Product Description
Product Description
| Bearing Number | Inner diameter/mm | Outer diameter/mm | Height/mm | Weight/g | Apply Inner Ring | |||||
| NCS1012 | MR10N | SJ7133 | HJ101812 | BR101812 | 15.875(0.625) | 28.575(1.125) | 19.05(0.75) | 49 | MI6N | |
| MR10 | SJ7134 | HJ101816 | BR101816 | 15.875(0.625) | 28.575(1.125) | 25.4(1) | 54 | MI6 | ||
| NCS1212 | MR12N | SJ7153 | HJ122012 | BR122012 | 19.05(0.75) | 31.75(1.25) | 19.05(0.75) | 56 | MI8N | |
| NCS1216 | MR12 | SJ7154 | HJ122016 | BR122016 | 19.05(0.75) | 31.75(1.25) | 25.4(1) | 75 | MI8 | |
| NCS1412 | MR14N | SJ7173 | HJ142212 | BR142212 | 22.225(0.875) | 34.925(1.375) | 19.05(0.75) | 63 | MI10N | |
| NCS1416 | MR14 | SJ7174 | HJ142216 | BR142216 | 22.225(0.875) | 34.925(1.375) | 25.4(1) | 84.5 | MI10 | |
| NCS1612 | MR16N | SJ7193 | HJ162412 | BR162412 | 25.4(1) | 38.1(1.5) | 19.05(0.75) | 69 | MI12N | |
| NCS1616 | MR16 | SJ7194 | HJ162416 | BR162416 | 25.4(1) | 38.1(1.5) | 25.4(1) | 92.5 | MI12 | |
| NCS1816 | MR18N | SJ7214 | HJ182616 | BR182616 | 28.575(1.125) | 41.275(1.625) | 25.4(1) | 102 | MI14N | |
| NCS1820 | MR18 | SJ7215 | HJ182620 | BR182620 | 28.575(1.125) | 41.275(1.625) | 31.75(1.25) | 128 | MI14 | |
| NCS2016 | MR20N | SJ7234 | HJ257116 | BR257116 | 31.75(1.25) | 44.45(1.75) | 25.4(1) | 110 | MI16N | |
| NCS2571 | MR20 | SJ7235 | HJ257120 | BR257120 | 31.75(1.25) | 44.45(1.75) | 31.75(1.25) | 138 | MI16 | |
| NCS2216 | MR22N | SJ7254 | HJ223016 | BR223016 | 34.925(1.375) | 47.625(1.875) | 25.4(1) | 119 | MI18N | |
| NCS2220 | MR22 | SJ7255 | HJ223571 | BR223571 | 34.925(1.375) | 47.625(1.875) | 31.75(1.25) | 149 | MI18 | |
| NCS2416 | MR24N | SJ7274 | HJ243316 | BR243316 | 38.1(1.5) | 52.388(2.0625) | 25.4(1) | 149 | MI20N | |
| NCS2420 | MR24 | SJ7275 | HJ243320 | BR243320 | 38.1(1.5) | 52.388(2.0625) | 31.75(1.25) | 187 | MI19/MI20 | |
| NCS2616 | MR26N | SJ7294 | HJ263516 | BR263516 | 41.275(1.625) | 55.562(2.1875) | 25.4(1) | 158 | MI21N | |
| NCS2620 | MR26 | SJ7295 | HJ263520 | BR263520 | 41.275(1.625) | 55.562(2.1875) | 31.75(1.25) | 199 | MI21 | |
| NCS2816 | MR28N | SJ7314 | HJ283716 | BR283716 | 44.45(1.75) | 58.738(2.3125) | 25.4(1) | 170 | MI24N | |
| NCS2820 | MR28 | SJ7315 | HJ283720 | BR283720 | 44.45(1.75) | 58.738(2.3125) | 31.75(1.25) | 215 | MI24 | |
| NCS3571 | MR30 | SJ7335 | HJ3 0571 0 | BR3 0571 0 | 47.625(1.875) | 61.912(2.4375) | 31.75(1.25) | 225 | MI25 | |
| MR31 | SJ7345 | 49.2125(1.9375) | 63.5(2.5) | 31.75(1.25) | 246 | MI26SS | ||||
| MR32N | SJ7354 | HJ324116 | BR324116 | 50.8(2) | 65.088(2.5625) | 25.4(1) | 190 | MI26N | ||
| NCS3220 | MR32 | SJ7355 | HJ324120 | BR324120 | 50.8(2) | 65.088(2.5625) | 31.75(1.25) | 240 | MI26/MI27 | |
| NCS3624 | MR36N | SJ8406 | HJ364824 | BR364824 | 57.15(2.25) | 76.2(3) | 38.1(1.5) | 435 | MI28N | |
| MR36 | SJ8407 | HJ364828 | BR364828 | 57.15(2.25) | 76.2(3) | 44.45(1.75) | 510 | MI28/MI30 | ||
| NCS4571 | MR40N | SJ8446 | HJ405224 | BR405224 | 63.5(2.5) | 82.55(3.25) | 38.1(1.5) | 475 | MI32N | |
