BPSM 260 Servo Motors

BPSM 260 Servo Motors

BPSM 260 three-phase permanent magnet synchronous servo motors from Baolei Electric deliver very high torque, strong overload capability and fast response for heavy CNC gantries, large presses and other high-power industrial applications, with IP65 protection and flexible encoder/brake options.

Description

BPSM Three-Phase Permanent Magnet Synchronous Servo Motors

1.1 Features of BPSM Servo Motors

BPSM series AC permanent magnet synchronous servo motors from Baolei Electric are developed with independent intellectual property rights. They adopt high-performance rare-earth permanent magnet rotors and offer the following key features:

  • Low inertia & high power density – compact size with high torque output and excellent acceleration and deceleration capability.

  • Strong overload capability – suitable for applications with frequent start/stop and high peak torque demands.

  • Extremely low torque ripple & low noise – three-phase sinusoidal design provides smooth operation and quiet running.

  • Attractive appearance & robust design – suitable for harsh industrial environments with a high cost-performance ratio.

  • High-performance rare-earth magnet rotor – high torque, low inertia, and fast dynamic response.

  • Three-phase sinusoidal excitation – excellent low-speed smoothness and precise speed control.

  • F-class insulation with built-in thermal protector – enhances reliability and protects the motor from overheating.

  • Flexible feedback options – incremental or absolute optical encoders and resolvers are available.

  • High protection level – IP65 enclosure with convenient, quick-connect cable interfaces.

  • Flexible mounting – free and easy vertical mounting options for various machine layouts.


2. Handling, Storage, and Transportation of BPSM Servo Motors

2.1 Safety Instructions

When operating or installing BPSM servo motors, the following precautions must be observed:

  • Mechanical installation must be carried out by personnel with professional mechanical installation knowledge.

  • Electrical installation must be carried out by personnel with professional electrical knowledge.

  • Before unpacking or installing the servo motor, operators must thoroughly read and understand the motor documentation and be fully aware of the relevant safety precautions.

  • Incorrect mechanical or electrical handling may result in personal injury or damage to the equipment.

2.2 Storage and Transportation

  • Storage temperature: –25 °C to +55 °C, no icing.

  • Relative humidity: 5 % – 90 %, non-condensing.

  • Packaging must not be subjected to heavy loads or stacking pressure.

  • Keep away from corrosive and flammable gases, oil mist, and excessive dust.

  • Storage time: no special limitation under proper conditions.

  • During transportation, avoid impact and heavy pressure, and handle the motor with care.


3. Technical Characteristics of BPSM Servo Motors

3.1 General Technical Characteristics

  • Environmental conditions:

    • Ambient temperature: 5 °C to +40 °C.

    • Altitude: ≤ 1000 m above sea level.
      Under these conditions, the motor can deliver its rated output.

  • Humidity: Relative humidity < RH 90 %, non-condensing.

  • Power derating: When ambient temperature is 40 °C–50 °C and the installation altitude exceeds 1000 m,
    The output power should be reduced by 1.5 % for every additional 100 m.

  • Fail-safe brake (optional):

    • When the motor is not energized or in the event of a sudden power failure, the brake engages to prevent shaft rotation, avoiding equipment damage or personal injury.

    • During normal operation, the brake is energized and released, allowing free shaft rotation.

  • Bearings:

    • All BPSM servo motors use imported, single-row, double-sealed deep-groove ball bearings with high/low temperature grease.

    • Bearing service life is not less than 20,000 hours under normal load conditions.

3.2 Electrical Characteristics

  • The servo drive system must be designed to minimize electromagnetic interference from surrounding equipment and to reduce interference to other devices.

  • The motor protective earth (PE) must be short, thick, and reliably connected to the protective earth (standard ground).

  • Shielded cables must be connected to a large metal reference plane to suppress high-frequency interference.

  • The connection of protective earth and shielding must be clearly distinguished and must not be mixed.

  • Cables between the motor and servo drive must be shielded:

    • Power cable capacitance: not less than 150 pF/m.

    • Position feedback cable capacitance: not less than 120 pF/m.

3.3 Mechanical Characteristics

  • Fastening screws must be regularly inspected to prevent loosening or falling off.

