Gauge.
The Group function stores the measured values directly on the Thickness Gauge. A memory of 50 groups with 50 measurements each is available on the Thickness Gauge. In each group, statistics are created for all measured values from the Thickness Gauge. All measurement data and statistics can be recalled after a measurement run on the Thickness Gauge.
For further analysis of the measured values, the Thickness Gauge can be connected to a PC. The Thickness Gauge has a micro-USB interface for this purpose. The software can be used to transfer the measurement data from the Thickness Gauge to a PC. In addition, it is possible to carry out live measurements with the Thickness Gauge using the software. For further processing of the measured values from the Thickness Gauge, they can be exported in CSV and XLS format via the software.
In addition to the coating thickness measurement, the Thickness Gauge can measure the temperature and humidity of the environment. Thus, the Thickness Gauge can be used to find out whether the climatic conditions are right to carry out further processing on the coating.
With the V-groove, the coating thickness of, for example, pipes can also be determined with the Thickness Gauge.
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PCE Instruments
The crane scale was developed for in-house weighing of up to 30 t. The crane scale has a massive shackle on the top and a rotatable hook with a safety catch on the underside. The crane scale is operated using the infrared remote control supplied. The 5-digit LED display has a digit height of approx. 75 mm, so that the readings can be read from a distance without any problems. The integrated battery of the crane scale ensures an operating time of over 40 hours. The battery level can be checked at any time. If it is low, the display of the crane scale also starts to flash, so that it is easy for the operator to see when the battery needs to be charged.
The crane scale also offers other useful functions. The tare function enables weights to be tared (e.g. slings such as ropes, chains, etc.). If the weight of the objects to be tared is known, this can also be entered manually in advance. Another useful function of the crane scale is the totalizing function. Several weights can be added and the sum read out. The display hold function can also be used to freeze measured values on the display.
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The hanging scales are available with a measuring range of 0 ... 500 kg / 0 ... 1102 lbs. With an accuracy of 1% of the measuring range, the dynamometer is a particularly precise measuring device. The housing of the dynamometer is made of robust metal. This means that the dynamometer can be used in a harsh environment. It is operated on the side of the dynamometer via the control panel. For example, the unit can be set or the zero point can be reset using the keypad. With a digit height of 41 mm and the adjustable background lighting, the dynamometer can be read easily from a great distance and in a dark environment.
A remote control is included as an extension so that the hanging scales can be operated from a great distance. Additional settings such as the background lighting, the totalizing function or the automatic switch-off of the dynamometer can be made via the remote control.
With the additional totalizing function, weights attached one after the other can be displayed totaled by the hanging scales. In addition to the mass units kg and lb, a user-specific unit can be set for the dynamometer. This is done by entering a multiplier based on the kg value measured by the force meter. The energy-saving electronics in the dynamometer enable continuous measurement for approx. 45 hours. The force gauge can optionally be equipped with an ISO calibration certificate.
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PCE Instruments
The force gage is available with a measuring range of 0 ... 300 kg / 0 ... 661 lbs. With an accuracy of 1% of the measuring range, the dynamometer is a particularly precise measuring device. The housing of the dynamometer is made of robust metal. This means that the dynamometer can be used in a harsh environment. It is operated on the side of the dynamometer via the control panel. For example, the unit can be set or the zero point can be reset using the keypad. With a digit height of 41 mm and the adjustable background lighting, the dynamometer can be read easily from a great distance and in a dark environment.
A remote control is included as an extension so that the force gage can be operated from a great distance. Additional settings such as the background lighting, the totalizing function or the automatic switch-off of the dynamometer can be made via the remote control.
With the additional totalizing function, weights attached one after the other can be displayed totaled by the force gage. In addition to the mass units kg and lb, a user-specific unit can be set for the dynamometer. This is done by entering a multiplier based on the kg value measured by the force meter. The energy-saving electronics in the dynamometer enable continuous measurement for approx. 45 hours. The force gauge can optionally be equipped with an ISO calibration certificate.
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PCE Instruments
The crane scale has a measuring range of 0 … 1000 kg / 2204 lb and a resolution of 0.1 kg. With an accuracy of 1% of the measuring range, the crane scale is also a precise measuring device. This is why the crane scale is used, for example, when weighing raw materials. The backlit LCD display on the digital crane scale has a digit height of 30 mm and can be easily read from a large distance. In addition to the kg display, the digital crane scale can also display the attached weight in lb and in N.
