EP100 Annealing System Your current location:Home > Products
EP100 is a high performance annealing power supply system.
With 0-60V power supply,it can be applied to a variety of wire drawing machine as annealing power.

1.Power circuit wiring diagram


1)Power circuit wiring diagram below 60V 300A:


2)Power circuit wiring diagram above 60V300A:


380V power input R, S, T terminals. Output UV terminals are connected to the inductor and transformer as shown.The secondary side of the transformer connected to the annealling coil. AC annealing voltage 0-60V / AC-600Hz。

3)Terminal diagrams


Terminal controlmode:

X1:Closedmeans run, open meansstop;

X3: External fault input. Closed means external fault , open means no action;

X4: Fault reset. Closedmeans reset,openmeansno action.


2. Select Model


Annealing Power System Model

Model

Rated Input Voltage

Rated CurrentA

Rated Voltage

EP100-50-36

3Phase380Vac

50

60

EP100-100-33

3Phase380Vac

100

30

EP100-75-36

3Phase380Vac

75

60

EP100-150-33

3Phase380Vac

150

30

EP100-100-36

3Phase380Vac

100

60

EP100-200-33

3Phase380Vac

200

30

EP100-150-36

3Phase380Vac

150

60

EP100-300-33

3Phase380Vac

300

30

EP100-200-36

3Phase380Vac

200

60

EP100-400-33

3Phase380Vac

400

30

EP100-250-36

3Phase380Vac

250

60

EP100-500-33

3Phase380Vac

500

30

EP100-300-36

3Phase380Vac

300

60

EP100-600-33

3Phase380Vac

600

30

EP100-500-36

3Phase380Vac

500

60

EP100-1000-33

3Phase380Vac

1000

30

EP100-600-36

3Phase380Vac

600

60

EP100-1200-36

3Phase380Vac

1200

30

EP100-1000-36

3Phase380Vac

1000

60

EP100-2000-33

3Phase380Vac

2000

30

EP100-1500-36

3Phase380Vac

1500

60

EP100-3000-33

3Phase380Vac

3000

30

EP100-2500-36

3Phase380Vac

2500

60

EP100-5000-33

3Phase380Vac

5000

30

EP100-3000-36

3Phase380Vac

3000

60

EP100-6000-36

3Phase380Vac

6000

30

 

3. Function code table

 

  Function code

 Name of Function code

  Function code parameter description

  Unit

 Default

  Type

F0.02

Annealing control mode

0Current closed-loop control

1Voltage closed-loop control

 

1

F0.15

Annealing voltage input mode

0Direct setting voltage

1Line speed calculated indirectly

 

0

F0.07

Digital current referenceF0.02=0F0.06=0

0.00~100.00

A

100.00

Digital current referenceF0.02=1F0.06=0

0.00~60.00

V

60.00

Digital current referenceF0.15=1F0.06=0

0.00~100.00

%

100.00

F9.08

Annealing voltage gain input

0100% (Vref = 100%* VoltageRef)

1VS (Vref = VS* VoltageRef)

3IS (Vref = IS* VoltageRef)

 

0

Extern Select

Vref=F0.06(VS,IS)*F1.10

F0.06

Direct setting voltage input source or annealing line speed input source

0Hold

1HoldVP only used in experiment

2VS0-10V

3IS0-20mA

4485 Communication Refence.

5Hold

6~10Hold

 

2

F00.12

Analog output M0 gain

0.00~100.00used for voltage Display

%

100.00

F00.13

Analog output M1 gain

0.00~100.00used for voltage Display

%

100.00

F0.16

Directly set the maximum voltage

0.00~100.00

V

100.00

F1.02

defined maximum line speed

0.0~6500.0

m/Min

100.0

F1.03

Directly set the maximum line speed

0.0~6500.0

m/Min

1000

F1.10

Direct setting voltage gain G1

0.00~600.00setting voltage gain

%

100.00

Line speed Calculate indirectly

SqrtF0.06+F1.11*d F0.06/dt*F1.12

F1.11

Linear acceleration compensation gain G2

0.00~600.00the input line speed gain

%

100.00

F1.12

Annealing voltage technology coefficient G3

0.00~600.00Annealing voltage technology coefficient G3

A/M/S

100.00



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