Ultra-cut 400, Thermal dynamics, Ccm module – Tweco 400 Ultra-Cut(March 2013) User Manual

Page 166: I/o pcb cpu pcb, Key plug +15vdc_iso, 15vdc_iso

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APPENDIX

A-26

Manual 0-5163

ULTRA-CUT 400

APPENDIX 12: Schematic, CE 400V Power Supply Cont.

Art # A-09531

Art # A-09531

1

1

2

2

3

3

4

4

5

5

6

6

7

7

8

8

9

9

10

10

A

A

B

B

C

C

D

D

E

E

F

F

400

AC120V @ 1A

AC13V @ 2A

/PUMP

+15

V

+15V

400

/FAN

200 - not used

/RAS

COM

200

24VA

C

400

24 VAC RE

T

+15V

/ AC

/ TEMP

/ STATUS

/ DC

/ GAS - COOLANT

COM

AC230V @ 5A

200

+15

V

POT WIPER (GCM1000)

POT LOW (GCM 1000)

PLASMA ENABLE

PRESS OK (GCM 1000)

PLASMA ENABLE

POT HI (GCM1000)

- ARC V

- ARC V

0V-A (24V ret)

WORK

To PCB7 CN2-

1

AC120V-GCM

0V-B (120V ret)

To PCB7 CN2-

2

AC120V-RAS

0V-RAS (120V ret)

0V-A (24V ret)

NEG ARC VOLTS

To PCB7 TB

3

0V-RAS

AC120V-RAS

AC230V RET

NEG ARC VOLT

S

DC 15V

AC24V-GCM

DC 0V

AC230V @ 1.25A

PILOT (TIP) VOLT

S

0V-B (120V ret)

WORK

AC24V-GCM

AC120V-GCM

To T1 PRI -

0

DC 15V

DC 0V

AC24V-GCM

0V-A (24V ret)

AC120V-GCM

0V-B (120V ret)

AC230V RET

AC230V @ 1.25A

DWG No:

Sheet

of

Supersedes

Scale

Date:

Drawn:

References

Date

By

Revisions

Rev

PCB No:

Assy No:

Information Proprietary to THERMAL DYNAMICS CORPORATION.

Not For Release, Reproduction, or Distribution without Written Consent.

NOTE: UNLESS OTHERWISE SPECIFIED -

1. RESISTOR VALUES ARE EXPRESSED IN OHMS, 1/4W 5%.

2. CAPACITOR VALUES ARE EXPRESSED IN MICROFARADS (uF).

Chk: App:

TITLE:

Last Modified:

Size

SCHEMATIC,

Thermal

Dynamics

AA

42X1337

Monday, April 19, 2010

2

2

Industrial Park #2

West Lebanon NH 03784

603-298-5711

400-Amp Power Supply 400V CE

08:11:44

Thermal Dynamics

D

DWG No:

Sheet

of

Supersedes

Scale

Date:

Drawn:

References

Date

By

Revisions

Rev

PCB No:

Assy No:

Information Proprietary to THERMAL DYNAMICS CORPORATION.

Not For Release, Reproduction, or Distribution without Written Consent.

NOTE: UNLESS OTHERWISE SPECIFIED -

1. RESISTOR VALUES ARE EXPRESSED IN OHMS, 1/4W 5%.

2. CAPACITOR VALUES ARE EXPRESSED IN MICROFARADS (uF).

Chk: App:

TITLE:

Last Modified:

Size

SCHEMATIC,

Thermal

Dynamics

AA

42X1337

Monday, April 19, 2010

2

2

Industrial Park #2

West Lebanon NH 03784

603-298-5711

400-Amp Power Supply 400V CE

08:11:44

Thermal Dynamics

D

DWG No:

Sheet

of

Supersedes

Scale

Date:

Drawn:

References

Date

By

Revisions

Rev

PCB No:

Assy No:

Information Proprietary to THERMAL DYNAMICS CORPORATION.

Not For Release, Reproduction, or Distribution without Written Consent.

NOTE: UNLESS OTHERWISE SPECIFIED -

1. RESISTOR VALUES ARE EXPRESSED IN OHMS, 1/4W 5%.

2. CAPACITOR VALUES ARE EXPRESSED IN MICROFARADS (uF).

Chk: App:

TITLE:

Last Modified:

Size

SCHEMATIC,

Thermal

Dynamics

AA

42X1337

Monday, April 19, 2010

2

2

Industrial Park #2

West Lebanon NH 03784

603-298-5711

400-Amp Power Supply 400V CE

08:11:44

Thermal Dynamics

D

DAT

(F1 Sht 1)

(F1 Sht 1)

MC2=PILOT

CONTACTOR

From

(Grid

D2)

INPUT

CONTACTORS

PILOT (TIP) VOLTAGE

COOLANT TEMP

(ON COOLANT

RETURN)

* Only in CCM w/19X2634 I/O PCB.

Remote Marking only for DFC 3000

(not isolated).

SW8-4 on CPU PCB must be on to

enable Remote Marking.

