Festo CMMT-AS-C12-11A-P3-EC-S1 Скачать руководство пользователя страница 15

Ambient conditions, transport

Relative humidity

[%]

 95 (non-condensing)

Max. transportation duration

[d]

30

Permissible altitude

[m]

12000 (above sea level) for 12 h

Vibration resistance

Vibration test and free fall in packaging in accordance
with EN 61800-2

Tab. 55: Ambient conditions, transport

Ambient conditions, storage

Storage temperature

[°C]

−25 

 +55

Relative humidity

[%]

 95 (non-condensing)

Permissible altitude

[m]

3000 (above sea level)

Tab. 56: Ambient conditions, storage

Ambient conditions, operation

Ambient temperature at nom-
inal power

[°C]

 +40

Ambient temperature with
derating
(–3%/C at 40°C 

 50°C)

[°C]

 +50

Cooling

by ambient air in the control cabinet and additionally
via forced ventilation through an integrated fan

Temperature monitoring

Monitoring of:

Cooling element (power module)

Air in the device

Switch-off if temperature is too high or too low

Relative humidity

[%]

 90 (non-condensing), no corrosive media per-

mitted near the device

Permissible setup altitude
above sea level at nominal
power

[m]

 1000

Permissible setup altitude
above sea level with derating
(–10 %/1000 m at
1000 m 

 2000 m)

[m]

 2000

Operation above 2000 m is not permitted!

Degree of protection in
accordance with EN 60529

IP20 (with attached mating plug X9A and with intended
mounting on closed backwall, otherwise IP10)

Requirements for installation
space

Use in a control cabinet with at least IP54, design as
“closed electrical operating area” in accordance with
IEC 61800-5-1, Chap. 3.5

Protection class

I

Overvoltage category

III

Pollution degree

2 (or better)

Vibration resistance in
accordance with

IEC 61800-5-1 and EN 61800-2

Shock resistance in accord-
ance with

EN 61800-2

Tab. 57: Ambient conditions, operation

Service life

Service life of the device at
rated load in S1 operation

1)

and 40 °C ambient tempera-
ture

[h]

25000

Service life of the device at

<

50% rated load in S1 opera-

tion

1)

 and 40 °C ambient tem-

perature

[h]

50000

1) Continuous operation under constant load

Tab. 58: Service life

13.3

Technical data, electrical

13.3.1

Load voltage supply [X9A]

Electrical data, load voltage supply [X9A]

Number of phases

3

Voltage range

[V AC]

200 – 10 % … 480 + 10 %

Voltage range with derating
(–1.5 %/10 V AC)

[V AC]

400 … 530

Nominal operating voltage

[V AC]

400

System voltage in accordance
with IEC 61800-5-1

[V AC]

300

Mains frequency

[Hz]

48 

 62

Network connection/allowed
mains types of system
earthing

1)

L1 

è

 L2 

è

 L3: TT, TN, IT

Required quality of the mains
supply

Corresponds to the requirements of EN 61800-3 if not
specified otherwise

Alternative DC supply feed

[V DC]

80 

 700

Electrical data, load voltage supply [X9A]

CMMT-AS-

C7-11A-P3

C12-11A-P3

Mains current consumption
at nominal power approx.

[A

RMS

]

9

15

Short circuit current rating
(SCCR)

[kA]

10

1) In accordance with IEC 60364-1

Tab. 59: Load voltage supply

13.3.2

Logic voltage supply [X9C]

Electrical data, logic voltage supply

Logic voltage range

[V DC]

24 ± 20 %

Nominal voltage

[V DC]

24

Starting current (with 28.8V)

[A]

Typ.5 (with primary-side switch-on of 24 V logic supply)
Max. 50 (with hard connection to logic supply after this
supply has already been switched on)

Protective functions

Polarity reversal

Short circuit to 0 V (24 V outputs)

CMMT-AS-

C7-11A-P3

C12-11A-P3

Current consumption
(without holding brake,
CDSB, digital I/Os and auxil-
iary supply outputs without
load)

1)

[A]

0.5

0.5

Current consumption (with
STO, SBC connected to 24 V,
with holding brake)

2)

[A]

2.0

2.0

Current consumption (with
holding brake, with CDSB,
digital I/Os and auxiliary
supply outputs with load and
with fan)

)

[A]

2.5

2.5

1) Includes current for the STO inputs
2) Includes current consumption for power stage ON and for STO inputs

Tab. 60: Logic voltage supply

13.3.3

Power specifications, motor connection [X6A]

Internal protective functions detect short circuits between 2 motor phases and
short circuits of a motor phase to PE. If a short circuit is detected, the pulse-width
modulation signals are switched off.

