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D - 1                                                                                                                            

D I A G R A M                                                              

D - 1

OPTIMARC

®

CV355P

Rev.01

STATUS

 LED

R

G5964-65

A.01

_

26A

27

25A

+

OUTPUT CHOCK

L1

AC 220V

RECEPTACLE

SHUNT

600A 60mV

SWITCH

29

27

28

SWITCH

BOARD

5-

4+

L3

L2

L1

223

221

RECTIFIER

26

+

-

26

83

82

4

220C

221C

30 OHM

200 W

220B

221B

21

20

19

21A

29A

207

209

223

221

33
34

283

284

J21-1

J21-4

201

204

2

1

209

207

220A

J21-6

J27-1

J27-2

207

209

J23

-1

J23

-2

19

20

21

X2

X4

~1
~2
~3

+

-

+

-

H

L

FAN

U

N

B

G

INPUT

RECTIFIER

FUSE

2A/250V

U
V
W

CASE BACK

FRAME

W V U

L3

L2

L1

G1

X1

MAIN

TRANSFORMER

X4

1

2

X2

X3

OUTPUT

RECTIFIER

220A

1

2

~380V

6

7

AUXILIARY

TRANSFORMER

4

5  ~36V 3A

 ~220V 1A

20A

29

28

RECTIFIER

-

+

34

33

9

8

33

8

9

 ~36V 0.5A

258

265

91

92

93

J1-8

J5-1

J5-2

J5-3

J5-4

J5-5

J4-4

J4-3

J4-5

258

264

91

92

93

J2-5

J5-6

83

82

J6-3
J6-5

J6-2

J6-4

J6-1

28

3

28

4

265

264

WIRE SIZE

1.0

ARC CONTROL

J10-4
J10-5

J10-7

J10-6

J10-8

DISPLAY

BOARD

271
274

272
273
275

DATA

CLOCK

ENABLE

+15V

R

OT

O

M

DI

O

N

EL

OS 

SA

G

2.

5K

10

K

GAS PU

RGE

C

O

LD

INC

H

RE

G

GI

RT

91

92

94

93

96

95

<1<

<2<

<3<

<4<

<5<

<6<

WIRE FEEDER

CONNECTOR

GSA/MOTOR

POT/SWITCH

+/-10V

+15V

+24V

+50V

BLAKE

19.5KHZ

DRIVE

S1

1   2   3   4   5   6   7   8

ON

CONTROL BOARD

xx

xx

xx

x

ST

L

OV 

C

RA

K5 

AR

C CUR

RENT

 5K

K7.

4

266

266

+15V

J2-7

CRATER VOLTAGE

CRATER CURRENT

10 KOhm

10 KOhm

10 KOhm

J2-4

224

288

225

255

91

93

94

95

96

J7

-4

J7

-3

J7

-1

J7

-2

H

L

+50V

+15V

93B

93A

95A

95B

   OPTIMARC CV355P WIRING SCHEMATIC

20C

POSITIVE

NEGATIVE

0.8

1.2

5P ROTARY SWITCH

J3-1

OPTIONAL

J3-3

J3-2

GMAW

293

292

291

293

292

291

FCAW-G

J3-7

296

296

J2-6

256

J2-9

259C

J2 0-13

J20-5

258

258

258

258

258

268
267

CLOSED= 4 STEP

257

J4-1

257

J4-2

257

260
261

CLOSED = CO2/Ar

J1-9

221A

220A
221A

J21-3

21A

20A

B

B

21B

20B

288

254A

256

259A

254A
256
259A

255

257

255

257

257

257

257

260

261

260

261

258

258

258

258

258

258

258

268
267

258

258

258

258

258

258

258

268
267

VIEW OF CONNECTOR ON PCB

ELECTRICAL SYMBOLS PER E1537

OHMS/WATTS

RESISTORS:

MFD/VOLTS

CAPACITORS:

8

LATCH

EXAMPLE: PIN 7 OF

CONNECTOR J5

3

2

LEAD COLORING CODE:

B-BLACK

2

1

8

G-GREEN

O-ORANGE
R-RED

CONNECTOR PIN

NUMBER:

7

14

U-BLUE

Y-YELLOW

W-WHITE

1

3

J5

N-BROWN

ALL COMPONENTS VIEWED FROM REAR.

