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3.3

Wiring diagram for the basic unit

Fig. 2: EMC-compliant installation in residential areas (to class B limit)

00402BEN

3.4

Functional description of the basic unit terminals

Terminal

Code

Function

X1 1

UR

Reference v10 V short-circuit-proof, current rating I

max

= 15 mA

2

FSINA

Analogue input frequency setpoint, input mode selectable
(via jumper J1/J2 and PARA 04 FFSEL): 0...10 V / 2...10 V / 0...20 mA / 4...20 mA

3

STR

Binary input START CW:

“0" = 0...2 V / ”1" = 8...30 V

4

STL

Binary input START CCW: “0" = 0...2 V / ”1" = 8...30 V

5

S1IND

Binary input 1:

“0" =

0...2 V ”1" = 8...30 V
selectable fixed
frequencies:1/2/3

+

6

S2IND

Binary input 2:

(PARA 20/23/24/27)

7

Ground

Jumpered with X1:11 internally

8

9

S1OUT

S2OUT

Binary output 1

Important: not short-circuit-proof, do not apply external

source voltage!

I

max

= 50 mA

Control functions (PARA 62/63 0...10):

0 = no function / 1 = collective fault / 2 = output voltage/
3 = CCW / 4 = CW / 5 = motor at rest/

Binary output 2

6 = setpoint reached / 7 = frequency limit / 8 = current limit/

I

max

= 50 mA

9 = brake chopper active / 10 = disconnection on faults

10

SOUTA

Analog /
binary output
I

max

= 2 mA (analog)

Imax = 15 mA (binary)

Important: not short-circuit-proof, do not apply external
source voltage!
Control functions (PARA 61 0...7):

0 = no function / 1 = output frequency analog or PWM/
2 = brake chopperactive / 3 = 6 times the output freq./
4 = apparent current / 5 = active current /

6 = active power / 7 = cannot be activated.

11

Ground

Jumpered with X1:7 internally

X3

Connection of FBG 01 keypad

X5 L1, N, PE

Connection to the supply 1 x 230 V

AC

U, V, W, PE*

Motor connection

+V

DClink

/-V

DC link

BRC 03 brake chopper connection including braking resistor

V

DClink

/ PTC

PTC thermistor connection, if no PTC thermistor is used, jumper terminals

(default

condition)!

PE*

Shield connection

M

X 5

X 3

L 1

N

PE

PE

U

V

W

-UZK

+UZK

PTC

X 5

X 1

PE*

MOVITRAC    0500

®

L 1
N
PE

F 11

K 11

S1OUT

S2OUT

SOUT

A

+10 V

FSINA

STR

STL

S1IND

S2IND

1 2 3 4

5 6 7 8

9 10 11

S11

S12

S13

S14

R11

K13

K12

24 V

-

+

10

9

PTC

7

8

3 phase

Connection of
keypad FBG 01

Brake chopper
BRC 03 with
braking  resistor

Brake connection

Sec. 3.5

Input filter NF...-...

3

Electrical Installation

MOVITRAC

®

0500 - Operating Instructions

9

Summary of Contents for MOVITRAC 0500

Page 1: ...MOVITRAC 0500 Frequency Inverters Operating Instructions Edition 01 97 0922 3916 0197...

Page 2: ...underneath terminal strip X1 8 Terminal strip X1 electronic control connections 9 Terminal strip X5 power section Terminal strips X1 and X5 are included with the unit they are placed on the unit and s...

Page 3: ...ed potentiometer 15 4 3 Setting the signal mode for FSINA and SOUTA 16 4 4 Complete parameter list 17 4 4 1 Menu branch VAL display parameters 17 4 4 2 Menu branch PARA adjustable parameters 18 5 Oper...

Page 4: ...rves the right to make alterations to the technical data and design which serve the cause of technical progress Storage instructions Permissible storage temperature 25 C 70 C Permissible humidity No r...

Page 5: ...mpliance with EMC regulations Sec 3 2 with EMC Directive 89 336 EEC Type designation Example MOVITRAC 0504 231 1 00 Version 00 standard Quadrants 1 1 quadrant Type of supply 1 single phase Rated suppl...

Page 6: ...ng displays H1 and H2 or any of the other status indicators go out this does not mean that the inverter is disconnected from the supply and is de energized Protective measures and equipment must be ch...

Page 7: ...inverter is inhibited Only an inductive resistive load motor may be connected at the inverter output no capacitive load For jogging use the commands clockwise STR counterclockwise STL The mains conta...