The robust metal housing of the crane scale allows it to be used in harsh industrial conditions. The crane scale is operated by three 1.5V AA batteries. Only the largest weighed load is displayed and held via the "MAX" function of the crane scale. With the "tare" function, the displayed measured value on the crane scale can be zeroed. This function comes into action when, for example, measuring equipment is attached. The "Hold" function of the crane scale enables a displayed measured value to be held. An ISO calibration certificate is included with the crane scale.
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PCE Instruments
The hanging scales are available with a measuring range of 0 ... 1000 kg / 0 ... 2205 lbs. With an accuracy of 1% of the measuring range, the dynamometer is a particularly precise measuring device. The housing of the dynamometer is made of robust metal. This means that the dynamometer can be used in a harsh environment. It is operated on the side of the dynamometer via the control panel. For example, the unit can be set or the zero point can be reset using the keypad. With a digit height of 41 mm and the adjustable background lighting, the dynamometer can be read easily from a great distance and in a dark environment.
A remote control is included as an extension so that the hanging scales can be operated from a great distance. Additional settings such as the background lighting, the totalizing function or the automatic switch-off of the dynamometer can be made via the remote control.
With the additional totalizing function, weights attached one after the other can be displayed totaled by the hanging scales. In addition to the mass units kg and lb, a user-specific unit can be set for the dynamometer. This is done by entering a multiplier based on the kg value measured by the force meter. The energy-saving electronics in the dynamometer enable continuous measurement for approx. 45 hours. The force gauge is equipped with an ISO calibration certificate.
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The multi-parameter pH meter is a mobile measuring device for liquid analysis. This means that the most varied of measurements can be carried out with the multi-parameter pH meter. With this multi-parameter pH meter, for example, it is possible to determine alkalinity, chlorine, cyanuric acid or the pH value. In order to carry out a measurement with the multi-parameter pH meter, a water sample of 10 ml must be placed in a cuvette. The LED built into the multi-parameter pH meter generates a test light in the wavelength ranges of 503 nm, 570 nm and 620 nm. A photodiode now recognizes the value to be measured based on the light transmission of the sample.
Each measurement is automatically saved by the multi-parameter pH meter. The stored measured values can then be read out, for example, via a mobile device via the Bluetooth interface built into the multi-parameter pH meter. A free app is available to analyze the measured values from the multi-parameter pH meter. It is also possible to establish a Bluetooth connection between the multi-parameter pH meter and a computer. Free software is also available for this, with which the measurement data can be analyzed. As another special feature of the multi-parameter pH meter, the measurement data can be uploaded to a cloud using both variants and accessed from anywhere. This service for the multi-parameter pH meter is also free of charge.
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The multi-parameter pH meter is a mobile measuring device for liquid analysis. This enables the most varied of measurements to be carried out with the multi-parameter photometer. With this multi-parameter pH meter, for example, it is possible to determine alkalinity, chlorine, cyanuric acid or the pH value. In order to carry out a measurement with the multi-parameter pH meter, a water sample of 10 ml must be placed in a cuvette. The built-in LED in the multi-parameter pH meter generates a test light in the wavelength ranges of 503 nm, 570 nm and 620 nm. A photodiode now recognizes the value to be measured based on the light transmission of the sample.
Each measurement is automatically saved by the multi-parameter pH meter. The stored measured values can then be read out, for example, via a mobile device via the Bluetooth interface built into the multi-parameter pH meter. A free app is available to analyze the measured values from the multi-parameter pH meter. It is also possible to establish a Bluetooth connection between the multi-parameter pH meter and a computer. Free software is also available for this, with which the measurement data can be analyzed. As another special feature of the multi-parameter pH meter, the measurement data can be uploaded to a cloud using both variants and accessed from anywhere. This service for the multi-parameter pH meter is also free of charge.
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The pressure transducer PCE-DMU 40 can be used for relative and absolute pressure measurements. The pressure transmitter can be used for gases, water as well as fuels and oils. Its metallic stainless steel 1.4435 membrane provides good corrosion resistance in many industrial processes. The modular design of the pressure transmitter allows a combination of process connections, pressure ranges and electrical connection variants and therefore meets almost all requirements of industrial applications. The pressure transmitter has an accuracy of 0.25% of the measuring range. Stainless steel is used as the separating membrane.
