1. A dc motor develops 55 N-m of torque at a speed of 600 rad/s when 12 volts are applied. It stalls out at this voltage with 100 N-moftorque. Iftheinertiaanddamping of the armature are 7 kg-m²and 3N-m-s/rad, respectively, find the transfer function, G(s) = 0L(s)/ Ea(s), of this motor if it drives an inertia load of 105 kg-m² through a gear train, as shown in Figure P2.32. [Section: 2.8] e(t) Motor N1 = 12 N2 = 25 N3= 25 N4 = 72 Load FIGURE P2.32
1. A dc motor develops 55 N-m of torque at a speed of 600 rad/s when 12 volts are applied. It stalls out at this voltage with 100 N-moftorque. Iftheinertiaanddamping of the armature are 7 kg-m²and 3N-m-s/rad, respectively, find the transfer function, G(s) = 0L(s)/ Ea(s), of this motor if it drives an inertia load of 105 kg-m² through a gear train, as shown in Figure P2.32. [Section: 2.8] e(t) Motor N1 = 12 N2 = 25 N3= 25 N4 = 72 Load FIGURE P2.32
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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