TC 142
Flange dimensions: 142 mm
Rated Output Power: 2700 – 5000 W
Rated Torque: 8,6 – 15,9 Nm
Rated Speed: 3000 rpm
Flange dimensions: 142 mm
Rated Output Power: 2700 – 5000 W
Rated Torque: 8,6 – 15,9 Nm
Rated Speed: 3000 rpm
Parameter | Unit | T 142 12 15 | T 142 12 17 | T 142 16,5 15 | T 142 16,5 17 | T 142 21 15 | T 142 21 17 | T 142 25,5 15 | T 142 25,5 17 |
---|---|---|---|---|---|---|---|---|---|
Continous Stall Torque | Nm | 11 | 11 | 14 | 14 | 18 | 18 | 21 | 21 |
Peak Torque | Nm | 31 | 31 | 42 | 42 | 55 | 55 | 65 | 65 |
Nominal Torque | Nm | 8.6 | 8.6 | 11.1 | 11.1 | 13.1 | 13.1 | 15.9 | 15.9 |
Rated Voltage | V | 230 | 400 | 230 | 400 | 230 | 400 | 230 | 400 |
Nominal power | W | 2700 | 2700 | 3500 | 3500 | 4100 | 4100 | 5000 | 5000 |
Continuous stall Current | Arms | 12.1 | 6.9 | 15.4 | 8.7 | 19.8 | 11.2 | 23.1 | 13.1 |
Maximun Current | Arms | 34.1 | 19.3 | 46.2 | 26.2 | 60.5 | 34.3 | 71.4 | 40.5 |
Nominal Current | Arms | 9.9 | 5.6 | 12.9 | 7.3 | 15.1 | 8.5 | 18.4 | 10.4 |
Nominal working Speed | rpm | 3000 | 3000 | 3000 | 3000 | 3000 | 3000 | 3000 | 3000 |
Maximum working speed 230VAC | rpm | 3900 | 2200 | 3900 | 2200 | 3900 | 2200 | 3900 | 2200 |
Maximum working speed 400VAC | 4800 | 3900 | 4600 | 3900 | 4400 | 3900 | 4400 | 3900 | |
Torque Constant | Nm/Arms | 0.91 | 1.6 | 0.91 | 1.6 | 0.91 | 1.6 | 0.91 | 1.6 |
Voltage Constant | Vrms/Krpm | 55 | 97 | 55 | 97 | 55 | 97 | 55 | 97 |
Winding resistance | Ohm | 0.6 | 1.6 | 0.4 | 1.3 | 0.25 | 0.8 | 0.24 | 0.8 |
Winding inductance | mH | 2.8 | 7.9 | 2.1 | 6.9 | 1.4 | 4.5 | 1.3 | 4.2 |
Electrical time constant | ms | 4.6 | 4.8 | 5.2 | 5.2 | 5.6 | 5.6 | 5.4 | 5.5 |
Thermal Resistance | °C/W | 0.52 | 0.59 | 0.47 | 0.45 | 0.46 | 0.45 | 0.36 | 0.34 |
Mechanical timeconstant high rotor inertia | ms | 4.2 | 3.7 | 3.4 | 3.5 | 2.8 | 2.9 | 3 | 3.1 |
Mechanical time constant low rotor inertia | ms | 2.5 | 2.2 | 2 | 2.1 | 1.6 | 1.7 | 1.8 | 1.8 |
High rotor inertia (as an option) without brake and without feedback | kg·cm² | 38.4 | 38.4 | 45.9 | 45.9 | 61.2 | 61.2 | 68.9 | 68.9 |
Low rotor inertia (standard) without brake and without feedback | kg·cm² | 23 | 23 | 27 | 27 | 36.1 | 36.1 | 40.5 | 40.5 |
Mass without holding brake | Kg | 13.5 | 13.5 | 15.5 | 15.5 | 18.5 | 18.5 | 20.5 | 20.5 |
Mass with holding brake | Kg | 15.7 | 15.7 | 17.7 | 17.7 | 20.7 | 20.7 | 22.7 | 22.7 |
Maximum axial shaft load applied on the shaft’s center | N | 240 | 240 | 240 | 240 | 240 | 240 | 240 | 240 |
Maximun radial shaft load applied on the shaft’s center | N | 800 | 800 | 800 | 800 | 800 | 800 | 800 | 800 |
Family Specification | Unit | TC 142 |
---|---|---|
Time Rating | Continuous | |
Insulation Class | F | |
Enclosure | Totally enclosed. Self-cooled | |
Protection Class | IP 65 standard on the body | |
Insulation System UL/CSA | cURus , DV155J File nr. : E216686 | |
Ambient Temperature | °C | 0 to 40 |
Ambient Humidity | % | 5 to 85% (non-condensing) |
Poles | 6 | |
Thermal Protection | PT 1000 | |
Certification | CE | |
Recommendation | Rated output with 350 x 350 x 20 mm metallic heat sink flange coupling – Derating must be considered if the oil seal is applied – IP 54 standard shaft bushing |
Family Overview | Unit | TC 142 |
---|---|---|
Flange dimensions | mm | 142 |
Rated Output Power | Watt | 2700-5000 |
Rated Torque | Nm | 8,6 – 15,9 |
Rated Speed | rpm | 3000 |
Technical specifications are for guidance only, as the individual drives and motors are configured for specific applications. Subject to technical and visual changes.
