background image

A
C

E

ØD

19

5

B

Application

Rectifiers  are  used  to  connect  DC  units  to  alternating  voltage  
supplies,  for  example  electromagnetic  brakes  and  clutches  
(ROBA-stop

®

,  ROBA-quick

®

,  ROBATIC

®

),  electromagnets,  

electrovalves, contactors, switch-on safe DC motors, etc.

Function

The AC input voltage (VAC) is rectified (VDC) in order to operate DC 
voltage units. Also, voltage peaks, which occur when switching off  
inductive loads and which may cause damage to insulation and 
contacts, are limited and the contact load reduced.

Electrical Connection 

(Terminals)

1 + 2  Input voltage
3 + 4   Connection for an external switch for DC-side switching
5 + 6  Coil
7 - 10  Free nc terminals (only for size 2)

Dimensions 

(mm)

Order Number

__ / 0

2 __ . 0

0

0 . 6

Size

up to 

4

4
5

Half-wave rectifier
Bridge rectifier

Size

A

B

C

ØD

E

1

34

30

25

3,5

4,5

2

54

30

44

4,5

5,0

3/4

64

30

54

4,5

5,0

Technical Data

Bridge rectifier

Half-wave rectifier

Calculation output voltage

VDC = VAC x 0,9

VDC = VAC x 0,45

Type

1/05

/05

1/04

/04

3/04

4/04

Max. input voltage

230 VAC

230 VAC

400 VAC

400 VAC

500 VAC

600 VAC

Max. output voltage

207 VDC

207 VDC

180 VDC

180 VDC

225 VDC

270 VDC

Output current at ≤ 50°C

2,5 A

2,5 A

3,0 A

4,0 A

4,0 A

4,0 A

Output current at max. 85 °C 

1,7 A

1,7 A

1,8 A

2,4 A

2,4 A

2,4 A

Max. coil capacity at 115 VAC ≤ 50 °C

260 W

260 W

-

-

-

-

Max. coil capacity at 115 VAC up to 85 °C

177 W

177 W

-

-

-

-

Max. coil capacity at 230 VAC ≤ 50 °C

517 W

517 W

312 W

416 W

416 W

416 W

Max. coil capacity at 230 VAC up to 85 °C

352 W

352 W

187 W

250 W

250 W

250 W

Max. coil capacity at 400 VAC ≤ 50 °C

-

-

540 W

720 W

720 W

720 W

Max. coil capacity at 400 VAC up to 85 °C

-

-

324 W

432 W

432 W

432 W

Max. coil capacity at 500 VAC ≤ 50 °C

-

-

-

-

900 W

900 W

Max. coil capacity at 500 VAC up to 85 °C

-

-

-

-

540 W

540 W

Max. coil capacity at 600 VAC ≤ 50 °C

-

-

-

-

-

1080 W

Max. coil capacity at 600 VAC up to 85 °C

-

-

-

-

-

648 W

Peak reverse voltage

1600 V

1600 V

2000 V

1600 V

2000 V

2000 V

Rated insulation voltage

250 V

RMS

320 V

RMS

500 V

RMS

500 V

RMS

630 V

RMS

630 V

RMS

Pollution degree (insulation coordination)

2

2

2

1

2

2

Protection fuse

To be included in the input voltage line.

Recommended microfuse switching capacity H

The  microfuse  corresponds  to  the  max.  possible  connection 

capacity. If fuses are used according to the actual capacities, 

please  observe  the  permitted  limit  integral  I²t  on  selection.

FF 3,15A

FF 3,15A

FF 4A

FF 5A

FF 5A

FF 5A

Permitted limit integral l

2

t

40 A

2

s

40 A

2

s

50 A

2

s

100 A

2

s

50 A

2

s

50 A

2

s

Protection 

IP65 components, encapsulated / IP20 terminals

Terminals

Cross-section 0,14 - 1,5 mm

2

 (AWG 26-14)

Ambient temperature

- 25 °C up to + 85 °C

Storage temperature

- 25 °C up to + 105 °C

Conformity markings

UL, CE

UL, CE

UL, CE

UL, CE

UL, CE

CE

Installation conditions

The installation position can be user-defined. Please ensure sufficient heat dissipation 

and air convection! Do not install near to sources of intense heat!

Half-wave Rectifiers and Bridge Rectifiers Type 0_.000.6

Accessories:

  

Mounting bracket set for 35 mm rail acc. to  

 

 

EN 50022: Article-No. 1803201

14

14

Summary of Contents for ROBA-stop-M

Page 1: ...OBA stop M Electromagnetic safety brakes Fast and cost effective installation High Protection IP54 IP65 Maintenance free for the rotor lifetime your reliable partner ROBA stop Always the safest choice...

