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608
CHAPTER 35
1946 Guide
d-c
Type
1. Shunt 2. Compound . 3. Series
Table 1. Classification of Motors
Speed Charac
teristics
Full Voltage
Starting Torque
Starting Current
- ' .. '
Hp Range -
Type of Application See Footnotet
Constant Speed Drives
Constant
I Normal ,
Normal
All
'(with controller)
Variable
High
Normal
(with controller)
All
Variable
High
Normal
(with co itroller)
Small
(c) centrifugal pumps and centrifugal compressors
(6) (c) (e) Reciprocal ing pumps and frequent or hard
. starting
(d) Fans direct connected
Poly.phase
4. Squirrel-Cage
Constant ` Normal
General Purpose
0.8t1.5
Class A
times
High 6-8 times
5. SQuiirel-Cage Class B
Constant
Normal 0.8-1.5
times
Normal 5-6 times
0. Squirrel-Cage Class C
7. Wound Rotor
Constant
,
Constant or Variable
High
2-2.6 times
Normal 5-6 times
High
Low
1-2.5
1-3 times
times
(with secondary
control)
8. Synchronous -High Speed
Exactly Constant
Normal
0.75-1.75 times
Normal 5-7 times
9. Synchronous Low Speed
Exactly Constant
Low 0.3-0.4 times
Low 3--4 times
All
*/ Medium Small
(c) centrifugal pumps and centrifugal compressors
' fugal pumps and centrifugal com pressors
Medium Small
(5) Reciprocating ; pumps *
(e) and compressors started loaded
AU
(6) reciprocating pumps and compressors
(c) and frequent (e) or hard start
Large
Medium Large
trifugal pumps and centrifugal com pressors
compressors starting unloaded
10. Capacitor
Constant High
Normal
11. Capacitor Fan Constant Normal > Normal
Single
PHASE a-c
12. Capacitor Start Constant Induction Run
13. Repulsion Induction.
Constant
High High
Normal
14/ Split Phase
Constant and Adjustable
Normal
Normal
Small
Small V. .
(6) Pumps and compressors
'
(a) Fans, centrifugal pumps
Fractional (b) pumps and . compressors.
Medium Small '
(6) pumps and compressors
Fractional
(a) Fans (b) .pumps and
compressors (d) fans--direct
tApplications:
,
. a. Drives having medium or low starting torque and inertia (WR1) such as fans and centrifugal pumps or reciprocating pumps and compressors started unloaded.
b. Drives having high starting torques, such as reciprocating pumps and compressors started loaded.
c. Similar to (a) except where frequent or hard starting (large WR}) requires a higher starting arid
accelerating torque. .
8u
d. Fans direct connected.
. Stoker'drives. J
'
Motors and Motor Controls
609
Power Supply '
Table 1. Classification of Motors--(Concluded)
Type
Speed Charac teristics
Full Voltage
Starting Torque
Starting Current
Hp Range
Type of
Application, See Footnote* t,
Adjustable, Speed Drives
15. Shunt Field Adjustment
Constant Normal
Normal ' AU
(with co itroller)
(a) Fans and (e) centrifugal pumps
d-c 16. Armature
Variable Normal Normal AU .
fa) Fans and
Resistance
(with co itroller)
(t) centrifugal pumps
Adjustment
17. Variable Voltage Constant' Normal
Normal
Control
(with co itroller)
All
(d) Fans and centrifugal pumps
Poly
phase
a-c
18. Squirrel-Cage High Slip. Transformer
Adjustment
Variable
19. Squirrel-Gage
Constant
Separate Wind Multi-
ing or Regrouped Speed
Poles
20. Wound Rotor Variable
Normal. Normal
Normal or High
Normal or Low
High
Low
(with se>condary
cont rol)
'Medium Small '
All
All
(a) Fans
(a) Fans (6) pumps and (c) compressors
() Fans () centrifugal-pumps
and compressors
21. Repulsion
Variable High
Single
Phase a-c
22. Capacitor Low Torque Tapped Winding
23. Capacitor Low Torque Trans former Adjust ment
Variable
Two Speed
Low
Variable Low
24. Split Phase
Constant Normal
Regrouped Poles
Normal Normal Low Normal
Low and () Fans--centrifugal
Fractional
'pumps
() compressors
Fractional (d) Fans, direct
Fractional (d) Fans
Fractional (d) Fans
for starting the motor; (3) overload protection for the motor; (4) pro tection against low voltage; and (5) means for varying the motor speed.
Full voltage starting for motors is preferable because of its lower first cost and simplicity of control. Except for d-c machines, most motors are mechanically and electrically designed for full voltage starting. The starting inrush current, however, is limited in many cases by regulations of power companies because of the voltage fluctuations which may be caused by heavy current surges. It is therefore often necessary to reduce the starting current below that obtained by across-the-line starting. The power supplier- should . be consulted to determine' the allowable inrush current for any given location.
The choice between full voltage and reduced voltage starting is governed almost entirely by inrush current limitations. The starting torque of all motors varies with the starting current and.it is therefore necessary to insure that the motor is supplied with sufficient current to develop enough torque to accelerate the load.
In present practice overload protection of motors is- obtained by use of thermal overload inverse time limit type protection. The usual setting of such protection devices is at 125 per cent overload, the element trip-