Parameter | Unit | T 142 12 15 |
---|---|---|
Continous Stall Torque | Nm | 11 |
Peak Torque | Nm | 31 |
Nominal Torque | Nm | 8.6 |
Rated Voltage | V | 230 |
Nominal power | W | 2700 |
Continuous stall Current | Arms | 12.1 |
Maximun Current | Arms | 34.1 |
Nominal Current | Arms | 9.9 |
Nominal working Speed | rpm | 3000 |
Maximum working speed 230VAC | rpm | 3900 |
Maximum working speed 400VAC | 4800 | |
Torque Constant | Nm/Arms | 0.91 |
Voltage Constant | Vrms/Krpm | 55 |
Winding resistance | Ohm | 0.6 |
Winding inductance | mH | 2.8 |
Electrical time constant | ms | 4.6 |
Thermal Resistance | °C/W | 0.52 |
Mechanical timeconstant high rotor inertia | ms | 4.2 |
Mechanical time constant low rotor inertia | ms | 2.5 |
High rotor inertia (as an option) without brake and without feedback | kg·cm² | 38.4 |
Low rotor inertia (standard) without brake and without feedback | kg·cm² | 23 |
Mass without holding brake | Kg | 13.5 |
Mass with holding brake | Kg | 15.7 |
Maximum axial shaft load applied on the shaft’s center | N | 240 |
Maximun radial shaft load applied on the shaft’s center | N | 800 |
Technical specifications are for guidance only, as the individual drives and motors are configured for specific applications. Subject to technical and visual changes.
Parameter | Unit | T 142 12 17 |
---|---|---|
Continous Stall Torque | Nm | 11 |
Peak Torque | Nm | 31 |
Nominal Torque | Nm | 8.6 |
Rated Voltage | V | 400 |
Nominal power | W | 2700 |
Continuous stall Current | Arms | 6.9 |
Maximun Current | Arms | 19.3 |
Nominal Current | Arms | 5.6 |
Nominal working Speed | rpm | 3000 |
Maximum working speed 230VAC | rpm | 2200 |
Maximum working speed 400VAC | 3900 | |
Torque Constant | Nm/Arms | 1.6 |
Voltage Constant | Vrms/Krpm | 97 |
Winding resistance | Ohm | 1.6 |
Winding inductance | mH | 7.9 |
Electrical time constant | ms | 4.8 |
Thermal Resistance | °C/W | 0.59 |
Mechanical timeconstant high rotor inertia | ms | 3.7 |
Mechanical time constant low rotor inertia | ms | 2.2 |
High rotor inertia (as an option) without brake and without feedback | kg·cm² | 38.4 |
Low rotor inertia (standard) without brake and without feedback | kg·cm² | 23 |
Mass without holding brake | Kg | 13.5 |
Mass with holding brake | Kg | 15.7 |
Maximum axial shaft load applied on the shaft’s center | N | 240 |
Maximun radial shaft load applied on the shaft’s center | N | 800 |
Technical specifications are for guidance only, as the individual drives and motors are configured for specific applications. Subject to technical and visual changes.
