background image

121

 Start

 Function

[0]

 DC

 hold

 during

 start

 delay

 time

[1]

 DC

 brake

 during

 start

 delay

 time

*[2]

 Coasting

 during

 start

 delay

 time

[3]

 Start

 frequency/voltage

 clockwise

[4]

 Start

 frequency/voltage

 in

 reference

 direction

122

 Function

 at

 Stop

*[0]

 Coasting

[1]

 DC

 hold

123

 Min.

 Frequency

 for

 Activation

 of

 Function

 at

Stop

0.1

 -

 10

 Hz,

 *0.1

 Hz

126

 DC

 Brake

 Time

60

 s,

 *10

 s

127

 DC

 brake

 cut-in

 Frequency

0.0

 (OFF)

 -

 Par.

 202,

 *OFF

128

 Thermal

 Motor

 Protection

*[0]

 No

 protection

[1]

 Thermistor

 warning

[2]

 Thermistor

 trip

[3]

 ETR

 warning

 1

[4]

 ETR

 trip

 1

[5]

 ETR

 warning

 2

[6]

 ETR

 trip

 2

[7]

 ETR

 warning

 3

[8]

 ETR

 trip

 3

[9]

 ETR

 warning

 4

[10]

 ETR

 trip

 4

130

 Start

 Frequency

0.0

 -

 10.0

 Hz,

 *0.0

 Hz

131

 Initial

 Voltage

0.0

 -

 200.0

 V,

 *0.0

 V

132

 DC

 Brake

 Voltage

100%

 of

 max.

 DC

 brake

 voltage,

 *0%

133

 Start

 Voltage

0.00

 -

 100.00

 V,

 *Dep.

 on

 unit

134

 Load

 Compensation

0.0

 -

 300.0%,

 100,0%

135

 U/f

 Ratio

0.00

 -

 20.00

 at

 Hz,

 *Dep.

 on

 unit

136

 Slip

 Compensation

150

 %

 *

 100

 %-500

 . 

+500%

 of

 rated

 slip

compensation,

 *100%

137

 DC

 Hold

 Voltage

100%

 if

 nax.

 DC

 hold

 voltage,

 *0%

138

 Brake

 Cut

 Out

 Value

0.5

 -

 132.0/1000.0

 Hz,

 *3.0

 Hz

139

 Brake

 Cut

 In

 Frequency

0.5

 -

 132.0/1000.0

 Hz,

 *3.0

 Hz

140

 Current,

 Minimum

 Value

0%

 -

 100%

 of

 inverter

 output

 current

142

 Leakage

 Reactance

 X

L

0.000

 -

 xxx.xxx

 

Ω

, *Dep-

 on

 motor

143

 Internal

 Fan

 Control

*[0]

 Automatic

[1]

 Always

 switched

 on

[2]

 Always

 switched

 off

144

 Gain

 AC

 Brake

1.00

 -

 1.50,

 *1.30

146

 Reset

 Voltage

 Vector

*[0]

 Off

[1]

 Reset

References

 and

 Limits

200

 Output

 Frequency

 Range

*[0]

 Only

 clockwise,

 0

 -

 132

 Hz

[1]

 Both

 directions,

 0

 -

 132

 Hz

[2]

 Counterclockwise

 only,

 0

 -

 132

 Hz

[4]

 Both

 directions,

 0

 -

 1000

 Hz

[5]

 Counterclokcwise

 only,

 0

 -

 1000

 Hz

201

 Output

 Frequency

 Low

 Limit,

 f

MIN

0.0

 -

 f

MAX

, *0.0

 Hz

202

 Output

 Frequency

 High

 Limit,

 F

MAX

f

MIN

 -

 132/1000

 Hz

 (par.

 200

 

Output

 frequency

 range

,

132

 Hz

203

 Reference

 Range

[0]

 Min.

 reference

 -

 Max.

 reference

[1]

 Analog

 Input

 53

 -Max.

 reference

 -

 +Max.

reference

204

 Minimum

 Reference,

 Ref

MIN

Par.

 100

 [0].

 -100,000.000

 -

 par.

 205

 

Ref

MAX

, *0.000

 Hz

Par.

 100

 [1]/[3],

 -par.

 414

 

Minimum

 feedback

 -

 par.

205

 

Ref

MAX

, *0.000

 rpm/par.

 416

205

 maximum

 Reference,

 Ref

MAX

Par.

 100

 [0].

 Par.

 204

 

Ref

MIN

 -

 1000.000

 Hz

, *50.000

 Hz

Par.

 100

 [1]/[3].

 Par.

 204

 

Ref

MIN

 

Par.

