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Brand: | Yaskawa | Model: | SGM-01L3B4CL |
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Place Of Origin: | Japan | Type: | AC SERVO MOTOR |
Power: | 100W | Volatge: | 200V |
Current: | 0.87A | Ins: | B |
Highlight: | ewing machine servo motor,electric servo motor |
Industrial Servo Motor YASKAWA AC SERVO MOTOR SGM-01L3B4CL 100WATS 100VOLTS 2.2 AMPS
QUICK DETAILS
· YASKAWA ELECTRIC
·SGM-01L3B4CL
·SGM-01L3B4CL
· SERVO MOTOR
· AC SERVO MOTOR
·100W
·0.87A
· 0.318N.m
· 3000RPM
· 200V
· Ins B
· AVAILABLE
· REBUILT SURPLUS
· NEW SURPLUS
· REPAIR YOURS
· 24-48 HOUR RUSH REPAIR
· 2 - 15 DAY REPAIR
· 2 YEAR RADWELL WARRANTY
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SIMILAR PRODUCTS
SGM-01A312 | SGM01A312 .87AMP 100W | yaskawa |
SGM-01A312B | SGM01A312B SERVO MOTOR | yaskawa |
SGM -01A312C | SGM01A312C SERVO MOTOR | yaskawa |
SGM-01A312S | SGM01A312S .87AMP 200V 100WATT | yaskawa |
SGM-01A314 | SGM01A314 100WATT 200VAC | yaskawa |
SGM-01A314B | SGM01A314B SERVO MOTOR | yaskawa |
SGM-01A314B | SGM01A314B # ZL02 SERVO MOTOR | yaskawa |
SGM-01A314C | SGM01A314C 3000RPM 100W 200V | yaskawa |
SGM-01A314P | SGM01A314P SERVO MOTOR | yaskawa |
SGM-01A3G24 | SGM01A3G24 SERVO MOTOR | yaskawa |
SGM-01A3G26 | SGM01A3G26 SERVO MOTOR | yaskawa |
SGM-01A3G36 | SGM01A3G36 SERVO MOTOR | yaskawa |
SGM-01A3G46 | SGM01A3G46 SERVO MOTOR | yaskawa |
SGM-01A3MA12 | SGM01A3MA12 SERVO MOTOR | yaskawa |
SGM-01A3NS31 | SGM01A3NS31 SERVO MOTOR | yaskawa |
SGM-01A3NT11 | SGM01A3NT11 SERVO MOTOR | Yaskawa |
SGM-01A3NT14 | SGM01A3NT14 SERVO MOTOR | |
SGM-01A3NT23 | SGM01A3NT23 SERVO MOTOR | yaskawa |
SGM-01A3S011 | SGM01A3S011 SERVO MOTOR | yaskawa |
SGM-01A3SO11 | SGM01A3SO11 SERVO MOTOR | yaskawa |
SGM-01A3SU11 | SGM01A3SU11 200V 100W | yaskawa |
SGM-0 1A3SU31 | SGM01A3SU31 SERVO MOTOR | yaskawa |
SGM-01A3T012 | SGM01A3T012 SERVO MOTOR | yaskawa |
SGM-01A3TE21 | SGM01A3TE21 SERVO MOTOR | yaskawa |
SGM-01A3YH21 | SGM01A3YH21 SERVO MOTOR | yaskawa |
SGM-01AF12 | SGM01AF12 SERVO MOTOR | Yaskawa |
SGM-01AF14 | SGM01AF14 SERVO MOTOR | yaskawa |
SGM-01AGSU11 | SGM01AGSU11 AC 0.87AMP 3000RPM 200V 100W | yaskawa |
SGM-01AWG26 | SGM01AWG26 SERVO MOTOR | yaskawa |
SGM-01AWSU11 | SGM01AWSU11 SERVO MOTOR | Yaskawa |
SGM-01AWSU12 | SGM01AWSU12 AC 0.87AMP 3000RPM 200V 100W | yask Awa |
SGM-01AWYH22 | SGM01AWYH22 SERVO MOTOR | |
SGM-01B312 | SGM01B312 2.2AMP 100W 100V | yaskawa |
SGM-01B312B | SGM01B312B SERVO MOTOR | Yaskawa |
SGM-01B314 | SGM01B314 AC 100W 200V | yaskawa |
SGM-01B314S | SGM01B314S SERVO MOTOR | yaskawa |
SGM-01B3FJ11 | SGM01B3FJ11 SERVO MOTOR | yaskawa |
SGM-01B3G14B | SGM01B3G14B SERVO MOTOR | yaskawa |
SGM-01B3H16B | SGM01B3H16B SERVO MOTOR | yaskawa |
SGM- 01B3TK11 | SGM01B3TK11 SERVO MOTOR | yaskawa |
SGM-01BF12 | SGM01BF12 SERVO MOTOR | yaskawa |
SGM-01BW12 | SGM01BW12 SERVO MOTOR | yaskawa |
SGM-01BW12B | SGM01BW12B SERVO MOTOR | yaskawa |
