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Control panel design guide

UL 508A control panel design guide
The easy-to-design guide for selection of electrical control components
in control panels used in industrial machinery applications

This guide is provided to assist with the design of control
panels per ULT 508A, specifically for use in industrial
machinery applications. This guide is designed to cover the
most common applications of electrical control products per
UL 508A, but is by no means an exhaustive guide, and does
not cover all uses and applications associated with UL 508A
regulations. This guide is not intended to be used in lieu of
UL 508A or other regulatory standards. Always consult all
pertinent actual regulatory standards and local standard
representatives to ensure full compliance.

Through continuing investments,
Eaton’s Electrical Sector has
grown into a world-class provider
of power protection and control
products. Meeting your specific
needs means offering a complete
line of motor protection, control
and logic devices—all the latest
in technology.
From contactors, starters and drives
to pushbuttons, relays and
programmable controllers, you’ll
have the edge when it comes to
application-specific solutions.
Trust Eaton to deliver the products
and solutions that will make your
process more efficient and effective.

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Designing the panel
Feeder Main

4

Multi-Load Panel

Feeder Main
See Page 4

Feeder Main
Feeder
Main
See Page 4

Feeder
Main

Group Motor	 6

Single Motor Panel

Branch
Protection

Branch
Branch
Protection
Protection

Branch
Branch
Protection
Protection

Branch
Branch
Protection
Protection

Branch
Protection

Branch
Protection

Individual
Circuit for	
Motor Load

8

Heater or
Lighting	
Lead

14

Branch
Protection

OR

Controller

Controller
Controller

Controller
Controller

Controller
Controller

Controller
Controller

Overload
Protection

Overload
Overload
Protection
Protection

Overload
Overload
Protection
Protection

Overload
Overload
Protection
Protection

Overload
Protection

Group Motor—Multiple
Individual
Heater
or
GroupMotors
MotorProtected
—Multiple Motors
ProtectedCircuitIndividual
Circuit
for Motor Load for Motor
Lighting
Load
by a Single Set of Fuses
or Breaker
Load
by a Single
Set of Fuses or Breaker
See Page 6

See Page 6

See Page 8

Page
SeeSee
Page
8 14

Transformer
or Power
Controller
Supply

Transformer
or Power
Supply

M

M

L

L

M

M

Control
Heater
or
Circuit
Lighting
Load
Page
SeeSee
Page
14 20

TransformerPower
or Power Circuit	
Supply Wiring

Controller

Transformer
or Power
Controller
Supply

Overload
Protection

M
Overload
Protection
L

M

M

M

Control
Circuit

Single Motor
Load

See Page 20

See Page 31

SingleControl
Motor
Circuit
Load
Page
SeeSee
Page
31 20

L

Control
Circuit

Accessories	 19

Control

See Page 20Circuit	

Single
Motorload	

3

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16

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20

31

Sizing the feeder

Reference Section 32.3.1 a

The feeder amp rating is sized
based on the sum of the amp
rating of the largest branch
protective device plus the fullload currents of the other loads.

Circuit Breaker
175A

In this example, the 125A circuit
breaker is the largest short-circuit
protective device. This value is
added to the full load currents
of the other loads in the circuit
(motors, heater, and the primary
of the transformer).
The overcurrent feeder amp rating
should not exceed the conductor
ampacity rating on the loadside.
For conductor ampacity ratings,
see Table 28.1 on Page 18.	

Circuit Breaker
50A

Circuit Breaker
125A

Circuit Breaker
25A

Fuses
6A

Controller

Transformer
or Power
Supply

Overload
Protection

Overload
Protection

Overload
Protection

Controller

Controller

Controller

Controller

Overload
Protection

M
L
M

Motor Load

Motor Load

Motor Load

Motor Load

3.4 FLA

7.6 FLA

14 FLA

65 FLA

Heater Load

Transformer
Load
(Primary Side)

20A

1.95A

Example Multi-Load Panel

125A + 3.4A + 7.6A + 14A + 20A + 2A = 172A
Use closest size, 175A

4

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Breaker and Fused Disconnect Selection
Molded Case Circuit Breaker

EG Frame
Target
Ampacity

Breaker
Frame

Rotary Fusible Disconnect (Fuses not Included)

NEMA 1/12/3R
Rotary Handle
Mechanism,
12” Shaft for EG
EGHMVD12B

18 kA 480V
25 kA 240V

25 kA 480V
65 kA 240V

JG Frame
25 kA 480V
35 kA 240V

EMA 1/12/3R
Rotary Handle
Mechanism,
12” Shaft for JG
JGHMVD12B
35 kA 480V
65 kA 240V

NNEMA 1/12/3R
Rotary Handle
Mechanism,
12” Shaft for LG
LGHMVD12B

LG Frame

65 kA 480V 65 kA 480V 100 kA 480V
100 kA 240V 100 kA 240V 200 kA 240V

100 kA @ 600V
with Class J

200 kA 600V
with Class J

Base R4H3030FJ
NEMA 1, 3R,
12 handle PHB1N12F
12" shaft SF320PH5X5
Fuse type Class J
Integrated lugs #14–#10

Base R9J3030FJ
NEMA 4X handle PHB1N4XF
12" shaft SF320PH10X10
Fuse type Class J
Terminal lugs #10–#6

—

Base R9K3060FJ
NEMA 4X handle PHB2N4XF
12" shaft SF320PH10X10
Fuse type Class J
Integrated lugs #10–#6

—

Base R9K3100FJ
NEMA 4X handle PHB2N4XF
12" shaft SF320PH10X10
Fuse type Class J
Terminal lugs #12–1

—

Base R9K3200FJ
NEMA 4X handle PHB2N4XF
12" shaft SF320PH10X10
Fuse type Class J
Terminal lugs #6–3/0

—

Base R9K3400FJ
NEMA 4X handle PHB2N4XF
12" shaft SF320PH10X10
Fuse type Class J
Terminal lugs #2–600 kcmil

—

Base R9K3600FJ
NEMA 4X handle PHB3N4XF
12" shaft SF320PH12X12
Fuse type Class J
Terminal lugs 2x #2–2x 600 kcmil

1

EG

EGB3015FFG

—

EGE3015FFG

—

EGH3015FFG

—

EGC3015FFG

3

EG

EGB3015FFG

—

EGE3015FFG

—

EGH3015FFG

—

EGC3015FFG

6

EG

EGB3015FFG

—

EGE3015FFG

—

EGH3015FFG

—

EGC3015FFG

10

EG

EGB3015FFG

—

EGE3015FFG

—

EGH3015FFG

—

EGC3015FFG

15

EG

EGB3015FFG

—

EGE3015FFG

—

EGH3015FFG

—

EGC3015FFG

20

EG

EGB3020FFG

—

EGE3020FFG

—

EGH3020FFG

—

EGC3020FFG

25

EG

EGB3025FFG

—

EGE3025FFG

—

EGH3025FFG

—

EGC3025FFG

30

EG

EGB3030FFG

—

EGE3030FFG

—

EGH3030FFG

—

EGC3030FFG

35

EG

EGB3035FFG

—

EGE3035FFG

—

EGH3035FFG

—

EGC3035FFG

40

EG

EGB3040FFG

—

EGE3040FFG

—

EGH3040FFG

—

EGC3040FFG

45

EG

EGB3045FFG

—

EGE3045FFG

—

EGH3045FFG

—

EGC3045FFG

50

EG

EGB3050FFG

—

EGE3050FFG

—

EGH3050FFG

—

EGC3050FFG

60

EG

EGB3060FFG

—

EGE3060FFG

—

EGH3060FFG

—

EGC3060FFG

70

EG

EGB3070FFG

—

EGE3070FFG

—

EGH3070FFG

—

EGC3070FFG

80

EG

EGB3080FFG

—

EGE3080FFG

—

EGH3080FFG

—

EGC3080FFG

90

EG

EGB3090FFG

—

EGE3090FFG

—

EGH3090FFG

—

EGC3090FFG

100

EG

EGB3100FFG

—

EGE3100FFG

—

EGH3100FFG

—

EGC3100FFG

110

EG

EGB3125FFG

—

EGE3125FFG

—

EGH3125FFG

—

EGC3125FFG

125

EG

EGB3125FFG

—

EGE3125FFG

—

EGH3125FFG

—

EGC3125FFG
JGC3150FAG

150

JG

—

JGE3150FAG

—

JGS3150FAG

—

JGH3150FAG

175

JG

—

JGE3175FAG

—

JGS3175FAG

—

JGH3175FAG

JGC3175FAG

200

JG

—

JGE3200FAG

—

JGS3200FAG

—

JGH3200FAG

JGC3200FAG

225

JG

—

JGE3225FAG

—

JGS3225FAG

—

JGH3225FAG

JGC3225FAG

250

JG

—

JGE3250FAG

—

JGS3250FAG

—

JGH3250FAG

JGC3250FAG

300

LG

—

—

—

LGE3300FAG

—

LGH3300FAG

LGU3300FAG

350

LG

—

—

—

LGE3350FAG

—

LGH3350FAG

LGU3350FAG

400

LG

—

—

—

LGE3400FAG

—

LGH3400FAG

LGU3400FAG

450

LG

—

—

—

LGE3500FAG

—

LGH3500FAG

LGU3500FAG

500

LG

—

—

—

LGE3500FAG

—

LGH3500FAG

LGU3500FAG

600

LG

—

—

—

LGE3600FAG

—

LGH3600FAG

LGU3600FAG

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Group motor design

Reference Section 31.4.1 c

The following rules apply to
manual motor controllers for motor loads only:
A single set of fuses or breaker can be used if the following
conditions are met:
Branch
Protection

1. All power circuit devices are rated for group motor use as
indicated on the component, heater tables or instruction
publication.
2. The following tap rule (31.4.3) is met:

Controller

Overload
Protection

Controller

Overload
Protection

Controller

Overload
Protection

a. The conductors to the individual loads are not less than
1/10 the ampacity of the branch circuit protection for each
circuit provided with a manual motor controller (MMC)
marked “Suitable as tap conductor protection in group
installations.” Also, the conductors on the load side of the
MMC shall not have an ampacity less than 125% of the
motor FLA.
3. The branch circuit protection is sized by the sum of the
following:
a. If the branch protection is a breaker, 250% of the largest
motor FLA, plus the sum of the remaining motor loads,
b. If the branch protection is a time delay fuse, 175% of
the largest motor FLA, plus the sum of the remaining
motor loads, or

XT Manual Motor Controller (XTSC)

c. If the branch protection is a CC fuse, 300% of the largest
motor FLA, plus the sum of the remaining motor loads.
4. The branch circuit protection must not exceed the amp rating
as specified in the group installation marking of the power
circuit components and the type specified.
Group Motor—Multiple Motors Protected by a Single Set of
Fuses or Breaker

Note: UL 508 Type F combination
motor controllers (XTFC) are
self-protected and do not limit the
upstream protective devices.
6

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Manual Motor Controllers Short-Circuit Ratings for UL/CSAT Group Installations
XTSC and XTSR Manual Motor Controllers (MMC) / Starter Combinations
Group Installation, UL/CSA
Assembled Controller
Non-Reversing

Reversing

FLA Adjustment
Range/Overload
Release—Ir
(Amps)

Maximum rms Symmetrical Short-Circuit Ratings (kA)

Maximum Upstream Protective Device (Amps)

240V

480V

600V

Maximum Fuse
600V

Maximum 	
Circuit Breaker
600V

XTSC and XTSR Frame B MMP + Frame B Contactor
XTSCP16BBA

XTSRP16BBA

0.1–0.16

50

50

50

600

600

XTSCP25BBA

XTSRP16BBA

0.16–0.25

50

50

50

600

600

XTSCP40BBA

XTSRP40BBA

0.25–0.4

50

50

50

600

600

XTSCP63BBA

XTSRP63BBA

0.4–0.63

50

50

50

600

600

XTSC001BBA

XTSR001BBA

0.63–1

50

50

50

600

600

XTSC1P6BBA

XTSR1P6BBA

1–1.6

50

50

50

600

600

XTSCAP5BBA

XTSR2P5BBA

1.6–2.5

50

50

50

600

600

XTSC004BBA

XTSR004BBA

2.5–4

50

50

50

600

600

XTSC6P3BBA

XTSR6P3BBA

4–6.3

50

50

50

600

600

XTSC010BBA

XTSR010BBA

6.3–10

22

22

22

150

125

XTSC012BBA

XTSR012BBA

8–12

10

10

10

150

125

XTSC016BBA

—

10–16

10

10

10

150

125

XTSC and XTSR Frame B MMP + Frame C Contactor
XTSC016BCA

XTSR016BCA

10–16

10

10

10

150

125

XTSC020BCA

XTSR020BCA

16–20

10

10

10

150

125

XTSC025BCA

XTSR025BCA

20-25

10

10

10

150

125

XTSC032BCA

XTSR032BCA

25–32

5

5

5

150

125

XTSC and XTSR Frame D MMP + Frame C Contactor
XTSC016DCA

XTSR016DCA

10–16

50

50

10

600

600

XTSC025DCA

XTSR025DCA

16–25

50

50

10

600

600

XTSC032DCA

XTSR032DCA

25–32

50

50

10

600

600

XTSC and XTSR Frame D MMP + Frame D Contactor
XTSC040DDA

XTSR040DDA

32-40

50

50

10

600

600

XTSC050DDA

XTSR050DDA

40–50

50

50

10

600

600

XTSC058DDA

XTSR058DDA

50–58

50

50

—

—

—

XTSC063DDA

XTSR063DDA

55–63

50

50

—

—

—

NNote: Products are shown with a 120 Vac coil. For other coil voltages, replace the "A" suffix with the corresponding letter from the following table.
Coil Voltage

Suffix

120 Vac
24 Vdc
24 Vac
240 Vac

A
TD
T
B

Refer to Page 5 for breaker part numbers and to Page 19 for fuse base part numbers.
7

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Individual circuit for motor load

Branch
Protection

Controller

Overload
Protection

Reference Sections 31.3, 33.2, 34.2, 66.8

There are several ways to
build a branch circuit for a
motor load. Each method
provides short-circuit protection,
motor overload protection, and
the ability to start and stop the
motor. Some additionally
provide a means to disconnect
the branch circuit for maintenance and safety purposes.
UL 508 Type F Combination
Motor Controllers (CMCs)
(manual motor protector +
contactor + line-side adapter)
provide the most efficient means
to build a branch circuit for a
motor. CMCs are designed for
motor loads such that they do not
need to be oversized (as breakers
and fuses are) to prevent tripping
during motor startup. CMCs not
only take up less space, but also
install more quickly.
For selection of motor branch
circuits for 240V, refer to
Pages 10 and 11.