 415

 

Max

Feedback

, *50.000

 rpm/par.

 416

206

 Ramp

 Type

*[0]

 Linear

[1]

 Sin

 shaped

[2]

 Sin

2

207

 Ramp-up

 Time

 1

0.02

 -

 3600.00

 s,

 *

 3.00

 s

 (VLT

 2803

 -

 2875),

 *

 10.00

(2880

 -

 2882)

208

 Ramp-down

 Time

 1

0.02

 -

 3600.00

 s,

 *

 3.00

 s

 (VLT

 2803

 -

 2875),

 *

 10.00

(2880

 -

 2882)

209

 Ramp-up

 Time

 2

0.02

 -

 3600.00

 s,

 *

 3.00

 s

 (VLT

 2803

 -

 2875),

 *

 10.00

(2880

 -

 2882)

210

 Ramp-down

 Time

 2

0.02

 -

 3600.00

 s,

 *

 3.00

 s

 (VLT

 2803

 -

 2875),

 *

 10.00

(2880

 -

 2882)

211

 Jog

 Ramp

 Time

0.02

 -

 3600.00

 s,

 *

 3.00

 s

 (VLT

 2803

 -

 2875),

 *

 10.00

(2880

 -

 2882)

212

 Quick-stop

 Ramp-down

 Time

0.02

 -

 3600.00

 s,

 *

 3.00

 s

 (VLT

 2803

 -

 2875),

 *

 10.00

(2880

 -

 2882)

213

 Jog

 Frequency

0.0

 -

 Par.

 202

 

Output

 Frequency

 High

 Limit,

 f

MAX

214

 Reference

 Function

*[0]

 Sum

[1]

 Relative

[2]

 External/preset

215-218

 Preset

 reference

 1-4

0.0

 -

 400.0

 Hz

 *

 0.0

 Hz-100.00%

 -

 +100.00%,

 *

 0.00%

219

 Catch

 Up/Slow

 Down

 Reference

0.00

 -

 100%

 of

 the

 given

 reference,

 *

 0.00%

221

 Current

 Limit,

 I

LIM

xxx.x%

 of

 par.

 105,

 *

 160%

223

 Warning,

 Low

 Current,

 I

LOW

0.0

 -

 par.

 224

 

Warning:

 High

 Current,

 I

HIGH

, *

 0.0

 A

224

 Warning:

 High

 Current,

 I

HIGH

I

MAX

, *

 I

MAX

225

 Warning:

 Low

 Frequency,

 f

LOW

0.0

 -

 par.

 226

 

Warn.:

 High

 frequency,

 f

HIGH

, *0.0

 Hz

226

 Warning:

 High

 Frequency

 f

HIGH

If 

par.

 200

 =

 [0]/[1].

 Par.

 225

 

f

LOW

 -

 132

 Hz,

 *

 132.0

Hz If 

par.

 200

 [2]/[3].

 Par

 225

 

f

LOW

 -

 1000

 Hz,

 *

 132.0

 Hz

227

 Warning:

 Low

 Feedback,

 FB

LOW

0.0

 -

 400.0

 Hz

 *

 0.0

 Hz-100,000.000

 -

 par.

 228

 

Warn.:

FB

HIGH

, *

 -4000.000

228

 Warning:

 High

 Feedback,

 FB

HIGH

Par.

 227

 

Warn.:

 FB

LOW

 -

 100,000.000,

 *

 4000.000

229

 Frequency

 Bypass,

 Bandwidth

(OFF)

 -

 100

 Hz,

 *

 0

 Hz

230

 -

 231

 Frequency

 Bypass

 1

 -

 2

100

 Hz,

 *0.0

 Hz

 

Inputs

 and

 Outputs

302

 Terminal

18

 Digital

 Input

[0]

 No

 function

[1]

 Reset

[2]

 Coasting

 stop

 inverse

[3]

 Reset

 and

 coasting

 inverse

[4]

 Quick-stop

 inverse

[5]

 DC

 braking

 inverse

[6]

 Stop

 inverse

*[7]

 Start

[8]

 Pulse

 start

[9]

 Reversing

[10]

 Reversing

[11]

 Start

 Clockwise

[12]

 Start

 counterclockwise

[13]

 Jog

[14]

 Freeze

 reference

[15]

 Freeze

 output

 frequency

[16]

 Speed

 up

[17]

 Speed

 down

[19]

 Catch

 up

[20]

 Slow

 down

[21]

 Ramp

 2

[22]

 Preset

 ref,

 LSB

[23]

 Preset

 ref,

 MSB

[24]

 Preset

 reference

 on

[25]

 Thermistor

[26]

 Precise

 stop

[27]

 Precise

 Start

 Stop

[31]

 Selection

 of

 Set-up,

 LSB

[32]

 Selection

 of

 Set-up,

 MSB

[33]

 Reset

 and

 start

[34

 Pulse

 counter

 start

303

 Terminal

 19

 Digital

 Input

See

 par.