Parameter | Unit | T 142 16,5 15 |
---|---|---|
Continous Stall Torque | Nm | 14 |
Peak Torque | Nm | 42 |
Nominal Torque | Nm | 11.1 |
Rated Voltage | V | 230 |
Nominal power | W | 3500 |
Continuous stall Current | Arms | 15.4 |
Maximun Current | Arms | 46.2 |
Nominal Current | Arms | 12.9 |
Nominal working Speed | rpm | 3000 |
Maximum working speed 230VAC | rpm | 3900 |
Maximum working speed 400VAC | 4600 | |
Torque Constant | Nm/Arms | 0.91 |
Voltage Constant | Vrms/Krpm | 55 |
Winding resistance | Ohm | 0.4 |
Winding inductance | mH | 2.1 |
Electrical time constant | ms | 5.2 |
Thermal Resistance | °C/W | 0.47 |
Mechanical timeconstant high rotor inertia | ms | 3.4 |
Mechanical time constant low rotor inertia | ms | 2 |
High rotor inertia (as an option) without brake and without feedback | kg·cm² | 45.9 |
Low rotor inertia (standard) without brake and without feedback | kg·cm² | 27 |
Mass without holding brake | Kg | 15.5 |
Mass with holding brake | Kg | 17.7 |
Maximum axial shaft load applied on the shaft’s center | N | 240 |
Maximun radial shaft load applied on the shaft’s center | N | 800 |
Technical specifications are for guidance only, as the individual drives and motors are configured for specific applications. Subject to technical and visual changes.
Parameter | Unit | T 142 16,5 17 |
---|---|---|
Continous Stall Torque | Nm | 14 |
Peak Torque | Nm | 42 |
Nominal Torque | Nm | 11.1 |
Rated Voltage | V | 400 |
Nominal power | W | 3500 |
Continuous stall Current | Arms | 8.7 |
Maximun Current | Arms | 26.2 |
Nominal Current | Arms | 7.3 |
Nominal working Speed | rpm | 3000 |
Maximum working speed 230VAC | rpm | 2200 |
Maximum working speed 400VAC | 3900 | |
Torque Constant | Nm/Arms | 1.6 |
Voltage Constant | Vrms/Krpm | 97 |
Winding resistance | Ohm | 1.3 |
Winding inductance | mH | 6.9 |
Electrical time constant | ms | 5.2 |
Thermal Resistance | °C/W | 0.45 |
Mechanical timeconstant high rotor inertia | ms | 3.5 |
Mechanical time constant low rotor inertia | ms | 2.1 |
High rotor inertia (as an option) without brake and without feedback | kg·cm² | 45.9 |
Low rotor inertia (standard) without brake and without feedback | kg·cm² | 27 |
Mass without holding brake | Kg | 15.5 |
Mass with holding brake | Kg | 17.7 |
Maximum axial shaft load applied on the shaft’s center | N | 240 |
Maximun radial shaft load applied on the shaft’s center | N | 800 |
Technical specifications are for guidance only, as the individual drives and motors are configured for specific applications. Subject to technical and visual changes.
Parameter | Unit | T 142 21 15 |
---|---|---|
Continous Stall Torque | Nm | 18 |
Peak Torque | Nm | 55 |
Nominal Torque | Nm | 13.1 |
Rated Voltage | V | 230 |
Nominal power | W | 4100 |
Continuous stall Current | Arms | 19.8 |
Maximun Current | Arms | 60.5 |
Nominal Current | Arms | 15.1 |
Nominal working Speed | rpm | 3000 |
Maximum working speed 230VAC | rpm | 3900 |
Maximum working speed 400VAC | 4400 | |
Torque Constant | Nm/Arms | 0.91 |
Voltage Constant | Vrms/Krpm | 55 |
Winding resistance | Ohm | 0.25 |
Winding inductance | mH | 1.4 |
Electrical time constant | ms | 5.6 |
Thermal Resistance | °C/W | 0.46 |
Mechanical timeconstant high rotor inertia | ms | 2.8 |
Mechanical time constant low rotor inertia | ms | 1.6 |
High rotor inertia (as an option) without brake and without feedback | kg·cm² | 61.2 |
Low rotor inertia (standard) without brake and without feedback | kg·cm² | 36.1 |
Mass without holding brake | Kg | 18.5 |
Mass with holding brake | Kg | 20.7 |
Maximum axial shaft load applied on the shaft’s center | N | 240 |
Maximun radial shaft load applied on the shaft’s center | N | 800 |
Technical specifications are for guidance only, as the individual drives and motors are configured for specific applications. Subject to technical and visual changes.
