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FDR-M200 Intelligent Workstation with Front-Mounted Controls Lower Camera and R200 mm Working Radius

Basic Properties
Place of Origin: China
Brand Name: Fider
Model Number: FDR-M200
Trading Properties
Minimum Order Quantity: 1
Payment Terms: T/T
Supply Ability: 1000pcs/month
Product Summary
FDR-M200 intelligent workstation with front-mounted controls, short-frame design, and lower-camera arrangement. Features R200 mm working radius, ±0.15 mm accuracy, 0.5 kg max load, and compact 610×345×648 mm dimensions. Requires technical review with part details for configuration confirmation.

Product Details

Highlight:

Front-Mounted Controls Intelligent Workstation

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Lower Camera Arrangement Flexible Feeder

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R200 mm Working Radius FDR-M200

Product Description

The FDR-M200 is an intelligent workstation configuration with a front-mounted operation panel, front-mounted button box, short-frame design, and lower-camera arrangement. Its documented overall dimensions are 610 × 345 × 648 mm, with an R200 mm working radius.

Every automation project depends on the actual part, incoming state, required output orientation, target cycle, accuracy definition, and available installation space. Send us your part drawing and process requirements so our engineering team can review technical fit and integration conditions.


Review the FDR-M200 Configuration

The documented FDR-M200 configuration includes:

  • Front-mounted operation panel;
  • Front-mounted button box;
  • Short-frame workstation structure;
  • Lower-camera arrangement;
  • R200 mm working radius;
  • Pneumatic and electrical utility connections;
  • Nozzle movement range for part handling;
  • Integrated hopper and feeder-related installation space shown in the drawing.

Check the FDR-M200 Technical Specifications

Specification Documented Value Engineering Note
Overall dimensions 610 × 345 × 648 mm Use the installation drawing for layout review
Working radius R200 mm Does not represent total required installation space
Operating air pressure 0.5–0.7 MPa Confirm plant air quality and connection requirements
Power supply AC 220 V, 50 Hz, 650 W Confirm local electrical standard before order
Maximum load 0.5 kg Confirm that the selected tooling and part remain within the maximum load
Machine weight Approx. 75 kg Confirm handling and mounting conditions
Placement dimensions 250 × 200 mm Use this value for placement-area and layout planning
Feeder dimensions 180 × 128 × 20 mm Use this value for feeder and workstation layout planning
Hopper capacity 2.5 L Confirm refill frequency against actual part size and production demand
Throughput Depends on the actual material Confirm achievable output using the actual part and required process
Accuracy ±0.15 mm Use the stated accuracy requirement in the technical specification
Nozzle lift Maximum 50 mm at the documented maximum pick-up range Verify against part and tooling height
Nozzle downward travel Maximum 25 mm at the documented maximum pick-up range Verify against placement height and fixtures

Final cycle time, accuracy, part compatibility, and configuration must be confirmed using the actual part and process requirements.


Confirm Whether the FDR-M200 Fits Your Process

The FDR-M200 should not be selected by machine dimensions alone. A technical review should consider the complete part-handling process.

Please provide the following information:

Part Information

  • Part name and drawing number;
  • Length, width, height, and weight;
  • Material;
  • Surface finish;
  • Fragile, scratch-sensitive, adhesive, oily, magnetic, or static-sensitive characteristics;
  • Representative photographs or video;
  • Whether physical samples can be supplied.

Incoming Part State

  • Bulk, stacked, layered, bagged, tray-loaded, or manually loaded;
  • Degree of tangling, overlapping, or adhesion;
  • Acceptable and unacceptable part orientations;
  • Upstream equipment and delivery method.

Required Output

  • Required part orientation;
  • Placement point or downstream destination;
  • Target cycle or output;
  • Required accuracy and how it will be measured;
  • Acceptable rejection or retry logic;
  • Number of product variants and changeover frequency.