| MR40 | SJ8447 | HJ405228 | BR405228 | 63.5(2.5) | 82.55(3.25) | 44.45(1.75) | 555 | MI31/MI32/MI34 | ||
| NCS4424 | MR44N | SJ8476 | HJ445624 | BR445624 | 69.85(2.75) | 88.9(3.5) | 38.1(1.5) | 510 | MI36N | |
| MR44 | SJ8477 | HJ445628 | BR445628 | 69.85(2.75) | 88.9(3.5) | 44.45(1.75) | 600 | MI35/MI36 | ||
| NCS4824 | MR48N | SJ8516 | HJ486571 | BR486571 | 76.2(3) | 95.25(3.75) | 38.1(1.5) | 555 | MI40N | |
| MR48 | SJ8517 | HJ486571 | BR486571 | 76.2(3) | 95.25(3.75) | 44.45(1.75) | 650 | MI38/MI39/MI40 | ||
| NCS5228 | MR52 | SJ9567 | HJ526828 | BR526828 | 82.55(3.25) | 107.95(4.25) | 44.45(1.75) | 990 | MI44 | |
| MR56N | SJ9607 | 88.9(3.5) | 114.3(4.5) | 44.45(1.75) | 1120 | MI48N | ||||
| MR56 | SJ9608 | HJ567232 | BR567232 | 88.9(3.5) | 114.3(4.5) | 50.8(2) | 1220 | MI46/MI47/MI48 | ||
| MR60 | SJ9648 | HJ6 0571 2 | BR6 0571 2 | 95.25(3.75) | 120.65(4.75) | 50.8(2) | 1290 | MI50/MI52 | ||
| MR64 | SJ9688 | HJ648032 | BR648032 | 101.6(4) | 127(5) | 50.8(2) | 1370 | MI54/MI56 | ||
| NCS6832 | MR68 | SJ9728 | HJ688432 | BR688432 | 107.95(4.25) | 133.35(5.25) | 50.8(2) | 1580 | MI60 | |
| MR72 | SJ6769 | HJ729636 | 114.3(4.5) | 152.4(6) | 57.15(2.25) | 2540 | MI62 | |||
| MR80 | SJ6849 | HJ801571 | 127(5) | 165.1(6.5) | 57.15(2.25) | 3040 | MI68 | |||
| MR88N | SJ6918 | HJ8811240 | 139.7(5.5) | 177.8(7) | 63.5(2.5) | 4400 | MI72N | |||
| MR88 | SJ6919 | HJ8811248 | 139.7(5.5) | 177.8(7) | 76.2(3) | 4956 | MI72 | |||
| MR96N | SJ6925 | HJ9612040 | 152.4(6) | 190.5(7.5) | 63.5(2.5) | 4650 | MI80N | |||
| MR96 | SJ6926 | HJ9612048 | 152.4(6) | 190.5(7.5) | 76.2(3) | 5330 | MI80 | |||
| MR104N | SJ6935 | HJ1 0571 840 | 165.1(6.5) | 203.2(8) | 63.5(2.5) | 4970 | MI88N | |||
| MR104 | SJ6936 | HJ1 0571 848 | 165.1(6.5) | 203.2(8) | 76.2(3) | 5700 | MI88 | |||
| MR116 | SJ2326 | HJ11614648 | 184.1(7.25) | 231.775(9.125) | 76.2(3) | 8110 | MI96 | |||
| MR124 | SJ2426 | HJ12415448 | 196.85(7.75) | 244.475(9.625) | 76.2(3) | 8310 | MI104 | |||
| MR132 | SJ2526 | HJ13216248 | 209.55(8.25) | 257.175(10.125) | 76.2(3) | 9080 | MI112 | |||
| MR140 | SJ2626 | HJ14017048 | 222.25(8.75) | 269.875(10.625) | 76.2(3) | 9550 | MI120 | |||
Production Line
COMPANY PROFILE
HangZhou Siruibo Bearing Technology Co., Ltd. is a company mainly engaged in manufacturing and selling outer spherical bearings. The registered capital is Five million.
Since its establishment 20 years ago, the company is committed to Mounted Bearing Unit (maintenance-free bearings, engraving machine bearings, holding machine shaft Bearing, no-tillage machine bearing, fan bearing, high temperature bearing, zinc alloy bearing, food grade bearing unit) research and development. With the most complete varieties and best advanced manufacturing technology in production of Mounted Bearing Unit, to be a reliable enterprises, we welcome your cooperation. Currently, our company produce 10 series of more than 260 varieties of outer spherical bearings and 13 different structural categories of outer spherical bearing special seats, all adopted International standard design and manufacturing. Registered trademark “FOS” .