Individual Circuit for Motor Load

8

For selection of motor branch
circuits for 480V, refer to
Pages 12 and 13.

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Motor Branch Circuit Types
Motor Branch Devices

Fuse and Starter

Breaker and Starter

Fuses
Short-circuit protection

Motor Circuit
Protector and Starter

Breaker
Motor
disconnect

MCP
Motor
disconnect

Short-circuit
protection

Short-circuit
protection

Combination Motor
Controller (Type F)

CMC
Motor disconnect
Short-circuit and
motor overload
protection
Motor controller

Contactor
Motor controller

Contactor
Motor controller

Contactor
Motor controller

Overload
relay
Motor overload
protection

Overload
relay
Motor overload
protection

Overload
relay
Motor overload
protection

Branch circuit functions
Disconnect function

Disconnect (separate)

Breaker

Motor circuit protector

Manual motor protector

Short-circuit protection

Fuse block/fuses

Breaker

Motor circuit protector

Manual motor protector

Motor controller

Contactor

Contactor

Contactor

Contactor

Motor overload protection
Installation

Overload relay

Overload relay

Overload relay

Manual motor protector

Installation effort

High

Moderate

Moderate

Low

Line-side commoning links
Usability

Not available

Not available

Not available

Yes

Controller options

Remote

Remote

Remote

Manual or remote

Resetability after short circuit
Protection

Replacement fuses necessary

Reset breaker switch

Reset MCP switch

Reset CMC switch

Sizing protective devices

Fuses are sized up to 300% of the FLA to
prevent nuisance tripping during startup.
Because the fuses are oversized for the motor
FLA, an overload relay is also needed.

Breakers are sized up to 250% of the FLA
to prevent nuisance tripping during startup.
Because the breaker is oversized for the motor
FLA, an overload relay is also needed.

MCPs are sized up to 800 to 1100% of the FLA
to prevent nuisance tripping during startup.
Because the MCP provides no thermal
protection, an overload relay is needed.

CMCs are sized according to the motor FLA to
provide overload protection. The CMC includes
short circuit that is designed to mimic the
motor inrush (14 times FLA).

Padlockable provision
Cost

No, unless provided in a separate disconnect

Yes, with breaker accessory

Yes, with MCP accessory

Included in MMP

Component price

Low

Moderate

Moderate

Low

Panel space (and cost)

Moderate

Moderate

Moderate

Low

Safety

Components used to build a reversing contactor
For reversing applications, the contactors should have mechanical
and electrical interlocks. For Frame B, use contactors with a
built-in NC auxiliary (ending in “B01A” instead of “B10A”).

9

EATON CORPORATION Control panel design guide

Quantity

Frame

B

C

D

F

G

2

Contactor

XTCE...B01

XTCE...C01

XTCE...D00

XTCE...F00

XTCE...G00

2

Auxiliary contact (front) XTCEXFAC20

XTCEXFAC20

XTCEXFBG11

XTCEXFBG11

XTCEXFBG11

1

Mechanical interlock

XTCEXMLB

XTCEXMLC

XTCEXMLD

XTCEXMLG

XTCEXMLG

1

Reversing link kit

XTCEXRLB

XTCERLC

XTCEXRLD

XTCEXRLG

XTCEXRLG

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Branch Motor Selection for 230 Vac

Fuse Starter

Breaker Starter

MCP-Starter

HP (230V)

1/2

3/4

1

1-1/2

2

3

5

7-1/2

FLA

2.2

3.2

4.2

6

6.8

9.6

15.2

22

Minimum Wire
Size (AWG)

14

14

14

14

14

14

12

10

Fuse amperage

3

6

10

15

15

15

30

40

Fuse type

CC

CC

CC

CC

CC

CC

J

J

Contactor

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE009B10A

XTCE015B10A

XTCE025C10A

Auxiliary contact

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

Thermal overload
relay

XTOB2P4BC1

XTOB004BC1

XTOB006BC1

XTOB010BC1

XTOB010BC1

XTOB010BC1

XTOB016BC1

XTOB024CC1

Overload range (A)

1.6 to 2.4

2.4 to 4.0

4 to 6

6 to 10

6 to 10

6 to 10

12 to 16

16 to 24

SCCR (kA)

100

100

100

100

100

100

100

100

Breaker

EGH015FFG

EGH015FFG

EGH015FFG

EGH015FFG

EGH015FFG

EGH020FFG

EGH030FFG

EGH040FFG

Breaker size (A)

15

15

15

15

15

20

30

40

Contactor

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE009B10A

XTCE015B10A

XTCE025C10A

Auxiliary contact

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

Thermal overload
relay

XTOB2P4BC1

XTOB004BC1

XTOB006BC1

XTOB010BC1

XTOB010BC1

XTOB010BC1

XTOB016BC1

XTOB024CC1

Overload range (A)

1.6 to 2.4

2.4 to 4.0

4 to 6

6 to 10

6 to 10

6 to 10

12 to 16

16 to 24

SCCR (kA)

—

—

—

—

—

—

—

50 kA A

Motor circuit
protector

HMCP003A0C

HMCP007C0C

HMCP007C0C

HMCPE015E0C

HMCPE015E0C

HMCPE015E0C

HMCPE030H1C

HMCPE030H1C

Contactor

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE009B10A

XTCE015B10A

XTCE025C10A

Auxiliary contact

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

Thermal overload
relay

XTOB2P4BC1

XTOB004BC1

XTOB006BC1

XTOB010BC1

XTOB010BC1

XTOB010BC1

XTOB016BC1

XTOB024CC1

Overload range

1.6 to 2.4

2.4 to 4.0

4 to 6

6 to 10

6 to 10

6 to 10

12 to 16

16 to 24

SCCR (kA)

35

35

15

65

65

65

65

65

Combination motor
controller

XTFC2P5BBA

XTFC004BBA

XTFC6P3BBA

XTFC6P3BBA

XTFC010BBA

XTFC010BBA

XTFC016BBA

XTFC025BCA

Overload range (A)

1.6 to 2.5

2.5 to 4.0

4 to 6.3

4 to 6.3

6.3 to 10

6.3 to 10

10 to 16

20 to 25

SCCR (kA)

65

65

65

65

65

65

50

18

CMC
A UL Pending.

10

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Branch Motor Selection for 230 Vac, continued

Fuse Starter

Breaker Starter

MCP-Starter

HP (230V)

10

15

20

25

30

40

50

60

FLA

28

42

54

68

80

104

130

154

Minimum Wire
Size (AWG)

8

6

4

4

3

1

2/0

3/0

Fuse amperage

50

80

100

125

150

200

225

300

Fuse type

J

J

J

J

J

J

J

J

Contactor

XTCE032C10A

XTCE050D00A

XTCE065D00A

XTCE065D00A

XTCE080F00A

XTCE150G00A

XTCE150G00A

XTCE150G00A

Auxiliary contact

1NO aux built-in

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

Thermal overload
relay

XTOB032CC1

XTOB057DC1

XTOB065DC1

XTOB075DC1

XTOB100GC1

XTOB125GC1

XTOB150GC1

XTOB175GC1

Overload range (A)

24 to 32

40 to 57

50 to 65

65 to 75

70 to 100

95 to 125

120 to 150

145 to 175

SCCR (kA)

100

100

100

—

100

100

100

100

Breaker

EGH050FFG

EGH080FFG

EGH100FFG

EGH125FFG

JGE150FAG

JGE200FAG

JGE250FAG

LGE3300FAG

Breaker size (A)

50

80

100

125

150

200

250

—

Contactor

XTCE025C10A

XTCE040D00A

XTCE050D00A

XTCE065D00A

XTCE080F00A

XTCE095F00A

XTCE115G00A

XTCE150G00A

Auxiliary contact

1NO aux built-in

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

Thermal overload
relay

XTOB032CC1

XTOB057DC1

XTOB065DC1

XTOB075DC1

XTOB100GC1

XTOB125GC1

XTOB150GC1

XTOB175GC1
145 to 175

Overload range (A)

24 to 32

40 to 57

50 to 65

65 to 75

70 to 100

95 to 125

120 to 150

SCCR (kA)

50 kA A

50 kA A

50 kA A

50 kA A

65 kA A

65 kA A

65 kA A

42 kA A

Motor circuit
protector

HMCPE050K2C

HMCPE100R3C

HMCPE100T3C

—

—

—

—

—

Contactor

XTCE032C10A

XTCE040D00A

XTCE050D00A

Auxiliary contact

1NO aux built-in

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

1NO/1NC side aux
XTCEXSBN11

Thermal overload
relay

XTOB032CC1

XTOB057DC1

XTOB057DC1

—

—

—

—

—

Overload range (A)

24 to 32

40 to 57

40 to 57

—

—

—

—

—

SCCR (kA)

65

65

65

—

—

—

—

—

XTFC050DDA

XTFC058DDA

FDMP 3080L +
XTCE080F00A

FDMP 3100L +
XTCE080F00A

FDMP 3160L +
XTCE085F00A

FDMP 3160L +
XTCE115G00A

FDMP 3160L +
XTCE150G00A

Combination motor XTFC032BCA
controller or
MPCB + contactor

CMC / MPCB + Contactor

Overload range (A)

25 to 32

40 to 50

50 to 58

40 to 80

80 to 100

100 to 160

100 to 160

100 to 160

SCCR (kA)

18

65

65

65

65

65

65

65

A UL Pending.

