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China Professional CHINAMFG Gear Motor 12mm 3V-6V Small Electric Reduction Motors with Gearbox Motor vacuum pump electric

Product Description

 

Product Parameters

Model No.: KM-12FN30-298-571

Size details:
Motor Diameter: φ12mm
Gear box length : 10mm
Shaft length: customization
Specifications:
Rated voltage: DC 2.5V
Direction of rotation: CW/CCW 
No load speed: 100rpm
No load current: 0.04A 
Rated torque: 540g.cm 
Rated speed: 80rpm

All technical data can custom made for different application.

Customized items:
DC motor, gearbox motor, vibration motor, automotive motor.
Accessories offered like encoder, gear,worm, wire, connector.
Ball bearing or Oil-impregnated bearing.
Shaft configuration(multi-knurls,D-cut shape, four-knurls etc).
Metal end cap or plastic end cap.
 Precious metal brush/ carbon brush.
Technical data.

Detailed Photos

Application

 

Certifications

Packaging & Shipping

Company Profile

Our Advantages

FAQ

1.What kind of motor do you supply?

Kinmore specializes in making DC motors & gear motors with the diameter ranging from 6mm-80mm; automotive motors and vibration motors are our strength area, too; we also provide brushless motors.
 

2.What’s the lead time for samples or mass production?

Normally, it takes 15-25 days to produce samples; about mass production, it will take 35-40 days for DC motor production and 45-60 days for gear motor production.
 

3.Could you mind sending the quotation for this motor?

For all of our motors, they are customized based on different requirements. We will offer the quotation soon after you send your specific requests and annual quantity.
 

4.Do you offer some kinds of accessories like encoder, PCB, connector, soldering wired for the motor?

We specialize in motors, instead of accessories. But if your annual demand reaches a certain amount, we will apply to the engineer for offering the accessories.

5.Are your motors certificated with UL, CB Tüv, CE?

All of our motors are UL, CB Tüv, CE compliant, and all our items are making under REACH and ROHS. We could provide motor’s exploring drawing and BOM for your products UL certificated. We also could make motors built-in filters based on your EMC directive for your EMC passing.

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Application: Universal, Industrial, Household Appliances, Car, Power Tools
Operating Speed: Constant Speed
Excitation Mode: Compound
Function: Control, Driving
Casing Protection: Open Type
Number of Poles: 2
Customization:
Available

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gear motor

Can gear motors be used in robotics, and if so, what are some notable applications?

Yes, gear motors are widely used in robotics due to their ability to provide torque, precise control, and compact size. They play a crucial role in various robotic applications, enabling the movement, manipulation, and control of robotic systems. Here are some notable applications of gear motors in robotics:

1. Robotic Arm Manipulation:

Gear motors are commonly used in robotic arms to provide precise and controlled movement. They enable the articulation of the arm’s joints, allowing the robot to reach different positions and orientations. Gear motors with high torque capabilities are essential for lifting, rotating, and manipulating objects with varying weights and sizes.

2. Mobile Robots:

Gear motors are employed in mobile robots, including wheeled robots and legged robots, to drive their locomotion. They provide the necessary torque and control for the robot to move, turn, and navigate in different environments. Gear motors with appropriate gear ratios ensure the robot’s mobility, stability, and maneuverability.

3. Robotic Grippers and End Effectors:

Gear motors are used in robotic grippers and end effectors to control the opening, closing, and gripping force. By integrating gear motors into the gripper mechanism, robots can grasp and manipulate objects of various shapes, sizes, and weights. The gear motors enable precise control over the gripping action, allowing the robot to handle delicate or fragile objects with care.

4. Autonomous Drones and UAVs:

Gear motors are utilized in the propulsion systems of autonomous drones and unmanned aerial vehicles (UAVs). They drive the propellers or rotors, providing the necessary thrust and control for the drone’s flight. Gear motors with high power-to-weight ratios, efficient energy conversion, and precise speed control are crucial for achieving stable and maneuverable flight in drones.

5. Humanoid Robots:

Gear motors are integral to the movement and functionality of humanoid robots. They are used in robotic joints, such as hips, knees, and shoulders, to enable human-like movements. Gear motors with appropriate torque and speed capabilities allow humanoid robots to walk, run, climb stairs, and perform complex motions resembling human actions.

6. Robotic Exoskeletons:

Gear motors play a vital role in robotic exoskeletons, which are wearable robotic devices designed to augment human strength and assist in physical tasks. Gear motors are used in the exoskeleton’s joints and actuators, providing the necessary torque and control to enhance human abilities. They enable users to perform tasks with reduced effort, assist in rehabilitation, or provide support in physically demanding environments.

These are just a few notable applications of gear motors in robotics. Their versatility, torque capabilities, precise control, and compact size make them indispensable components in various robotic systems. Gear motors enable robots to perform complex tasks, move with agility, interact with the environment, and assist humans in a wide range of applications, from industrial automation to healthcare and exploration.

gear motor

What are some common challenges or issues associated with gear motors, and how can they be addressed?

Gear motors, like any mechanical system, can face certain challenges or issues that may affect their performance, reliability, or longevity. However, many of these challenges can be addressed through proper design, maintenance, and operational practices. Here are some common challenges associated with gear motors and potential solutions:

1. Gear Wear and Failure:

Over time, gears in a gear motor can experience wear, resulting in decreased performance or even failure. The following measures can address this challenge:

  • Proper Lubrication: Regular lubrication with the appropriate lubricant can minimize friction and wear between gear teeth. It is essential to follow manufacturer recommendations for lubrication intervals and use high-quality lubricants suitable for the specific gear motor.
  • Maintenance and Inspection: Routine maintenance and periodic inspections can help identify early signs of gear wear or damage. Timely replacement of worn gears or components can prevent further damage and ensure the gear motor’s optimal performance.
  • Material Selection: Choosing gears made from durable and wear-resistant materials, such as hardened steel or specialized alloys, can increase their lifespan and resistance to wear.

2. Backlash and Inaccuracy:

Backlash, as discussed earlier, can introduce inaccuracies in gear motor systems. The following approaches can help address this issue:

  • Anti-Backlash Gears: Using anti-backlash gears, which are designed to minimize or eliminate backlash, can significantly reduce inaccuracies caused by gear play.
  • Tight Manufacturing Tolerances: Ensuring precise manufacturing tolerances during gear production helps minimize backlash and improve overall accuracy.
  • Backlash Compensation: Implementing control algorithms or mechanisms to compensate for backlash can help mitigate its effects and improve the accuracy of the gear motor.

3. Noise and Vibrations:

Gear motors can generate noise and vibrations during operation, which may be undesirable in certain applications. The following strategies can help mitigate this challenge:

  • Noise Dampening: Incorporating noise-dampening features, such as vibration-absorbing materials or isolation mounts, can reduce noise and vibrations transmitted from the gear motor to the surrounding environment.
  • Quality Gears and Bearings: Using high-quality gears and bearings can minimize vibrations and noise generation. Precision-machined gears and well-maintained bearings help ensure smooth operation and reduce unwanted noise.
  • Proper Alignment: Ensuring accurate alignment of gears, shafts, and other components reduces the likelihood of noise and vibrations caused by misalignment. Regular inspections and adjustments can help maintain optimal alignment.

4. Overheating and Thermal Management:

Heat buildup can be a challenge in gear motors, especially during prolonged or heavy-duty operation. Effective thermal management techniques can address this issue:

  • Adequate Ventilation: Providing proper ventilation and airflow around the gear motor helps dissipate heat. This can involve designing cooling fins, incorporating fans or blowers, or ensuring sufficient clearance for air circulation.
  • Heat Dissipation Materials: Using heat-dissipating materials, such as aluminum or copper, in motor housings or heat sinks can improve heat dissipation and prevent overheating.
  • Monitoring and Control: Implementing temperature sensors and thermal protection mechanisms allows for real-time monitoring of the gear motor’s temperature. If the temperature exceeds safe limits, the motor can be automatically shut down or adjusted to prevent damage.

5. Load Variations and Shock Loads:

Unexpected load variations or shock loads can impact the performance and durability of gear motors. The following measures can help address this challenge:

  • Proper Sizing and Selection: Choosing gear motors with appropriate torque and load capacity ratings for the intended application helps ensure they can handle expected load variations and occasional shock loads without exceeding their limits.
  • Shock Absorption: Incorporating shock-absorbing mechanisms, such as dampers or resilient couplings, can help mitigate the effects of sudden load changes or impacts on the gear motor.
  • Load Monitoring: Implementing load monitoring systems or sensors allows for real-time monitoring of load variations. This information can be used to adjust operation or trigger protective measures when necessary.

By addressing these common challenges associated with gear motors through appropriate design considerations, regular maintenance, and operational practices, it is possible to enhance their performance, reliability, and longevity.

gear motor

How does the gearing mechanism in a gear motor contribute to torque and speed control?

The gearing mechanism in a gear motor plays a crucial role in controlling torque and speed. By utilizing different gear ratios and configurations, the gearing mechanism allows for precise manipulation of these parameters. Here’s a detailed explanation of how the gearing mechanism contributes to torque and speed control in a gear motor:

The gearing mechanism consists of multiple gears with varying sizes, tooth configurations, and arrangements. Each gear in the system engages with another gear, creating a mechanical connection. When the motor rotates, it drives the rotation of the first gear, which then transfers the motion to subsequent gears, ultimately resulting in the output shaft’s rotation.