Page 2: ...d condition helical springs 6 press against the armature disk 5 The rotor 3 is held between the armature disk 5 and the corresponding mounting surface of the machine The shaft is braked via the gear h...

Page 3: ...s in this document are represented with a comma e g 0 5 instead of 0 5 We reserve the right to make dimensional and constructional alterations 1 Hand release not installed on sizes 2 500 Size 1000 han...

Page 4: ...250 500 1 2 1000 5 Holding brake 1 2 Type 891 1_ _ _ Mnom Nm 4 8 16 32 64 100 180 250 450 800 3 1600 5 Input power Pnom W 19 25 29 38 46 69 88 98 120 152 186 Maximum speed nmax rpm 6000 5000 4000 350...

Page 5: ...IN IEC 60038 10 Outer diameter friction disk free size outer diameter flange plate 0 2 Missing dimensions are identical with Type 891 011 0 see page 4 Dimensions mm Size 2 4 8 16 32 60 100 150 250 500...

Page 6: ...nal condition by replacing the rotor For this the brake must be cleaned thoroughly The wear condition of the rotor 3 is determined by measuring the release voltage this must not exceed max 90 of the n...

Page 7: ...mm 6 05 6 05 6 9 8 10 4 11 15 14 15 5 17 18 5 18 5 Table 1 Permitted Bores dmax Size 2 4 8 16 32 60 100 150 250 500 1000 dmax Type 891 0_ _ _ 2 Keyway JS9 6885 1 13 13 18 22 30 32 42 45 55 75 90 6885...

Page 8: ...tching frequency can be taken from the friction power diagrams page 9 If the friction work switching work per braking is known the max switching frequency can also be taken from the friction power dia...

Page 9: ...250 Size 150 Size 100 Size 60 Size 32 Size 16 Size 8 Size 4 Size 2 Switching frequency 1 h Diagram 2 Type 891 10_ _ Holding brake Type 891 10_ _ Holding brake for 50 of the maximum speed nmax for the...

Page 10: ...1 page 5 as part of the standard delivery A radial shaft sealing ring Item 1 is installed in the coil carrier Item 2 on continuous shafts Damping rotor gear hub If vibrations in the drive line cannot...

Page 11: ...observe the applicable directives and standards e g DIN EN 60204 1 and DIN VDE 0580 Their observance must be guaranteed and double checked Earthing Connection The brake is designed for Protection Cla...

Page 12: ...g force braking torque adjustment 100 The overexcitation time tover is double the separation time t2 on each brake size Spring force braking torque adjustment 100 The overexcitation time tover is high...

Page 13: ...controlled output voltage with variable input voltage compact design compact design no wear on contacts no wear on contacts U over 207 VDC Overexcitation voltage U over 360 VDC Overexcitation voltage...

Page 14: ...7 W 517 W 312 W 416 W 416 W 416 W Max coil capacity at 230 VAC up to 85 C 352 W 352 W 187 W 250 W 250 W 250 W Max coil capacity at 400 VAC 50 C 540 W 720 W 720 W 720 W Max coil capacity at 400 VAC up...

Page 15: ...n Terminals 1 2 Input voltage fitted protective varistor 3 4 Connection for external contact for DC side switch off 5 6 Output voltage fitted protective varistor 7 8 Rext for bridge rectifier timing a...

Page 16: ...tive measures or external components are necessary The DC side disconnection is stand ard activated terminals 3 and 4 are not wired resulting in short electromagnetic consumer switching times The inte...

Page 17: ...bridge voltage for 50 ms and then control the 90 or 180 VDC overexcitation voltages After the overexcitation period they control the 52 or 104 VDC holding voltages The overexcitation period can be adj...

Page 18: ...load Switching products with a contact opening distance of 3 mm are suitable for this purpose Electrical Connection Terminals 1 Input voltage 2 Input voltage 3 Coil 4 Coil 5 Free nc terminal 6 Free nc...

Page 19: ...must be adjusted according to the size of the brake at the place of installation The brakes are designed for a relative duty cycle of 100 The brakes are only designed for dry running The braking torqu...

Page 20: ...7 contact mayr fr Italy Mayr Italia S r l Viale Veneto 3 35020 Saonara PD Tel 0 49 8 79 10 20 Fax 0 49 8 79 10 22 info mayr italia it Singapore Mayr Transmission S PTE Ltd No 8 Boon Lay Way Unit 03 06...

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