Note: Contactors are shown with a 120 Vac coil. For other coil voltages, replace the "A" suffix with the corresponding letter from the following table.
Coil Voltage

Suffix

120 Vac
24 Vdc
24 Vac
240 Vac

A
TD
T
B

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Branch Motor Selection for 460 Vac

Fuse Starter

Breaker Starter

MCP-Starter

HP (480V)

1/2

3/4

1

1-1/2

2

3

5

7-1/2

FLA

1.1

1.6

2.1

3.0

3.4

4.8

7.6

11

Minimum Wire
Size (AWG)

14

14

14

14

14

14

14

14

Fuse amperage

3

3

3

6

6

10

15

30

Fuse type

CC

CC

CC

CC

CC

CC

CC

CC
XTCE012B10A

Contactor

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE009B10A

Auxiliary contact

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

Thermal overload
relay

XTOB1P6BC1

XTOB2P4BC1

XTOB2P4BC1

XTOB004BC1

XTOB004BC1

XTOB006BC1

XTOB010BC1

XTOB012BC1

Overload range (A)

1.0 to 1.6

1.6 to 2.4

1.6 to 2.4

2.4 to 4

2.4 to 4

4 to 6

6 to 10

9 to 12

100

100

100

100

100

100

100

EGE3015FFG

EGE3015FFG

EGE3015FFG

EGE3015FFG

EGE3025FFG

High fault rating (kA) 100
Breaker

EGE3015FFG

EGE3015FFG

EGE3015FFG

Breaker size (A)

15A EG frame

15A EG frame

15A EG frame

15A EG frame

15A EG frame

15A EG frame

15A EG frame

25A EG frame

Contactor

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE009B10A

XTCE012B10A

Auxiliary contact

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

Thermal overload
relay

XTOB1P6BC1

XTOB2P4BC1

XTOB2P4BC1

XTOB004BC1

XTOB004BC1

XTOB006BC1

XTOB010BC1

XTOB012BC1

Overload range (A)

1.0 to 1.6

1.6 to 2.4

1.6 to 2.4

2.4 to 4

2.4 to 4

4 to 6

6 to 10

9 to 12

High fault rating

—

—

—

—

—

—

—

—

Motor circuit
protector

HMCP003A0C

HMCP003A0C

HMCP003A0C

HMCP003A0C

HMCP003A0C

HMCPE015E0C

HMCPE015E0C

HMCPE015E0C
XTCE012B10A

Contactor

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE007B10A

XTCE009B10A

Auxiliary contact

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO aux built-in

Thermal overload
relay

XTOB1P6BC1

XTOB2P4BC1

XTOB2P4BC1

XTOB004BC1

XTOB004BC1

XTOB006BC1

XTOB010BC1

XTOB012BC1

Overload range (A)

1.0 to 1.6

1.6 to 2.4

1.6 to 2.4

2.4 to 4

2.4 to 4

4 to 6

6 to 10

9 to 12

35

35

35

35

65

65

65

Combination motor
controller

High fault rating (kA) 35
XTFC1P6BBA

XTFC2P5BBA

XTFC2P5BBA

XTFC004BBA

XTFC004BBA

XTFC6P3BBA

XTFC010BBA

XTFC012BBA

Overload range (A)

1.0 to 1.6

1.6 to 2.5

1.6 to 2.5

2.5 to 4.0

2.5 to 4.0

4 to 6.3

6 to 10

8 to 12

65

65

65

65

65

65

65

SCCR (kA) (480/277V) 65
CMC

12

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Branch Motor Selection for 460 Vac, continued

Fuse Starter

Breaker Starter

MCP-Starter

CMC

HP (480V)

10

15

20

25

30

40

50

60

FLA

14

21

27

34

40

52

65

77

Minimum Wire Size
(AWG)

12

10

8

8

8

6

4

3

Fuse amperage

25

35

50

60

70

90

125

150

Fuse type

J

J

J

J

J

J

J

J

Contactor

XTCE015B10A

XTCE025C10A

XTCE032C10A

XTCE040D00A

XTCE040D00A

XTCE050D00A

XTCE065D00A

XTE080F00A

Auxiliary contact

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

Thermal overload relay

XTOB016BC1

XTOB024CC1

XTOB032CC1

XTOB040DC1

XTOB057DC1

XTOB057DC1

XTOB065DC1

XTOB100GC1

Overload range (A)

12 to 16

16 to 24

24 to 32

24 to 40

40 to 57

40 to 57

50 to 65

70 to 100

High fault rating (kA)

100

100

100

100

100

100

100

100

Breaker

EGH3035FFG

EGH3040FFG

EGH3050FFG

EGH3070FFG

EGH3080FFG

EGH3100FFG

EGH3125FFG

JGH3150FAG

Breaker size (A)

35A EG frame

40A EG frame

50A EG frame

70A EG frame

80A EG frame

100A EG frame

125A EG frame

150A JG frame

Contactor

XTCE015B10A

XTCE025C10A

XTCE032C10A

XTCE040D00A

XTCE040D00A

XTCE050D00A

XTCE065D00A

XTE080F00A

Auxiliary contact

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

Thermal overload relay

XTOB016BC1

XTOB024CC1

XTOB032CC1

XTOB040DC1

XTOB057DC1

XTOB057DC1

XTOB075DC1

XTOB100GC1

Overload range (A)

12 to 16

16 to 24

24 to 32

24 to 40

40 to 57

40 to 57

65 to 75

70 to 100

High fault rating

—

65 kA A

65 kA A

65 kA A

65 kA A

65 kA A

65 kA A

65 kA A

Motor circuit protector

HMCPE030H1C

HMCPE030H1C

HMCPE050K2C

HMCPE050K2C

HMCPE100R3C

HMCPE100R3C

HMCPE100R3C

HMCPE100T3C

Contactor

XTCE015B10A

XTCE025C10A

XTCE032C10A

XTCE040D00A

XTCE040D00A

XTCE050D00A

XTCE065D00A

XTE080F00A

Auxiliary contact

1NO aux built-in

1NO aux built-in

1NO aux built-in

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

1NO-1NC side aux
XTCEXSBN11

Thermal overload relay

XTOB016BC1

XTOB024CC1

XTOB032CC1

XTOB040DC1

XTOB057DC1

XTOB057DC1

XTOB065DC1

XTOB100GC1

Overload range (A)

12 to 16

16 to 24

24 to 32

24 to 40

40 to 57

40 to 57

50 to 65

70 to 100

High fault rating (kA)

65

65

65

65

65

65

65

65

Combination motor
controller or
MPCB + contactor

XTFC016BBA

XTFC025BCA

XTFC032BCA

XTFC040DDA

XTFC050DDA

XTFC058DDA

XTFC063DDA

FDMP 3080L +
XTCE080F00A

Overload range (A)

10 to 16

20 to 25

25 to 32

32 to 40

40 to 50

50 to 58

55 to 65

40 to 80

SCCR (kA) (480/277V)

50

18

18

65

65

65

65

65

A UL Pending.

Note: Contactors are shown with a 120 Vac coil. For other coil voltages, replace the "A" suffix with the corresponding letter from the following table.
Coil Voltage

Suffix

120 Vac
24 Vdc
24 Vac
240 Vac

A
TD
T
B

13

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Heater and lighting load circuits

Branch
Protection

Heater loads:

Lighting loads:

The branch circuit protection is
sized (see Section 31.6.1 exceptions for larger heater loads):

The branch circuit protection for
standard-duty incandescent
lampholders or fluorescent
ballasts (see Section 31.8.2 for
larger lighting loads):

1. Not less than 125% of the
heater load,
2. Not more than 60A, and
3. Not larger than the
ampacity of the field
wiring to the heater load.

Controller

Reference Sections 31.6, 31.8, 66.7.6

Controllers are sized to the
heater full-load rating using the
controller’s general-purpose amp
rating or resistive load rating.

1. Shall not exceed
15A, and
2. Shall not exceed the
ampacity of the anticipated
field wiring
The controllers are sized to the
specific lighting ratings.

Heater or Lighting Load

14

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Contactors
Electrically Held Lighting Contactor

Definite Purpose Contactor

C25DRF315A

Ballast or Mercury
Vapor Load
(at 600V)

Tungsten Load
(at 480V)

2NO

3NO

4NO

C25DRF225A

C25DRF325A

10

10

CN35AN2AB

CN35AN3AB

CN35AN4AB

40

C25DRF230A

C25DRF330A

20

20

CN35BN2AB

CN35BN3AB

CN35BN4AB

50

C25DRF240A

C25DRF340A

65

C25DRJ250A

C25DRJ350A

Resistive Load (A)

Two-Pole

Three-Pole

20

C25DRF215A

35

General Purpose
Amps

IEC Contactor
Three-Pole

Four-Pole

20

XTCE015B10A

XTCF020B00A

40

XTCE032C10A

XTCF045C10A

63

XTCE040D00A

XTCF063D00A

Heater application between…

Single-Pole

Two-Pole

Two-Pole

Three-Pole

Miniature
Breaker

Miniature
Breaker

Molded Case Circuit Breaker

Miniature
Breaker

Molded Case Circuit Breaker

Breaker
Rating (A) Minimum

Maximum

10 kA 277V
10 kA 120V

10 kA 480V
10 kA 240V

18 kA 480V
25 kA 240V

65 kA 480V
50 kA 240V

10 kA 480Y
10 kA 240V

18 kA 480V
25 kA 240V

35 kA 480V
43 kA 240V

0.5
1
1.5

0.4
0.8

0.4
0.8
1.2

WMZT1CX0
WMZT1C01
WMZT1CX1

WMZT2CX0
WMZT2C01
WMZT2CX1

EGB2015FFG
—
—

EGH2015FFG
—
—

WMZT3CX0
WMZT3C01
WMZT3CX1

EGB3015FFG
—
—

EGE3015FFG
—
—

2
3
4

1.2
1.6
2.4

1.6
2.4
3.2

WMZT1C02
WMZT1C03
WMZT1C04

WMZT2C02
WMZT2C03
WMZT2C04

—
—
—

—
—
—

WMZT3C02
WMZT3C03
WMZT3C04

—
—
—

—
—
—

—
—
—

5
6
7

3.2
4.0
4.8

4
4.8
5.6

WMZT1C05
WMZT1C06
WMZT1C07

WMZT2C05
WMZT2C06
WMZT2C07

—
—
—

—
—
—

WMZT3C05
WMZT3C06
WMZT3C07

—
—
—

—
—
—

—
—
—

8
10
13

5.6
6.4
8.0

6.4
8
10.4

WMZT1C08
WMZT1C10
WMZT1C13

WMZT2C08
WMZT2C10
WMZT2C13

—
—
—

—
—
—

WMZT3C08
WMZT3C10
WMZT3C13

—
—
—

—
—
—

—
—
—

15
20
25

10.4
12.0
16.0

12
16
20

WMZT1C15
WMZT1C20
WMZT1C25

WMZT2C15
WMZT2C20
WMZT2C25

—
EGB2020FFG
EGB2025FFG

—
EGH2020FFG
EGH2025FFG

WMZT3C15
WMZT3C20
WMZT3C25

—
EGB3020FFG
EGB3025FFG

—
EGE3020FFG
EGE3025FFG

—
EGH3020FFG
EGH3025FFG

30
35
40

20.0
24.0
28.0

24
28
32

WMZT1C30
WMZT1C35
WMZT1C40

WMZT2C30
WMZT2C35
WMZT2C40

EGB2020FFG
EGB2035FFG
EGB2040FFG

EGH2020FFG
EGH2035FFG
EGH2040FFG

WMZT3C30
WMZT3C35
WMZT3C40

EGB3030FFG
EGB3035FFG
EGB3040FFG

EGE3030FFG
EGE3035FFG
EGE3040FFG

EGH3030FFG
EGH3035FFG
EGH3040FFG

45
50
60

32.0
36.0
40.0

36
40
48

—
—
—

—
—
—

EGB2045FFG
EGB2050FFG
EGB2060FFG

EGH2045FFG
EGH2050FFG
EGH2060FFG

—
—
—

EGB3045FFG
EGB3050FFG
EGB3060FFG

EGE3045FFG
EGE3050FFG
EGE3060FFG

EGH3045FFG
EGH3050FFG
EGH3060FFG

15

EATON CORPORATION Control panel design guide

65 kA 480V
50 kA 240V

EGH3015FFG
—
—

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Power circuit wiring
This section refers to the wiring in the feeder and branch circuits.
For information on wiring in the control circuit, see Page 26.
Internal wiring (Reference Section 29, 66.5):
•	

All internal wiring conductors shall be copper.

•	

All conductors in the power circuit should be labeled at the
termination point with letters or numbers corresponding with
the wiring diagram provided in the industrial control panel.

•	

Power circuit conductors should not be smaller than 14 AWG.

•	

For single loads, power circuit conductors for motors or heater
loads should be sized for an ampacity not less than 125% of the
full-load current.

•	

For multiple loads, such as multiple motors or a motor with other
loads, power circuit conductors shall be sized for an ampacity not
less than 125% of all heater loads plus 125% of the largest motor
load plus the full-load ampere ratings of all remaining motors and
other loads that are simultaneously operable.

•	

Wire color designation (internal power circuit wiring)
Black:
All ungrounded power circuit conductors regardless of voltage

White or gray or three continuous white stripes on other
than green, blue, orange or yellow:
Grounded AC current-carrying power circuit conductor regardless
of voltage

Exception: Insulated conductors sized 4 AWG (21.2 mm2) or larger and having insulation colored other than
as in Section 17.4 shall be identified at each termination point by a white marking, such as tape wrapped
around the conductor.

The wire size is selected from the table on Page 17 based on the
calculated wire ampacity. Conductors used in group motor applications should also comply with Table 66.2 (Reference Section 66.7.5).

Field wiring (Reference Section 28.3, 66.4):
•	

Not smaller than 14 AWG.

•	

For single loads, the field wiring conductors should be sized for an
ampacity of 125% of the full-load current.

•	

For multiple loads, such as multiple motors or a motor with other
loads, the field wiring is sized based on the sum of 125% of the
largest motor FLA, plus the sum of the other full-load currents of
the remaining loads.

•	

The wire size is selected from the table on Page 17 based on the
calculated wire ampacity.

16

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To determine the wire size for
motor loads, add the full-load
current ratings found in Table
50.1 for all external loads being
carried by the conductor. Then
use Table 28.1 on the following
page to determine the wire size
for the calculated ampacity.	