Parameter | Unit | T 142 21 17 |
---|---|---|
Continous Stall Torque | Nm | 18 |
Peak Torque | Nm | 55 |
Nominal Torque | Nm | 13.1 |
Rated Voltage | V | 400 |
Nominal power | W | 4100 |
Continuous stall Current | Arms | 11.2 |
Maximun Current | Arms | 34.3 |
Nominal Current | Arms | 8.5 |
Nominal working Speed | rpm | 3000 |
Maximum working speed 230VAC | rpm | 2200 |
Maximum working speed 400VAC | 3900 | |
Torque Constant | Nm/Arms | 1.6 |
Voltage Constant | Vrms/Krpm | 97 |
Winding resistance | Ohm | 0.8 |
Winding inductance | mH | 4.5 |
Electrical time constant | ms | 5.6 |
Thermal Resistance | °C/W | 0.45 |
Mechanical timeconstant high rotor inertia | ms | 2.9 |
Mechanical time constant low rotor inertia | ms | 1.7 |
High rotor inertia (as an option) without brake and without feedback | kg·cm² | 61.2 |
Low rotor inertia (standard) without brake and without feedback | kg·cm² | 36.1 |
Mass without holding brake | Kg | 18.5 |
Mass with holding brake | Kg | 20.7 |
Maximum axial shaft load applied on the shaft’s center | N | 240 |
Maximun radial shaft load applied on the shaft’s center | N | 800 |
Technical specifications are for guidance only, as the individual drives and motors are configured for specific applications. Subject to technical and visual changes.
Parameter | Unit | T 142 25,5 15 |
---|---|---|
Continous Stall Torque | Nm | 21 |
Peak Torque | Nm | 65 |
Nominal Torque | Nm | 15.9 |
Rated Voltage | V | 230 |
Nominal power | W | 5000 |
Continuous stall Current | Arms | 23.1 |
Maximun Current | Arms | 71.4 |
Nominal Current | Arms | 18.4 |
Nominal working Speed | rpm | 3000 |
Maximum working speed 230VAC | rpm | 3900 |
Maximum working speed 400VAC | 4400 | |
Torque Constant | Nm/Arms | 0.91 |
Voltage Constant | Vrms/Krpm | 55 |
Winding resistance | Ohm | 0.24 |
Winding inductance | mH | 1.3 |
Electrical time constant | ms | 5.4 |
Thermal Resistance | °C/W | 0.36 |
Mechanical timeconstant high rotor inertia | ms | 3 |
Mechanical time constant low rotor inertia | ms | 1.8 |
High rotor inertia (as an option) without brake and without feedback | kg·cm² | 68.9 |
Low rotor inertia (standard) without brake and without feedback | kg·cm² | 40.5 |
Mass without holding brake | Kg | 20.5 |
Mass with holding brake | Kg | 22.7 |
Maximum axial shaft load applied on the shaft’s center | N | 240 |
Maximun radial shaft load applied on the shaft’s center | N | 800 |
Technical specifications are for guidance only, as the individual drives and motors are configured for specific applications. Subject to technical and visual changes.
Parameter | Unit | T 142 25,5 17 |
---|---|---|
Continous Stall Torque | Nm | 21 |
Peak Torque | Nm | 65 |
Nominal Torque | Nm | 15.9 |
Rated Voltage | V | 400 |
Nominal power | W | 5000 |
Continuous stall Current | Arms | 13.1 |
Maximun Current | Arms | 40.5 |
Nominal Current | Arms | 10.4 |
Nominal working Speed | rpm | 3000 |
Maximum working speed 230VAC | rpm | 2200 |
Maximum working speed 400VAC | 3900 | |
Torque Constant | Nm/Arms | 1.6 |
Voltage Constant | Vrms/Krpm | 97 |
Winding resistance | Ohm | 0.8 |
Winding inductance | mH | 4.2 |
Electrical time constant | ms | 5.5 |
Thermal Resistance | °C/W | 0.34 |
Mechanical timeconstant high rotor inertia | ms | 3.1 |
Mechanical time constant low rotor inertia | ms | 1.8 |
High rotor inertia (as an option) without brake and without feedback | kg·cm² | 68.9 |
Low rotor inertia (standard) without brake and without feedback | kg·cm² | 40.5 |
Mass without holding brake | Kg | 20.5 |
Mass with holding brake | Kg | 22.7 |
Maximum axial shaft load applied on the shaft’s center | N | 240 |
Maximun radial shaft load applied on the shaft’s center | N | 800 |
Technical specifications are for guidance only, as the individual drives and motors are configured for specific applications. Subject to technical and visual changes.