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The multi-parameter pH Meter is a mobile measuring device for liquid analysis. This means that the most varied of measurements can be carried out with the multi-parameter pH Meter. With this multi-parameter pH Meter it is possible, for example, to determine alkalinity, chlorine, cyanuric acid or the pH value. In order to carry out a measurement with the multi-parameter pH Meter, a water sample of 10 ml must be placed in a cuvette. The LED built into the multi-parameter pH Meter generates a test light in the wavelength ranges of 503 nm, 570 nm and 620 nm. A photodiode now recognizes the value to be measured based on the light transmission of the sample.>
Each measurement is automatically saved by the multi-parameter pH Meter. The stored measured values can then be read out, for example, via a mobile device via the Bluetooth interface built into the multi-parameter pH Meter. A free app is available to analyze the measured values from the multi-parameter pH Meter. It is also possible to establish a Bluetooth connection between the multi-parameter pH Meter and a computer. Free software is also available for this, with which the measurement data can be analyzed. As another special feature of the multi-parameter pH Meter, the measurement data can be uploaded to a cloud using both variants and accessed from anywhere. This service for the multi-parameter pH Meter is also free of charge.
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PCE Instruments
The multi-parameter photometer is a mobile measuring device for liquid analysis. This enables the most varied of measurements to be carried out with the multi-parameter photometer. With this multi-parameter photometer, for example, it is possible to determine alkalinity, chlorine, cyanuric acid or the pH value. In order to carry out a measurement with the multi-parameter photometer, a water sample of 10 ml must be placed in a cuvette. The built-in LED in the multi-parameter photometer generates a test light in the wavelength ranges of 503 nm, 570 nm and 620 nm. A photodiode now recognizes the value to be measured based on the light transmission of the sample.
Each measurement is automatically saved by the multi-parameter photometer. The stored measured values can then be read out, for example, via a mobile device via the Bluetooth interface built into the multi-parameter photometer. A free app is available to analyze the measured values from the multi-parameter photometer. It is also possible to establish a Bluetooth connection between the multi-parameter photometer and a computer. Free software is also available for this, with which the measurement data can be analyzed. As another special feature of the multi-parameter photometer, the measurement data can be uploaded to a cloud using both variants and accessed from anywhere. This service for the multi-parameter photometer is also free of charge.
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The carbon dioxide meter has a measuring range of 0 ... 9999 ppm. In addition to the carbon dioxide measurement, the air quality detector also has a carbon monoxide (CO) sensor with a measuring range of 0 ... 1000 ppm and a temperature and humidity sensor. The air quality detector already covers a large range of measuring tasks. The air quality detector is therefore used, for example, in occupational safety to check the climatic conditions in office workplaces.
During the measurement, the readings are stored on the carbon dioxide meter. Up to 5000 measuring points can be saved on the air quality detector. The CO² and CO content, as well as the temperature and humidity are saved by the air quality detector for each storage point. After a measurement run, the stored measurement values can be viewed directly on the air quality detector.
For further processing, the readings recorded by the carbon dioxide meter can be transferred to a computer. The transfer takes place via the Micro-USB interface of the air quality detector. When connecting the CO and CO² meter to a computer, it is recognized as a mass data storage device. The saved measured values are saved by the air quality detector in CSV file format and can therefore be processed directly.
The built-in 1500 mAh battery in the carbon dioxide meter enables mobile use. To charge the battery, the air quality detector can be connected to a 5V DC power supply via the micro-USB interface. The air quality detector can continue to be used during the charging process to take measurements. For an optimal and longer-lasting measurement of the air quality detector there is a 1/4 inch connection on the back. With this connection, the air quality detector can be attached to a tripod and aligned.
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The cable fault meter represents a powerful and versatile measuring instrument specifically designed for the precise measurement of electrical cables and conductors. With an impressive measurement range from 0.1 meters to an astonishing 30 kilometers, this device can measure and display cable lengths. Since the cable fault meter determines length based on conductor resistance, it can also measure resistance from 0.1 mΩ to 1999.9 Ω. In this measurement principle, it is also necessary to connect the Kelvin clamps to both cable ends.
The temperature monitoring function, covering an operating range of -5 to 50°C / 23 to 122°F, allows taking into account the influence of temperature fluctuations on length measurement. The cable fault meter supports the display of cable length in various units, including meters (m), kilometers (km), and feet (ft), to meet the diverse requirements of users and nations.
The implementation of 8 memory slots allows the user to individually configure and store cable types for quick access to frequently used settings. This function significantly enhances the practicality of the device.