Full-Load Motor-running Currents in Amperes Corresponding to Various AC Horsepower Ratings—Reference Table 50.1	
110–120V

200V

220–240V A

380–415V

HP

SinglePhase

SinglePhase

ThreePhase

SinglePhase

ThreePhase

SinglePhase

ThreePhase

SinglePhase

ThreePhase

SinglePhase

ThreePhase

SinglePhase

ThreePhase

1/10

3.0

—

—

—

—

1.5

—

1.0

—

—

—

—

—

1/8

3.8

—

—

—

—

1.9

—

1.2

—

—

—

—

—

1/6

4.4

2.5

—

2.4

—

2.2

—

1.4

—

—

—

—

—

1/4

5.8

3.3

—

3.2

—

2.9

—

1.8

—

—

—

—

—

1/3

7.2

4.1

—

4.0

—

3.6

—

2.3

—

—

—

—

—

1/2

9.8

5.6

2.5

5.4

2.4

4.9

2.2

3.2

1.3

2.5

1.1

2.0

0.9

3/4

13.8

7.9

3.7

7.6

3.5

6.9

3.2

4.5

1.8

3.5

1.6

2.8

1.3

1

16.0

9.2

4.8

8.8

4.6

8.0

4.2

5.1

2.3

4.0

2.1

3.2

1.7

1 1/2

20.0

11.5

6.9

11.0

6.6

10.0

6.0

6.4

3.3

5.0

3.0

4.0

2.4

2

24.0

13.8

7.8

13.2

7.5

12.0

6.8

7.7

4.3

6.0

3.4

4.8

2.7

3

34.0

19.6

11.0

18.7

10.6

17.0

9.6

10.9

6.1

8.5

4.8

6.8

3.9

5

56.0

32.2

17.5

30.8

16.7

28.0

15.2

17.9

9.7

14.0

7.6

11.2

6.1

7 1/2

80.0

46.0

25.3

44.0

24.2

40.0

22.0

27.0

14.0

21.0

11.0

16.0

9.0

10

100.0

57.5

32.2

55.0

30.8

50.0

28.0

33.0

18.0

26.0

14.0

20.0

11.0

15

135.0

—

48.3

—

46.2

68.0

42.0

44.0

27.0

34.0

21.0

27.0

17.0

20

—

—

62.1

—

59.4

88.0

54.0

56.0

34.0

44.0

27.0

35.0

22.0

25

—

—

78.2

—

74.8

110.0

68.0

70.0

44.0

55.0

34.0

44.0

27.0

30

—

—

92.0

—

88.0

136.0

80.0

87.0

51.0

68.0

40.0

54.0

32.0

40

—

—

120.0

—

114.0

176.0

104.0

112.0

66.0

88.0

52.0

70.0

41.0

50

—

—

150.0

—

143.0

216.0

130.0

139.0

83.0

108.0

65.0

86.0

52.0

60

—

—

177.0

—

169.0

—

154.0

—

103.0

—

77.0

—

62.0

75

—

—

221.0

—

211.0

—

192.0

—

128.0

—

96.0

—

77.0

100

—

—

285.0

—

273.0

—

248.0

—

165.0

—

124.0

—

99.0

125

—

—

359.0

—

343.0

—

312.0

—

208.0

—

156.0

—

125.0

150

—

—

414.0

—

396.0

—

360.0

—

240.0

—

180.0

—

144.0

200

—

—

552.0

—

528.0

—

480.0

—

320.0

—

240.0

—

192.0

250

—

—

—

—

—

—

604.0

—

403.0

—

302.0

—

242.0

300

—

—

—

—

—

—

722.0

—

482.0

—

361.0

—

289.0

350

—

—

—

—

—

—

828.0

—

560.0

—

414.0

—

336.0

400

—

—

—

—

—

—

954.0

—

636.0

—

477.0

—

382.0

450

—

—

—

—

—

—

1030.0

—

—

—

515.0

—

412.0

500

—

—

—

—

—

—

1180.0

—

786.0

—

590.0

—

472.0

208V

440–480V

550–600V

A	 To obtain full-load currents for 265 and 277 volt motors, decrease corresponding 220–240 volt ratings by 13 and 17 percent respectively.

17

EATON CORPORATION Control panel design guide

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For group motor applications
where two or more motors are
protected by a single device,
wire sizes should comply
with the fuse/breaker size in
Table 66.2 at right.

Ampacities of Insulated Conductors—Reference Table 28.1
Wire Size
AWG

mm2

Copper
75°C (167°F)

14

2.1

15

12

3.3

20

10

5.3

30

8

8.4

50

6

13.3

65

4

21.2

85

3

26.7

100

2

33.6

115

1

42.4

130

1/0

53.5

150

2/0

67.4

175

3/0

85.0

200

4/0

107.2

230

250 kcmil

127

255

300

152

285

350

177

310

400

203

335

500

253

380

600

304

420

700

355

460

750

380

475

800

405

490

900

456

520

1000

506

545

1250

633

590

1500

760

625

1750

887

650

2000

1013

665

Relationship Between Conductor Size and Overcurrent Protection
Rating for Power Circuits—Reference Table 66.2

AWG

mm2

Maximum Rating
of Non-Time Delay
Fuse or Inverse
Time Delay or
Time Circuit
Dual Element Fuse
Breaker (Amps)
(Amps)

14

2.1

60

30

12

3.3

80

40

10

5.3

100

50

8

8.4

150

80

6

13.3

200

100

4

21.2

250

125

3

26.7

300

150

2

33.6

350

175

1

42.4

400

200

1/0

53.6

500

250

2/0

67.4

600

300

3/0

85.0

700

350

4/0

107.2

800

400

Conductor Size

NNote: For multiple conductors of the same size (1/0 AWG or larger) at a
terminal, the ampacity is equal to the value in this table for that conductor multiplied by the number of conductors that the terminal is able to accommodate.

18

EATON CORPORATION Control panel design guide

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Accessories

EG Frame Multiwire Connectors Ordering Information

Contactor Auxiliary Contacts
Conventional Thermal
Current, Open at 60°C
lth=le, AC-1 in Amps

Screw
Terminals
Contact
Configuration

Circuit Symbol

Package
Quantity

Wire Size Range
AWG Cu

Kit Catalog
Number

125

3

14–2

3TA125E3K

125

6

14–6

3TA125E6K

JG Frame Multiwire Connectors Ordering Information
16

4NO

53 6373 83

5

XTCEXFAC40

54 6474 84

16

3NO-1NC

16

2NO-2NC

53 61 73 83

5

XTCEXFAC31

5

XTCEXFAC22

54 62 74 84
5361 71 83

Wire Size Range
AWG Cu

Kit Catalog
Number

250

3

14–2

3TA250FJ3

250

6

14–6

3TA250FJ6

Standard Pack

Catalog Number

12

C383FHCC

For Class CC Fuse
Single-pole fuse holder
1

1NO-1NC

Wires per
Terminal

Description

Frame C
Side Mount
10

Maximum
Amps

Disconnect Fuse Holders Product Selection

54 62 72 84

For use with
XTCE... C

Wires per
Terminal

Catalog
Number

Frame B–C
Front (Top) Mount
For use with
XTCE... B
XTCE... C

Maximum
Amps

XTCEXSCC11

53 61

MMP Accessories
Description

54 62

Catalog Number

Line-side adapter
XTPAXLSA
For use with XTPR... BC1

Frame D–G
For use with
XTCE... D
XTCE... F
XTCE... G

16

4NO-0NC

13 23 33 43

5

XTCEXFBG40

5

XTCEXFBG31

14 24 34 44

16

3NO-1NC

13 21 33 43
14 22 34 44

16

2NO-2NC

13 21 31 43

5

Tool-less connector kit
For use with
XTPR... BC1
XTCE... B

XTPAXTPCB

1NO-1NC
Front mount auxiliary

XTPAXFA11

XTCEXFBG22
Commoning link
XTPAXCLKA2
For use with XTPR... BC1

14 22 32 44

Frame D–R

14

21

43

13

22

31

1NO-1NC

44

10

32

For use with
XTCE... D
XTCE... F
XTCE... G

1

XTCEXSBN11

Commoning link
XTPAXCLKA3
For use with XTPR... BC1
Commoning link
XTPAXCLKA4
For use with XTPR... BC1
Commoning link
XTPAXCLKA5
For use with XTPR... BC1
Handle mechanism

19

EATON CORPORATION Control panel design guide

XTPAXRHMRY

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Designing the control circuit

Branch
Protection

Control circuits provide the logic for the operation of the components
in the power circuit. Control circuits are typically a lower, safer voltage,
such as 120 Vac or 24 Vdc. Control power transformers (CPTs) and
power supplies are used to transform or convert the power circuit
voltage to the control circuit voltage.
Refer to Page 22 for selection of the CPT and protective devices.
Refer to Page 24 for selection of the power supply and protective
devices.
Refer to Page 26 for control circuit wiring.

Transformer
or Power
Supply
M

Eaton also offers a variety of control devices commonly
used in control circuits.
Refer to Page 27 for pushbutton and pilot devices.
Refer to Page 28 for relays, timers, and terminal blocks.
Refer to Page 29 for programmable logic controllers and relays.

L
M

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Common control circuit wiring
Connections for Control Stations

240V
230V
220V

Connections for Starters

Local Control

Yellow
Start (ON)
3/14 Black
3 4
Stop (OFF) Red
Red
1
1 2

Yellow
3/14
Hand
Black
3 Auto
4 Red
1

2/13

1
2

Figure B
START/STOP Selector Switch
3

Black
3/14
1 Start (ON)

4

2

Red

L1 L2

D.S. or C.B.
Disconnecting
Means

1

Figure C
3-Position Selector Switch

Figure F
START/STOP with Pilot Light
Connect to ”A1“
and ”A2“ Terminals

Yellow
3/14 To Coil
Hand
Terminal
”A1“
Black
3 Auto
3
Remote
4
4
Switch
1
Red

X1 Black / White
X2 Black / White
2/13
Start (ON)
3/14
3
4
Stop (OFF)

2

1

1

1

5
L3

A1 A2

M

Local
Control
(Flange
Mounting
if Used)

“C”

Start

2/13

Stop

4 3
Stop (OFF)

2-Wire
Control

OL
2/ 4/
T1 T2

6/
T3

T1 T2
4
2

97
96
Reset
95

T3
6

3/14
1
Not for
Use with
Auto Reset
OL Relays.

Start
Stop

3/14
2/13
1

Start

Start
Stop
“A”

21

H3
1

XF

H3

H2

H2

H4
H4

X2
G

110V
115V
120V

X2

1

Secondary
Connections

L1 L2 L3
1 3 5
L1 L2 L3

M

A1 A2

O

1 3 5
OL

96
Reset
95

-S11

-Q1
24 6
-Q11

A1 A2

M

21
22
13
14

1 3 5
2 46

14
-Q11 13
-Q11

U V W PE
M
3

A1
A2

N

-M1

T3

Motor

When More Than One
Pushbutton Station Is Used,
Omit Connector “A” and
Connect per Sketch Below

H2

Field Conversion to 1-Phase
Add Dotted
1
3
5 Connection
L1
L2 L3

Separate Control

3-Wire
Control

H1

98

3/14

Remote Control

H4

H3

240V x 480V Primary, 120V
Secondary CPT Wiring Diagram

H1 X1 CPT

Connections for Dual
Voltage Rated Transformer –
See Transformer Nameplate

1

2 1

Omit Connector

H2

H2

2/13
3/14

T1 T2

Local
Start (ON)

4 H4

See
Figures
A, B, C, D,
E and F

Combined Remote and Local for Figures 1 and 2
Remote

H3

H1

Primary
Connections

L3

Omit This
Connector
3
if Figure 2 1
Is Used L1 L2

H1

Remove Wire “C” (Figure 1) if Used
and Connect as Shown Below.
(All Other Starter Wires Remain
as Shown in Figure 1)

CPT
Fusible Control Transformer
(If Used)
See Figure 2

Figure E
Pilot Light (Motor RUN)
Connect to Coil Terminals
”A1“ and ”A2“
X1 Black / White
X2 Black / White

Figure 2
Fusible Control Transformer

Figure 1
Front View Diagram

Fuse
Fuse

Figure D
2-Position Selector Switch

Fuse

Figure A
START/STOP Pushbuttons

480V
460V
440V

Remove Wire “C” if Supplied and
Connect Separate Control Lines to
the Number 1 Terminal on the Remote
Pilot Device and to the Number 96
Terminal on the Overload Relay

OL
2/
4/
T1
T2
T1

6/
T3
T2

T1

T2

Manual Motor Controller and
Combination Motor Controller
Wiring Diagram

Motor
260878 D4

3/14
2/13
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EATON CORPORATION Control panel design guide

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Sizing the control power transformer
CPT Selection Chart
Inrush VA at 20% Power Factor
CPT Part
Number A

1. Use the following formula to determine the inrush power of
the control power transformer (CPT) needed to support the
components used in the application.