FERRITE

BEAD

SPIKE

BLOCKER

G

1) ON

 = PREFLOW

2) ON

= LONG CABLE WELD MODE

3) ON

= CRATER REPLS MODE

4) ON

 = TEST MODE

5) ON

 = SYNERGIC

6) ON

 = FAST RUN-IN

7) ON

 = 24VWIRE FEEDER APPLICATION

8) ON

 = WIRE FEED SPEED CALIBRATION

THERMAL

 LED

J2 0-12

J20-4

+15V

227
226

259B

254C

254B

J1-4
J1-5

xx

xx

xx

x

TH

ER

M

O

ST

AT

#2

228

225A

21A

20B

21B

COMPONENT

VALUE UNITE:

TH

ER

M

O

ST

AT

#1

FERRITE

BEAD

FERRITE

BEAD

SPIKE

BLOCKER

J3-4

PULSE(STEEL)

J3-5

295

294

295

294

PULSE(STAINLESS STEEL)

FUSE

8A/250V

26

25

J20-6

+15V

J20-14

232

231

25

OUTPUT

INPUT

NOTE:  This diagram is for reference only.  It may not be accurate for all machines coved by this manual.  The specific diagram for a particular code is pasted inside the machine on one of the enclosure panels.  If the diagram is illegible, 

contact the Lincoln Electric Service Department for a replacement.

The product performance data of this brochure and related attachments are from LINCOLN ELECTRIC application engineering laboratory.

Except for special instructions, experiments on welding machines are conducted in accordance with the general standard of IEC60974-1;  experiments on welding consumables are conducted in accordance with the general standard of AWS; for specific applicable standards on welding consumables please refer to the product page.

The product performance data of this website and related attachments are from LINCOLN ELECTRIC American application engineering laboratory.

Summary of Contents for OPTIMARC CV355P

Page 1: ... com cn Copyright 2020 The Shanghai Lincoln Electric Company Safety Depends on You Lincoln arc welding and cutting equipment is designed and built with safety in mind However your overall safety can be increased by proper installation and thoughtful operation on you part DO NOT INSTALL OPERATE OR REPAIR THIS EQUIPMENT WITHOUT READING THIS MANUAL AND THE SAFETY PRECAUTIONS CONTAINED THROUGHOUT And ...

Page 2: ... please record your equipment identification information in the table below Model Name Code Serial Number can be found on the machine rating plate Model Name ƶ OPTIMARC CV355P Code Serial number Date Where Purchased Authorized dealer s shop Declaration of conformity THE SHANGHAI LINCOLN ELECTRIC COMPANY Designed in conformance with the following norm GB T 15579 1 2013 EN 60974 1 THE SHANGHAI LINCO...

Page 3: ...i SAFETY i OPTIMARC CV355P Rev 01 ...

Page 4: ...ii SAFETY ii OPTIMARC CV355P Rev 01 ...

Page 5: ...iii SAFETY iii OPTIMARC CV355P Rev 01 ...

Page 6: ...MARC CV355P Input Voltage Frequency Hz 342V 456 5V 50Hz or 60Hz Maximum Input Ampere 30A Maximum Effective Supply Current 24A 60 C Copper Wire in Conduct Sizes 10mm2 Fuse or Breaker Size Super Lag 50A Grounding Conductor Size 6mm2 PHYSICAL DIMENSIONS OPTIMARC CV355P Height 540mm Width 340mm Depth 800mm Weight 47Kg Temperature Range Operating Temperature Range 10 C 40 C Storage Temperature Range 25...

Page 7: ...material that can be drawn into the welder should be kept to a minimum Failure to observe these precautions can result in excessive operating temperatures and nuisance shutdowns Locate the OPTIMARC machine away from radio controlled machinery Normal operation of the welder may adversely affect the operation of RF controlled equipment which may result in bodily injury or damage to the equipment STA...

