A tension dynamometer is based on the principle that the force acting on the pressure adapter is measured hydraulically. The hydraulic pressure generated is displayed by the tension dynamometer on a scale in Newtons.
A tension dynamometer is based on the principle that the force acting on the pressure adapter is measured hydraulically. The hydraulic pressure generated is displayed by the tension dynamometer on a scale in Newtons.
A tension dynamometer is based on the principle that the force acting on the pressure adapter is measured hydraulically. The hydraulic pressure generated is displayed by the tension dynamometer on a scale in Newtons.
A tension dynamometer is based on the principle that the force acting on the pressure adapter is measured hydraulically. The hydraulic pressure generated is displayed by the tension dynamometer on a scale in Newtons.
A tension dynamometer is based on the principle that the force acting on the pressure adapter is measured hydraulically. The hydraulic pressure generated is displayed by the tension dynamometer on a scale in Newtons.
A tension dynamometer is based on the principle that the force acting on the pressure adapter is measured hydraulically. The hydraulic pressure generated is displayed by the tension dynamometer on a scale in Newtons.
Due to its ball bearing, the load cell has a special resistance against lateral forces. The load cell has a strong output signal of approx. 4 mV / V and works with a measurement uncertainty of 0.03% F.S.. The load cell is used especially in harsh environments such as truck scales, train scales, machine weighing, etc..
Other force sensor nominal loads available - see variants!