Secondary
Voltage (AC)

CPT VA

90% Secondary
Voltage

95% Secondary
Voltage

C0025E2A

240 x 480

120

25

130

100

C0050E2A

240 x 480

120

50

200

170

C0075E2A

240 x 480

120

75

410

310
370

C0100E2A

240 x 480

120

100

540

C0150E2A

240 x 480

120

150

930

780

C0200E2A

240 x 480

120

200

1150

810

C0250E2A

240 x 480

120

250

1900

1400

C0300E2A

240 x 480

120

300

2700

1900

C0350E2A

240 x 480

120

350

3650

3100

C0500E2A

240 x 480

120

500

5300

4000

C0750E2A

240 x 480

120

750

11000

8300

C1000E2A

240 x 480

120

1000

21000

15000

A Add "FB" to the end of the part number to include a double-pole primary fuse block for rejection type fuses. Not available for 25 VA.

CPT INRUSH VA = (INRUSH VA) + (SEALED VA)
2

Primary
Voltage (AC)

2

Example

Common Control Loads

Qty

Description

Inrush
VA

Sealed
VA

Total
Inrush

Total
Sealed

Description

Part Number

Inrush VA

1

XTCE007B10A coil

25

3.3

25

3.3

7 to 15A XT Contactor Coil

XTCE…B…

25

3.3

2

XTCE018C10A coil

58

6.5

116

13.0

18 to 32A XT Contactor Coil

XTCE…C…

58

6.5

2

Relays

29

3.3

58

6.6

40 to 72A XT Contactor Coil

XTCE…D…

154

14

6

Indicating lights

7.0

7.0

42

42.0

80 to 95A XT Contactor Coil

XTCE…F…

372

37.1

Total

241

65.0

CPT INRUSH VA = (241)2 + (65)2
= 250 VA

Sealed VA

115 to 170A XT Contactor Coil

XTCE…G…

170

3.1

Definite Purpose Contactor Coil

C25DRF…

75

5.8

Definite Purpose Contactor Coil

C25DRJ…

111

7.6

Lighting Contactor Coil

C35A…

80

7.5

Lighting Contactor Coil

C35B…

100

10

2. Select the CPT size based on the CPT inrush VA needed.

Mini XT Relay

XTRM…

29

3.9

Selection Using Data from Previous Example

LED M22 Indicating Light

M22-L...

0.4

0.4

Part Number

Primary
Voltage

Secondary
Voltage

Transformer
VA

Inrush VA
(90% Sec.
Inrush Voltage)

Intelligent Relay

EZ512...

5

5

Intelligent Relay

EZ719...

10

10

EZ Expansion Module

EZ618...

10

10

C0050E2A

240 x 480

120

50

200

C0075E2A

240 x 480

120

75

410

C0100E2A

240 x 480

120

100

540

C0075E2AFB has enough inrush VA capacity to handle the 250 VA inrush of the
components.

22

EATON CORPORATION Control panel design guide

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Sizing protection for CPTs
Reference Accessories Section
on Page 19 for Fuse Holders.

Reference Section 42.1

Primary and Secondary Protection
C383FHCC
Single-Pole
Fuse Holder
(Type CC)

CPT VA

Primary
Two-Pole Breaker

Secondary
Two-Pole Breaker

Primary
Fuse Size

Secondary
Fuse Size

C0025E2A

25

C0050E2A

50

WMZT2CX0

WMZT2CX0

1

1

WMZT2C01

WMZT2C01

1

C0075E2A

1

75

WMZT2CX1

WMZT2C01

3

1

C0100E2A

100

WMZT2C02

WMZT2CX1

3

1

C0150E2A

150

WMZT2C03

WMZT2C02

3

3

C0200E2A

200

WMZT2C04

WMZT2C03

6

3

C0250E2A

250

WMZT2C05

WMZT2C04

6

3

C0300E2A

300

WMZT2C06

WMZT2C04

6

3

C0350E2A

350

WMZT2C07

WMZT2C05

10

3

C0500E2A

500

WMZT2C05

WMZT2C07

6

6

C0750E2A

750

WMZT2C08

WMZT2C10

10

6

C1000E2A

1000

WMZT2C10

WMZT2C15

10

10

C0025E2A

25

WMZT2CX0

WMZT2CX0

1

1

C0050E2A

50

WMZT2CX0

WMZT2C01

1

1

C0075E2A

75

WMZT2C01

WMZT2C01

1

1

C0100E2A

100

WMZT2C01

WMZT2CX1

1

1

C0150E2A

150

WMZT2CX1

WMZT2C02

1

3

C0200E2A

200

WMZT2C02

WMZT2C03

1

3

C0250E2A

250

WMZT2C03

WMZT2C04

1

3

C0300E2A

300

WMZT2C03

WMZT2C04

1

3

C0350E2A

350

WMZT2C04

WMZT2C05

1

3

C0500E2A

500

WMZT2C05

WMZT2C07

1

6

C0750E2A

750

WMZT2C08

WMZT2C10

3

6

C1000E2A

1000

WMZT2C05

WMZT2C15

3

10

CPT Part Number A

240V Primary: 120V Secondary

480V Primary: 120V Secondary

A Add “FB” to the end of the CPT part number to include a two-pole primary fuse block for rejection type fuses.

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Control power selection
1.	 Determine the output capacity needed to support the components used in the application.
First, calculate the total load at steady state (nominal load after inrush). This is done by
summing the sealed-in or nominal loads.
	

Nominal Load = Sealed Load1 + Sealed Load2 + .... + Sealed Loadn

	

For extended operational life of the power supply, increase the calculated nominal load by 20%.

2.	 Next, calculate the total inrush or surge loads of the components supported by the power supply.
	

Inrush Load = Inrush Load1 + Inrush Load2 + .... + Inrush Loadn

3.	 Select the power supply based on the available input voltage, nominal load and inrush (surge)
load requirements.

Selection Chart
Part
Number

PSG60E

Input

Output

Capacity

Voltage

Voltage

60W

100–240 Vac 24 Vdc
single-phase singlephase

PSG120E

120W

PSG240E

240W

Nominal
Current

Surge
Current

Surge
Capacity

2.5A

3.75A

1 second at
10 second
intervals

5A

7.5A

10A

15A

4.	 Verify that the application of the components on the load does not exceed the surge capacity
and other specifications of the selected power supply.

PSG480E

480W

PSG60F

60W

PSG120F

120W

5A

7.5A

Example: Select a 24 Vdc Power Supply with the Following Loads and a 240 Vac Input

PSG240F	

240W

10A

15A

480W

20A

30A

400–500 Vac 24 Vdc
three-phase singlephase

20A

30A

2.5A

3.75A

Qty

Description

Inrush W

Sealed W

Surge
Current

Nominal
Current

Total Surge
Current

Total Nominal
Current

PSG480F

8

XTCE007B10TD Coil

3

3

0.13

0.13

1.00

1.00

4

XTCE018C10TD Coil

12

0.5

0.50

0.02

2.00

0.08

NNote: Above 55 degrees C, the PSG should be derated.
See catalog CA08102001E for additional information and other specifications.

2

Relay

2.6

2.6

0.11

0.11

0.22

0.22

5

Indicating light

1.2

1.2

0.05

0.05

0.25

0.25

3.47

1.55

Total

Derating for Extended Operation: Total Nominal Current = 1.55 x 120% = 1.86
Selection using data from previous table.
Part Number

Capacity W

Input Voltage

Output Voltage

Nominal Current

Surge Current

Surge Capacity

PSG60E

60

100–240 Vac 1-P

24 Vdc

2.5A

3.75A

1 second at
10 second intervals

PSG120E
PSG240E

120
240

100–240 Vac 1-P
100–240 Vac 1-P

24 Vdc
24 Vdc

5A
10A

PSG60E has enough nominal and surge current capacity for these components.

24

EATON CORPORATION Control panel design guide

7.5A
15A

1 second at
10 second intervals
1 second at
10 second intervals

Common Control Loads
Description

Part Number

Inrush W

Sealed W

7 to 9A XT Contactor Coil

XTCE…B…

3

3

12 to 15A XT Contactor Coil

XTCE…B…

4.5

4.5

18 to 32A XT Contactor Coil

XTCE…C…

12

0.5

40 to 72A XT Contactor Coil

XTCE…D…

24

0.5

80 to 95A XT Contactor Coil

XTCE…F…

90

1.3

115 to 170A XT Contactor Coil

XTCE…G…

149

2.1

Definite Purpose Contactor Coil

C25D…

69

3.1

Lighting Contactor (10 and 20A) Coil

C35…

77

3.4

Mini XT Relay

XTRM…

2.6

2.6

LED M22 Indicating Light

M22-L...

0.4

0.4

Intelligent Relay

EZ512...

2

2

Intelligent Relay

EZ719...

3.5

3.5

EZ Display

EZD-80...

3

3

EZ Expansion Modules

EZ618...

4

4

ELC Programmable Logic Controller

ELC-PV...

5.3

5.3

ELC Expansion Modules

ELC-EX..., -AN..., -TC... 2.2

2.2

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Sizing protection for power supplies

Reference Section 42.2

Power Supplies

Part
Number

Capacity

PSG60E

60W

PSG120E

120W

Input
Voltage

100–240 Vac
single-phase

Primary
Fusing

Class CC
Fuse Holder (Qty)

Suggested Power Supply
Primary Wire Size

6A or 10A

C383FHCC (2)

14 AWG

6A or 10A

C383FHCC (2)

14 AWG

PSG240E

240W

10A or 16A

C383FHCC (2)

14 AWG

PSG480E

480W

10A or 16A

C383FHCC (2)

14 AWG

PSG60F

60W

6A or 10A

C383FHCC (3)

14 AWG

400–500 Vac
three-phase

PSG120F

120W

6A or 10A

C383FHCC (3)

14 AWG

PSG240F

240W

6A or 10A

C383FHCC (3)

14 AWG

PSG480F

480W

6A or 10A

C383FHCC (3)

14 AWG

Note: If the sum of the loads on the secondary of the power supply exceeds the output ratings of the power supply,
then secondary overload protection is required.

25

EATON CORPORATION Control panel design guide

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Wire selection for control circuits

Reference Section 38, 66.9

Wire color designation (internal power circuit wiring)
Black:
All ungrounded control circuit conductors operating at the
supply voltage
Red:
Ungrounded AC control circuits operating at a voltage less than
the supply voltage
Blue: Ungrounded DC control circuits

Yellow or orange:
Ungrounded control circuits or other wiring, such as for cabinet
lighting, that remain energized when the main disconnect is in the
OFF position

Wire size for control circuits must be no smaller than 18 AWG,
with exception of control circuits for PLC input/outputs. Wire
size is determined from Table 38.1 based on the amp rating of the
overcurrent protective device for the control circuit or the amp rating
of the secondary of the CPT or power supply.
Ampacity of Control Circuit Conductors—Reference Table 38.1
Conductor Size
Ampacity, Amperes

AWG

mm2

10

16

1.3

7

18

0.82

5

20



0.52

3

22 

0.32

2

24 

0.20

1

26 

0.13

0.8

28 A

0.08

0.5

30 A

0.05

A	 Where these conductors are contained in a jacketed multi-conductor cable assembly.
B	 These sizes of conductors are only for connection of control circuits for electronics programmable

White or gray or three white stripes on other than green,
blue, orange, or yellow:
Grounded AC current-carrying control circuit conductor regardless
of voltage

input/output and static control (having no moving parts).

White with blue stripe:
Grounded DC current-carrying control circuit conductor

White with yellow stripe or white with orange stripe:
Grounded AC control circuit current-carrying conductor that remains
energized when main disconnect switch is in the OFF position

26

EATON CORPORATION Control panel design guide

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Logic control—pilot devices selection

Reference Section 66.12

Rules for Operator Controls

Choosing Operators and Lights

1. Start buttons and switches
should be located either
above or to the left of the
associated stop button.

Type

Catalog Number

Type

Flush green momentary button

M22-D-G

NO contact block

M22-K10

Extended red momentary button

M22-DP-R

NC contact block

M22-K01

Blue RESET with push rod

M22-DZ-B-GB14

LED indicating light

START

START

STOP

Catalog Number

STOP

2. Every control panel
that includes operator
controls should include
an emergency stop. This
emergency stop should be
a mushroom or palm type
that is self-latching.

Twist-to-release E-Stop with 1NO/2NC

Two-position maintained selector switch

M22-PVT-K12

Two-position maintained keyed selector switch

M22-WKV

M22-WRS

Three-position maintained selector switch

M22-WRK3

Three-position maintained keyed selector switch

M22-WRS3

EATON CORPORATION Control panel design guide

12–30 Vac/Vdc
Yellow

M22-L-Y-W

Green

M22-L-G-G

Red

M22-L-R-R

Blue

M22-L-B-B

85–264 Vac/Vdc

Legend plates

27

Description

Yellow

M22-L-Y-230W

Green

M22-L-G-230G

Red

M22-L-R-230R

Blue

M22-L-B-230B

“START”

M22S-ST-GB1

“STOP”

M22S-ST-GB0

“OFF ON”

M22S-ST-GB10

“MAN. AUTO”

M22S-ST-GB11

”HAND O AUTO”

M22-ST-D12

“MAN. O AUTO”

M22-ST-GB12

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Logic control—relays, timers, and terminal block selection
Image

28

Type

Catalog Number

Type

Catalog Number

2NO-2NC 10A relay 120 Vac

XTRM10A22A

30A terminal blocks 6.2 mm wide

XBUT4 (Grey)
XBUT4BU (Blue)
XBUT4BK (Black)
XBUT4WH (White)
XBUT4RD (Red)

2NO-2NC 10A relay 24 Vdc

XTRM10A22TD

Ground terminal block

XBUT4PE

On-delay timer 0.05s to 60h

XTMT6A60H11B

DIN rail end stop

XBAES35C

Single-pole terminal block relays

XRU1D120U
XRU1D24U

Terminal block jumpers

XBAFBS26—2 pos.
XBAFBS36—3 pos.
XBAFBS56—5 pos.
XBAFBS106—10 pos.