SGM-01L314 | SGM01L314 SERVO MOTOR | yaskawa |
SGM-01L3B2L | SGM01L3B2L 100V 100W 3000RPM | yaskawa |
SGM-01L3B4CL | SGM01L3B4CL 100V 2.2A 3000RPM 100W.318NM | yaskawa |
SGM-01L3B4L | SGM01L3B4L 0.1KW 3000RPM 0.318NM 2.2AMP 100V | yaskawa |
SGM-01U312 | SGM01U312 200V 100W | yaskawa |
SGM-01U312C | SGM01U312C SERVO MOTOR | yaskawa |
SGM-01U314M | SGM01U314M SERVO MOTOR | yaskawa |
SGM-01U3B4L | SGM01U3B4L 200V 100W 0.87AMP 3000RPM | yaskawa |
SGM-01UW12SP | SGM01UW12SP SERVO MOTOR | yaskawa |
SGM-01V312 # OH01 | SGM01V312 # OH01 SERVO MOTOR | Yaskawa |
SGM-01V312B | SGM01V312B SERVO MOTOR | yaskawa |
SGM-01V314 | SGM01V314 0.87AMP 100W 200V 3000R / MIN | yaskawa |
SGM-01V3NT14 | SGM01V3NT14 SERVO MOTOR | yaskawa |
SGM-01V3NT2 | SGM01V3NT2 SERVO MOTOR | yaskawa |
SGM- 01V3NT21 | SGM01V3NT21 SERVO MOTOR | yaskawa |
SGM-01VGNK11 | SGM01VGNK11 SERVO MOTOR | yaskawa |
SGM-01VGNK13 | SGM01VGNK13 SERVO MOTOR | yaskawa |
SGM-01VGNK22 | SGM01VGNK22 SERVO MOTOR | yaskawa |
SGM-01VGNK71 | SGM01VGNK71 SERVO MOTOR | yaskawa |
SGM-01VGNK72 | SGM01VGNK72 SERVO MOTOR | yaskawa |
SGM-01VGNK91 | SGM01VGNK91 SERVO MOTOR | yaskawa |
SGM-01VGNK92 | SGM01VGNK92 SERVO MOTOR | yaskawa |
The torque vs. speed and output power curves depend on the supplyn voltage to the motor.
The supply voltage to the motor assumes continuous running of the motor at an ambient temperature of 20°C in nominal operational conditions.
It is possible to supply the motor with a different voltage (normally between -50% and + 100% of the recommended supply voltage).
If a lower voltage is used compared to the recommended supply the motor will be less powerful.
If a higher voltage is used, the motor will have a higher output power but will run hotter (intermittent operation is recommended).
For variations in supply voltage between approximately - 25% to + 50%, the new torque vs. speed graph will remain parallel to the previous one.
Its start-up torque and no-load speed will vary by the same percentage (n%) as the variation in supply voltage. The maximum output power is
multiplied by (1 + n%)2.
Example : For a 20% increase in supply voltage
Start-up torque increases by 20% ( x 1.2)
No-load speed increases by 20% ( x 1.2)
Output power increases by 44% ( x 1.44)
The graph for this relationship does not vary with the supply voltage of the motor. The end of the curve is extended in accordance with the torque
and the start-up current.
The gradient of this curve is called the «torque constant» of the motor.
Kc = Cd
Id - Io
This torque constant is such that :
C = Kc (I - Io)
The «rotational friction torque» is Kc Io.
The torque is therefore expressed as follows :
C = Kc I - Cf with Cf = Kc Io
Kc = Torque constant (Nm/A)
C = Torque (Nm)
Cd= Start-up Torque (Nm)
Cf = Rotational friction torque (Nm)
I = Current (A)
Io = No-load current (A)
Id = Start-up current (A)
The graph of torque vs. current and torque vs. speed is used to determine
Contact Person: Harper
Tel: 86-13170829968