Thermal dynamics, Ccm module, I/o pcb cpu pcb – Tweco 100 Auto-Cut User Manual
Page 143
![background image](/manuals/595182/143/background.png)
Manual 0-4764
A-35 APPENDIX
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
600
AC120 @ 1A
PLASMA ENABLE
AC13V @ 2A
/PUMP
+15V
+15V
600
/FAN
200-not used
/RAS
COM
200
PRESS OK (GCM 1000)
24VAC
600
24 VAC RE
T
PLASMA ENABLE
+15V
/ AC
/ TEMP
/ STATUS
/ DC
/ GAS - COOLANT
COM
AC200V @ 3A
POT HI (GCM1000)
200
POT WIPER (GCM1000)
POT LOW (GCM 1000)
+15V
- ARC V
- ARC V
0V-A (24V ret)
WORK
To PCB7 CN2-
1
DC 15V
DC 0V
AC120V-GCM
0V-B (120V ret)
To PCB7 CN2-2
AC120V-RAS
0V-RAS (120V ret)
To PCB7 CN2-4
0V-A (24V ret)
To PCB7 CN2-5
NEG ARC VOLTS
To PCB7 TB
3
0V-RAS
AC120V-RAS
FAN + (24 VDC)
NEG ARC VOLT
S
AC24V-GCM
DC 15V
AC24V-GCM
DC 0V
0V-A (24V ret)
AC120V-GCM
0V-B (120V ret)
FAN - (24 VDC)
PILOT (TIP) VOLT
S
0V-B (120V ret)
WORK
AC24V-GCM
AC120V-GCM
To T1 PRI -
0
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
42X1213
Friday, September 25, 2009
2
2
Industrial Park #2
West Lebanon NH 03784
603-298-5711
100A Power Supply 600V CSA (Chopper)
Tuesday, October 03, 2006
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
42X1213
Friday, September 25, 2009
2
2
Industrial Park #2
West Lebanon NH 03784
603-298-5711
100A Power Supply 600V CSA (Chopper)
Tuesday, October 03, 2006
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
42X1213
Friday, September 25, 2009
2
2
Industrial Park #2
West Lebanon NH 03784
603-298-5711
100A Power Supply 600V CSA (Chopper)
Tuesday, October 03, 2006
08:11:44
Thermal Dynamics
D
DAT
ECO-B402 DAT 2/26/07
AB ECO-B448 DAT 4/13/07
AC ECO-B646 GAC 10/31/07
ECO-B1391
T
A
D
D
A
4-24-09
DAT
AE
(F1 Sht 1)
(F1 Sht 1)
PILOT
CONTACTOR
(E2)
INPUT
CONTACTOR
MOMENTARY START / STOP
START / STOP
* REMOTE MARKING -
STOP
START
(D9, A10)
PILOT (TIP) VOLTAGE
COOLANT TEMP
(ON COOLANT
RETURN)
* Only in CCM w/
19X2634 I/O PCB.
Remote Marking
only for DFC 3000
(not isolated)
ISOLATED COMM
+16 to +18VDC
Rx-
Tx+
Rx+
Tx-
CCM MODULE
Signal & GND
Isolated from
Plasma Supply
FROM CN18 PCB3 sht 1
INTERNAL TERMINAL
STRIP TB3
KEY PLUG
+15VDC_ISO
TB1
TB2
(C9, sht 1)
-15VDC_ISO
+
-
RS 485 (2 wire)
uses Tx+ & Tx- only
(used for TSC 3000)
Signal - Basic ID
Used to identify
GCM 1000 present
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)
(F2 Sht 1)
DIVIDED ARC V +
(E2)
(E2)
ISOLATED
VOLTAGES
(D9, A10)
(F2 Sht 1)
DIVIDED ARC V -
REMOTE ANALOG CURRENT CONTROL -
REMOTE ANALOG CURRENT CONTROL +
JUMPER IN
REMOTE
HMI
** RS 485 / 422
on CPU board
19X2554 only.
(A9, sht1
)
(B9, sht1
)
(C9, sht1
)
NEG ARC VOLTS
SW6 - OK to MOVE CONTACTS / VOLTS
SW11 - ANALOG CURRENT SELECT
"B" DEFAULT, "A" REMOTE
TB3
KEY PLUG
Was 7 pin
changed to
14 pin in 2009
SW12 - DIVIDED ARC V RATIO SELECT
(E4)
SW13 - FACTORY ONLY
PCB7 WK-5628
RELAY PCB
(F4)
CIRCUIT COMM (GND)
CN11 34 CKT
CN10 26 CKT
(C9)
PCB 5 WK-5602 (partial) INTERFACE PCB
START / STOP
DIVIDED ARC VOLTS
PILOT ON
OUTPUT
PILOT DEM to PS
ANALOG DEM to CPU
REMOTE ANALOG
CURRENT CONTROL
* OK2
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)
* OK2
CUT DEM to PS
RIBBON CABLE
5
9
8
76
1
2
3
4
SW10-ADDRESS
normally 0
(refer to
manual)
0
TEST SOCKET
HOLD START -
HOLD START +
(A9, sht 1)
UNDIVIDED ARC VOLTS
FOR HEIGHT CONTROLS
* +10VDC @ 10 ma.(for CC pot high)
