Siemens 3RW4037-1BB15 Bedienungsanleitung


Lesen Sie kostenlos die 📖 deutsche Bedienungsanleitung für Siemens 3RW4037-1BB15 (6 Seiten) in der Kategorie Nicht kategorisiert. Dieser Bedienungsanleitung war für 2 Personen hilfreich und wurde von 2 Benutzern mit durchschnittlich 4.5 Sternen bewertet

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Data sheet
Data sheet
Data sheet
Data sheetData sheet 3RW40 37-1BB15
3RW40 37-1BB15
3RW40 37-1BB15
3RW40 37-1BB153RW40 37-1BB15
SIRIUS SOFT STARTER, S2, 63A, 37KW/500V, 40
DEGR., AC 400-600V, AC/DC 110-230V, SCREW
TERMINALS
General technical data:
product brand name
product brand name
product brand name
product brand nameproduct brand name SIRIUS
● Product equipment Integrated bypass contact
system
Yes
● Product feature Thyristors Yes
Product function
Product function
Product function
Product functionProduct function
● Intrinsic device protection Yes
● motor overload protection Yes
● Evaluation of thermistor motor protection No
● External reset Yes
● Adjustable current limitation Yes
● Inside-delta circuit No
Product component Motor brake output
Product component Motor brake output
Product component Motor brake output
Product component Motor brake outputProduct component Motor brake output No
Equipment marking acc. to DIN EN 61346-2
Equipment marking acc. to DIN EN 61346-2
Equipment marking acc. to DIN EN 61346-2
Equipment marking acc. to DIN EN 61346-2Equipment marking acc. to DIN EN 61346-2 Q
Equipment marking acc. to DIN 40719 extended
Equipment marking acc. to DIN 40719 extended
Equipment marking acc. to DIN 40719 extended
Equipment marking acc. to DIN 40719 extendedEquipment marking acc. to DIN 40719 extended
according to IEC 204-2 acc. to IEC 750
according to IEC 204-2 acc. to IEC 750
according to IEC 204-2 acc. to IEC 750
according to IEC 204-2 acc. to IEC 750according to IEC 204-2 acc. to IEC 750
G
Power Electronics:
Operating current
Operating current
Operating current
Operating currentOperating current
3RW40 37-1BB15 Subject to change without notice
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Show actual product details
● at 40 °C rated value A 63
● at 50 °C rated value A 58
● at 60 °C rated value A 53
Mechanical power output for three-phase motors
Mechanical power output for three-phase motors
Mechanical power output for three-phase motors
Mechanical power output for three-phase motorsMechanical power output for three-phase motors
● at 400 V
— at standard circuit at 40 °C rated value W 30000
● at 500 V
— at standard circuit at 40 °C rated value W 37000
Operating frequency rated value Hz 50...60
Relative negative tolerance of the operating
Relative negative tolerance of the operating
Relative negative tolerance of the operating
Relative negative tolerance of the operatingRelative negative tolerance of the operating
frequency
frequency
frequency
frequencyfrequency
% -10
Relative positive tolerance of the operating frequency
Relative positive tolerance of the operating frequency
Relative positive tolerance of the operating frequency
Relative positive tolerance of the operating frequencyRelative positive tolerance of the operating frequency % 10
Operating voltage at standard circuit rated value
Operating voltage at standard circuit rated value
Operating voltage at standard circuit rated value
Operating voltage at standard circuit rated valueOperating voltage at standard circuit rated value V 400...600
Relative negative tolerance of the operating voltage
Relative negative tolerance of the operating voltage
Relative negative tolerance of the operating voltage
Relative negative tolerance of the operating voltageRelative negative tolerance of the operating voltage
at standard circuit
at standard circuit
at standard circuit
at standard circuitat standard circuit
% -15
Relative positive tolerance of the operating voltage at
Relative positive tolerance of the operating voltage at
Relative positive tolerance of the operating voltage at
Relative positive tolerance of the operating voltage atRelative positive tolerance of the operating voltage at
standard circuit
standard circuit
standard circuit
standard circuitstandard circuit
% 10
Minimum load [% of IM]