Parameters for the power specifications

Nominal voltage of mains con-
nection

[V AC]

400

Ambient temperature (air)

[°C]

£

 40

Setup altitude

[m]

£

 1000

Tab. 61: Parameters

Power specifications during operation with the given parameters [X6A]

CMMT-AS-

C7-11A-P3

C12-11A-P3

Pulse-width modulation fre-
quency

[kHz]

8

8

Current-regulator cycle time

[µs]

62.5

62.5

Nominal output power
(S1 operation; cos(phi) 

>

 0.8)

[W]

4000

6000

Nominal current (S1 opera-
tion)

[A

RMS

]

7

12

Max. output power
(S2 operation; cos(phi) 

>

 0.8)

[W]

10 000

17 000

Maximum current

[A

RMS

]

21

36

CMMT-AS-

...-11A-P3

Output voltage range

[V

RMS

]

3 x 0 … input

Output voltage with feed of
nominal voltage and nominal
power

[V

RMS

]

380

Output frequency

[Hz]

0 … 599

Duration for maximum current
(f

s

 

>

 5 Hz)

[s]

2

Duration for maximum current
at standstill (f

s

 

£

 5 Hz); min-

imum cycle time 1 s!

[s]

0.1

Tab. 62: Power specifications, motor connection [X6A]

13.4

Technical data UL/CSA certification

In combination with the UL inspection mark on the product, the information in this
section must also be observed in order to comply with the certification conditions
of Underwriters Laboratories Inc. (UL) for USA and Canada.

UL/CSA certification information

Product category code

NMMS / NMMS7 (Power Conversion Equipment)

File number

E331130_Vol-1_Sec-3

Considered standards

UL61800-5-1 Adjustable Speed Electrical Power Drive Sys-
tems
CSA C22.2 No. 274-17 – Adjustable Speed Drive

Содержание CMMT-AS-C12-11A-P3-EC-S1

Страница 1: ...sslingen Manufacturer s address Made in Germany Country of origin Germany Tab 2 Product labelling example Warning symbols on the front of the product Warnin g symbol Meaning with the CMMT AS Attention Hot surface Metallic housing parts of the device can reach high temperatures during operation In the event of a fault internal components may become overloaded Overloading of components can result in...

Страница 2: ...SS1 is intended for performing a rapid stop with subse quent torque switch off 2 2 1 Application areas The device is intended for use in an industrial environment and with appropriate measures in commercial residential and mixed areas The device is intended for installation in a control cabinet The minimum degree of protection required for the control cabinet is IP54 The device can be operated in ...

Страница 3: ...le 10 X2 encoder connection 1 11 X3 encoder connection 2 12 X10 device synchronisation 13 X18 standard Ethernet 14 X5 connection for operator unit behind the blind plate 15 X1A I O interface 16 X9B connection for braking resistor 4 3 Safety sub functions 4 3 1 Function and application The servo drive CMMT AS S1 has the following safety related performance fea tures Safe torque off STO Safe brake c...

Страница 4: ... SBC Test inputs SBC A and SBC B separately from each other and together The diagnostic feedback may only be set to high level when inputs SBC A and SBC B are both requested If the signal behaviour does not correspond to expectations the system must be set to a safe condition within the reaction time It is essential that time monitoring be provided in the safety relay unit The safety sub function ...

Страница 5: ... installed in the profile on the back side can become very hot Contact with metal housing parts can cause burn injuries Do not touch metallic housing parts After the power supply is switched off let the device cool off to room tempera ture Mount the servo drive on the rear wall of the control cabinet with suitable screws while complying with the assembly instructions 7 Installation 7 1 Safety WARN...

