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129610
Model Code: SPX500A0-5A2N1

Eaton SPX Variable frequency drive, 600 V AC, 3-phase, 500 kW, IP00, OLED display, FR11

General specifications

Product Name
Eaton SPX variable frequency drive
Catalog Number
129610
EAN
4015081269372
Product Length/Depth
503 mm
Product Height
1155 mm
Product Width
709 mm
Product Weight
350 kg
Certifications
CSA-C22.2 No. 14
Certified by UL for use in Canada
CSA Class No.: 3211-06
IEC/EN61800-3
UL
DNV
UL report applies to both US and Canada
UL 508C
Specification for general requirements: IEC/EN 61800-2
CUL
CE
Safety: EN 61800-5-1: 2003
IEC/EN 61800-3
UL Category Control No.: NMMS, NMMS2, NMMS7. NMMS8
UL File No.: E134360
RCM
IEC/EN61800-5
RoHS, ISO 9001
Model Code
SPX500A0-5A2N1

Algemeen

Degree of protection
IP00
NEMA Other
Electromagnetic compatibility
1st and 2nd environments (according to EN 61800-3)
Fitted with:
Internal DC link
IGBT inverter
Control unit
OLED display
PC connection
Frame size
FR11
Functions
4-quadrant operation possible
Mounting position
Vertical
Product Category
Variable frequency drives
Protection
Finger and back-of-hand proof, Protection against direct contact (BGV A3, VBG4)
Radio interference class
C2, C3: depending on the motor cable length, the connected load, and ambient conditions. External radio interference suppression filters (optional) may be necessary.
Suitable for
Branch circuits, (UL/CSA)

Klimatologische milieuomstandigheden

Altitude
Max. 3000 m
Above 1000 m with 1 % performance reduction per 100 m
Max. 1000 m
Ambient operating temperature - min
-10 °C
Ambient operating temperature - max
40 °C
Ambient operating temperature at 150% overload - min
-10 °C
Ambient operating temperature at 150% overload - max
40 °C
Ambient storage temperature - min
-40 °C
Climatic proofing
< 95 % relative humidity, no condensation, no corrosion, no dripping water

Hoofdstroom

Mains voltage - min
525 V
Mains voltage - max
690 V
Operating mode
Sensorless vector control (SLV)
Optional: Vector control with feedback (CLV)
U/f control
Output frequency - min
0 Hz
Output frequency - max
320 Hz
Output voltage (U2)
600 V AC, 3-phase
690 V AC, 3-phase
Rated control supply voltage
10 V DC (Us, max. 10 mA)
Rated frequency - min
45 Hz
Rated frequency - max
66 Hz
Rated operational current (Ie) at 110% overload
590 A
Rated operational current (Ie) at 150% overload
502 A
Rated operational power at 690 V, 50 Hz, 3-phase
500 kW
Rated operational power at 690 V, 50 Hz, 3-phase, 110% overload
560 kW
Rated operational voltage
600 V AC, 3-phase
690 V AC, 3-phase
Resolution
0.01 Hz (Frequency resolution, setpoint value)
Supply frequency
50/60 Hz
Switching frequency
1.5 kHz, 1 - 6 kHz adjustable, fPWM, Power section, Main circuit
System configuration type
AC supply systems with earthed center point
Voltage rating - max
690 VAC

Nom. vermogen

Assigned motor current IM at 690 V, 50 Hz, 110% overload
550 A
Assigned motor current IM at 690 V, 50 Hz, 150% overload
491 A
Assigned motor current IM at 690 V, 60 Hz, 110% overload
478 A
Assigned motor current IM at 690 V, 60 Hz, 150% overload
411 A
Assigned motor power at 690 V, 60 Hz, 3-phase
500 HP
Assigned motor power at 690 V, 60 Hz, 3-phase, 110 % overload
600 HP

Regelcircuit

Number of inputs (analog)
2
Number of inputs (digital)
6
Number of outputs (analog)
1
Number of outputs (digital)
1
Number of relay outputs
2 (parameterizable, N/O, 8 A (24 V DC) / 8 A (250 V AC) / 0,4 A (125 V DC))
Rated control voltage (Uc)
24 V DC (external, max. 250 mA)

Communicatie

Communication interface
BACnet/IP, optional
Modbus-TCP, optional
PROFIBUS-DP
DeviceNet, optional
LonWorks, optional
CANopen®, optional
BACnet MS/TP, optional
EtherCAT, optional
Ethernet IP, optional
Modbus-RTU, optional
PROFINET, optional
Connection to SmartWire-DT
No
Protocol
CAN
Data-Highway
LON
TCP/IP
PROFIBUS
Other bus systems
DeviceNet

Ontwerpverificatie

Equipment heat dissipation, current-dependent Pvid
12500 W
Heat dissipation capacity Pdiss
0 W
Heat dissipation per pole, current-dependent Pvid
0 W
Rated operational current for specified heat dissipation (In)
502 A
Static heat dissipation, non-current-dependent Pvs
0 W
Heat dissipation details
Operation (with 150 % overload)
10.2.2 Corrosion resistance
Meets the product standard's requirements.
10.2.3.1 Verification of thermal stability of enclosures
Meets the product standard's requirements.
10.2.3.2 Verification of resistance of insulating materials to normal heat
Meets the product standard's requirements.
10.2.3.3 Resist. of insul. mat. to abnormal heat/fire by internal elect. effects
Meets the product standard's requirements.
10.2.4 Resistance to ultra-violet (UV) radiation
Meets the product standard's requirements.
10.2.5 Lifting
Does not apply, since the entire switchgear needs to be evaluated.
10.2.6 Mechanical impact
Does not apply, since the entire switchgear needs to be evaluated.
10.2.7 Inscriptions
Meets the product standard's requirements.
10.3 Degree of protection of assemblies
Does not apply, since the entire switchgear needs to be evaluated.
10.4 Clearances and creepage distances
Meets the product standard's requirements.
10.6 Incorporation of switching devices and components
Does not apply, since the entire switchgear needs to be evaluated.
10.7 Internal electrical circuits and connections
Is the panel builder's responsibility.
10.8 Connections for external conductors
Is the panel builder's responsibility.
10.9.2 Power-frequency electric strength
Is the panel builder's responsibility.
10.9.3 Impulse withstand voltage
Is the panel builder's responsibility.
10.9.4 Testing of enclosures made of insulating material
Is the panel builder's responsibility.
10.10 Temperature rise
The panel builder is responsible for the temperature rise calculation. Eaton will provide heat dissipation data for the devices.
10.11 Short-circuit rating
Is the panel builder's responsibility. The specifications for the switchgear must be observed.
10.12 Electromagnetic compatibility
Is the panel builder's responsibility. The specifications for the switchgear must be observed.
10.13 Mechanical function
The device meets the requirements, provided the information in the instruction leaflet (IL) is observed.

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