By integrating support for both copper and aluminum cables, the tester opens up applications in various industrial environments. Furthermore, the option to select standard cable types ranging from 0.15 mm² to 240 mm² allows the user to precisely configure according to the specific requirements of their application. The cable fault meter is delivered in a carrying case and comes with two measuring leads, enabling direct use by electricians, in the trade, or many other fields.
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PCE Instruments
The multi-parameter pH meter is a mobile measuring device for liquid analysis. This enables the most varied of measurements to be carried out with the multi-parameter photometer. With this multi-parameter photometer, for example, it is possible to determine alkalinity, chlorine, cyanuric acid or the pH value. In order to carry out a measurement with the multi-parameter photometer, a water sample of 10 ml must be placed in a cuvette. The built-in LED in the multi-parameter photometer generates a test light in the wavelength ranges of 503 nm, 570 nm and 620 nm. A photodiode now recognizes the value to be measured based on the light transmission of the sample.
Each measurement is automatically saved by the multi-parameter pH meter. The stored measured values can then be read out, for example, via a mobile device via the Bluetooth interface built into the multi-parameter photometer. A free app is available to analyze the measured values from the multi-parameter photometer. It is also possible to establish a Bluetooth connection between the multi-parameter photometer and a computer. Free software is also available for this, with which the measurement data can be analyzed. As another special feature of the multi-parameter photometer, the measurement data can be uploaded to a cloud using both variants and accessed from anywhere. This service for the multi-parameter photometer is also free of charge.
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A Color Viewing Box enables the user to make direct visual colour comparisons of products that are to be produced or are already in production. Colour comparisons in a Color Viewing Box are important for a company that aims to offer products of high and consistent quality. The Color Viewing Box supports four different illuminants. The illuminants are previously defined light sources such as daylight, store light, UV light and incandescent lamps. The Color Viewing Box can be used to prevent metamerism before the product goes into series production, for example. The Color Viewing Box also forms an important part of quality assurance. In this way, it can also be checked during the production of products whether the colour values are still within the required range.
Metamerism in general refers to the fact that the same colours can look different under different illuminants.
The internal operating hours counter of the Color Viewing Box registers the lighting times of the individual lamps and thus ensures that the lamps are not changed too early or too late. The usage time of the lamps in a Color Viewing Box should not exceed 2000 hours. In addition to the operating hours, the switch-on processes for each illuminant in the Color Viewing Box are also counted.
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The light booth is an important piece of equipment in the printing industry. It allows prints to be checked for color consistency and metamerism immediately after completion. In addition to the printing industry, the light booth is used by advertising agencies, press outlets, and publishing houses, as well as wherever large formats require visual inspection. The positioning of the light on the light booth ensures optimal illumination of the desk and the back wall. This allows both a horizontal and a vertical surface to be used as a viewing plane.
To monitor the lighting time of each of the three light types: daylight D75, D65, and D50, a separate operating hour counter with a reset function is provided. The LED bulbs require replacement only after 8,000 hours of operation. The light types can be switched on individually or as a mixed light. The four braked casters allow for flexible use of the light booth at different locations.
Metamerism in general refers to the fact that the same colors can look different when exposed to different lighting or different positioning.
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The Color Viewing Box is a simulation instrument which is mainly used in quality control. The Color Viewing Box accurately simulates illuminants and thus enables the direct comparison of products which must have special colour characteristics. The Color Viewing Box supports six possible illuminants. These illuminants are included as standard: "A/F", "D65", "TL84/F11", "UV", "CWF" and "TL83/U30".
Metamerism can thus be avoided by using a Color Viewing Box. As a support during the measurement, the Color Viewing Box has an hour counter which makes it easier for the user to adhere to the recommended operating time of the lamps. The illuminant is selected by the user independently by the touch of a key. In addition to the individual light, it is also possible to switch to mixed light by pressing the required keys at the same time.
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A Color Viewing Box is used wherever products need to have the same colour characteristics during production. Thus, a Color Viewing Box contributes to quality control. The Color Viewing Box is a simulation tool which is capable of representing certain situations in order to analyse the colour characteristics of individual samples. The Color Viewing Box supports six possible illuminants. These illuminants are included as standard: "A/F", "D50", "TL84/F11", "UV", "CWF" and "TL83/U30".
Metamerism can thus be avoided by using a Color Viewing Box. As a support during the measurement, the Color Viewing Box has an hour counter which makes it easier for the user to adhere to the recommended operating time of the lamps. The illuminant is selected by the user independently by the touch of a key. The keys are located on the front side of the Color Viewing Box. If desired, several illuminants can also be enabled simultaneously in the Color Viewing Box. This is done by pressing the respective keys simultaneously.