Integration Requirements

  • Available installation length, width, and height;
  • Operator side and maintenance side;
  • Upstream and downstream equipment;
  • PLC, I/O, and communication requirements;
  • Power and compressed-air conditions;
  • Safety and guarding requirements;
  • Required project delivery scope.

Send your line layout in PDF, DWG, DXF, STEP, or another available format for an integration review.



Understand the FDR-M200’s Role in a Feeding System

Fider Automation’s broader portfolio includes flexible feeding stations, flexible feeders, supply hoppers, positioning systems, vibration isolation tooling, and control interfaces.

The exact combination used with the FDR-M200 depends on the part, process, cycle target, required orientation, inspection requirements, and downstream equipment. The brochure modules must not be treated as standard FDR-M200 equipment until the configuration is confirmed by the engineering team.

Possible project components may include:

  • A supply hopper;
  • A flexible feeder;
  • A positioning system;
  • A camera or vision component;
  • A handling mechanism or robot;
  • A workstation and control system;
  • Upstream and downstream interfaces.

Follow a Clear Technical Evaluation Process

Step 1: Submit the Part and Process

Send the part drawing, photographs, samples if available, current incoming state, required output, target cycle, and acceptance criteria.

Step 2: Review Part Feasibility

The engineering team reviews part geometry, material, surface condition, orientation, separation risk, handling method, and integration requirements.

Step 3: Confirm the Proposed Configuration

The required feeder, hopper, positioning method, camera, tooling, control, and workstation configuration are confirmed according to the project.

Step 4: Confirm Test Conditions

Cycle time, accuracy, stability, changeover, and acceptance methods should be agreed before testing or final technical approval.

Step 5: Review the Layout and Interfaces

Confirm the machine envelope, working range, loading access, maintenance access, electrical supply, air supply, I/O, communication, and upstream/downstream connections.

Step 6: Confirm Delivery Scope

Confirm drawings, equipment modules, tooling, software, documentation, installation, commissioning, training, maintenance, warranty, and acceptance scope.



Frequently Asked Questions

What are the documented FDR-M200 dimensions?

The documented overall dimensions are 610 × 345 × 648 mm. The final installation space must also include the working radius, operator access, maintenance clearance, loading space, interfaces, and safety requirements.

What is the FDR-M200 working radius?

The installation drawing specifies an R200 mm working radius. Final clearance should be reviewed against the selected tooling, part, feeder arrangement, and surrounding equipment.

What power and air supply does the FDR-M200 require?

The documented requirements are AC 220 V, 50 Hz, 650 W and an operating air pressure of 0.5–0.7 MPa. Local electrical standards, air quality, connectors, and site conditions should be confirmed before order.

What is the maximum load of the FDR-M200?

The maximum load is 0.5 kg. The combined weight of the part and applicable handling tooling should remain within this limit.

What is the specified accuracy of the FDR-M200?

The specified accuracy is ±0.15 mm.

Does the FDR-M200 include a flexible feeder and supply hopper?

The company portfolio includes flexible feeders, supply hoppers, positioning systems, and feeding stations. The exact M200 standard configuration and optional modules are .

How is the FDR-M200 cycle time determined?

Efficiency depends on the actual material. Achievable cycle time should therefore be evaluated using the real part, incoming state, required orientation, handling path, tooling, inspection steps, and downstream process.

What should I send for a technical review?

Send the part drawing, photographs or video, dimensions, weight, material, incoming state, required output orientation, target cycle, accuracy definition, variant count, line layout, and interface requirements.

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    J*n
    Australia Jun 17.2026
    ★★★★★
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    This flexible vibration bowl is really good. It handles many different part shapes easily
  • K
    k*r
    United States Feb 20.2026
    ★★★★★
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    Very professional supplier. Technical support answered all our questions quickly.
  • P
    P*s
    Mexico Jan 10.2026
    ★★★★★
    ★★★★★
    We've been using this flexible feeder for over three months now, and the performance has been excellent. It handles several different parts with only minor software adjustments, saving us a lot of production time. The vision system is accurate, and the overall solution is very stable.
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