Four-pole, 15A control relays

D7PF4AA (120 Vac)
D7PF4AT1 (24 Vdc)

Terminal block end cover

XBACUT10

Four-pole control relay socket

D7PAD

Blank marker strip (strip of 10)

XBMZB6

Multifunction universal timing relay

TRL07

Open three-pole power distribution block
175A

CHDB3213

DIN rail

XBANS3575P

Finger-safe power distribution block
380A

CHDB330F

EATON CORPORATION Control panel design guide

Image

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Logic control—logic controllers and relays
PLCs and Intelligent Relays
Controller
Catalog
Number

Power Supply
Options

Expansion Module Options

Description

Digital Analog Relay
Catalog
Input Input
Outputs Number

Description

100–240
Vac Input 24 Vdc
Catalog
Output
Number
(Amps)

Basic (120 Vac Input)

EZ500 with Display

EZ512-AC-RC

Intelligent relay
with clock and
display

8

—

4

—

—

EZ400-POW 1.25

EZ512-DC-RC

Intelligent relay
with clock and
display

8

2

4

—

—

EZ400-POW 1.25

Basic (24 Vdc Input)

Expanded (120 Vac Input)
110–240 Vac Relay
Inputs
Outputs
EZ719-AC-RC

Intelligent relay
with clock and
display

12

—

6

EZ618-AC-RE

EZ400-POW 1.25

12

6

24 Vdc
Inputs

Relay
Outputs

EZ618-DC-RE

12

6

Right Side
Module

24 Vdc
Inputs

Analog Relay Analog Transistor
In
Outputs Out
Out

ELC-EX16NNDR

8

—

8

—

—

ELC-PS01

1

ELC-EX16NNDT

8

—

—

—

8

ELC-PS02

2

4

—

2

—

Expanded (24 Vdc Input)
EZ700 with Display

EZ719-DC-RC

Intelligent relay
with clock and
display

12

4

6

EZ400-POW 1.25

Advanced (24 Vdc Input)

16
ELC-PV28NNDR Programmable
logic controller
that has expandable features with
add-on modules

—

12

ELC-AN06AANN —

ELC Logic Controller

ELC-TC04ANNN

Thermocouple J, K, R, S, T plus 4 analog in

ELC-MC01

Motion control, 1 axis module

Left Side Module
ELC-COENETM

EZ Accessories

ELC Accessories

EZSOFT—Programming software

ELCSOFT—ELC programming software

EZ-PC-CAB—PC programming cable

ELC-GP04—External graphic panel display

EZD-80-B—External display

ELC-CBPCELC1—PC/graphic panel cable

EZD-CP4-500—Display communication
module with cable
ELC Power Supply
29

Ethernet Modbus TCP (master/slave)

EZ80-B

EATON CORPORATION Control panel design guide

ELC-GP04

ELCSOFTGP—ELC-GP programming
software

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Sizing the branch protection for a single motor and a control circuit	

Branch
Protection

Reference Section 66.10

For single motor load control panel where the branch protective
device acts as the main for the panel and the control circuit is tapped
off the load side of the device, the branch protective device is sized
by the following:

Type

Percent of FLA

Non-time delay fuse and Class CC fuse

Up to 300%

1.	 Multiply the motor FLA (from Table 50.1 on Page 32) with the
following percentage based on the type of protective device
from the table at right:

Dual element fuse (time delay) except Class CC

Up to 175%

Inverse-time circuit breaker

Up to 250%

Self-protected combination motor controller

100%

2.	 Add the full-load current on the primary of the CPT from the
table below.

Manual self-protected combination motor controller

100%

3.	 Select the closest standard protective device rating.
See Page 8 for selection of the controller and overload protection.

Branch Circuit Protection	

	

Controller

Overload
Protection

Conductors of a control circuit
that are tapped from the load side
of a branch circuit device (and
where the power voltage is the
same as the control voltage—
no CPT) shall be protected by
overcurrent devices rated not
more than as specified in the
table at the right.

Single Motor Load and Control
Circuit with Shared Branch
Protection

30

EATON CORPORATION Control panel design guide

Overcurrent Device Ratings for Control Circuit Conductors Tapped from Load Side of Branch Circuit
Protective Device—Reference Table 66.4
Conductor
Size

Control Circuit Overcurrent
Device (Amps)

Branch Circuit Overcurrent
Device (Amps)

AWG

mm2

Larger than 14

Larger than 2.1

Equal to wire capacity

400% of wire ampacity

300% of wire ampacity

14

2.1

20

80

60

16

1.3

20

40

20

18

0.82

20

25

20

Control in Wire Panel

Remote Control

NNote: See table on Page 6 for breaker and fused disconnect part numbers, and Page 19 for fuse holders.

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Common Formulas and Conversions
Direct Current

Single-Phase (AC)

Three-Phase (AC)

Current (I)
from HP

I=

HP x 746
V x %EFF

I=

HP x 746
V x %EFF x PF

I=

HP x 746
V x %EFF x PF x 1.73

Current (I)
from kW

I=

kW x 1000
V

I=

kW x 1000
V x PF

I=

kW x 1000
V x PF x 1.73

Current (I)
from kVA

kVA x 1000
V x 1.73
V x I x %EFF x PF x 1.73
HP =
746

kVA x 1000
V
V x I x %EFF x PF
HP =
746

I=

Horsepower
(HP)

HP =

V x I x %EFF
746

I=

Voltage Drop Calculations

Conversions

V

Voltage drop

1 inch

2.54 cm

I

Current

3.28 feet

1 meter

L

Length of cable/wire (ft)

1 yard

0.91 meters

D

Conductor cross section (circular mile)

1 mile

5,280 feet

K

Resistivity of conductor
	 •	K = 12 for circuits loaded more than 50% of rating (copper)
	 •	K = 11 for circuits loaded less than 50% of rating (copper)

1 mile

1.609 kilometers

144 square inches

1 square foot

9 square feet

1 square yard

640 acres

1 square mile

1 cubic foot

7.48 gallons

Two-wire,
single-phase

V=

Three-wire,
three-phase

V=

2K x L x I
D
2K x L x I x 0.866
D

NEMA/UL/IEC Enclosure Type Cross-Reference—Approximate
NEMA
Enclosure
Rating

1

IP10

X

IP20

X

IP21

X

IP22

X

IP23

IP30

IP31

IP32

IP33

IP40

IP41

IP42

IP43

IP50

IP51

IP52

IP53

IP54

IP55

IP56

IP60

IP61

IP62

IP63

IP64

IP65

IP66

IP67

2

X

X

X

X

X

3

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

3R

X

X

X

X

X

X

X

X

3S

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

4

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

4X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

6

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

6P

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

12

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

13

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

X

31

IP68

X

EATON CORPORATION Control panel design guide

X

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Dimensional Orientation
Face
Depth

Height

Width

Product Specifications
Tightening Torque (in-lb)

Approximate Dimensions (mm)

Protective Devices

Part Number

Lineside

Loadside

Mounting

Height

Width

Depth

Type

Installation
Pub Number

Molded case
circuit breakers A

EGB…
EGE…
EGH…
EGC…

14–10 AWG… 35
8 AWG… 40
6–4 AWG… 45
3–3/0 AWG… 50

14–10 AWG… 35
8 AWG… 40
6–4 AWG… 45
3–3/0 AWG… 50

10

139.7
139.7
139.7
139.7

76.2
76.2
76.2
76.2

75.9
75.9
75.9
75.9

Three-pole
Three-pole
Three-pole
Three-pole

I.L. 29C515C
I.L. 29C515C
I.L. 29C515C
I.L. 29C515C

JGE…
JGS…
JGH…
JGC…

4–350 kcmil… 180

4–350 kcmil… 180

10

177.8
177.8
177.8
177.8

104.9
104.9
104.9
104.9

90.7
90.7
90.7
90.7

Three-pole
Three-pole
Three-pole
Three-pole

IL01204006E
IL01204006E
IL01204006E
IL01204006E

LGE…
LGH…
LGU…

2–500 kcmil (2)… 375

2–500 kcmil (2)… 375

25

257.3
257.3
257.3

139.2
139.2
139.2

103.9
103.9
103.9

Three-pole
Three-pole
Three-pole

IL01207006E
IL01207006E
IL01207006E

Multiwire terminals

3TA125E3K

70 in-lb

70 in-lb

35

48.0 Incremental

IL01202001E

3TA125E6K

25 in-lb

25 in-lb

35

48.0 Incremental

IL01202002E

3TA250FJ3

70 in-lb

70 in-lb

96

81.0 Incremental

IC01204001E

3TA250FJ6

25 in-lb

25 in-lb

96

81.0 Incremental

IC01204002E

HMCP…

14–10 AWG… 35
8 AWG… 40
6–4 AWG… 45
3–3/0 AWG… 50

14–10 AWG… 35
8 AWG… 40
6–4 AWG… 45
3–3/0 AWG… 50

28

152.4

105.0

86

Three-pole

IL01211006E

HMCPE…

14-10 AWG... 35
8 AWG... 40
6-4 AWG... 45
3-3/0 AWG... 50

14-10 AWG... 35
8 AWG... 40
6-4 AWG... 45
3-3/0 AWG... 50

10

139.7

76.2

75.9

Three-pole

IL29C130D

FDMP…

14–10 AWG… 35
8 AWG… 40
6–4 AWG… 45
3–4/0 AWG… 50

14–10 AWG… 35
8 AWG… 40
6–4 AWG… 45
3–4/0 AWG… 50

35

152.4

105.0

86.0

Three-pole

IL29C115C

Miniature circuit breakers WMZT…
Motor circuit protectors

Motor protective
circuit breaker
Fusible disconnects

Fuse holders

R4H3030FJ

27 in-lb

27 in-lb

20 ?

116.0

105.0

99.0

N/A

R4H3030FCC

27 in-lb

27 in-lb

20 ?

116.0

96.0

83.5

N/A

R9J3030FJ and R9J3060FJ

31 in-lb

31 in-lb

20 ?

136.0

149.5

123.0

N/A

R9K3100FJ

35.4 in-lb

35.4 in-lb

20 ?

186.0

149.5

123.0

N/A

R9L3200FJ

200 in-lb

200 in-lb

20 ?

291.0

195.0

130.0

N/A

R9M3400FJ

500 in-lb

500 in-lb

20 ?

390.0

276.0

141.5

N/A

R9N3600FJ

500 in-lb

500 in-lb

20 ?

471.0

364.0

250.0

N/A

C383FHCC

18–12 AWG… 20
10–8 AWG… 25
18–10 AWG (2)… 25

18–12 AWG… 20
10–8 AWG… 25
18–10 AWG (2)… 25

81.2

17.8

61.0

Single-pole

A	 Tightening torques are for standard terminal provided with breaker. For alternative lugs, see the installation publication.

