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The relative expanded uncertainty of torque realized by the 10-N·m-DWTSM, Wtsm, was evaluated in the 0.1 10N·m torque range and was found to be 6.6 × 10−5, with a coverage factor, k, being equal to 2. In addition, the 10-N·m-DWTSM was compared with the existing 1-kN·m-DWTSM at NMIJ by using small-rated-capacity torque measuring devices at 5N·m and 10N·m torque steps.
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Yet the torque of stepping and fluctuating γ-ΔC17 and γ-ΔC21 estimated in the 30 90° portion of the averaged steps agreed with the estimates at 2 mM ATP.
For cogging torque calculation, step 8 is very important, because the accuracy of the calculation highly depends on the accuracy of the airgap permeances, even for small values.
Determination of insertion-torque-value (ITV) was taken then with the Implantcenter II (Satelec-ACTEON/FR) for each inserted implant, allowing a torque increase in steps of 1 Ncm up to 100 Ncm).
The simulation of the open-loop step torque response of the drive system is achieved.
Therefore, it is necessary to reduce the ripples occurred at the speed and torque of the step motor.
The controlled system disturbance rejection is tested by applying a step torque to the chassis dynamometer rollers against the wheel rotation direction.
The experiment is conceptually described as a single degree of freedom non-linear torsional system that is excited by an external step torque.
The maximum load of 4.8 Nm was lower than the maximum torque in the step transmission experiment.
Starting from 20 Ncm, the placement torque was increased in steps of 5 Ncm, when the rotation stopped because of friction before the implant was fully inserted.
The motor used was a stepping motor (CRK564PMAPB: Oriental Motor Co., Ltd., maximum torque: 0.78 Nm, basic step angle: 0.36°).
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