Dc Brush Gear Motor

Dc Brush Gear Motor

The PC-JS40 brushed geared motor delivers 0.005-2.5W output power with flexible voltage operation (3V-12V). Housed in a precision plastic casing with metal/plastic composite gears, it maintains optimal performance across no-load and maximum-efficiency conditions. Suitable for landscape lighting, display systems, and automated gifts, this motor provides stable torque through reduction ratios spanning 1:25 to 1:167.
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Description
Technical Parameters

The PC-JS40 brushed geared motor delivers 0.005-2.5W output power with flexible voltage operation (3V-12V). Housed in a precision plastic casing with metal/plastic composite gears, it maintains optimal performance across no-load and maximum-efficiency conditions. Suitable for landscape lighting, display systems, and automated gifts, this motor provides stable torque through reduction ratios spanning 1:25 to 1:167.

 

Engineered for diverse load requirements, this adaptable 12V DC geared motor ensures smooth operation in both continuous and intermittent duty cycles. The balanced gear design minimizes wear while optimizing power transmission efficiency. As a compact DC brush gear motor, it offers reliable rotational control for consumer products and commercial installations where space constraints and consistent motion output are critical performance factors.

 

 

Dimension

 

 

PC-JS40

dc brush gear motor

MODEL VOLTAGE NO LOAD AT MAXIMUM EFFIENCY STALL
OPERATING RANGE NOMINAL SPEED CURRENT SPEED r/min CURRENT A mN.m g.cm OUTPUT mN.m g.cm CURRENT A
r/min A w
PC-JS50CF-11590 9.0-13.0 12.0V 10 0.05 7.7 0.17 110.5 11270 0.89 4803.9 49000 0.59
PC-JS50CF-071380 20.0-25.0 24.0V 60 0.02 45.6 0.06 165.2 16848 0.79 688.2 7020 0.2

 

 

Description

 

 

Pincheng Factory presents the JS40 12v brushed dc geared motor, engineered to deliver reliable torque across diverse industrial applications. Housed in a durable plastic casing with customizable metal or plastic gearing, this motor solution provides optimal performance for automated retail displays and professional lighting equipment requiring consistent mechanical motion.

 

Operating efficiently across 3V to 12V voltage ranges, this versatile 6v dc geared motor enables flexible integration into battery-operated devices and portable electronic systems. With multiple reduction ratios including 1:25 and 1:430, it delivers precise speed control for animated exhibition platforms and commercial decorative lighting where smooth, quiet operation is essential.

 

Designed for extended service life, the robust dc brush gear motor configuration ensures maintenance-free performance in continuous-duty automation and consumer product manufacturing. Pincheng Factory supports B2B partners with customized gear materials, shaft specifications, and voltage optimizations for OEM drive systems and precision motion projects, delivering tailored solutions for volume production requirements.

 

 

What Is The Differences Between Metal Gears And Plastic Gears, How To Choose ?

 

 

Fundamental Characteristics

Metal gears, manufactured from materials like steel or brass, demonstrate exceptional mechanical strength and wear resistance, making them suitable for high-torque applications. Their robust nature ensures reliable performance under continuous heavy loads, though they typically require lubrication and generate more operational noise. Plastic gears, commonly produced from engineered polymers such as nylon or POM, offer inherent vibration damping properties that result in quieter operation. While generally having lower load capacity, advanced composite materials have significantly improved their mechanical performance for moderate applications.

Selection Framework

The choice between these gear types should be based on a systematic evaluation of application requirements:

For applications demanding maximum durability and load capacity - such as industrial machinery, automotive systems, and heavy equipment - metal gears provide the necessary strength and longevity. Their ability to withstand extreme conditions and higher temperatures makes them indispensable in these environments.

When acoustic performance, weight reduction, or corrosion resistance are primary concerns - as in medical devices, consumer electronics, or food processing equipment - plastic gears offer distinct advantages. Their self-lubricating properties in certain formulations further enhance their suitability for maintenance-sensitive applications.

Economic and Performance Balance

While plastic gears generally present cost advantages in high-volume production, metal gears often deliver better lifecycle value in demanding applications despite higher initial investment. For many moderate-load scenarios, modern engineering plastics can provide an optimal balance of performance, weight savings, and cost efficiency. The final selection should consider not only immediate technical requirements but also long-term operational factors including maintenance needs, environmental conditions, and total cost of ownership.

 

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