OK TO MOVE
GND
GND
& CNC COMM
PREFLOW ON -
PREFLOW ON +
PLASMA ENABLE
24 VAC @ 1A
120 VAC @ 100ma.
(Not in all units)
OK to MOVE -
POWER SUPPLY
REAR PANEL
E-STOP -
E-STOP +
TO AC INDICATOR (on PCB6)
* REMOTE MARKING +
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-
OK to MOVE +
+15VDC
+5VDC
-15VDC
COOLANT FLOW (freq) *
I/O PCB
CPU PCB
ECO-B1535
9-25-09
99
D7
E-STOP_PS
D7
E-STOP_PS
TP10
TP10
11
CN4
CN4
1
2
3
10
10
D26
HOLD_START
D26
HOLD_START
OK2 *
OK2 *
TP12
TP12
1
2
GAS ON
GAS ON
33
LED1
LEVEL
LED1
LEVEL
66
CN2
CN2
1
2
3
4
5
88
RY11
RY11
D12
STATUS CODE
D12
STATUS CODE
GREEN1
GAS
GREEN1
GAS
1
2
TP18
TP18
C.P7
C.P7
D9
GAS_ON
D9
GAS_ON
FAN1
FAN1
+
-
GREEN2
DC
GREEN2
DC
D11
INITIALIZING / PROGRAMMING
D11
INITIALIZING / PROGRAMMING
11
22
CN9
CN9
1
2
3
1
2
3
J9
J9
1
2
3
4
5
6
C.P3
C.P3
CN12
CN12
1
2
3
4
99
11
11
CN1
CN1
1
2
1
2
TP1
TP1
+
RY10
+
RY10
77
RED
STATUS
RED
STATUS
YELLOW
TEMP
YELLOW
TEMP
D8
OK_CNC
D8
OK_CNC
TP8
TP8
D28
CNC_PREFLOW
D28
CNC_PREFLOW
22
1K
1K
TP2
TP2
100K5
100K5
J7
J7
1
2
3
4
5
6
7
8
9
44
33
CN10
CN10
1
2
3
55
TP6
TP6
MC2
MC2
CN24
CN24
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
99
88
CN5
CN5
1
2
3
4
5
6
11
CN12
CN12
1
2
D13
+5V
D13
+5V
R8
1K 30W
R8
1K 30W
CN6
CN6
1
2
3
4
77
1
2
MC1 AUX
MC1 AUX
D15
PSR
D15
PSR
66
TP7
TP7
K7-1
K7-1
J54-REMOTE HMI
J54-REMOTE HMI
1
2
3
4
5
6
7
8
9
10
11
12
13
14
RY4
RY4
TP11
TP11
TP17
TP17
RY3
RY3
22
TB5
TB5
CN11
CN11
1
2
J1
J1
1
2
3
4
5
6
7
8
9
RY5
RY5
J6 **
J6 **
1
2
3
4
5
6
CN3
CN3
1
2
3
J5
J5
1
2
3
4
5
J4
J4
1
3
5
7
D21
CNC_E-STOP
D21
CNC_E-STOP
J8
J8
1
2
3
4
CN7
CN7
1
2
3
4
11
11
1
2
3
10
10
TP16
TP16
11
11
1
2
3
22
55
77
RY7
RY7
E-STOP
E-STOP
TB10
TB10
PSR
PSR
TP5
TP5
J59-RAS
J59-RAS
1
2
3
4
5
6
7
8
9
10
11
12
13
14
C.P2
C.P2
K6
K6
+V
GND
SI
G
FL1
FLOW_TURBINE_PULSE
+V
GND
SI
G
FL1
FLOW_TURBINE_PULSE
R
B
G
C.P5
C.P5
12
12
t
TH1
t
TH1
10
10
TP14
TP14
C.P6
C.P6
100K
100K
D23
CNC_START
D23
CNC_START
CN14
CN14
1
2
TP13
TP13
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
12
12
12
12
GREEN
AC
GREEN
AC
44
88
TB4
TB4
66
TB9
TB9
CN2
CN2
1
2
CN12
CN12
1
2
3
11
+
RY1
+
RY1
MC1
MC1
RY9
RY9
TP9
TP9
CN23
CN23
1
2
3
4
5
6
J15-CNC
J15-CNC
1
2
3
4
5
6
7
8
9
10
11
12
13
14
PUMP
MOT1
PUMP
MOT1
'
.
J6
J6
1
5
8
55
TP15
TP15
44
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
33
CN8
CN8
1
2
3
4
TP3
TP3
C.P4
C.P4
C.P8
C.P8
TB3
TB3
CN13
CN13
1
2
3
Art # A-07001_AD
Art # A-07001_AD