Torque Control:

The gearing mechanism in a gear motor enables torque control through the principle of mechanical advantage. The gear system utilizes gears with different numbers of teeth, known as gear ratio, to adjust the torque output. When a smaller gear (pinion) engages with a larger gear (gear), the pinion rotates faster than the gear but exerts more force or torque. This results in torque amplification, allowing the gear motor to deliver higher torque at the output shaft while reducing the rotational speed. Conversely, if a larger gear engages with a smaller gear, torque reduction occurs, resulting in higher rotational speed at the output shaft.

By selecting the appropriate gear ratio, the gearing mechanism effectively adjusts the torque output of the gear motor to match the requirements of the application. This torque control capability is essential in applications that demand high torque for heavy lifting or overcoming resistance, as well as applications that require lower torque but higher rotational speed.

Speed Control:

The gearing mechanism also contributes to speed control in a gear motor. The gear ratio determines the relationship between the rotational speed of the input shaft (driven by the motor) and the output shaft. When a gear motor has a higher gear ratio (more teeth on the driven gear compared to the driving gear), it reduces the output speed while increasing the torque. Conversely, a lower gear ratio increases the output speed while reducing the torque.

By choosing the appropriate gear ratio, the gearing mechanism allows for precise speed control in a gear motor. This is particularly useful in applications that require specific speed ranges or variations, such as conveyor systems, robotic movements, or machinery that needs to operate at different speeds for different tasks. The speed control capability of the gearing mechanism enables the gear motor to match the desired speed requirements of the application accurately.

In summary, the gearing mechanism in a gear motor contributes to torque and speed control by utilizing different gear ratios and configurations. It enables torque amplification or reduction, depending on the gear arrangement, allowing the gear motor to deliver the required torque output. Additionally, the gear ratio also determines the relationship between the rotational speed of the input and output shafts, providing precise speed control. These torque and speed control capabilities make gear motors versatile and suitable for a wide range of applications in various industries.

China Professional CHINAMFG Gear Motor 12mm 3V-6V Small Electric Reduction Motors with Gearbox Motor   vacuum pump electricChina Professional CHINAMFG Gear Motor 12mm 3V-6V Small Electric Reduction Motors with Gearbox Motor   vacuum pump electric
editor by CX 2024-05-14

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In addition, all our generation techniques are in compliance with ISO9002 requirements. PersonnelOur income people are effectively skilled to accommodate your requests and converse English for your usefulness. We are seeking forward to developing successful company interactions with new customers all around the planet in the future. Our principal goods, steel EPTes ,gear elements for motors via powEPTmetallurgy processing.
We EPTize in developing and manufacturing highly engineered, custom made gear components , EPT , parts and assemblies. Our professional staff are geared towards providing consumers with large high quality merchandise and excellent support .

A EPT is a EPT EPT device to generate high torque by lowering the travel pace or increase the drive velocity the other way. Planetary EPT consisting 3 factors: EPTgear, planet equipment and ring gear . A EPT gear is a gearwheel in a planetary gear technique, that rotates close to its possess aXiHu (West Lake) Dis.s and has other gears (world gears) that rotate all around it. Significantly like the EPT and planets in our solar technique. EPT volume of planetary gears in a EPT differs primarily based on the equipment ratio. Most planetary EPTes have from two to 5 planet gears. When looking at planetary gears, the toughness of the EPT is generally determined by the size of the EPTgear. More substantial EPTgears will allow for larger torque values. EPT planet carrier,Its aim is to maintain up to gears of the very same dimensions, which mesh with the EPTgear. In a simple planetary EPT set up, enter EPT turns the EPTgear at higher velocity. EPT planets, spaced around the central aXiHu (West Lake) Dis.s of rotation, mesh with the EPTas nicely as the mounted ring gear, so they are compelled to orbit as they roll. All the planets are mounted to a single rotating member, named carrier. As the planet provider turns, it delivers lower-velocity, high-torque output. EPT EPT Gear Gets EPT Enter Whilst EPT three World Gears Supply EPT Ouput By way of A World Provider .

Our EPT,LigEPT bodyweight,small size, substantial carrying potential, EPT support life .Smooth procedure, low sound, big output torque, massive velocity ratio, higher performance, EPT diversion, and multi-tooth meshing by powEPTmetallurgy method .

EPT ratio 3 to one thousand .