Minimum load [% of IM]
Minimum load [% of IM]
Minimum load [% of IM]Minimum load [% of IM] % 20
Adjustable motor current for motor overload
Adjustable motor current for motor overload
Adjustable motor current for motor overload
Adjustable motor current for motor overloadAdjustable motor current for motor overload
protection minimum rated value
protection minimum rated value
protection minimum rated value
protection minimum rated valueprotection minimum rated value
A 26
Continuous operating current [% of Ie] at 40 °C
Continuous operating current [% of Ie] at 40 °C
Continuous operating current [% of Ie] at 40 °C
Continuous operating current [% of Ie] at 40 °CContinuous operating current [% of Ie] at 40 °C % 115
Power loss [W] at operating current at 40 °C during
Power loss [W] at operating current at 40 °C during
Power loss [W] at operating current at 40 °C during
Power loss [W] at operating current at 40 °C duringPower loss [W] at operating current at 40 °C during
operation typical
operation typical
operation typical
operation typicaloperation typical
W 12
Control electronics:
Type of voltage of the control supply voltage
Type of voltage of the control supply voltage
Type of voltage of the control supply voltage
Type of voltage of the control supply voltageType of voltage of the control supply voltage AC/DC
Control supply voltage frequency 1 rated value
Control supply voltage frequency 1 rated value
Control supply voltage frequency 1 rated value
Control supply voltage frequency 1 rated valueControl supply voltage frequency 1 rated value Hz 50
Control supply voltage frequency 2 rated value
Control supply voltage frequency 2 rated value
Control supply voltage frequency 2 rated value
Control supply voltage frequency 2 rated valueControl supply voltage frequency 2 rated value Hz 60
Relative negative tolerance of the control supply
Relative negative tolerance of the control supply
Relative negative tolerance of the control supply
Relative negative tolerance of the control supplyRelative negative tolerance of the control supply
voltage frequency
voltage frequency
voltage frequency
voltage frequencyvoltage frequency
% -10
Relative positive tolerance of the control supply
Relative positive tolerance of the control supply
Relative positive tolerance of the control supply
Relative positive tolerance of the control supplyRelative positive tolerance of the control supply
voltage frequency
voltage frequency
voltage frequency
voltage frequencyvoltage frequency
% 10
Control supply voltage 1 at AC at 50 Hz
Control supply voltage 1 at AC at 50 Hz
Control supply voltage 1 at AC at 50 Hz
Control supply voltage 1 at AC at 50 HzControl supply voltage 1 at AC at 50 Hz V 110...230
Control supply voltage 1 at AC at 60 Hz
Control supply voltage 1 at AC at 60 Hz
Control supply voltage 1 at AC at 60 Hz
Control supply voltage 1 at AC at 60 HzControl supply voltage 1 at AC at 60 Hz V 110...230
Relative negative tolerance of the control supply
Relative negative tolerance of the control supply
Relative negative tolerance of the control supply
Relative negative tolerance of the control supplyRelative negative tolerance of the control supply
voltage at AC at 60 Hz
voltage at AC at 60 Hz
voltage at AC at 60 Hz
voltage at AC at 60 Hzvoltage at AC at 60 Hz
% -15
Relative positive tolerance of the control supply
Relative positive tolerance of the control supply
Relative positive tolerance of the control supply
Relative positive tolerance of the control supplyRelative positive tolerance of the control supply
voltage at AC at 60 Hz
voltage at AC at 60 Hz
voltage at AC at 60 Hz
voltage at AC at 60 Hzvoltage at AC at 60 Hz
% 10
Control supply voltage 1 at DC
Control supply voltage 1 at DC
Control supply voltage 1 at DC
Control supply voltage 1 at DCControl supply voltage 1 at DC V 110...230
Relative negative tolerance of the control supply
Relative negative tolerance of the control supply
Relative negative tolerance of the control supply
Relative negative tolerance of the control supplyRelative negative tolerance of the control supply
voltage at DC
voltage at DC
voltage at DC
voltage at DCvoltage at DC
% -15