ISOLATED COMM

+16 to +18VDC

Rx-

Tx+

Rx+

Tx-

CCM MODULE

Signal & GND

Isolated from

Plasma Supply

INTERNAL TERMINAL

STRIP TB3

KEY PLUG

+15VDC_ISO

From

(Grid C9, sht 1)

-15VDC_ISO

RS 485 (2 wire)

uses Tx+ & Tx- only

(used for TSC 3000)

RIBBON CABLE

TEST SOCKET

(F1 Sht 1)

RS 422 (4 wire)

connect TX+ to RX+

of CNC, Tx- to Rx-

of CNC

(F1 Sht 1)

ISOLATED

VOLTAGES

JUMPER IN

REMOTE

HMI

** RS 485 / 422

on CPU board

19X2554 only.

NEG ARC VOLTS

SW6 - OK to MOVE CONTACTS / VOLTS

SW11 - ANALOG CURRENT SELECT

"B" DEFAULT, "A" REMOTE

KEY PLUG

Was 7 pin

changed to

14 pin in 2009

SW12 - DIVIDED ARC V RATIO SELECT
SW13 - FACTORY ONLY

PCB7 WK-5628

RELAY PCB

CIRCUIT COMM (GND)

CN11 34 CKT

CN10 26 CKT

PILOT DEM to PS

ANALOG DEM to CPU

Iso

J36 34 CKT

PCB6 DISPLAY

WK-5603

JUMPER

for 2 WIRE

(RS485 only)

wire to A & B

4W

4W

2W

JUMPER

for 4 WIRE

uses

TX+, TX-

RX+, RX-

J35 26 CKT

J14

J14

2W

SW14

SW14 - LINE

TERMINATION

normally on

(refer to manual)

CUT DEM to PS

RIBBON CABLE

5

9

8

76

1

2

3

4

SW10-ADDRESS

normally 0

(refer to

manual)

0

TEST SOCKET

From

(Grid A9, sht 1)

UNDIVIDED ARC VOLTS

FOR HEIGHT CONTROLS

GND

GND

& CNC COMM

PLASMA ENABLE

24 VAC @ 1A

120 VAC @ 100ma.

(Not in all units)

POWER SUPPLY

REAR PANEL

TO AC INDICATOR (on PCB6)

29-41 VDC

RIBBON CABLE SIGNALS

/ = active low digital signal
CN10-J35 - 26 Ckt Ribbon Cable
2- Cut Demand

4- Pilot Demand

6- / Start

7- / Start2

9- / Pilot Enable

10- / HF Enable

12- / Pump Enable

13- / Fan Enable

15- / DC Indicator

16- / Over Temperature Indicator

18- / Gas-Coolant OK Indicator

19- / Status Lamp
CN11-J36 - 34 Ckt Ribbon Cable
1- Output Current Signal

3- / Arc Transferred (CSR)

4- / Pilot On

6- Coolant Flow (freq)

7- Coolant Temp (analog)

9- / Temp OK (Inverter/Chopper)

10- / Coolant Level OK

12- Missing Phase

13- / Ready to Operate

15- / Input Volts OK

16- / Inverter OCR

18- / PS ID "00*"

19- / PS ID "0*0"

20- / PS ID "*00"

21- E-Stop

22- E-Stop

29,31,33- 24 VAC Supply

30,32,34- 24 VAC Return

Rx-
Tx+
Rx+
Tx-

+15VDC

+5VDC

-15VDC

COOLANT FLOW (freq) *

I/O PCB

CPU PCB

Wednesday, February 10, 2010

START / STOP

DIVIDED ARC VOLTS

REMOTE ANALOG

CURRENT CONTROL

OK TO MOVE

OK to MOVE -

E-STOP -

E-STOP +

* REMOTE MARKING +

OK to MOVE +

MOMENTARY START / STOP

START / STOP

* REMOTE MARKING -

STOP

START

TB1

TB2

+

-

Signal - Basic ID

Used to identify

GCM 1000 present

DIVIDED ARC V +

DIVIDED ARC V -

REMOTE ANALOG CURRENT CONTROL -

REMOTE ANALOG CURRENT CONTROL +

TB3

PILOT ON

OUTPUT

* OK2

* OK2

HOLD START -

HOLD START +

* +10VDC @ 10 ma.(for CC pot high)

PREFLOW ON -

PREFLOW ON +

DCS1

100VAC - 24 VDC

230 VAC @ 1.25A

for Ext Heat

Exchanger

PCB 5 WK-6276A (partial) INTERFACE PCB

ECO-B1507 - Initial Release DAT 4-16-2010

To J70 (at C9) for

Ext. Heat Exchanger

(HE400) Power

From T2

(Grid F3)

To J59

(Grid C9)

To J55

(Grid E9)

To J55 & TB3

(grids D9, A10)

To J55 & TB3

(grids D9, A10)

From T1

(Grid D2)

From T1 (Grid D2)

From CN12 (Grid E4)

From Sheet 1

Grids (A9, B9 & C9)

From CN7

(Grid E4)

