background image

1.8  General Technical Data

Protection and features

Electronic thermal motor protection motor protection against overload.

Temperature monitoring of the heatsink ensures that the frequency converter trips in case of overtemperature.

The frequency converter is protected against short-circuits between motor terminals U, V, W.

If a motor phase is missing, the frequency converter trips and issues an alarm.

If a mains phase is missing, the frequency converter trips or issues a warning (depending on the load).

Monitoring of the intermediate circuit voltage ensures that the frequency converter trips if the intermediate circuit
voltage is too low or too high.

The frequency converter is protected against earth faults on motor terminals U, V, W.

Mains supply (L1/L, L2, L3/N)
Supply voltage

200-240 V ±10%

Supply voltage

380-480 V ±10%

Supply frequency

50/60 Hz

Max. imbalance temporary between mains phases

3.0% of rated supply voltage

True Power Factor

≥0.4 nominal at rated load

Displacement Power Factor (cosφ) near unity

(>0.98)

Switching on input supply L1/L, L2, L3/N (power-ups)

maximum 2 times/min.

Environment according to EN60664-1

overvoltage category III/pollution degree 2

The unit is suitable for use on a circuit capable of delivering not more than 100.000 RMS symmetrical Amperes, 240/480 V
maximum.

Motor output (U, V, W)
Output voltage

0-100% of supply voltage

Output frequency

0-200 Hz (VVC

plus

), 0-400 Hz (u/f)

Switching on output

Unlimited

Ramp times

0.05-3600 s

Cable lengths and cross sections
Max. motor cable length, screened/armoured (EMC correct installation)

15 m

Max. motor cable length, unscreened/unarmoured

50 m

Max. cross section to motor, mains*
Connection to load sharing/brake (M1, M2, M3)

6.3 mm insulated Faston Plugs

Max. cross section to load sharing/brake (M4, M5)

16 mm

2

/6 AWG

Maximum cross section to control terminals, rigid wire

1.5 mm

2

/16 AWG (2x0.75 mm

2

)

Maximum cross section to control terminals, flexible cable

1 mm

2

/18 AWG

Maximum cross section to control terminals, cable with enclosed core

0.5 mm

2

/20 AWG

Minimum cross section to control terminals

0.25 mm

2

* See 1.7 Specifications for more information!

Digital inputs (pulse/encoder inputs)
Programmable digital inputs (pulse/encoder)

5 (1)

Terminal number

18, 19, 27, 29, 33,

Logic

PNP or NPN

Voltage level

0-24 V DC

Voltage level, logic'0' PNP

<5 V DC

Voltage level, logic'1' PNP

>10 V DC

Voltage level, logic '0' NPN

>19 V DC

Voltage level, logic '1' NPN

<14 V DC

Maximum voltage on input

28 V DC

Input resistance, R

i

approx. 4 k

Max. pulse frequency at terminal 33

5000 Hz

Min. pulse frequency at terminal 33

20 Hz

Quick Guide

VLT

®

 Micro Drive Quick Guide

16

MG02B702 - VLT

®

 is a registered Danfoss trademark

1

1

Summary of Contents for VLT Micro Drive FC 51 Series

Page 1: ...MAKING MODERN LIVING POSSIBLE Quick Guide VLT Micro Drive...

Page 2: ...4 1 3 5 Connecting to Mains and Motor 6 1 3 6 Control Terminals 6 1 3 7 Power Circuit Overview 8 1 3 8 Load Sharing Brake 8 1 4 Programming 9 1 4 1 Programming with LCP 9 1 7 Specifications 14 1 8 Ge...

Page 3: ...uency switching at high power This will generate a leakage current in the earth connection A fault current in the frequency converter at the output power terminals might contain a DC component which c...

Page 4: ...ed Start While the frequency converter is connected to mains the motor can be started stopped using digital commands bus commands references or via the LCP Disconnect the frequency converter from main...

Page 5: ...5 140 248 9 5 1 For with potentiometer add 7 6 mm Table 1 4 Mechanical Dimensions 1 3 3 Electrical Installation in General NOTE All cabling must comply with national and local regulations on cable cro...

Page 6: ...ation FC 51 Max Fuses UL Max fuses non UL Bussmann Bussmann Bussmann Littel fuse Ferraz Shawmut Ferraz Shawmut 1X200 240 V kW Type RK1 Type J Type T Type RK1 Type CC Type RK1 Type gG 0K18 0K37 KTN R15...