Relative positive tolerance of the control supply
Relative positive tolerance of the control supply
Relative positive tolerance of the control supply
Relative positive tolerance of the control supplyRelative positive tolerance of the control supply
voltage at DC
voltage at DC
voltage at DC
voltage at DCvoltage at DC
% 10
Display version for fault signal
Display version for fault signal
Display version for fault signal
Display version for fault signalDisplay version for fault signal red
Mechanical data:
3RW40 37-1BB15 Subject to change without notice
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Size of engine control device
Size of engine control device
Size of engine control device
Size of engine control deviceSize of engine control device S2
Width
Width
Width
WidthWidth mm 55
Height
Height
Height
HeightHeight mm 160
Depth
Depth
Depth
DepthDepth mm 170
Mounting type
Mounting type
Mounting type
Mounting typeMounting type screw and snap-on mounting
Mounting position
Mounting position
Mounting position
Mounting positionMounting position With additional fan: With vertical mounting surface +/-
90° rotatable, with vertical mounting surface +/- 22.5°
tiltable to the front and back Without additional fan:
With vertical mounting surface +/-10° rotatable, with
vertical mounting surface +/- 10° t
Required spacing with side-by-side mounting
Required spacing with side-by-side mounting
Required spacing with side-by-side mounting
Required spacing with side-by-side mountingRequired spacing with side-by-side mounting
● upwards mm 60
● at the side mm 30
● downwards mm 40
Installation altitude at height above sea level
Installation altitude at height above sea level
Installation altitude at height above sea level
Installation altitude at height above sea levelInstallation altitude at height above sea level m 5000
Wire length maximum
Wire length maximum
Wire length maximum
Wire length maximumWire length maximum m 300
Number of poles for main current circuit
Number of poles for main current circuit
Number of poles for main current circuit
Number of poles for main current circuitNumber of poles for main current circuit 3
Connections/ Terminals:
Type of electrical connection
Type of electrical connection
Type of electrical connection
Type of electrical connectionType of electrical connection
● for main current circuit screw-type terminals
● for auxiliary and control current circuit screw-type terminals
Number of NC contacts for auxiliary contacts
Number of NC contacts for auxiliary contacts
Number of NC contacts for auxiliary contacts
Number of NC contacts for auxiliary contactsNumber of NC contacts for auxiliary contacts 0
Number of NO contacts for auxiliary contacts
Number of NO contacts for auxiliary contacts
Number of NO contacts for auxiliary contacts
Number of NO contacts for auxiliary contactsNumber of NO contacts for auxiliary contacts 2
Number of CO contacts for auxiliary contacts
Number of CO contacts for auxiliary contacts
Number of CO contacts for auxiliary contacts
Number of CO contacts for auxiliary contactsNumber of CO contacts for auxiliary contacts 1
Type of connectable conductor cross-sections for
main contacts for box terminal using the front
clamping point
● solid 2x (1.5 ... 16 mm²)
● finely stranded with core end processing 0.75 ... 25 mm²
● stranded 0.75 ... 35 mm²
Type of connectable conductor cross-sections for
main contacts for box terminal using the back
clamping point
● solid 2x (1.5 ... 16 mm²)
● finely stranded with core end processing 1.5 ... 25 mm²
● stranded 1.5 ... 35 mm²
Type of connectable conductor cross-sections for
main contacts for box terminal using both clamping
points
● solid 2x (1.5 ... 16 mm²)
● finely stranded with core end processing 2x (1.5 ... 16 mm²)
● stranded 2x (1.5 ... 25 mm²)
Type of connectable conductor cross-sections at
AWG conductors for main contacts for box terminal
3RW40 37-1BB15 Subject to change without notice
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12/21/2016 © Copyright Siemens AG


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Marke: Siemens
Kategorie: Nicht kategorisiert
Modell: 3RW4037-1BB15

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