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-m of torque. If the inertia and damping of the armature  are 7 kg-m2 and 3 N-m-s/rad, respectively, find the transfer function, G(s)=θL(s) / Ea (s), of  this motor if it drives an inertia load of 105 kg-m2 through a gear train, as shown in Figure  2 below.

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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-m of torque. If the inertia and damping of the armature 
are 7 kg-m2 and 3 N-m-s/rad, respectively, find the transfer function, G(s)=θL(s) / Ea (s), of 
this motor if it drives an inertia load of 105 kg-m2 through a gear train, as shown in Figure 
2 below.

ea(1) Motor
0m(t)
N₂ = 25
N₁ = 12
N3 =25
BL(1)
12 fe
N₁ = 72
Figure 2
Load
Transcribed Image Text:ea(1) Motor 0m(t) N₂ = 25 N₁ = 12 N3 =25 BL(1) 12 fe N₁ = 72 Figure 2 Load
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