Through the efforts and unremitting pursuit of all employees of the company, all products accepted by international standards. Over the years of Expansion and technical transformation, we developed into a Mounted Bearing Unit with large scale of professional manufacturers, for the bearing industry in China, has made a contribution to the development of Bearing.
HangZhou Siruibo Bearing Technology Co., Ltd. has a production capacity of 1 million sets/year, with an annual output value of 30 million yuan. We produce 30 varieties monthly , with 45-60 days lead time.
The company has a perfect material and product quality inspection equipment, according to the strict scientific Quality assurance system, to prove satisfactory to our customers. Our products widely used in agricultural Industry machinery, textile machinery and light industry, chemical industry, metallurgy, printing, food, transportation, coal, packaging and other industries and the introduction of machinery .Our products have exported to Europe, America and many countries and regions in South east Asia.
Exhibitions
About us:
We are 1 manufactuer of bearing for more than 20 years.
Give us a chance, we will cooperate with our passion.
Our professional, reliable, experienced products and service can meet your request.
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| After-sales Service: | 24 Hours Online Service |
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| Warranty: | 2 Years |
| Transport Package: | Cartons Pallet Metal or as Your Request |
| Specification: | Size customization |
| Trademark: | OEM FOS |
| Origin: | Linqing, Shandong Province. |
| Samples: |
US$ 0/Piece
1 Piece(Min.Order) | |
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| Customization: |
Available
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How do electronic or computer-controlled components integrate with cam rollers in modern applications?
In modern applications, electronic or computer-controlled components play a significant role in integrating with cam rollers to enhance functionality, precision, and automation. The integration of electronic or computer-controlled components with cam rollers enables advanced control, monitoring, and synchronization of the motion system. Here’s a detailed explanation of how electronic or computer-controlled components integrate with cam rollers in modern applications:
- Sensor Integration: Electronic sensors can be integrated with cam rollers to provide real-time feedback on various parameters such as position, speed, acceleration, and load. Position sensors, such as encoders or linear displacement sensors, can be used to precisely determine the position of the cam rollers and the objects or components they are tracking. This information can then be used for closed-loop control, ensuring accurate tracking and motion control.
- Control Systems: Electronic or computer-controlled systems can be employed to manage the operation of cam rollers. These control systems can receive input from sensors and use algorithms to calculate the desired motion profiles. They can then generate signals to drive motors or actuators that control the movement of the cam rollers. By integrating control systems, precise motion control, synchronization, and programmability can be achieved, enabling complex motion sequences and adaptive tracking capabilities.
- Communication Protocols: Electronic or computer-controlled components can utilize various communication protocols to exchange data and commands with other system components. For example, in industrial automation applications, cam rollers may be integrated into a larger control network using protocols such as Modbus, CAN bus, or Ethernet. This integration enables seamless communication, coordination, and synchronization with other components or systems, enhancing overall system performance and functionality.
- Human-Machine Interface (HMI): In applications where human interaction is involved, electronic or computer-controlled components can provide a user interface for monitoring and controlling the cam rollers. This interface can include touch screens, graphical displays, or control panels that allow operators to set parameters, monitor performance, and adjust settings as needed. The integration of HMIs with cam rollers simplifies operation, facilitates troubleshooting, and enhances user experience.
- Data Logging and Analysis: Electronic or computer-controlled components can capture and log data related to the operation of cam rollers and the overall tracking system. This data can include parameters such as position, speed, acceleration, forces, and system status. By analyzing this data, performance trends, anomalies, and optimization opportunities can be identified. The integration of data logging and analysis capabilities enables proactive maintenance, performance optimization, and continuous improvement of the cam roller system.
- Integration with Automation Systems: In automated systems, electronic or computer-controlled components can integrate cam rollers into the overall automation framework. This integration allows for seamless coordination with other automated processes, robotics, or material handling systems. By integrating cam rollers with automation systems, precise tracking, synchronized motion, and efficient production workflows can be achieved.
The integration of electronic or computer-controlled components with cam rollers brings advanced capabilities to modern applications. It enables precise control, adaptive tracking, real-time monitoring, data-driven optimization, and seamless integration with automation systems. This integration enhances the functionality, flexibility, and efficiency of cam roller systems, opening up possibilities for a wide range of applications in industries such as manufacturing, robotics, packaging, material handling, and more.

Can you provide examples of products or machinery that commonly use cam rollers?
Cam rollers are widely used in various products and machinery across different industries. Their unique design and functionalities make them suitable for applications that require precise motion, controlled tracking, and efficient operation. Here are some examples of products or machinery that commonly utilize cam rollers:
- Printing Machinery: Cam rollers are commonly found in printing machinery, such as offset printers, flexographic printers, and digital printers. They are used to precisely guide the movement of paper or printing substrates through the printing process, ensuring accurate registration and consistent print quality.
- Material Handling Systems: Cam rollers are extensively used in material handling systems, including conveyor systems, packaging equipment, and automated storage and retrieval systems (ASRS). They help in guiding and tracking the movement of items, pallets, or containers, ensuring smooth and controlled transportation within the system.
- Industrial Robots: Cam rollers play a vital role in industrial robots, particularly in robotic arms and manipulators. They facilitate precise and controlled motion, allowing the robot to perform accurate positioning, pick-and-place operations, and assembly tasks with high repeatability and reliability.
- Textile Machinery: Cam rollers are commonly utilized in textile machinery, such as weaving looms, knitting machines, and spinning machines. They assist in guiding the movement of yarns, threads, or fabrics, ensuring proper tension and alignment during the manufacturing process.
- Automotive Manufacturing: Cam rollers are employed in various stages of automotive manufacturing, including assembly lines, paint booths, and body-in-white operations. They contribute to the smooth and precise movement of car bodies, parts, or components, enabling efficient production processes.
- Packaging Machinery: Cam rollers are commonly integrated into packaging machinery, such as form-fill-seal machines, cartoners, and labeling machines. They assist in guiding the packaging materials, ensuring accurate positioning, and controlled movement during the packaging process.
- Food Processing Equipment: Cam rollers find applications in food processing equipment, including filling machines, sorting systems, and packaging lines. They aid in the smooth and precise movement of food products, containers, or packaging materials, maintaining the integrity and quality of the processed food items.
- Medical Devices: Cam rollers are utilized in medical devices and equipment, such as diagnostic machines, laboratory automation systems, and surgical robots. They contribute to the precise movement and positioning required for accurate diagnostic results, sample handling, or surgical procedures.
These examples represent just a few of the many products and machinery where cam rollers are commonly used. Their versatility, precision, and reliability make them suitable for a wide range of applications in industries like printing, material handling, robotics, textiles, automotive manufacturing, packaging, food processing, and medical devices.
In summary, cam rollers are widely employed in various products and machinery across different industries. Their usage in printing machinery, material handling systems, industrial robots, textile machinery, automotive manufacturing, packaging machinery, food processing equipment, and medical devices demonstrates their significance in achieving precise motion, controlled tracking, and efficient operation in diverse applications.

What is a cam roller, and how is it utilized in mechanical systems?
A cam roller, also known as a cam follower or track roller, is a specialized type of roller bearing used in mechanical systems. It is designed to follow the surface profile of a cam or track and transmit motion or force between the cam and a moving component. Here’s a detailed explanation of what a cam roller is and how it is utilized in mechanical systems:
A cam roller consists of a cylindrical roller, needle roller, or ball bearing that is mounted in a stud or yoke. The stud or yoke provides a means of attachment to the moving component of the mechanical system. The roller or bearing element is housed within a thick-walled outer ring, which serves as a guide and support for the roller. The outer ring has a profile that matches the shape of the cam or track over which the cam roller operates.
The primary function of a cam roller is to convert rotary motion into linear motion or vice versa. As the cam or track rotates, the cam roller follows the profile, causing the roller to move along the track. This motion can be utilized in various ways depending on the specific application. Here are some common uses of cam rollers in mechanical systems:
- Motion Transmission: Cam rollers are often used to transmit motion from a rotating cam to a reciprocating or oscillating component. For example, in engines, cam followers are used to transfer the motion of the camshaft to the valves, opening and closing them at the appropriate timing.
- Guiding and Support: Cam rollers can also provide guidance and support to moving components in a mechanical system. They help maintain proper alignment and prevent lateral movement or deflection. This is particularly useful in applications such as conveyor systems, where cam rollers guide the movement of belts or chains.
- Load Bearing: Cam rollers are designed to withstand high loads and provide support to heavy-duty applications. They are often used in machinery and equipment where there is a need for reliable load-bearing capabilities. Examples include construction machinery, material handling equipment, and industrial automation systems.
- Compensating for Misalignment: In some applications, cam rollers are utilized to compensate for misalignment between components. The rolling motion of the cam follower allows it to adjust and accommodate slight deviations in the cam or track profile, ensuring smooth operation even in imperfect conditions.
The choice of cam roller design, size, and material depends on the specific requirements of the application. Factors such as load capacity, speed, operating conditions, and precision requirements are taken into consideration when selecting the appropriate cam roller. Regular maintenance, including lubrication and inspection of the cam roller, is important to ensure its proper functioning and longevity in the mechanical system.
In summary, a cam roller is a specialized type of roller bearing used in mechanical systems to transmit motion, provide guidance and support, bear loads, and compensate for misalignment. Its ability to follow the profile of a cam or track allows for efficient conversion of rotary motion to linear motion or vice versa. Cam rollers find application in a wide range of industries and play a crucial role in ensuring the smooth and reliable operation of mechanical systems.


editor by Dream 2024-05-13