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Operating instructions

K3G560-PB31-61

Translation of the original operating instructions

3.2 Nominal data

Motor

M3G150-IF

Phase

3~

Nominal voltage / VAC

400

Nominal voltage
range / VAC

380 .. 480

Frequency / Hz

50/60

Method of obtaining
data

ml

Speed (rpm) / min

-1

1700

Power consumption / W

4400

Current draw / A

6.6

Min. ambient
temperature / °C

-40

Max. ambient
temperature / °C

40

ml = Max. load · me = Max. efficiency · fa = Free air

cs = Customer specification · ce = Customer equipment

Subject to change

3.3 Data according to Commission Regulation (EU) 327/
2011

Actual

Req. 2015

01 Overall efficiency η

es

/ %

69.9

58.1

02 Measurement category

A

03 Efficiency category

Static

04 Efficiency grade N

73.8

62

05 Variable speed drive

Yes

06 Year of manufacture

The year of manufacture is specified on the
product's rating label.

07 Manufacturer

ebm-papst Mulfingen GmbH & Co. KG
Amtsgericht (court of registration) Stuttgart
· HRA 590344
D-74673 Mulfingen

08 Type

K3G560-PB31-61

09 Power consumption P

ed

/ kW

4.25

09 Air flow q

v

/ m³/h

9825

09 Pressure increase total p

sf

/

Pa

1049

10 Speed (rpm) n / min

-1

1700

11 Specific ratio

*

1.01

12 Recycling/disposal

Information on recycling and disposal is
provided in the operating instructions.

13 Maintenance

Information on installation, operation and
maintenance is provided in the operating
instructions.

14 Additional components

Components used to calculate the energy
efficiency that are not apparent from the
measurement category are detailed in the
CE declaration.

*

Specific ratio = 1 + p

fs

/ 100 000 Pa

Data obtained at optimum efficiency level. The ErP data is determined using a motor-impeller

combination in a standardized measurement setup.

3.4 Technical description

Weight

51.8 kg

Size

560 mm

Motor size

150

Rotor surface

Painted black

Electronics housing
material

Die-cast aluminum

Impeller material

Sheet aluminum

Support plate material

Sheet steel, galvanized

Support bracket
material

Steel, painted black

Inlet nozzle material

Sheet steel, galvanized

Number of blades

5

Direction of rotation

Clockwise, viewed toward rotor

Degree of protection

IP55

Insulation class

"F"

Moisture (F) /
Environmental (H)
protection class

H1

Ambient temperature
note

Occasional start-up at temperatures
between -40°C and -25°C is permitted.
For continuous operation at ambient
temperatures below -25°C (such as
refrigeration applications), use must be
made of a fan design with special low-
temperature bearings.

Installation position

See product drawing

Condensation
drainage holes

On rotor side

Mode

S1

Motor bearing

Ball bearing

Technical features

- Operation and alarm display with LED
- External 15-50 VDC input
(parameterization)
- Alarm relay
- Integrated PI controller
- Configurable inputs/outputs (I/O)
- MODBUS V6.0
- Motor current limitation
- RFID - ISO 15693 compatible
- RS-485 MODBUS-RTU
- Soft start
- Voltage output 3.3-24 VDC, Pmax =
800 mW
- Control interface with SELV potential
safely disconnected from the mains
- Thermal overload protection for
electronics/motor
- Line undervoltage / phase failure
detection

Touch current
according to IEC
60990 (measuring
circuit Fig. 4, TN
system)

<= 3.5 mA

Electrical hookup

Terminal box

Protection class

I (with customer connection of protective
earth)

Conformity with
standards

EN 61800-5-1; CE

Item no. 56891-5-9970 · ENU · Change 200264 · Approved 2019-02-08 · Page 5 / 16

ebm-papst Mulfingen GmbH & Co. KG · Bachmühle 2 · D-74673 Mulfingen · Phone +49 (0) 7938 81-0 · Fax +49 (0) 7938 81-110 · [email protected] · www.ebmpapst.com

Summary of Contents for K3G560-PB31-61

Page 1: ...a test run and to perform work on the electrical installation 1 3 Basic safety rules 1 1 3 Basic safety rules The safety hazards associated with the device must be assessed again following installatio...

Page 2: ...rical or electromagnetic interference after installing the device in customer equipment Verify that the entire setup is EMC compliant 1 7 Mechanical movement DANGER Rotating device Risk of injury to b...

Page 3: ...stationary systems Performing all maintenance work Conveying air at an ambient air pressure between 800 mbar and 1050 mbar Using the device within the permitted ambient temperature range see Chapter...

Page 4: ...ustrated or rotor on bottom rotor on top on request 2 Cable diameter min 4 mm max 10 mm tightening torque 2 0 3 Nm 3 Tightening torque 1 5 0 2 Nm 4 Inlet ring with pressure tap k factor 348 5 Mounting...

Page 5: ...n a standardized measurement setup 3 4 Technical description Weight 51 8 kg Size 560 mm Motor size 150 Rotor surface Painted black Electronics housing material Die cast aluminum Impeller material Shee...

Page 6: ...tion engineer or operator owner of the device to ensure if necessary after consultation with the network operator that this device is only connected to a connection point with an Ssc value greater tha...

Page 7: ...ustomer end of the cable can damage the device Make sure the end of the cable is connected in a dry environment Only connect the device to circuits that can be switched off with an all pole disconnect...

Page 8: ...onnections For tightening torques see Chapter 3 1 Product drawing NOTE Tightness and strain relief are dependent on the cable used This must be checked by the user Fig 2 Recommended stripped lengths i...

Page 9: ...ible a drip edge can be produced by fitting a cable tie directly in front of the cable gland for example 4 4 Factory settings Factory settings made for the device by ebm papst Mode parameter set 1 PWM...

Page 10: ...eristic curve P1 IN SELV CON2 IO3 Function parameterizable see Optional interface functions table Factory setting Analog output 0 10 V max 5 mA function Fan modulation level Characteristic curve param...

Page 11: ...put Ri 100K characteristic curve parameterizable fPWM 1k 10KHz SELV D159 2 Ain2 4 20mA analog input Ri 125R characteristic curve parameterizable SELV D159 3 Din3 active high digital input not active p...

Page 12: ...operating instructions 4 7 Equivalent circuit diagrams Item no 56891 5 9970 ENU Change 200264 Approved 2019 02 08 Page 12 16 ebm papst Mulfingen GmbH Co KG Bachm hle 2 D 74673 Mulfingen Phone 49 0 793...

Page 13: ...sively high vibration levels and possibly resonant frequencies must be determined in the course of fan commissioning Either run through the resonant range as quickly as possible with speed control or...

Page 14: ...ply correct connection see connection diagram Broken motor winding Replace device Inadequate cooling Improve cooling Allow the device to cool down Ambient temperature too high Reduce the ambient tempe...

Page 15: ...ng If cleaning agents have been used rinse these off with clean water If severe corrosion is visible on load bearing or rotating parts switch off the device immediately and replace it Repair of load b...

Page 16: ...RNING Heavy parts of the product may drop off Some of the product components are heavy These components could drop off during disassembly This can result in fatal or serious injury and material damage...

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