Page 7: ...hten Illustration 1 2 Mounting of Earth Cable Mains and Motor Wires 1 3 6 Control Terminals All control cable terminals are located underneath the terminal cover in front of the frequency converter Re...

Page 8: ...Illustration 1 5 Overview of Control Terminals in PNP configuration and Factory Setting Quick Guide VLT Micro Drive Quick Guide MG02B702 VLT is a registered Danfoss trademark 7 1 1...

Page 9: ...sharing 1 3 8 Load Sharing Brake Use 6 3 mm insulated Faston Plugs designed for high voltage for DC Load Sharing and brake Contact Danfoss or see instruction MI50N for load sharing and instruction MI...

Page 10: ...ccepting changes to parameter settings Pressing OK for more than 1 s enters Adjust mode In Adjust mode it is possible to make fast adjustment by pressing combined with OK Press to change value Press O...

Page 11: ...0 199 100 1 62 Slip Compensation 400 399 100 1 63 Slip Compensation Time Constant 0 05 5 00 s 0 10 s 1 7 Start Adjustments 1 71 Start Delay 0 0 10 0 s 0 0 s 1 72 Start Function 0 DC hold delay time 1...

Page 12: ...f Delay Relay 0 00 600 00 s 0 01 s 5 5 Pulse Input 5 55 Terminal 33 Low Frequency 20 4999 Hz 20 Hz 5 56 Terminal 33 High Frequency 21 5000 Hz 5000 Hz 5 57 Term 33 Low Ref Feedb Value 4999 4999 0 000 5...

Page 13: ...40 Logic Rule Boolean 1 See par 13 01 0 False 30 32 SL Time out 0 2 13 41 Logic Rule Operator 1 0 Disabled 1 And 2 Or 3 And not 4 Or not 5 Not and 6 Not or 7 Not and not 8 Not or not 13 42 Logic Rule...

Page 14: ...nnected working 29 Power board over temp X X X Heat sink cut out temperature has been reached 30 Motor phase U missing X X Motor phase U is missing Check the phase 31 Motor phase V missing X X Motor p...

Page 15: ...3x200 240 V AC 1 At rated load conditions 1 7 2 Mains Supply 3x200 240 V AC Normal overload 150 for 1 min Typical Shaft Output kW PK25 0 25 PK37 0 37 PK75 0 75 P1K5 1 5 P2K2 2 2 P3K7 3 7 Typical Shaft...

Page 16: ...ns Supply 3x380 480 V AC 1 At rated load conditions Normal overload 150 for 1 minute Frequency converter Typical Shaft Output kW P5K5 5 5 P7K5 7 5 P11K 11 P15K 15 P18K 18 5 P22K 22 Typical Shaft Outpu...

Page 17: ...ering not more than 100 000 RMS symmetrical Amperes 240 480 V maximum Motor output U V W Output voltage 0 100 of supply voltage Output frequency 0 200 Hz VVCplus 0 400 Hz u f Switching on output Unlim...

Page 18: ...lay output Programmable relay output 1 Relay 01 Terminal number 01 03 break 01 02 make Max terminal load AC 1 1 on 01 02 NO Resistive load 250 V AC 2 A Max terminal load AC 15 1 on 01 02 NO Inductive...

Page 19: ...the max ambient temperature If the frequency converter is operated at high ambient temperature the continuous output current should be decreased The frequency converter has been designed for operation...

Page 20: ...e spare parts kits 132B0129 M4 frame spare parts kits 132B0130 M5 frame spare parts kits 132B0131 Blank cover 130B2522 MCC 107 filter for 132F0001 130B2522 MCC 107 filter for 132F0002 130B2533 MCC 107...

Page 21: ...g 2 H Hand Mode 11 I IP21 19 Isolated Mains Source 3 IT Mains 3 L Load Compensation 10 Sharing Brake 8 M Main Menu 9 Mains Supply 14 Supply L1 L L2 L3 N 16 Supply 3x200 240 V AC 14 Supply 3x380 480 V...

Page 22: ...istor 10 U UL Compliance 5 V VLT Control Panel LCP 11 19 Control Panel LCP 12 19 Voltage Level 16 W Warnings And Alarms 13 Index VLT Micro Drive Quick Guide MG02B702 VLT is a registered Danfoss tradem...

Page 23: ...www danfoss com drives MG02B702 132R0029 MG02B702 Rev 2012 03 17...

Reviews: