ATLAS PF063-2102-S9-115R
1. Product Overview
2. Parameters & Technical Specifications
- Model: PF063-2102-S9-115R (sometimes marked as 2101-S9-115R)
- Power: Usually 200W
- Torque Range: Common maximum torque is 115 Nm (1150 Ncm)
- Power Supply Requirement: 100-120 VAC (240 VAC version may also be available)
- Motor Type: Permanent Magnet (PM) or Brushed (BR) motor, depending on the production batch
3. Structure & Composition
- Motor & Spindle: Efficient motor drive system combined with precision spindle design to ensure stable torque transmission.
- Electronic Control System: The core of the TENSOR S9 series, responsible for real-time torque monitoring, data recording and fault diagnosis.
- Battery/Power Module: Provides stable power input, supporting Alternating Current (AC) or Alternating Current to Direct Current (AC-DC) conversion.
- Sensors & Interfaces: Built-in torque sensor; some models support USB or wireless data transmission.

4. Product Features
- High-Precision Torque Control: Benefiting from the advanced electronic control of the TENSOR S9 series, it can maintain extremely high repeatability and accuracy over the entire torque range.
- Intelligent Monitoring Function: Some models have built-in USB interface or wireless module for real-time monitoring of tightening status and data recording.
- Reliability: Designed for harsh industrial environments, with dustproof, waterproof and shockproof performance.
- Compatibility: Can be used with various batteries and control modules of the TENSOR S9 series.
5. Application Fields
- Automotive Manufacturing: High-torque demand scenarios such as engine assembly and post-welding treatment of vehicle bodies.
- Aerospace: Tightening of aircraft wings and engine components.
- High-Precision Assembly: Such as precision assembly of motors and mechanical equipment components.
6. Installation & Maintenance
- Installation: Usually directly connected to the corresponding TENSOR S9 battery or power module for use, ensuring a firm connection.
- Maintenance: Regularly check the lubrication status of the motor and spindle, clean the surface of the torque sensor, and replace worn parts in a timely manner to ensure long-term accuracy and service life.
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