Single Stage Reducer
Product Introduction of Single Stage Reducer
The Single Stage Reducer is a type of mechanical device used in power transmission systems. It operates by reducing the speed of the input shaft through a single stage of gears, thereby converting high-speed, low-torque input into low-speed, high-torque output. This type of reducer is widely employed in various industrial applications, including but not limited to industrial machinery, automation equipment, and light manufacturing setups. It serves as a vital link in the power transmission chain, enabling different machines to operate at the desired speed and torque levels by adjusting the rotational speed effectively.

1.Single Stage Gear Reduction
It utilizes a single stage of gears for speed reduction, which simplifies the mechanical structure compared to multi-stage reducers. This simplicity in design leads to fewer parts, making the manufacturing process more straightforward and reducing the potential for mechanical failure points.
2.High Transmission Efficiency
Due to its relatively simple gear configuration, the single stage reducer can achieve high transmission efficiency. It minimizes energy losses during power transmission, resulting in more efficient conversion of power from the input to the output shaft. This is particularly beneficial for applications where energy conservation is critical.
3.Smooth Operation
The gears in the single stage reducer are designed and manufactured with precision. They ensure smooth meshing and rotation, resulting in minimal vibration and noise during operation. This leads to a quieter working environment and enhances the overall comfort and safety of the workplace.
4.Easy Installation and Maintenance
The simple design of the single stage reducer makes installation relatively easy. It does not require complex assembly procedures, and can often be installed by following straightforward instructions. This makes it accessible even for users with basic mechanical knowledge.
5.Versatile Mounting Options
It offers various mounting options, such as flange mounting, foot mounting, or shaft mounting. This versatility allows users to choose the most suitable mounting method based on the requirements of the machinery and the installation environment, providing flexibility in installation and enhancing its compatibility with different types of equipment.

1.Cost-Effective Solution
The single stage reducer is generally more cost-effective compared to multi-stage reducers. Its simpler design and fewer parts lead to lower manufacturing costs, making it an economical choice for industrial applications with budget constraints.
2.Rapid Response Time
With its relatively simple design and fewer gear stages, the single stage reducer can respond more quickly to changes in load and speed requirements. It enables faster acceleration and deceleration of the machinery, making it suitable for applications that require quick adjustments in speed, such as some automated production lines.
3.Reliable Performance
The reduced number of parts and simplified mechanical structure of the single stage reducer contribute to its reliable performance. It is less prone to mechanical failures and breakdowns, ensuring consistent operation over extended periods.
4.Compact and Lightweight
Its compact size and lightweight nature make it easy to handle and install. It can be easily integrated into different machinery without adding excessive weight or bulk, making it ideal for equipment that requires mobility or frequent relocation.
5.Energy Efficient
High transmission efficiency and minimal energy losses make the single stage reducer energy efficient. It helps in reducing energy consumption, aligning with the growing trend of energy conservation and environmental protection in industrial applications.





Model:
RC (Foot-mounted): RC01, RC02, RC03, RC04
RCF (B5 Flange-mounted): RCF01, RCF02, RCF03, RCF04
RCZ (B14 Flange-mounted): RCZ01, RCZ02, RCZ03, RCZ04
|
REDUCER SELECTING TABLES |
||||||||||
|
RC01.. |
n1=1400r/min |
120Nm |
||||||||
|
n2 |
M2max |
Fr2 |
i |
Proportion |
63B5 |
71B5/B14 |
80B5/B14 |
90B5/B14 |
||
|
[r/min] |
[Nm] |
[N] |
||||||||
|
26 |
120 |
2600 |
53.33 |
160/3 |
||||||
|
31 |
120 |
2600 |
45.89 |
413/9 |
||||||
|
35 |
120 |
2600 |
40.10 |
3248/81 |
||||||
|
39 |
120 |
2560 |
35.47 |
532/15 |
||||||
|
49 |
120 |
2380 |
28.50 |
770/27 |
||||||
|
59 |
120 |
2230 |
23.56 |
212/9 |
||||||
|
71 |
120 |
2100 |
19.83 |
119/6 |
||||||
|
78 |
90 |
2030 |
17.86 |
1357/76 |
||||||
|
96 |
120 |
1900 |
14.62 |
658/45 |
||||||
|
101 |
90 |
1860 |
13.80* |
69/5 |
||||||
|
118 |
120 |
1770 |
11.90 |
2464/207 |
||||||
|
143 |
120 |
1660 |
9.81 |
1148/117 |
||||||
|
153 |
80 |
1630 |
9.17 |
1219/133 |
||||||
|
181 |
80 |
1540 |
7.72 |
1173/152 |
||||||
|
246 |
70 |
1390 |
5.69 |
1081/190 |
||||||
|
302 |
70 |
1290 |
4.63 |
88/19 |
||||||
|
366 |
70 |
1210 |
3.82 |
943/247 |
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