32

EATON CORPORATION Control panel design guide

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Product Specifications (continued)
Tightening Torque (in-lb)
Controllers

Motor control

Definite purpose

33

Part Number

Line

Approximate Dimensions (mm)
Load

Coil

Auxiliary
Contacts

Height

Width

Depth

Type

Installation
Pub Number

XTSC…BB…

15.0

10.6

10.6

10.6

178.5

45.0

95.7

Pub51176

XTSC…BC…

15.0

26.6

10.6

10.6

228.8

45.0

124.3

Pub51228

XTSC…DD…

26.6

29.2

10.6

10.6

284.0

55.0

196.0

Pub51190

XTFC…BB…

36

10.6

10.6

10.6

209.0

45.0

95.7

Pub51176

XTFC…BC…

36

26.6

10.6

10.6

266.7

45.0

124.3

Pub51228

XTFC…DD…

36

29.2

10.6

10.6

312.1

55.0

196.0

Pub51190

XTCE…B…

10.6

10.6

10.6

10.6

68.0

45.0

75.0

Pub51210

XTCE…C…

26.6

26.6

10.6

10.6

85.0

45.0

97.4

Pub51211

XTCE…D…

29.2

29.2

10.6

10.6

104.0

55.0

132.1

Pub51216

XTCE…F…

123.9

123.9

10.6

10.6

170.0

90.0

160.0

Pub51188

XTCE…G…

123.9

123.9

10.6

10.6

170.0

90.0

160.0

Pub51188

XTOB…BC1

—

16.0

—

7–10.6

49.8 incremental

45.0

88.4

Pub51210

XTOB…CC1

—

16.0

—

7–10.6

51.4 incremental

45.0

105.3

Pub51211

XTOB…DC1

—

31.0

—

7–10.6

70 incremental

60.0

93.6

Pub51216

XTOB…GC1

—

88.5

—

7–10.6

107 incremental

118.0

134

Pub51188

XTCEXF…

—

—

—

10.6

—

—

41.2 incremental

Pub51211 or Pub51216

XTCEXS…

—

—

—

10.6

—

10.5 incremental

—

Pub51216 or Pub51188

—

XTPAXF…

—

XTPAXTPCB

Not required

XTPAXLSA

36

C25DR…

12–14 AWG 15 in-lb
10 AWG 25 in-lb
8 AWG 40 in-lb
4–6 AWG 45 in-lb

EATON CORPORATION Control panel design guide

—

—

10.6

—

—

—

Pub51198

—

—

—

—

—

Pub51176

—

—

30.5 incremental

—

—

—

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Product Specifications (continued)
Power Conversion

Control power
transformers

Part Number

Tightening Torque (in-lb)

Approximate Dimensions (mm)

Primary

Height

Secondary

Width

Depth

Type

C0025E2A

16

16

65.0

76.0

64.0

—

C0050E2A

16

16

65.0

76.0

76.0

—

C0075E2A

16

16

65.0

76.0

89.0

—

C0100E2A

16

16

73.0

86.0

86.0

—

C0150E2A

16

16

81.0

95.0

102.0

—

C0200E2A

16

16

97.0

114.0

102.0

—

C0250E2A

16

16

97.0

114.0

111.0

—

C0300E2A

16

16

97.0

114.0

121.0

—

C0350E2A

16

16

97.0

114.0

133.0

—

C0500E2A

30

30

121.0

133.0

140.0

—

Installation
Pub Number

C0750E2A

30

30

121.0

133.0

178.0

—

C1000E2A

30

30

144.0

171.0

164.0

—

PSG60E

6.94–8.68

6.94–8.68

125.0

32.0

120.5

—

IL00912001E

PSG60F

10.41–13.89

10.41–13.89

126.5

70.0

111.4

—

IL00912005E

PSG120E

6.94–8.68

6.94–8.68

126.5

50.0

115.0

—

IL00912002E

PSG120F

10.41–13.89

10.41–13.89

126.5

70.0

111.3

—

IL00912006E

PSG240E

6.94–8.68

6.94–8.68

126.5

85.0

118.5

—

IL00912003E

PSG240F

10.41–13.89

10.41–13.89

126.5

85.0

120.5

—

IL00912007E

PSG480E

10.41–13.89

10.41–13.89

126.5

160.0

111.4

—

IL00912004E

PSG480F

10.41–13.89

10.41–13.89

126.5

160.0

111.4

—

IL00912008E

Type

Part Number

Lineside

Loadside

Mounting

Height

Width

Depth

Type

Installation
Pub Number

Logic controllers

EZ512…

5.3

5.3

—

110.0

71.5

58.0

—

MN05013003E

EZ719…

5.3

5.3

—

110.0

107.5

58.0

—

MN05013003E

EZ618…

5–7

5–7

—

110.0

107.5

58.0

—

IL05013009E

EZ400…

5–7

5–7

—

110.0

71.5

56.5

—

IL05013008E

ELC-PV…

22–16 AWG… 1.7

22–16 AWG… 1.7

—

96.0

70.0

60.0

—

IL05001004E

ELC-EX16NNDR

22–16 AWG… 1.7

22–16 AWG… 1.7

—

96.0

25.2

60.0

—

IL05003004E

ELC-EX16NNDT

22–16 AWG… 1.7

22–16 AWG… 1.7

—

96.0

25.2

60.0

—

IL05003004E

ELC-AN06AANN

22–16 AWG… 1.7

22–16 AWG… 1.7

—

96.0

25.2

60.0

—

IL05003003E

ELC-TC04ANNN

1.7

1.7

—

96.0

25.2

60.0

—

IL05003009E

ELC-MC01

22–16 AWG… 1.7

22–16 AWG… 1.7

—

96.0

25.2

60.0

—

IL05003023E

ELC-COENETM

—

—

—

96.0

33.0

60.0

—

MN05006001E

ELC-PS01

4.3–6.9

4.3–6.9

—

96.0

36.5

60.0

—

IL05003007E

ELC-PS02

4.3–6.9

4.3–6.9

—

96.0

55.0

60.0

—

IL05003007E

Power supplies

Tightening Torque (in-lb)

34

EATON CORPORATION Control panel design guide

Approximate Dimensions (mm)

Ready to buy? Go to www.eaton.com/controlpanel • Got a question? Call 877-ETN-CARE

Product Specifications (continued)
Tightening Torque (in-lb)
Logic Circuit
Components

Part Number

Pushbuttons, switches
pilot lights
Relays

Terminal blocks

Approximate Dimensions (mm)

Line

Load

Mounting

Coil

M22…

7.1

—

17.7

—

M22…

7.1

—

17.7

—

Width

Depth

Type

Installation
Pub Number

—

—

—

—

IL04716001E

—

—

—

—

—

Height

XTRM…

10.6

—

—

10.6

58.0

45.0

54.0

—

Pub51219

XTMT…

10.6

—

—

10.6

58.0

45.0

54.0

—

Pub51245

TRL07

8.8

—

—

8.8

87.0

17.5

60.0

—

IL04910002E

D7…

7–8

—

—

7–8

79.7

49.9

70.0

—

—

XBUT4…

5.3–7.1

—

—

—

47.5

6.2

46.9

—

Pub51473

XBAE…

5.3–7.1

—

—

—

47.5

6.2

46.9

XBAF…

Not required

—

—

—

CHDB3213

2/0–8 AWG… 120

4–6 AWG… 35
8 AWG… 25
10–14… 20

—

—

101.6

131.8

CHDB330F

500–6 AWG… 500

2–3 AWG… 50
4–6 AWG… 45
8 AWG… 40
10–14 AWG…35

—

—

118.4

39.1

—

Pub51473

—

Pub51473

84.3

—

—

72.9

—

—

With the permission of Underwriters Laboratories, Inc., material is reproduced from UL Standard 508A,
Industrial Control Panels, which is copyrighted by Underwriters Laboratories, Inc., Northbrook, Illinois.
While use of this material has been authorized, UL shall not be responsible for the manner in which
the information is presented, nor for any interpretations thereof. UL’s approval to use this information
does not imply or warrant that any associated products or materials in this publication are UL Listed.
For more information on UL or to purchase standards, please visit our Standards website
at www.comm-2000.com or call 1-888-853-3503.

35

EATON CORPORATION Control panel design guide

Ready to buy? Go to www.eaton.com/controlpanel • Got a question? Call 877-ETN-CARE

36

EATON CORPORATION Control panel design guide

Ready to buy? Go to www.eaton.com/controlpanel • Got a question? Call 877-ETN-CARE

Eaton Corporation
Electrical Sector
1111 Superior Ave.
Cleveland, OH 44114
United States
877-ETN-CARE (877-386-2273)
Eaton.com
© 2010 Eaton Corporation
All Rights Reserved
Printed in USA
Publication No. SA08302002E / Z9647
May 2010

PowerChain Management is a registered
trademark of Eaton Corporation.
All other trademarks are property of their
respective owners.



