Synchro Transmitter Receiver Trainer

Synchro Transmitter Receiver Trainer

Product Details:

  • Power 25 W (approx.)
  • Voltage 230V AC, 50Hz
  • Usage Educational and laboratory experiments
  • Display Analog pointer indication
  • Product Type Laboratory Trainer Kit
  • Material MS Powder coated body
  • Design Tabletop with panel mounted components
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Synchro Transmitter Receiver Trainer Price And Quantity

  • 1 Unit
  • 4 mm safety sockets for easy connection
  • Clearly marked and accessible
  • Synchro transmitter, synchro receiver & control transformer modules
  • Robust cabinet with anti-skid feet
  • Study of electrical synchro systems, angular measurement, and demonstrative training
  • Included with theoretical and practical exercises
  • Pointer dials for angular position
  • Silk-screen printed for durability
  • Fuse protected input

Synchro Transmitter Receiver Trainer Product Specifications

  • Educational and laboratory experiments
  • Laboratory Trainer Kit
  • 410 mm x 260 mm x 125 mm
  • 230V AC, 50Hz
  • Tabletop with panel mounted components
  • Rotary synchro transmitter-receiver system
  • 25 W (approx.)
  • High repeatability, typically 1
  • MS Powder coated body
  • Analog pointer indication
  • Approx. 4 kg
  • Mains AC Supply
  • 4 mm safety sockets for easy connection
  • Clearly marked and accessible
  • Synchro transmitter, synchro receiver & control transformer modules
  • Robust cabinet with anti-skid feet
  • Study of electrical synchro systems, angular measurement, and demonstrative training
  • Included with theoretical and practical exercises
  • Pointer dials for angular position
  • Silk-screen printed for durability
  • Fuse protected input

Synchro Transmitter Receiver Trainer Trade Information

  • 5 Unit Per Week
  • 4-5 Days

Product Description

SYNCHRO TRANSMITTER / RECEIVER TRAINER
  • Study of input/output angular displacement.
  • Pointers on transmitter and receiver.
  • Rotor R1, R2 & R3 Stator S1, S2 & S3 on panel.
DESCRIPTION
  • A synchro is an electromagnetic transducer commonly used to convert an angular position of a shaft into  an electric signal.
  • The basic synchro is usually called a synchro transmitter. Its construction is similar to that of a three phase alternator.  The stator (stationary member) is of laminated silicon steel and is slotted to accommodate a balanced three phase winding which is usually of concentric coil type (three identical coils are placed in the stator with their axis 120 degrees apart) and is Y connected. The rotor is a dumb bell construction and wound with a concentric coil.
  • The system set up is made up of synchro transmitter and synchro receiver on a single rigid base provided with suitable switches and anodised angular plates. The system also contains a step down transformer for providing excitation to the rotors. Suitable test points for rotor (R1 and R2) and stator (S1, S2 and S3) for both Tx and Rx are provided.
TECHNICAL SPECIFICATIONS
  • Study of input/output angular displacement.
  • Pointers on transmitter and receiver.
  • Rotor R1, R2 & R3 Stator S1, S2 & S3 on panel.
  • Built in isolated power supply.
  • 220V ±10%, 50Hz mains operated.
  • Attenuated output for signal observation on CRO.
  • Users Manual with patch cords.
LIST OF EXPERIMENTS
  • Study of Starter voltage of the rotor angle, the space variations of the three voltages V12, V23 & V31 due to rotation of resultant magnetization in the starter for the error detection process.
  • Plotting the error voltage as a function of the rotor angle with the receiver rotor for observing the 180° of phase reversal around the zero error.
  • Error study of the transmitter and receiver pair as a simple open loop position control at a very low torque.



Robust and User-Friendly Design

This trainer is thoughtfully built with a durable, powder-coated steel cabinet and anti-skid feet for stability during experiments. All terminals and internal connections are easy to access and are equipped with 4 mm safety sockets, helping both students and educators handle the system safely and efficiently. Silk-screen printed panel markings ensure long-lasting readability.


Comprehensive Learning Experience

Accompanied by a detailed instruction manual, the module provides step-by-step guidance from fundamentals to advanced exercises. It seamlessly integrates theory with practical hands-on experiments, making it an ideal tool for teaching and demonstration of electrical synchro systems and angular measurement techniques.

FAQs of Synchro Transmitter Receiver Trainer:


Q: How do I use the Synchro Transmitter Receiver Trainer in a classroom or lab setting?

A: Set up the trainer on a stable tabletop using its anti-skid feet, connect the modules using the 4 mm safety sockets as per the provided manual, and follow the outlined experiments to explore synchro system principles and angular measurement.

Q: What can I learn from working with this trainer?

A: You will gain a practical understanding of electrical synchro systems, principles of angular measurement, and control transformer operation, all reinforced by hands-on activities and detailed theoretical explanations in the instruction manual.

Q: When should this trainer be utilized in the curriculum?

A: This equipment is best introduced during electrical engineering or physics courses focused on measurement systems, instrumentation, or control technology, typically in laboratory segments or demonstration sessions.

Q: Where are the connection terminals located and how accessible are they?

A: The trainer features clearly marked 4 mm safety socket terminals that are prominently arranged on the panel, allowing easy and safe connections during experiments.

Q: What is the process for setting up experiments with this trainer?

A: Begin by referring to the included manual for circuit diagrams and experiment steps. Use the accessible terminals to configure the required setups, energize the trainer with a 230V AC mains supply, and observe angular positions via the analog pointer dials.

Q: How does this trainer benefit students and educators?

A: Its robust design, high measurement repeatability (1), and practical exercises provide an engaging, safe, and reliable platform for exploring and understanding synchro systems, thereby enhancing both teaching effectiveness and student comprehension.

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