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2

Fig.01

Fig.02

These instructions apply to the following models: 

FAAC 740 - 74

The 740-741 gearmotor is an electro-mechanical operator designed 

for moving sliding gates.

The non-reversing reduction system ensures the gate is mechani-

cally locked when the gearmotor is not operating, therefore it is 

not necessary to install any electric lock

AUTOMATED SYSTEM 740-74

A convenient manual release with customised key makes it possible 

to move the gate in the event of a power failure or malfunction 

of the operator.

The  740-74  gearmotor  was  designed  and  built  for  controlling 

vehicle access. AVOID ANY OTHER USE WHATEVER.

. DESCRIPTION AND TECHNICAL SPECIFICATIONS

2. DIMENSIONS

MODEL

740

74

740 5V

74 5V

Power supply (+6% -0%)

230 V~ 50Hz

230 V~ 50Hz

115 V~ 60Hz

115 V~ 60Hz

Absorbed power (W)

350

500

350

600

Absorbed current (A)

1.5

2.2

3

5.2

Capacitor (µF)

10

12.5

30

50

Thrust on pinion (daN)

45

65

45

65

Torque (Nm)

18

24

18

24

Winding thermal protection (°C)

140

140

140

140

Leaf max weight (Kg)

500

900

500

900

Type of pinion

Z16

Z16

Z16

Z16

Gate speed (m/min)

12

12

14

14

Gate max length (m)

15

15

15

15

Type of limit switch

Magnetic

Magnetic

Magnetic

Magnetic

Clutch

Electronic

Electronic

Electronic

Electronic

Use frequency

S3 - 30%

S3 - 40%

S3 - 30%

S3 - 40%

Operating temperature (°C)

-20 +55

-20 +55

-20 +55

-20 +55

Gearmotor weight (Kg)

10

11

10

11

Protection class

IP44

IP44

IP44

IP44

Gearmotor overall dimensions

See Fig.02

See Fig.02

See Fig.02

See Fig.02

1. Motor lid

2. Electronic control unit
3. Release device

4. Gearmotor body

5. Foundation plate
6. Pinion

7. Limit switch
8. Motor cover

9. Cable holes

10. Capacitor
11. Protective side panels

Values are expressed in mm

32

2

180

295

221

Summary of Contents for 741

Page 1: ...740 741...

Page 2: ...be checked as specified in the Standards indicated at point 10 16 The safety devices EN 12978 standard protect any danger areas against mechanical movement Risks such as crushing dragging and shearin...

Page 3: ...30 V 50Hz 230 V 50Hz 115 V 60Hz 115 V 60Hz Absorbed power W 350 500 350 600 Absorbed current A 1 5 2 2 3 5 2 Capacitor F 10 12 5 30 50 Thrust on pinion daN 45 65 45 65 Torque Nm 18 24 18 24 Winding th...

Page 4: ...and rack engage correctly the foundation plate must be positioned as shown in Fig 05 right closing or Fig 06 left closing Warning The arrow on the foundation plate must always point to the gate see F...

Page 5: ...1 5 mm Fig 15 Manually check if the gate correctly reaches the mechanical limit stops maintaining the pinion and rack coupled and make sure there is no friction during gate travel Do not use grease or...

Page 6: ...orting side pieces Fig 19 ref 3 Apply the adhesive warning of danger to the upper part of the casing Fig 20 Give the Client the User Guide and demonstrate the correct operation and use of the gearmoto...

Page 7: ...time has elapsed If the semi automatic operation was set a second pulse must be sent to close the gate again An opening pulse during re closing always causes movement to be reversed A stop pulse if p...

Page 8: ...chnician Customer 9 Technician Customer 10 Technician Customer Installer Customer Type of system Serial No Installation date Start up PART MODEL SERIAL NUMBER Operator Safety device 1 Safety device 2...

Page 9: ...note notes note notas anmerkung opmerkingen...

Page 10: ...n in vorliegendem Handbuch sind unverbindlich FAAC beh lt sich das Recht vor ohne die wesentlichen Eigenschaften dieses Ger tes zu ver ndern und ohne Verbindlichkeiten in Bezug auf die Neufassung der...

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