3. For the motor, load and torque-speed curve, find the transfer function, G(s) = 0L(S)/Ea(s). T (N-m) ed(1) Ra www J₁ = 4 kg-m² N₂ = 150 D₂ = 36 N-m-s/rad N₁ = 50 D₁ = 8 N-m-s/rad OL(1) ½/₂ = 36 kg-m² m³f 150 50 V 100 w (rad/s)

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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3.
For the motor, load and torque-speed curve, find the transfer function, G(s) = 0L(S)/Ea(s).
T (N-m)
ed(1)
Ra
www
J₁ = 4 kg-m²
N₁ = 50
D₁
N₂ = 150
D₂ = 36 N-m-s/rad
8 N-m-s/rad 0₂(1)
√√₂ = 36 kg-m²
150
50 V
100
w (rad/s)
Draw the equivalent electrical network of the rotational system described in Problem 2.
Derive the rise time, T, for a first-order system.
Transcribed Image Text:3. For the motor, load and torque-speed curve, find the transfer function, G(s) = 0L(S)/Ea(s). T (N-m) ed(1) Ra www J₁ = 4 kg-m² N₁ = 50 D₁ N₂ = 150 D₂ = 36 N-m-s/rad 8 N-m-s/rad 0₂(1) √√₂ = 36 kg-m² 150 50 V 100 w (rad/s) Draw the equivalent electrical network of the rotational system described in Problem 2. Derive the rise time, T, for a first-order system.
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