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The water analysis meter chlorine tester with a measuring range of 0 ... 10 mg/l has been developed for rapid chlorine measurement in water. The display of the chlorine analysis meter shows the chlorine content and the temperature. The measurement result appears on the display within a few seconds after the test and can also be frozen. In addition, the water analysis meter shows a symbol in the display when the measured value is stable.
The measuring accuracy of the water analysis meter chlorine tester is increased by an automatic temperature compensation. The automatic switch-off function after 20 minutes extends the battery life of the water analysis meter.
Because the water analysis meter chlorine tester is small and handy, it is ideally suited for mobile use. Thus, the water analysis meter can be easily used in the swimming pool. The water analysis meter is very simple and understandable to operate, as all buttons are marked with the respective parameter.
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The drive belt tension meter is an optical measuring device for determining the belt tensioning force. This belt tension meter consists of a display device and a sensor on a gooseneck. The belt tension meter measures the belt tension of the belt when it is stationary. A small impulse with the help of a mallet is enough to set the belt vibrating. The belt tension meter uses a sensor beam to record the natural frequency of the belt generated in this way and visualize it on the display. Furthermore, the belt tension meter can directly determine the tensioning force of the belt from this measurement data, as well as the entered belt length and belt mass. However, entering this data is not absolutely necessary in order to carry out measurements directly with the belt tension meter. The units of measurement can be switched between N (SI unit) and pound force (US unit) in the tension meter. The measured value is always shown in Hz on the graphic display of the drive belt tension meter. If the belt mass and length are entered in the device, the strand force is also displayed in Newtons. The intuitive graphic menu is visualized on the high-contrast display of the strand force measuring device in 6 selectable languages. The drive belt tension meter is equipped with a memory for further analysis and quality assurance purposes. In the memory of the belt tension meter, up to 750 data records can be stored in 15 folders with 50 measured values each.
The belt tension meter is delivered completely ready for use. The scope of delivery includes the hand-held device, the standard sensor with gooseneck, a magnetic holder, batteries and operating instructions. An instrument case, frequency mallet, tripod and a measuring sensor with a spiral cable and a longer gooseneck (for hard-to-reach belts) are available as options for the tension meter.
Why should the belt force be measured?
The measurement of belts is always necessary when machines and systems are to be optimally maintained. A belt drive only achieves its maximum service life if it is designed for use. This means that the belt is optimally tensioned and the pulleys are precisely aligned. With the help of the belt tension measuring device, the tensioning force can be precisely determined when the belt is stationary.
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The drive belt tension meter is an optical measuring device for determining the belt tensioning force. This belt tension meter consists of a display device and a sensor on a gooseneck. The belt tension meter measures the belt tension of the belt when it is stationary. A small impulse with the help of a mallet is enough to set the belt vibrating. The belt tension meter uses a sensor beam to record the natural frequency of the belt generated in this way and visualize it on the display. Furthermore, the belt tension meter can directly determine the tensioning force of the belt from this measurement data, as well as the entered belt length and belt mass. However, entering this data is not absolutely necessary in order to carry out measurements directly with the belt tension meter. The units of measurement can be switched between N (SI unit) and pound force (US unit) in the tension meter. The measured value is always shown in Hz on the graphic display of the drive belt tension meter. If the belt mass and length are entered in the device, the strand force is also displayed in Newtons. The intuitive graphic menu is visualized on the high-contrast display of the strand force measuring device in 6 selectable languages. The drive belt tension meter is equipped with a memory for further analysis and quality assurance purposes. In the memory of the belt tension meter, up to 750 data records can be stored in 15 folders with 50 measured values each.
The belt tension meter is delivered completely ready for use. The scope of delivery includes the hand-held device, the standard sensor with gooseneck, a magnetic holder, batteries and operating instructions. An instrument case, frequency mallet, tripod and a measuring sensor with a spiral cable and a longer gooseneck (for hard-to-reach belts) are available as options for the tension meter.
Why should the belt force be measured?
The measurement of belts is always necessary when machines and systems are to be optimally maintained. A belt drive only achieves its maximum service life if it is designed for use. This means that the belt is optimally tensioned and the pulleys are precisely aligned. With the help of the belt tension measuring device, the tensioning force can be precisely determined when the belt is stationary.
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