Страница 6: ...mains fuse kA min 10 Approvals IEC 60947 2 Rated voltage V AC min 400 Overvoltage category III Pollution degree 2 Characteristic C Tab 12 Requirements for circuit breakers and fuses The circuit breaker is used for line protection The rated current of the circuit breaker must be less than or equal to the approved current rating of the selected conductor cross section The circuit breaker must also t...

Страница 7: ...or cable è Manual Assembly Installation 7 7 Connection examples Connection plan 3 phase mains connection 1 4 2 3 5 6 7 Fig 6 Connection example 1 Braking resistor 2 Circuit breaker or 3 x fuses 3 Main switch main contactor 4 Line choke if required for cate gory C2 5 PELV fixed power supply for 24 V supply 6 Encoder 2 optional 7 Encoder 1 STO connection example The safety sub function STO safe torq...

Страница 8: ...IM1 Digital input for limit switch 1 PNP logic 24 V DC 6 LIM0 Digital input for limit switch 0 PNP logic 24 V DC 5 GND Reference potential ground 4 24 V Power supply output for sensors 3 reserved do not connect 2 REF A Digital input for refer ence switch PNP logic 24 V DC 1 BR EXT Output for connection of an external clamping unit high side switch low test pulses at SBC B are transferred to BR EXT...

Страница 9: ...performed via the interface X18 using the commissioning software Diagnostics Parameterisation Control Firmware update The interface is designed to conform to the standard IEEE 802 3 The interface is electrically isolated and intended for use with limited cable lengths è Tab 25 Requirements for the connecting cable For this reason the insulation coordina tion approach differs from IEEE 802 3 and mu...

Страница 10: ...ield on both sides Make unshielded cable ends as short as possible recommended 150 mm max 200 mm 7 9 3 Electronic overload and over temperature protection for the motor The CMMT AS allows the motor to be electronically protected against overload and provides over temperature protection with the following protective functions Protective func tions Description Measures required during installa tion ...

Страница 11: ... supply phase L3 3 L2 Mains supply phase L2 2 L1 Mains supply phase L1 1 PE Protective earthing Tab 36 Power supply and DC link circuit Requirements for the connecting cable Single device Device compound Number of insulated wires and shielding 4 insulated wires unshielded Without DC link coupling 4 wires unshielded With DC link coupling 6 wires unshielded Min conductor cross section including wire...

Страница 12: ...lation for operation without safety sub function Minimum wiring for operation without safety sub function For operation without the safety sub function wire inputs X1A 9 to X1A 12 as follows Connection Pin Type Identifier Function X1A X1A 9 DIN SBC B Supplies each one with 24 V X1A 10 SBC A X1A 11 STO B X1A 12 STO A X1A 21 DOUT SBA Do not connect X1A 22 STA Tab 44 Wiring of inputs and outputs with...

Страница 13: ... power connections X6A X9A and X9B can result in severe injuries or death Do not pull out power supply plugs while live Before touching wait at least 5 minutes after switching off the load voltage to allow the intermediate circuit to discharge Clean the outside of the product with a soft cloth 11 Malfunctions 11 1 Diagnostics via LED On the front and top of the device there are some LEDs for indic...

Страница 14: ...1508 HFT 1 Safety reference data for the safety sub function STO Circuitry Without high test pulses without or with STA evaluation With high test pulses and with STA evaluation1 With high test pulses and without STA evalua tion Common cause factor for dangerous undetected fail ures β in accordance with EN 61508 5 Classification in accordance with EN 61508 Type A 1 Safety sub function STO tested an...

Страница 15: ...ctrical data load voltage supply X9A CMMT AS C7 11A P3 C12 11A P3 Mains current consumption at nominal power approx ARMS 9 15 Short circuit current rating SCCR kA 10 1 In accordance with IEC 60364 1 Tab 59 Load voltage supply 13 3 2 Logic voltage supply X9C Electrical data logic voltage supply Logic voltage range V DC 24 20 Nominal voltage V DC 24 Starting current with 28 8V A Typ 5 with primary s...

Страница 16: ...ndard the TT system with separate neutral conductor and PE conductor is not permitted in the overall system UL The integrated semiconductor short circuit protection does not protect the downstream power circuit The power circuit must be protected in conformity with the National Electrical Code and all other local regulations CSA The integrated semiconductor short circuit protection does not protec...

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