With this car measuring device, weld seams, wear and tear and damage can be assessed quickly and easily in order to make quick diagnoses. The sheathing of the endoscope cable from the car measuring device consists of braided tungsten.
With this car measuring device, weld seams, wear and tear and damage can be assessed quickly and easily in order to make quick diagnoses. The sheathing of the endoscope cable from the car measuring device consists of braided tungsten.
With this car measuring device, weld seams, wear and tear and damage can be assessed quickly and easily in order to make quick diagnoses. The sheathing of the endoscope cable from the car measuring device consists of braided tungsten.
With this car measuring device, weld seams, wear and tear and damage can be assessed quickly and easily in order to make quick diagnoses. The sheathing of the endoscope cable from the car measuring device consists of braided tungsten.
With this car measuring device, weld seams, wear and tear and damage can be assessed quickly and easily in order to make quick diagnoses. The sheathing of the endoscope cable from the car measuring device consists of braided tungsten.
The fully automatic process digital refractometer IPR Basic3 continuously measures the refractive index and thus the concentration of solids in solutions or the mixing ratios of binary or quasi-binary liquid mixtures. The measurement is independent of process air, turbidity, colour of the process solution and the light intensity of the LED.
With this car measuring device, weld seams, wear and tear and damage can be assessed quickly and easily in order to make quick diagnoses. The sheathing of the endoscope cable from the car measuring device consists of braided tungsten.
The Agricultural measuring device provides exceptionally accurate grain moisture measurement in real time. The PCE-A-315 in-process moisture meter uses low-power microwaves to penetrate the surface every 0.2 second and obtain interior moisture readings without causing any damage.
The Ultrasonic Contact Impedance (UCI) durometer PCE-3500 has been designed for the non-destructive hardness measurement of metallic components. A 136° Vickers diamond at the probe is stimulated with its self-resonance to allow the user to very accurately measure hardness of small items, thin-walled items (>1 mm), and surface-hardened layers. Small imprint after measuring for mirrored surfaces.
The car measuring device has a 1.2 m / 3.9 ft long endoscope cable. With a diameter of only 2 mm, cavities with the smallest access can be viewed with the help of this car measuring device. The camera head of this car measuring device can move freely in 4 directions.
The Ultrasonic Contact Impedance (UCI) durometer PCE-3500 has been designed for the non-destructive hardness measurement of metallic components. A 136° Vickers diamond at the probe is stimulated with its self-resonance to allow the user to very accurately measure hardness of small items, thin-walled items (>1 mm), and surface-hardened layers. Small imprint after measuring for mirrored surfaces.
The Ultrasonic testing device has been designed for the non-destructive hardness measurement of metallic components. A 136° Vickers diamond at the probe is stimulated with its self-resonance to allow the user to very accurately measure hardness of small items, thin-walled items (>1 mm), and surface-hardened layers. Small imprint after measuring for mirrored surfaces.
The Ultrasonic testing device has been designed for the non-destructive hardness measurement of metallic components. A 136° Vickers diamond at the probe is stimulated with its self-resonance to allow the user to very accurately measure hardness of small items, thin-walled items (>1 mm), and surface-hardened layers. Small imprint after measuring for mirrored surfaces and nitrided surfaces.
The Ultrasonic Contact Impedance (UCI) condition monitoring material tester has been designed for the non-destructive hardness measurement of metallic components. A 136° Vickers diamond at the probe is stimulated with its self-resonance to allow the user to very accurately measure hardness of small items, thin-walled items (>1 mm), and surface-hardened layers. Small imprint after measuring for mirrored surfaces.
The Ultrasonic Contact Impedance (UCI) condition monitoring material tester has been designed for the non-destructive hardness measurement of metallic components. A 136° Vickers diamond at the probe is stimulated with its self-resonance to allow the user to very accurately measure hardness of small items, thin-walled items (>1 mm), and surface-hardened layers. Small imprint after measuring for mirrored surfaces and nitrided surfaces.
The Ultrasonic Contact Impedance (UCI) durometer PCE-3500 has been designed for the non-destructive hardness measurement of metallic components. A 136° Vickers diamond at the probe is stimulated with its self-resonance to allow the user to very accurately measure hardness of small items, thin-walled items (>1 mm), and surface-hardened layers. Small imprint after measuring for mirrored surfaces and nitrided surfaces.
The Ultrasonic Contact Impedance (UCI) condition monitoring material tester has been designed for the non-destructive hardness measurement of metallic components. A 136° Vickers diamond at the probe is stimulated with its self-resonance to allow the user to very accurately measure hardness of small items, thin-walled items (>1 mm), and surface-hardened layers. Small imprint after measuring for mirrored surfaces and nitrided surfaces.
The Ultrasonic Contact Impedance (UCI) durometer PCE-3500 has been designed for the non-destructive hardness measurement of metallic components. A 136° Vickers diamond at the probe is stimulated with its self-resonance to allow the user to very accurately measure hardness of small items, thin-walled items (>1 mm), and surface-hardened layers. Small imprint after measuring for mirrored surfaces and nitrided surfaces.