1

2

3

RY4

RY4

RY5

RY5

55

TB1

TB1

TP16

TP16

C.P2

C.P2

K6

K6

FAN2

FAN2

+

-

+V

GN

D

SI

G

FL1

FLOW_TURBINE_PULSE

+V

GN

D

SI

G

FL1

FLOW_TURBINE_PULSE

R

B

G

J70 - HE

J70 - HE

7

2

3

C.P5

C.P5

t

TH1

t

TH1

11

11

TP5

TP5

J59-RAS

J59-RAS

1

2

3

4

5

6

7

8

9

10

11

12

13

14

TP14

TP14

C.P6

C.P6

D23

CNC_START

D23

CNC_START

1

2

CN14

CN14

1

2

J15-CNC

J15-CNC

1

2

3

4

5

6

7

8

9

10

11

12

13

14

TP13

TP13

11

11

GREEN

AC

GREEN

AC

TB4

TB4

66

MC3

MC3

77

D18

RS485 RXD

CN2

CN2

1

2

CN12

CN12

1

2

3

+

RY1

+

RY1

J7

J7

1

2

3

4

5

6

7

8

9

MC1

MC1

10

10

CN5

CN5

1

2

3

4

5

6

PUMP

MOT1

PUMP

MOT1

'

.

TP15

TP15

1

2

3

T1

T1

460

220

0,

13

0,,

100

0.

200

0..

110

0...

120.

0_

24.

0__

24_

0___

120.

0___

TP4

TP4

RY4

RY4

TP9

TP9

TP3

TP3

99

C.P4

C.P4

100K3

100K3

12

12

C.P8

C.P8

TB3

TB3

J5

J5

1

2

3

4

5

CN13

CN13

1

2

3

100K

100K

CN8

CN8

1

2

3

4

66

D2&3

CANBUS ACTIVE

D7

E-STOP_PS

D7

E-STOP_PS

22

TP10

TP10

CN4

CN4

1

2

3

J4

J4

1

3

5

7

MC3 AU

X

MC3 AU

X

77

CN1

CN1

1

3

E-STOP

E-STOP

88

33

1

2

R8

1K 30W

R8

1K 30W

GAS ON

GAS ON

CN2

CN2

1

2

3

4

5

55

33

RY3

RY3

J55-GCM

J55-GCM

1

2

3

4

5

6

7

8

9

10

11

12

13

14

15

16

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

D12

STATUS CODE

D26

HOLD_START

D26

HOLD_START

TP12

TP12

10

10

MC6

MC6

1

2

CN3

CN3

4

5

TP18

TP18

11

D9

GAS_ON

D9

GAS_ON

FAN1

FAN1

+

-

GREEN2

DC

GREEN2

DC

12

12

GREEN1

GAS

GREEN1

GAS

22

CN9

CN9

1

2

3

1K

1K

1

2

3

C.P7

C.P7

J9

J9

1

2

3

4

5

6

C.P3

C.P3

CN8

CN8

1

2

3

4

11

CN1

CN1

1

2

12

12

D11

INITIALIZING / PROGRAMMING

88

1

2

TP1

TP1

+

RY2

+

RY2

77

RED

STATUS

RED

STATUS

YELLOW

TEMP

YELLOW

TEMP

D8

OK_CNC

D8

OK_CNC

OK2 *

OK2 *

44

MC4 AU

X

MC4 AU

X

TP8

TP8

D28

CNC_PREFLOW

D28

CNC_PREFLOW

D13

+5V

T2

T2

600_

460_

0...

230

400__

220__

200__

0___

1

2

TP2

TP2

TP6

TP6

MC5

MC5

MC2

MC2

CN1

CN1

1

2

3

4

5

6

CN9

CN9

1

2

3

4

5

LSW1-1

SW_LIQUID_LEVEL_NC

LSW1-1

SW_LIQUID_LEVEL_NC

11

11

J1

J1

1

2

3

4

5

6

7

8

9

RY1

RY1

99

66

PSR

PSR

CN5

CN5

1

2

3

4

5

6

11

CN12

CN12

1

2

99

RY1-1

RY1-1

MC5 AU

X

MC5 AU

X

J8

J8

1

2

3

4

CN6

CN6

1

2

3

4

22

1

2

MC1 AU

X

MC1 AU

X

D15

PSR

D15

PSR

TP7

TP7

K6-2

K6-2

22

TB2

TB2

TP11

TP11

55

TP17

TP17

RY3

RY3

11

88

TB5

TB5

CN10

CN10

1

2

3

CN11

CN11

1

2

D17

RS485 TXD

J54-REMOTE HMI

J54-REMOTE HMI

1

2

3

4

5

6

7

8

9

10

11

12

13

14

33

CN3

CN3

1

2

3

MC4

MC4

J6

J6

1

5

8

D21

CNC_E-STOP

D21

CNC_E-STOP

44

CN7

CN7

1

2

3

4

1

2

3

10

10

44

RY5

RY5

J6 **

J6 **

1

2

3

4

5

6

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