Page 8: ...1 input filter MOVITRAC 0508 231 1 00 NF008 231 input filter Mount the NF input filter close to the corresponding MOVITRAC 0500 but outside the minimum ventilation space required Keep the connecting l...

Page 9: ...t limit Imax 50 mA 9 brake chopper active 10 disconnection on faults 10 SOUTA Analog binary output Imax 2 mA analog Imax 15 mA binary Important not short circuit proof do not apply external source vol...

Page 10: ...e control an external 24 V supply is necessary The binary output drives an external brake relay K1 24 V 1 2 W max 50 mA This relay controls the brake via a brake contactor K2 The brake must be actuate...

Page 11: ...the supply 5 Start the drive in the direction of rotation you require X1 3 STR or X1 4 STL 1 The drive will start if setpoint input 0 1 V 0 5 Hz or one of the fixed setpoints is selected Important if...

Page 12: ...urn 4 Labelling field for bar graph display 5 Arrow key up 6 Key Start Enter 7 Optional ParaCard PAC 01 8 Connecting cable FBG 01 inverter 9 Dimension for bar graph display 10 5 digit actual value and...

Page 13: ...menu branches or parameters Cancels changes The menu is structured as follows VAL display values PARA adjustable parameters In parameter 01 MODE operating mode three operating modes can be selected T...

Page 14: ...changed when the inverter is inhibited When the unit is enabled and started the parameters can only be read Adjustable parameters Sec 4 4 2 Manual operation can only be selected if the unit is inhibi...

Page 15: ...The inverter will decelerate to 0Hz using ramp 33 RDEC1 reverse and accelerate to the frequency input with ramp 32 RACC1 The inverter will decelerate to standstill with ramp 33 RDEC1 Fig 7 Manual ope...

Page 16: ...10 kW or external voltage source 0V STOP output inhibited 0 1 V FMIN 10 V FMAX 2 10 V external power supply 0 20 mA 4 20 mA zero live signal Analog binary output SOUTA X1 10 Input signal Jumper J3 J4...

Page 17: ...X 16 PW Active power 0 18000 W X X X 17 VZK DC link voltage 0 350 900 V X X X 18 TIME Operating time from reset 0 0 960 0 h X X X 19 TOP Operating hours 0 60000 h X 66 SIN Not for use X 68 FIN X 83 S...

Page 18: ...cy 0 00 999 00 X X 29 FMAX2 Maximum frequency 4 00 50 00 999 00 Ramp generators X X 31 KSEL Characteristic set selector 0 1 2 3 0 always data set 1 1 data set 2 if 12 F 26 FF6 2 data set 2 if S2IND 1...

Page 19: ...MC0508 0 90 3 20 A Control functions X X 61 SOUTA Analog output X1 10 0 1 7 Sec 3 4 4 3 X X 62 S1OUT Digital output 1 X1 8 0 1 10 Sec 3 4 X X 63 S2OUT Digital output 2 X1 9 1 7 10 Sec 3 4 X X 64 SINA...

Page 20: ...RDEC1 or 35 RDEC2 reverses and accelerates with ramp 32 RACC1 or 34 RACC2 STR and STL 1 Important not fail safe Deceleration with deceleration ramp Drive decelerates with ramp 33 RDEC1 or 35 RDEC2 STR...

Page 21: ...r overtemperature Motor overloaded check drive or check PTC thermistor connection or jumper X5 PTC IIIIIIII IIIIIIII 8 times Inverter overtemperature Inverter overloaded check installation and ambient...

Page 22: ...patible ERR96 Connection to PAC 01 interrupted ERR97 PAC 01 invalid CS test Inverter faults E CPU Fault in processor pcb AUTOSTART in 72 START causes reset 1 E OFF Undervoltage no entry in fault memor...

Page 23: ...eration BRC 03 with integrated braking resistor Interference emission with EMC compliant installation mains input filter screened motor cable to class B limit to EN 55011 EN 55014 complies with EN 500...

Page 24: ...Imax 50 mA Important not short circuit proof not external voltage proof Reference potential ground X1 7 or X1 11 Programmable collective fault output voltage CW CCW motor standstill setpoint reached...

Page 25: ...ns 40 x170 mm hole size 4 8 mm For use with MOVITRAC type 0504 231 1 0508 231 1 cdf cyclic duration factor 6 3 NF 231 input filter Input filter type NF 005 231 NF 008 231 Part number 825 881 3 825 882...

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