 302

 *

 [9]

 Reversing

Control Panel Operations

Quick Guide

22

Danfoss A/S © Rev. 2014-03-18 All rights reserved.

MG28M202

5

5

Содержание VLT 2800

Страница 1: ...MAKING MODERN LIVING POSSIBLE Quick Guide VLT 2800 www danfoss com drives...

Страница 2: ......

Страница 3: ...ables 9 4 Electrical Installation 10 4 1 Electrical Installation in General 10 4 2 Power Cables 10 4 3 Mains Connection 12 4 4 Motor Connection 12 4 5 Parallel Connection of Motors 12 4 6 Motor Cables...

Страница 4: ...27 7 1 1 Mains Supply 200 240 V 27 7 1 2 Mains Supply 380 480 V 27 7 2 General Specifications 28 7 3 Special Conditions 32 7 3 1 Aggressive Environments 32 7 3 2 Derating for Ambient Temperature 32 7...

Страница 5: ...are available to understand advanced frequency converter functions and programming VLT 2800 Design Guide VLT 2800 Filter Instruction Brake Resistor Manual Profibus DP V1 Manual Profibus DP Manual VLT...

Страница 6: ...nce must be performed by qualified personnel only WARNING UNINTENDED START When the frequency converter is connected to AC mains DC power supply or load sharing the motor may start at any time Uninten...

Страница 7: ...the procedures in this manual CAUTION INTERNAL FAILURE HAZARD An internal failure in the frequency converter can result in serious injury when the frequency converter is not properly closed Before app...

Страница 8: ...with enclosure IP20 must be integrated in cabinets and panels IP20 is not suitable for remote mounting In some countries for example in the USA units with enclosure NEMA 1 are approved for remote moun...

Страница 9: ...AC VLT 2805 2815 200 191 75 60 168 7 5 4 5 8 4 4 5 VLT 2822 2840 267 5 257 90 70 168 8 6 5 5 11 4 5 5 5 VLT 2855 2875 267 5 257 140 120 168 8 6 5 5 11 4 5 5 5 VLT 2880 2882 505 490 200 120 244 7 75 7...

Страница 10: ...IP21 Solution Type Code number A B C VLT 2803 2815 200 240 V VLT 2805 2815 380 480 V 195N2118 47 80 170 VLT 2822 200 240 V VLT 2822 2840 380 480 V 195N2119 47 95 170 VLT 2840 200 240 V VLT 2822 PD2 VL...

Страница 11: ...b J K L M N 75 45 6 190 60 16 24 12 192H4720 A B C a D E F G 20 273 20 5 5 8 303 25 313 H I b J K L M N 90 50 6 257 70 16 24 12 192H4893 A B C a D E F G 20 273 20 5 5 8 303 25 313 H I b J K L M N 140...

Страница 12: ...Nm Torque Control Cables Nm 2803 2875 Power mains brake 0 5 0 6 0 22 0 25 Ground 2 3 2880 2882 2840 PD2 Power mains brake 1 2 1 5 Ground 2 3 4 2 Power Cables NOTICE The power terminals can be removed...

Страница 13: ...5 VLT 2840 200 240 V PD2 VLT 2880 2882 380 480 V Illustration 4 6 Electrical Connections VLT 2880 2882 and 2840 PD2 Fit screened armoured cable from the motor to the motor terminals of the frequency...

Страница 14: ...n in the VLT 2800 Design Guide for further details 4 4 Motor Connection Connect the motor to terminals 96 97 98 Connect ground to terminal 99 See chapter 7 2 General Specifications for correct dimensi...

Страница 15: ...lator or motor relay the screen must be continued at the lowest possible HF impedance 4 7 Motor Thermal Protection The electronic thermal relay in the frequency converter has received the UL approval...

Страница 16: ...ket for the relay must cover the first row of control card terminals otherwise the galvanic isolation PELV cannot be maintained Max cable diameter 4 mm 4 9 Grounding Comply with the following at insta...

Страница 17: ...borne 150 kHz 30 MHz Radiated 30 MHz 1 GHz Cable borne 150 kHz 30 MHz Radiated 30 MHz 1GHz 3 x 480 V version with 1B RFI filter Yes 50 m Yes 50 m Yes 50 m No Table 4 6 EMC Emission Compliance 1 For VL...

