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Under standard operating conditions, the design life easily exceeds 10,000 hours and can even reach 100,000 hours under light loads with good heat dissipation.
Commutation sparks are completely eliminated, allowing for safe use in high-risk environments such as the petroleum and chemical industries and eliminating fire hazards.
Engineered with high-performance rare-earth magnets and imported silent bearings, this 60mm DC motor delivers exceptional rotational stability. The internal architecture minimizes mechanical friction, resulting in a whisper-quiet acoustic profile that is essential for noise-sensitive environments. When handling the motor, the precision-machined outer shell provides a solid, industrial-grade tactile feel, reflecting the meticulous engineering within. The integration of rare-earth magnets ensures a highly concentrated magnetic field, translating electrical input into kinetic energy with minimal thermal loss, keeping the exterior cool to the touch even during extended operation.
From a control perspective, the system supports both built-in and external drive configurations. It integrates PWM speed regulation alongside precise Hall sensor feedback, enabling intelligent, variable-speed operation for complex operational demands. To ensure absolute reliability, every unit undergoes rigorous dynamic balancing, high-and-low temperature shock evaluations, and extended full-load aging tests. This strict quality control guarantees consistent performance across large-scale deployments. Furthermore, the optimized electromagnetic design significantly reduces vibration and suppresses electromagnetic interference (EMC), meeting the strict compliance standards required for sensitive electronics. The motor is fully certified to CE and RoHS international standards, facilitating rapid global market access for your end products.
The following performance metrics detail the operational capabilities of the LHOBL6030 series. Each parameter is carefully calibrated to balance power consumption with torque output, ensuring optimal efficiency across various voltage ranges. Whether your application requires a low-voltage 8-26V setup or a higher 100-340V DC configuration, these specifications provide the exact data needed for accurate system integration. For instance, the LHOBL6030-01 model is optimized for high-voltage direct current applications, delivering a rated speed of 1370 rpm, making it ideal for specialized industrial machinery. Conversely, the low-voltage LHOBL6030-04 variant provides an impressive rated speed of 2274 rpm with a torque of 83.4 mNm, perfectly suited for compact power tools requiring immediate rotational force.
Model | Voltage(V) | No Load | Rated Load | Stall | ||||||
Operating Range | Rated | Speed (rpm) | Current (A) | Torque (mNm) | Speed (rpm) | Current (A) | Output P. (W) | Torque (mNm) | Current (A) | |
LHOBL6030-01 | 100-340 dc | 310 dc | 2300 | 0.13 | 294 | 1370 | 0.57 | 42.3 | 730 | 2.0 |
LHOBL6030-02 | 8-26 | 24 | 2917 | 0.25 | 196 | 2553 | 2.58 | 52.45 | 1571 | 4.5 |
LHOBL6030-03 | 8-26 | 12 | 3262 | 0.59 | 150 | 2688 | 4.61 | 42.25 | 852 | 7.0 |
LHOBL6030-04 | 8-26 | 24 | 2834 | 0.24 | 350 | 2274 | 4.35 | 83.4 | 1772 | 7.0 |
LHOBL6030-05 | 8-38 | 36 | 1598 | 0.09 | 500 | 1028 | 2.23 | 53.9 | 1402 | 3.0 |
The versatile engineering of this 60mm motor allows it to excel across multiple demanding sectors, providing reliable kinetic energy and precise control tailored to specific environmental requirements.
Medical cooling fans, physical therapy vibration devices. In healthcare settings, equipment must operate unobtrusively. This motor provides the silent, vibration-free rotation necessary for patient monitors and physical therapy tools, ensuring a calm environment while maintaining strict EMC compliance to avoid interfering with sensitive diagnostic hardware.
Circulating fans, floor fans, air purifiers. Modern living spaces demand appliances that function without drawing attention. By utilizing imported silent bearings, the motor drives air purifier impellers and circulating fans with a smooth, consistent airflow, eliminating the distracting mechanical hum often associated with lesser components.
Electric screwdrivers, electric drills, air compressors, small pneumatic boosters. The complete elimination of commutation sparks makes this motor exceptionally safe for heavy-duty tools. It delivers immediate, sustained torque for pneumatic boosters and drills, maintaining a cool exterior even during prolonged, intensive operational cycles.
Equipment cooling fans, small duct ventilation modules, cooling units for testing equipment. Designed to withstand continuous operation, it drives ventilation modules in harsh environments. The motor's robust thermal management ensures that testing equipment remains at optimal temperatures, preventing overheating and maintaining operational integrity.
A: Standard bearing grease solidifies and fails at low temperatures; for outdoor equipment in cold regions, we offer custom low-temperature bearing grease and low-temperature-resistant enameled wire to ensure normal startup and operation at low temperatures. This specialized lubrication maintains its viscosity, preventing mechanical binding and ensuring a smooth, friction-free start even in freezing conditions.
A: Cable options include high-temperature Teflon wire, flexible silicone rubber wire, and standard PVC wire. We can customize cable length, shielded cable configurations, and various connectors such as JST and Molex to meet customer assembly requirements. This deep customization ensures a secure, snap-in fit with your existing control boards, reducing assembly time and preventing connection failures.
A: Automotive-grade brushless motors feature IP67 waterproof sealing, wide voltage compatibility, and vibration-resistant construction, making them suitable for driving radiator fans and battery thermal management blowers in new energy passenger vehicles.
A: Through an optimized electromagnetic core design and shielded construction, the motor actively suppresses electrical noise. This ensures it meets strict EMC standards, preventing interference with nearby microprocessors or wireless communication modules in smart appliances and medical diagnostic gear.