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Eddy- Current Braking System
Eddy- Current Braking System
Eddy- Current Braking System
Eddy- Current Braking System

Eddy- Current Braking System

MOQ : 1 Piece

Eddy- Current Braking System Specification

  • Product Type
  • Eddy- Current Braking System
  • Model No
  • ECBS-01
  • Core Components
  • Copper Disc, Electromagnet, Frame
  • Usage
  • Engineering Electronic Instruments
  • Frequency
  • 50 Hz
  • Power Source
  • 230 V AC
  • Accuracy
  • 1%
  • Measurement Range
  • 0100 N
  • Voltage
  • 230 V
  • Application
  • Engineering Electronic Instruments
  • Feature
  • Direct Display of Brake Force, Adjustable Load
  • Capacity
  • Up to 1 kW
  • Temperature Range
  • Ambient to 50C
  • Automation Grade
  • Manual
  • Equipment Materials
  • Mild Steel, Copper, Aluminium
  • Type
  • Eddy Current Braking System
  • Display Type
  • Digital
  • Dimension (L*W*H)
  • 820 mm x 550 mm x 520 mm
  • Weight
  • Approx. 40 kg
  • Braking Method
  • Electromagnetic
  • Max. Disc Speed
  • 3000 RPM
  • Protection
  • Overload Protected
  • Finish
  • Powder Coated
  • Electromagnet Current Control
  • Variable
  • Cooling Type
  • Natural Air
  • Mounting Type
  • Bench-top
 

Eddy- Current Braking System Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Sample Available
  • Yes
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Packaging Details
  • carton box, export quality also available
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About Eddy- Current Braking System

Eddy- Current Braking System

  • For demonstration of eddy current braking when used in conjunction with the hand wheel driving unit.
  • The 120mm diameter aluminum disc has a 20mm driving pulley.
  • The powerful circular magnets are carried on a pivoted arm so that they may be moved over or away from the disc as required.
  • Dimensions of base: 165 x 165mm approx.


Advanced Braking Technology

Eddy Current Braking System ECBS-01 combines electromagnetic precision with modern engineering materials, ensuring consistent and repeatable force measurements for electronic instrumentation studies. Its core copper disc and robust electromagnet offer direct, variable control and real-time digital display, letting users easily analyze brake force under various loads.


User-Friendly and Safe Operation

The systems manual operation and bench-top mounting design make it ideal for hands-on experimentation in laboratories or educational settings. Integrated overload protection and an ambient-to-50C temperature range ensure safe, reliable use for hours of continuous testing. Its powder-coated finish enhances durability in busy environments.

FAQs of Eddy- Current Braking System:


Q: How does the Eddy Current Braking System work?

A: The system operates by using an electromagnet to generate eddy currents in a rotating copper disc. These currents create opposing magnetic fields, producing a controlled braking force that slows down or stops the disc without physical contact.

Q: What makes this braking method advantageous for engineering electronic instrument applications?

A: Eddy current braking provides non-contact, frictionless braking, which means less wear and maintenance. The precise, variable control and direct digital brake force display enable accurate performance assessments vital for electronic instrumentation engineering.

Q: When should I use variable current control during operation?

A: Variable current control is essential when you need to adjust the braking force for different load or speed conditions. This feature is especially useful in experimental setups where varying test parameters and observing system responses are required.

Q: Where should the ECBS-01 Eddy Current Braking System be installed for optimal performance?

A: The unit is designed for bench-top installation in well-ventilated laboratories or classrooms. Proper placement ensures effective natural air cooling and safe, accessible operation for students or engineers.

Q: What is the typical process for using this system in a lab setting?

A: After securely mounting the system, connect to a 230 V AC power supply. Set the desired electromagnet current using the control knob, adjust the load, and observe the brake force via the digital display. Ensure overload protection is active during prolonged use.

Q: How does the overload protection function benefit users?

A: Overload protection safeguards internal components against excessive current or mechanical strain, preventing damage and ensuring longevity. Users can conduct extended experiments with confidence, knowing the equipment is protected against operational hazards.

Q: What are the primary benefits of using a digital display for brake force measurement?

A: The direct digital display provides instant, accurate readings of brake force up to 100 N, allowing users to monitor performance and make real-time adjustments. This enhances experiment reliability and simplifies data collection.

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