  • The motor housing must not be subjected to heavy impact or external force to avoid damage.

  • During normal operation of the mechanism, cleaning the external surface while running is strictly prohibited to avoid injury.

  • During installation, the load shaft must be precisely aligned and concentric with the shaft; otherwise, shaft breakage or damage to the driven mechanism may occur.

  • When mounting pulleys, gears, helical gears, or planetary gearboxes on the motor shaft, the axial (Fa) and radial (Fr) loads must be checked against the motor’s allowable load values.

  • The design must satisfy the following checks:

    dmin⁡≥2×Tm/Frd_{min} ge 2 times T_m / F_r

    where dₘᵢₙ is the minimum diameter of the pulley/gear, and Tₘ is the motor peak torque.
    Ensuring this relationship helps prevent damage to the motor shaft and bearings.

Technical Specifications for the BPSM Series:

Frame number 260
Model N.m Vac rpm kW A Kt
N.m/A
V/krpm rpm N.m Kg.cm² Poles Kg mm
260H30D15C 191 380 1500 30   63 3.3 198 2000 573 386 8 95 468
260H34D17C 191 380 1700 34   69 3.0 180 2300 573 386 8 95 468
260H40D20C 191 380 2000 40   81 2.5 153 2500 573 386 8 95 468
260H33D15C 208 380 1500 33   67 3.4 204 2000 624 434 8 105 488
260H37D17C 208 380 1700 37   74 3.0 183 2300 624 434 8 105 488
260H44D20C 208 380 2000 44   89 2.5 153 2500 624 434 8 105 488
260H37D15C 236 380 1500 37   75 3.4 204 2000 708 482 8 112 508
260H42D17C 236 380 1700 42   85 3.0 181 2300 708 482 8 112 508
260H50D20C 236 380 2000 50 105 2.4 147 2500 708 482 8 112 508
260H42D15C 264 380 1500 42 84 3.4 204 2000 792 542 8 123 533
260H47D17C 264 380 1700 47 96 3.0 179 2300 792 542 8 123 533
260H56D20C 264 380 2000 56 112 2.5 153 2500 792 542 8 123 533
260H45D15C 287 380 1500 45 94 3.3 199 2000 861 601 8 134 558
260H51D17C 287 380 1700 51 101 3.1 185 2300 861 601 8 134 558
260H60D20C 287 380 2000 60 120 2.6 156 2500 861 601 8 134 558
260H50D15C 315 380 1500 50 103 3.3 200 2000 945 649 8 141 578
260H56D17C 315 380 1700 56 111 3.1 185 2300 945 649 8 141 578
260H66D20C 315 380 2000 66 134 2.5 154 2500 945 649 8 141 578
260H55D15C 350 380 1500 55 118 3.2 195 2000 1050 745 8 155 618
260H62D17C 350 380 1700 62 129 2.9 177 2300 1050 745 8 155 618
260H73D20C 350 380 2000 73 144 2.6 159 2500 1050 745 8 155 618
260H66D15C 420 380 1500 66 142 3.2 193 2000 1260 900 8 174 698
260H75D17C 420 380 1700 75 160 2.8 172 2300 1260 900 8 174 698
260H88D20C 420 380 2000 88 183 2.5 150 2500 1260 900 8 174 698
260H75D15C 480 380 1500 75 158 3.3 199 2000 1440 1043 8 190 765
260H85D17C 480 380 1700 85 180 2.9 174 2300 1440 1043 8 190 765
260H10E20C 480 380 2000 100 211 2.5 150 2500 1440 1043 8 190 765
260H90D15C 570 380 1500 90 184 3.4 203 2000 1710 1210 8 208 835
260H10E17C 560 380 1700 100 211 2.9 174 2300 1680 1210 8 208 835
260H11E20C 550 380 2000 115 249 2.4 145 2500 1650 1210 8 208 835
Motor Insulation Class: H; Thermal Protection: Pt100, KTY (optional);  Protection Rating: IP65 (excluding fan shroud);  Connection Method:  Aviation Plug or Junction Box;  Fan Voltage:  220V;  Duty Cycle: S1

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