Страница 18: ...ood electrical contact from the installation plate through the installation screws to the metal cabinet of the frequency converter Use starwashers and galvanically conductive installation plates Do no...

Страница 19: ...JDDZ RK1 JDDZ 2805 2820 KTS R20 JKS 20 JJS 20 FNQ R 20 KTK R 20 LP CC 20 5017906 0 20 KLS R20 ATM R25 A6K 20R 2855 2875 KTS R25 JKS 25 JJS 25 5017906 0 25 KLS R25 ATM R20 A6K 25R 2880 2882 KTS R50 JK...

Страница 20: ...3 digits To see the value press CHANGE DATA The CHANGE DATA key is also used for confirming a change of parameter settings are used for selecting parameters and for changing parameter values These ke...

Страница 21: ...er is in Auto mode where the reference signal is given externally analog or digital via the control terminals However in Hand mode it is possible to give the reference signal locally via the control p...

Страница 22: ...rence 5 2 Motor Start Press START to start the motor Set the motor speed by adjusting parameter 003 Local Reference Check whether the direction of rotation of the motor shaft is clockwise If not excha...

Страница 23: ...eedback unit 013 Local Control 0 Local not active 1 Local control and open loop without slip compensation 2 Remote operated control and open loop without slip compensation 3 Local control as par 100 4...

Страница 24: ...0 000 Hz Par 100 1 3 Par 204 Ref MIN Par 415 Max Feedback 50 000 rpm par 416 206 Ramp Type 0 Linear 1 Sin shaped 2 Sin 2 207 Ramp up Time 1 0 02 3600 00 s 3 00 s VLT 2803 2875 10 00 2880 2882 208 Ramp...

Страница 25: ...min max 0 20 mA 2 External reference min max 4 20 mA 3 Feedback min max 0 20 mA 4 Feedback min max 4 20 mA 5 Output frequency 0 max 0 20 mA 6 Output frequency 0 max 4 20 mA 7 Output current 0 I INV 0...

Страница 26: ...428 F3 frequency par 104 427 U3 Voltage 0 0 999 0 V par 103 428 F3 Frequency Par 426 F2 frequency 1000 Hz par 104 437 Process PID Normal Inverse Control 0 Normal 1 Inverse 438 Process PID Anti Windup...

Страница 27: ...T X X Short circuit on the motor terminals or in the motor 17 Serial communication timeout STD BUS TIMEOUT X X No serial communication to the frequency converter 18 HPFB bus timeout HPFB TIMEOUT X X N...

Страница 28: ...in 3 ways 1 Via the operating key STOP RESET 2 Via a digital input 3 Via serial communication It is also possible to select an automatic reset in parameter 405 Reset function When a cross appears in b...

Страница 29: ...ency 95 95 95 95 95 95 95 95 95 Power loss at 100 load W 24 35 48 69 94 125 125 231 231 Weight kg 2 0 2 0 2 0 2 0 2 0 3 7 6 0 6 0 18 5 Enclosure type IP 20 IP 20 IP 20 IP 20 IP 20 IP 20 IP 20 IP 20 IP...

Страница 30: ...0 Supply voltage VLT 2805 2840 R5 380 400 V 10 Supply frequency 50 60 Hz 3 Hz Max imbalance on supply voltage 2 0 of rated supply voltage True Power Factor 0 90 nominal at rated load Displacement Powe...

Страница 31: ...ccuracy of analog inputs Max error 1 of full scale Scan interval 13 3 m The analog inputs are galvanically isolated from the supply voltage PELV and other high voltage terminals See section Galvanic I...

Страница 32: ...lly isolated from the supply voltage PELV but has the same potential as the analogue and digital inputs and outputs See section Galvanic Isolation in the Design Guide Control card 10 V DC output Termi...

Страница 33: ...speed Speed control range closed loop 1 120 of synchronous speed Speed accuracy open loop 150 3600 RPM Max error of 23 RPM Speed accuracy closed loop 30 3600 RPM Max error of 7 5 RPM All control char...

Страница 34: ...s on existing electrical installations 7 3 2 Derating for Ambient Temperature The ambient temperature measured over 24 hours should be at least 5 C lower than the max ambient temperature If the freque...

Страница 35: ...I IT mains 17 L Leakage current 5 M Mains connection 12 Mechanical installation 6 Menu mode 19 Motor cable 13 Motor coil 7 Motor connection 12 Motor thermal protection 13 Motors parallel connection 1...

Страница 36: ...to products already on order provided that such alterations can be made without subsequential changes being necessary in specifications already agreed All trademarks in this material are property of...

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