Page 8: ...ontact Poor work lead connections can result in poor welding performance To avoid interference problems with other equipment and to achieve the best possible operation route all cables directly to the work and wire feeder Avoid excessive lengths and do not coil excess cable Cable sizes are increased for greater lengths primarily for the purpose of minimizing cable drop Minimum work and electrode c...

Page 9: ... and TABLE A 2 for more details TABLE A 2 Power Source Wire Feeder Pin Function Lead Pin Function Lead 1 pulse signal for motor control 91 1 Positive terminal of motor 91 2 pulse signal for gas solenoid 92 2 Connected to one lead of gas solenoid 92 3 control signal for gas purge cold inch and trigger 93 3 Control signals output gas purge cold inch and trigger 93 4 10V control signal for arc curren...

Page 10: ...NG INFORMATION AT THE FRONT OF THIS OPERATOR S MANUAL DUTY CYCLE The duty cycle of a welding machine is the percentage of time in a 10 minute cycle at which the welder can operate the machine at rated welding current 60 duty cycle Weld for 6 minutes Break for 4 minutes Excessive extension of the duty cycle will cause the thermal protection circuit to activate THERMAL PROTECTION The OPTIMARC machin...

Page 11: ...f OPTIMARC CV355P 7 DIGITAL INDICATION VOLTAGE METER This meter displays the preset voltage before a weld and the actual voltage during a weld The actual voltage is displayed for 5 seconds after a weld ends During this time the display flash 8 SYNERGIC This status light illuminates when the power source is set for synergic operation Synergic operation is controlled by DIP switch 5 on the control b...

Page 12: ...rew into the case hole This insulation box must be secure before turning on the main power supply 20 AUX VOLTAGE RECEPTACLE Export type machine This is a 220V 200W max auxiliary power output socket for plugging gas heater Only Plug the correct gas heater into this receptacle DO NOT plug other electric devices into the receptacle otherwise damage may occure to the OPTIMARC machine 21 FUSE AND FUSE ...

Page 13: ...B 3 OPERATION B 3 OPTIMARC CV355P Rev 01 FIGURE B 3 FIGURE B 4 FIGURE B 5 ...

Page 14: ...rater voltage and current to fill this crater For more details please see FIGURE B 5 4 SPECIAL FUNCTION TEST It enables a test procedure to test the control knobs and the toggle switches when the DIP switch 4 is ON and the other DIP switches are OFF The DIP switch should be OFF when user prepares to weld 5 SYNERGIC OFF Amps and volts knobs on feeder are independent ON Preset of volts knob is tied ...

Page 15: ...t voltage is proper according to the Rating Plate 2 If the Thermal LED is also lit see Thermal LED is Lit section 3 If an error code is also present Contact your local authorized Lincoln Electric Field Service facility for technical assistance Machine won t produce full output 1 Input voltage may be too low limiting output capability of the power source Make certain that the input voltage is prope...

Page 16: ...ing procedure 4 PC board in machine possibily at fault If PC board in machine is at fault contact an authorized Lincoln Electric Service facility for technical assistance The meter displays ERR 031 Primary over current from switchboard Contact your local authorized Lincoln Electric Field Service facility for technical assistance The meter displays ERR 032 Low input line voltage error from control ...

Page 17: ...254A 256 259A 254A 256 259A 255 257 255 257 257 257 257 260 261 260 261 258 258 258 258 258 258 258 268 267 258 258 258 258 258 258 258 268 267 VIEW OF CONNECTOR ON PCB ELECTRICAL SYMBOLS PER E1537 OHMS WATTS RESISTORS MFD VOLTS CAPACITORS 8 LATCH EXAMPLE PIN 7 OF CONNECTOR J5 3 2 LEAD COLORING CODE B BLACK 2 1 8 G GREEN O ORANGE R RED CONNECTOR PIN NUMBER 7 14 U BLUE Y YELLOW W WHITE 1 3 J5 N BRO...

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