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History When                    : 2009:10:22 13:26:01-04:00, 2009:10:22 14:30:30-04:00, 2009:10:22 14:30:30-04:00, 2009:10:22 14:33:05-04:00, 2009:10:22 14:35:51-04:00, 2009:10:22 14:36:19-04:00, 2009:10:22 16:09:31-04:00, 2009:10:22 16:10:29-04:00, 2009:10:22 16:10:45-04:00, 2009:10:22 16:53:56-04:00, 2009:10:22 16:53:56-04:00, 2009:10:23 12:28:18-04:00, 2009:10:23 12:28:18-04:00, 2009:10:23 13:02:15-04:00, 2009:10:23 15:39:52-04:00, 2009:10:23 15:42:41-04:00, 2009:10:23 15:42:59-04:00, 2009:10:23 15:42:59-04:00, 2009:10:26 09:20:55-04:00, 2009:10:26 09:21:57-04:00, 2009:10:26 10:21:55-04:00, 2009:10:26 14:05:24-04:00, 2009:10:26 14:16:29-04:00, 2009:10:26 14:16:49-04:00, 2009:10:26 14:20:22-04:00, 2009:10:26 14:34:05-04:00, 2009:10:26 14:39:07-04:00, 2009:10:26 15:11:14-04:00, 2009:10:27 08:25:22-04:00, 2009:10:27 08:44:24-04:00, 2009:10:27 08:50:38-04:00, 2009:10:27 08:52:19-04:00, 2009:10:27 08:54:34-04:00, 2009:10:27 09:01:31-04:00, 2009:10:27 11:16:39-04:00, 2009:10:27 11:51:22-04:00, 2009:10:27 12:05:40-04:00, 2009:10:27 12:48:47-04:00, 2009:10:27 12:50:29-04:00, 2009:10:27 13:11:51-04:00, 2009:10:27 13:17:06-04:00, 2009:10:27 14:12:22-04:00, 2009:10:27 14:13:02-04:00, 2009:10:27 15:10:54-04:00, 2009:10:27 15:14:17-04:00, 2009:10:27 15:38:27-04:00, 2009:10:28 08:25:21-04:00, 2009:10:28 08:40:37-04:00, 2009:10:28 08:41:04-04:00, 2009:10:28 10:51:18-04:00, 2009:10:28 11:46:45-04:00, 2009:10:28 11:51:44-04:00, 2009:10:28 11:52:52-04:00, 2009:10:28 12:58:49-04:00, 2009:10:28 13:00:04-04:00, 2009:10:28 13:14:41-04:00, 2009:10:28 13:18:28-04:00, 2009:10:28 13:21:39-04:00, 2009:10:28 13:27:46-04:00, 2009:10:28 13:38:38-04:00, 2009:10:28 13:49:01-04:00, 2009:10:28 13:56:31-04:00, 2009:10:28 13:58:35-04:00, 2009:10:28 14:06:46-04:00, 2009:10:28 14:11:01-04:00, 2009:10:28 14:11:42-04:00, 2009:10:28 14:15:56-04:00, 2009:10:28 14:16:37-04:00, 2009:10:28 14:18:25-04:00, 2009:10:28 14:19:56-04:00, 2009:10:28 14:23:09-04:00, 2009:10:28 14:24:02-04:00, 2009:10:28 14:29:17-04:00, 2009:10:28 14:29:39-04:00, 2009:10:28 14:30:35-04:00, 2009:10:28 14:44:39-04:00, 2009:10:28 14:49:40-04:00, 2009:10:28 14:51:38-04:00, 2009:10:28 14:52:54-04:00, 2009:10:28 14:54:06-04:00, 2009:10:28 15:03:45-04:00, 2009:10:28 15:44:46-04:00, 2009:10:28 15:46:13-04:00, 2009:10:28 15:51:52-04:00, 2009:10:28 16:10:38-04:00, 2009:10:28 16:28:34-04:00, 2009:10:29 08:33:58-04:00, 2009:10:29 11:14:15-04:00, 2009:10:29 11:17:36-04:00, 2009:10:29 11:18:30-04:00, 2009:10:29 11:50:22-04:00, 2009:10:29 12:00:23-04:00, 2009:10:29 12:35:16-04:00, 2009:10:29 12:43:39-04:00, 2009:10:29 14:45:43-04:00, 2009:10:29 14:45:43-04:00, 2009:10:29 14:47:17-04:00, 2009:10:29 14:49:33-04:00, 2009:10:29 14:58:47-04:00, 2009:10:29 15:04:26-04:00, 2009:10:29 15:46:43-04:00, 2009:10:29 16:12:19-04:00, 2009:10:29 16:16:35-04:00, 2009:10:29 16:18:08-04:00, 2009:10:29 16:25:03-04:00, 2009:10:29 16:32:08-04:00, 2009:10:29 16:43:44-04:00, 2009:10:30 10:37:37-04:00, 2009:10:30 10:38:31-04:00, 2009:10:30 11:35:54-04:00, 2009:10:30 11:36:57-04:00, 2009:10:30 11:38:15-04:00, 2009:10:30 11:39:02-04:00, 2009:11:03 10:49:19-05:00, 2009:11:03 10:49:28-05:00, 2009:11:03 11:10:49-05:00, 2009:11:03 11:16:20-05:00, 2009:11:03 11:18:56-05:00, 2009:11:03 11:21:37-05:00, 2009:11:03 11:22:15-05:00, 2009:11:03 11:23:39-05:00, 2009:11:03 11:29:22-05:00, 2009:11:03 11:34:04-05:00, 2009:11:03 11:35:07-05:00, 2009:11:03 11:37:08-05:00, 2009:11:03 11:47:06-05:00, 2009:11:03 11:51:04-05:00, 2009:11:03 12:14:50-05:00, 2009:11:03 12:19:03-05:00, 2009:11:03 12:47:45-05:00, 2009:11:03 12:53:34-05:00, 2009:11:03 13:02:56-05:00, 2009:11:03 13:31:09-05:00, 2009:11:03 13:31:56-05:00, 2009:11:03 14:41:24-05:00, 2009:11:03 14:47:05-05:00, 2009:11:03 14:48:49-05:00, 2009:11:03 15:10:21-05:00, 2009:11:03 15:18:48-05:00, 2009:11:03 15:23:21-05:00, 2009:11:03 15:25:17-05:00, 2009:12:10 11:30:16-05:00, 2009:12:10 13:24:22-05:00, 2009:12:10 14:56:06-05:00, 2009:12:10 15:12:33-05:00, 2009:12:10 15:24:16-05:00, 2009:12:10 15:48:19-05:00, 2009:12:10 17:26:16-05:00, 2009:12:10 17:38:01-05:00, 2009:12:11 10:42:10-05:00, 2009:12:11 11:50:46-05:00, 2009:12:11 12:07:18-05:00, 2009:12:11 13:50:27-05:00, 2009:12:11 14:24:58-05:00, 2009:12:11 14:26:27-05:00, 2009:12:11 14:30:25-05:00, 2009:12:11 15:59:02-05:00, 2009:12:11 16:01:54-05:00, 2009:12:11 16:36:27-05:00, 2009:12:11 17:33:02-05:00, 2009:12:11 17:33:29-05:00, 2009:12:11 17:42:33-05:00, 2009:12:11 17:47:06-05:00, 2009:12:17 14:00:30-05:00, 2009:12:17 14:05:14-05:00, 2009:12:17 15:20:41-05:00, 2009:12:17 16:27:38-05:00, 2009:12:17 16:29:24-05:00, 2009:12:17 16:36:36-05:00, 2009:12:17 16:40:36-05:00, 2009:12:18 09:52:37-05:00, 2009:12:18 09:55:52-05:00, 2009:12:18 09:58:39-05:00, 2009:12:18 10:11:17-05:00, 2009:12:18 10:22:14-05:00, 2009:12:18 10:32:45-05:00, 2009:12:18 10:36:13-05:00, 2009:12:18 10:40:03-05:00, 2009:12:18 10:41:13-05:00, 2009:12:18 12:43:32-05:00, 2009:12:18 12:47:14-05:00, 2009:12:18 13:03:41-05:00, 2010:02:15 11:50:53-05:00, 2010:02:15 16:05:16-05:00, 2010:02:15 16:21:59-05:00, 2010:02:15 16:33:03-05:00, 2010:02:15 17:09:38-05:00, 2010:02:15 17:15:59-05:00, 2010:02:15 17:19:29-05:00, 2010:02:15 17:20:33-05:00, 2010:02:15 17:27:20-05:00, 2010:02:15 17:29:47-05:00, 2010:02:15 17:32:26-05:00, 2010:02:15 17:35:13-05:00, 2010:02:15 18:03:58-05:00, 2010:02:16 10:24:52-05:00, 2010:02:16 10:37:02-05:00, 2010:02:16 10:37:28-05:00, 2010:02:16 10:46:50-05:00, 2010:02:16 10:59:23-05:00, 2010:02:16 11:03:25-05:00, 2010:02:16 11:06:18-05:00, 2010:02:16 11:07:14-05:00, 2010:02:16 11:08:58-05:00, 2010:02:16 11:11:28-05:00, 2010:02:16 11:15:44-05:00, 2010:02:16 14:42:36-05:00, 2010:02:16 15:49:50-05:00, 2010:02:16 16:21:31-05:00, 2010:02:16 16:30:24-05:00, 2010:02:16 16:48:25-05:00, 2010:02:16 16:55:56-05:00, 2010:02:16 17:08:23-05:00, 2010:02:16 17:12:12-05:00, 2010:02:16 17:16-05:00, 2010:02:16 17:28:24-05:00, 2010:02:16 17:35:11-05:00, 2010:02:16 17:49:51-05:00, 2010:02:16 18:21:53-05:00, 2010:02:16 18:42:27-05:00, 2010:02:16 18:47:10-05:00, 2010:02:16 18:56:20-05:00, 2010:02:16 19:00:22-05:00, 2010:02:16 19:27:28-05:00, 2010:02:16 19:33:19-05:00, 2010:02:16 19:35:52-05:00, 2010:02:16 20:13:56-05:00, 2010:02:17 11:39:30-05:00, 2010:02:17 11:54:55-05:00, 2010:02:17 11:56:20-05:00, 2010:02:17 14:10:25-05:00, 2010:02:17 14:20:40-05:00, 2010:02:17 14:21:19-05:00, 2010:02:17 14:58:48-05:00, 2010:02:17 15:07:39-05:00, 2010:02:17 15:11:53-05:00, 2010:02:17 15:12:21-05:00, 2010:02:17 15:17:57-05:00, 2010:02:17 15:22:16-05:00, 2010:02:17 15:32:13-05:00, 2010:02:17 15:35:13-05:00, 2010:02:17 15:41:47-05:00, 2010:02:17 16:06:57-05:00, 2010:02:17 16:11-05:00, 2010:02:17 16:13:57-05:00, 2010:02:17 16:14:21-05:00, 2010:02:17 16:16:16-05:00, 2010:02:17 16:17:14-05:00, 2010:02:17 16:28:26-05:00, 2010:02:17 16:38:25-05:00, 2010:02:17 16:43:18-05:00, 2010:02:17 17:10:15-05:00, 2010:02:17 17:16:02-05:00, 2010:02:17 17:16:17-05:00, 2010:02:19 14:42:30-05:00, 2010:02:19 14:48:42-05:00, 2010:02:19 14:54:13-05:00, 2010:02:19 15:02:14-05:00, 2010:02:19 15:06:57-05:00, 2010:02:19 15:09:28-05:00, 2010:02:19 15:10:55-05:00, 2010:02:19 15:12:39-05:00, 2010:02:19 15:16:27-05:00, 2010:02:19 15:37:38-05:00, 2010:02:19 15:44:24-05:00, 2010:03:16 13:09:15-04:00, 2010:03:16 13:13:02-04:00, 2010:03:16 13:37:40-04:00, 2010:03:16 14:29:59-04:00, 2010:03:16 14:32:17-04:00, 2010:03:16 14:36:44-04:00, 2010:03:16 14:45:10-04:00, 2010:03:16 14:46:09-04:00, 2010:03:16 14:47:57-04:00, 2010:03:16 15:01:33-04:00, 2010:03:16 15:17:51-04:00, 2010:03:16 15:22:08-04:00, 2010:03:16 22:18:17-04:00, 2010:03:16 22:48:14-04:00, 2010:03:16 23:09:29-04:00, 2010:03:16 23:20:39-04:00, 2010:03:16 23:23-04:00, 2010:03:16 23:26:13-04:00, 2010:03:16 23:53:39-04:00, 2010:03:16 23:56:40-04:00, 2010:03:16 23:59:07-04:00, 2010:03:17 00:20:10-04:00, 2010:03:17 00:22:46-04:00, 2010:03:17 00:27:54-04:00, 2010:03:17 00:50:12-04:00, 2010:03:17 00:50:19-04:00, 2010:03:17 01:40:40-04:00, 2010:03:17 01:40:40-04:00, 2010:03:18 17:46:33-04:00, 2010:03:18 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Manifest Placed Y Resolution    : 300.00, 300.00, 300.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 300.00, 300.00, 300.00, 300.00, 300.00, 72.00, 72.00, 300.00, 300.00, 72.00, 72.00, 72.00, 72.00, 300.00, 300.00, 350.00, 300.00, 350.00, 300.00, 350.00, 72.00, 300.00, 350.00, 300.00, 350.00, 300.00, 350.00, 300.00, 72.00, 300.00, 350.00, 300.00, 350.00, 300.00, 350.00, 300.00, 72.00, 300.00, 350.00, 300.00, 350.00, 300.00, 350.00, 300.00, 72.00, 300.00, 350.00, 300.00, 350.00, 300.00, 350.00, 300.00, 72.00, 72.00, 300.00, 72.00, 500.00, 500.00, 300.00, 500.00, 300.00, 300.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 300.00, 72.00, 300.00, 300.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 300.00, 72.00, 300.00, 72.00, 300.00, 72.00, 300.00, 72.00, 72.00, 240.00, 240.00, 240.00, 240.00, 240.00, 300.00, 240.00, 300.00, 300.00, 300.00, 240.00, 304.80, 72.00, 72.00, 300.00, 300.00, 300.00, 300.00, 300.00, 300.00, 72.00, 300.00, 300.00, 300.00, 72.00, 300.00, 300.00, 150.00, 150.00, 72.00, 72.00, 300.00, 300.00, 300.00, 300.00, 300.00, 300.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00, 72.00
Manifest Placed Resolution Unit : Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches, Inches
Manifest Reference Instance ID  : xmp.iid:DB215FD5FB216811910983643B82ECCD, xmp.iid:D5215FD5FB216811910983643B82ECCD, xmp.iid:E8A57F7C18206811910983643B82ECCD, uuid:7aac7d3a-6368-9c48-931a-4e219fb2502f, uuid:a81d7324-1d37-e849-bffb-b1ab14677cb0, uuid:fd8d00ce-f931-1e40-8591-c6e6bab859f1, uuid:50d6544b-6038-0248-be37-66343c1f757b, uuid:50d6544b-6038-0248-be37-66343c1f757b, uuid:7aac7d3a-6368-9c48-931a-4e219fb2502f, uuid:0b1c0f0d-3381-b648-8a1f-2e712795b865, uuid:7aac7d3a-6368-9c48-931a-4e219fb2502f, xmp.iid:382FC594D02068118DBBA2B3C74550DB, xmp.iid:382FC594D02068118DBBA2B3C74550DB, xmp.iid:A1DA1B6D2B2168118DBBA2B3C74550DB, xmp.iid:3A2FC594D02068118DBBA2B3C74550DB, xmp.iid:382FC594D02068118DBBA2B3C74550DB, uuid:7aac7d3a-6368-9c48-931a-4e219fb2502f, uuid:d36a53fe-0ccd-6b4b-b5f3-2332f9c1bc88, xmp.iid:0A801174072068118DBBA74921C9E05B, xmp.iid:0A801174072068118DBBA74921C9E05B, uuid:7aac7d3a-6368-9c48-931a-4e219fb2502f, uuid:7aac7d3a-6368-9c48-931a-4e219fb2502f, uuid:6f1c666b-bd85-064a-8606-4714ea6c5101, uuid:7aac7d3a-6368-9c48-931a-4e219fb2502f, uuid:3085ECE1A21BDE1183B9C8C99DF0B5B3, uuid:65C6FF499B1BDE1183B9C8C99DF0B5B3, xmp.iid:CA9C850806316811994C8756EDAAF9E4, uuid:65C6FF499B1BDE1183B9C8C99DF0B5B3, xmp.iid:CA9C850806316811994C8756EDAAF9E4, xmp.iid:DC33A676CE2068118F62E0983AFDA260, xmp.iid:CA9C850806316811994C8756EDAAF9E4, uuid:7aac7d3a-6368-9c48-931a-4e219fb2502f, xmp.iid:C99C850806316811994C8756EDAAF9E4, xmp.iid:CA9C850806316811994C8756EDAAF9E4, uuid:65C6FF499B1BDE1183B9C8C99DF0B5B3, xmp.iid:CA9C850806316811994C8756EDAAF9E4, uuid:65C6FF499B1BDE1183B9C8C99DF0B5B3, xmp.iid:CA9C850806316811994C8756EDAAF9E4, xmp.iid:C89C850806316811994C8756EDAAF9E4, uuid:7aac7d3a-6368-9c48-931a-4e219fb2502f, xmp.iid:C99C850806316811994C8756EDAAF9E4, xmp.iid:CA9C850806316811994C8756EDAAF9E4, uuid:65C6FF499B1BDE1183B9C8C99DF0B5B3, xmp.iid:CA9C850806316811994C8756EDAAF9E4, uuid:65C6FF499B1BDE1183B9C8C99DF0B5B3, xmp.iid:CA9C850806316811994C8756EDAAF9E4, 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Manifest Reference Version ID   : 1
Doc Change Count                : 31165
Format                          : application/pdf
Title                           : Control Panel Design Guide
Description                     : Control Panel Design Guide
Creator                         : Zoltun
Producer                        : Adobe PDF Library 9.0
Trapped                         : False
Has XFA                         : No
Page Count                      : 37
Page Layout                     : SinglePage
Subject                         : Control Panel Design Guide
Author                          : Zoltun
EXIF Metadata provided by EXIF.tools

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