Customized steel parts specification

Merchandise type personalized gear parts ,OEM planetary gear areas , pace EPT , motor gears , custom made motor EPT
EPT metal
Procedure PowEPTmetallurgy , steel injection molding , cnc machining
Therapy plating ,sand blasting , PVD , coating
Tolerance plusmn0.3%
Drawing format DWG ,IGS , STP
Delivery time ten daEPTfor mass production

PowEPTmetallurgy (PM) is a steel parts / elements fabrication way and made from steel powders material . EPT approach of powEPTmetallurgy (PM) is blending fine powEPTmaterials , push them into a desired form or kind compacting , and heating the compressed materials in a controlled atmosphere to bond the substance sintering .PM method can keep away from , or drastically lessen the want to use steel removing procedures,thereby significantly minimizing produce losses in manufacture and oftern resulting in reduced expenses .
EPT powEPTmetallurgy (PM) consist a few steps : powEPTblending,compaction and sintering .Frequent merchandise incEPT gears , structural metal areas , bushings used for cars , appliances and powEPTequipments .
Benefits of powEPTmetallurgy
EPT created by powEPTmetallurgy (PM) EPTly do not want more finishing , because makes excellent surface area complete.
Maintains shut dimensional tolerances
Offers components which could be warmth handled for enhanced power or increased put on resistance .
EPTre is considerably less wastage of uncooked material , can be really economical for mass creation .
Intricate designs elements can be manufactured . Gives managed porosity for self-lubrication or filtration.
Suits to higher volume areas productions needs .

Personalized steel elements

Workshop

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Item Identify : 8mm EPT motor ,Electric planet Speed EPT EPT, 3V , 6V , 12V ,24V DC planetary EPTed motor
EPT Sort: Planetary EPTs motor
EPT: Plastic
Equipment Ratio : 5:1 , ten:1 , twenty:1 , 25:1 , thirty:1 , forty:one , fifty:1 , sixty:1 ,70:one #8230100:1… customised
EPT diameter : 6mm , 8mm,10mm , 12mm , 16mm , 22mm , 24mm , 32mm , 38mm , 42mm ……
3V 6V 12V 24V accessible .
Torque: 20 – 50 Nm, ten – twenty Nm, five – 10 Nm,1 – 5 Nm, .5 – 1 Nm, .2 – .5 Nm, – .one Nm, .1 – .2 Nm

D Shaft :1mm stainless metal output shaft
Shade : Black amp silver
RPM : 10, twenty , thirty , 40 , fifty ,60 , 70, 100, two hundred…a thousand, 2000

We are a factory EPTized in metal EPT by way of powEPTmetallurgy process amp metal EPT molding MIM approach and dc motor .We solutions with ODM/OEM EPT motor layout and deveXiHu (West Lake) Dis.Hu (West Lake) Dis.ment , an expecienced EPTmotors maker.
A planetary (or epicyclical) EPT utilizes epicyclical EPTs for pace reduction. It is composed of one particular or a lot more toothed wheels turning about a rotating shaft. Every rotates on its personal aXiHu (West Lake) Dis.s as well as revolving about the central shaft. This gives excellent reduction capacity in a small place, making them typical in automatic EPTs.These mechanisms are employed anywhere performance and large reduction ratios are essential in a tiny room. Examples are automatic EPTs and several EPT applications utilizing electric EPT motors.
planetary EPTs also refer as epicyclic EPTing consisting 3 factors EPTEPT, earth EPT and ring EPT. EPT EPT is situated at the cEPTr that transmits torque to earth EPTs orbiting around the EPTEPT. The two programs are positioned inside the ring EPT. In the toothed formation EPTand world EPTs are externally mesh and ring EPT internally meshes.
Planetary EPT is found in a lot of variation and preparations to meet up with a wide assortment of velocity-ratio in the deign demands. Planetary EPT program is use in may differ apps this sort of as, clocks, lunar calendar, automobile mirror, toys, EPThead motor, turbine motor and many a lot more.
Equipment motors are utilised in apps that call for lower shaft speed and higher torque output. This describes a broad range of programs and eventualities, incXiHu (West Lake) Dis.Hu (West Lake) Dis. several of the EPTs and products we interact with on a every day foundation.
Gears for EPT , spur EPTs , helical EPTs . Gears are toothed wheels are produced of metallic or plastic and transmit movement when meshing with every single other .
There are brushed motors , with brushes made out of carbon .Brushless motor , stepper brushless DC motors .

Application :

  • Healthcare and Well being Market
  • Electronics and Telecommunication Industry
  • Robotics Market
  • EPT Sector
  • CNC, EPT, and Resource EPT EPT
  • EPT, Textile, EPT, Meals, and EPTlurgical EPT

Planetary EPT advantages:

  • CoaXiHu (West Lake) Dis.al arrangement of enter shaft and output shaft
  • Load distribution to a number of planetary EPTs
  • High efficiency owing to lower rolling EPT
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  • Chance of use as overriding EPT
  • Favorable volume output
  • Suitability for a broad selection of application

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Geared motors for automated units .

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