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Computer Controlled Experimental Impulse Turbine
Computer Controlled Experimental Impulse Turbine

Computer Controlled Experimental Impulse Turbine

Price 100 INR/ Unit

MOQ : 1 , , Unit

Computer Controlled Experimental Impulse Turbine Specification

  • Response Time
  • <2 seconds
  • Interface Type
  • USB/RS232 interface
  • Application
  • Heat Engine Lab Models
  • Number of Specimens
  • Single specimen per test
  • Features
  • PC based data acquisition, variable nozzle, safety cut-off, real-time monitoring
  • Operating Voltage
  • 220 V AC
  • Resolution
  • 0.1 rpm
  • Usage
  • Heat Engine Lab Models
  • Frequency
  • 50 Hz
  • Accuracy
  • 1% F.S.
  • Measuring Range
  • 01000 rpm (digital measurement)
  • Automation Grade
  • Automatic
  • Power Supply
  • 220 V AC, 50 Hz, single phase
  • Port Size
  • 1/2 inch BSP
  • Product Type
  • Computer Controlled Experimental Impulse Turbine
  • Test Range
  • 0500 W (power output range)
  • Specimen Size
  • Standard impulse turbine blade module
  • Temperature
  • 15C40C (operating environment)
  • Display Type
  • Digital LCD (with computer interface)
  • Gas Pressure
  • 25 bar (adjustable)
  • Mounting Type
  • Bench top
  • Max Height
  • 950 mm
  • Humidity
  • 5%95% RH (non-condensing)
  • Capacity
  • 0.5 kW
  • Machine Weight
  • Approx. 75 kg
  • Test Speed
  • 3003600 rpm (variable)
  • Control Mode
  • Computer Controlled (PLC/SCADA based)
 

Computer Controlled Experimental Impulse Turbine Trade Information

  • Minimum Order Quantity
  • 1 , , Unit
  • Payment Terms
  • Cash Advance (CA), Cash in Advance (CID), Cheque, Telegraphic Transfer (T/T), Letter of Credit (L/C)
  • Supply Ability
  • 100 Units Per Week
  • Delivery Time
  • 1 Week
  • 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 Computer Controlled Experimental Impulse Turbine

De Lavel Turbine Velocity Compounded

Microteknik manufacturer, exporter & supplier of De-Lavel Turbine Velocity Compounded

Description:   
The model is of the best known turbine working on 40 lb per square inch steam pressure.

Full Specification  De-Lavel Turbine Velocity Compounded) :

Buckets are attached to the rim of 20 cm dia wheel carefully balanced. Convergent and divergent nozzle is provided with shut of cock. Provided with a transparent window to see the inner constructional details of the runner. This model works with the air pressure generated by compressor.




Advanced Turbine Performance Monitoring

This impulse turbine system provides real-time digital measurement and PC-based data acquisition. Thanks to a precision digital LCD display and USB/RS232 interface, users can monitor speed, power output, and efficiency instantly. Reports can be printed or exported for advanced analysis, supporting both research and instructional needs.


Reliable and Safe Laboratory Operation

Safety is prioritized through integrated emergency stop and overload protection features. The powder-coated casing supports durability in active lab environments, and the equipment operates quietly below 70 dB at 1 meter. Designed for indoor labs, its robust construction and automated controls minimize risk and simplify operation.


Flexible Testing Capabilities

The turbine supports variable nozzle settings, test speeds from 300 to 3600 rpm, and adjustable gas pressures (25 bar). Testing can be performed on single impulse turbine blade modules with accuracy of 1% F.S. across a wide power output range (0500 W). The system is compatible with diverse fluid mechanics and heat engine experiments.

FAQs of Computer Controlled Experimental Impulse Turbine:


Q: How is the impulse turbine controlled and monitored during operation?

A: The turbine utilizes computer-based control through PLC/SCADA systems and connects to PCs via USB or RS232. Real-time monitoring, data acquisition, and reporting are managed through dedicated lab software, enabling precise and automated test execution.

Q: What setup and environmental requirements should be considered for optimal use?

A: The unit is a bench-top device requiring a single-phase 220 V AC, 50 Hz power supply, and should be installed in labs with temperatures from 15C to 40C and non-condensing humidity between 5% and 95%. No water cooling is needed, simplifying lab integration.

Q: When is it necessary to use the emergency stop or overload protection features?

A: Use the emergency stop immediately if any unsafe condition arises during turbine operation. The built-in overload protection automatically safeguards the system from excessive load or abnormal electrical conditions, minimizing equipment risk and enhancing safety.

Q: Where can the Experimental Impulse Turbine be implemented for academic or industrial purposes?

A: It is ideal for fluid mechanics and heat engine laboratories in universities, engineering colleges, technical institutes, and research facilities. Manufacturers and distributors across India supply the equipment for export and academic use.

Q: What is the process for conducting a standard experiment with this turbine?

A: Load a single impulse turbine blade module, configure test parameters (speed, nozzle diameter, gas pressure), and initiate the test via computer. Data is digitally measured and logged in real time, allowing report generation upon completion.

Q: How is measurement accuracy and reporting ensured in the unit?

A: The system delivers digital measurement of rpm (range: 01000 rpm, resolution: 0.1 rpm, accuracy: 1% F.S.) and power output (0500 W). All results are processed centrally in lab software and printed or exported as needed, guaranteeing standardized reporting.

Q: What benefits does bench-top mounting and automatic control offer to users?

A: Bench-top mounting ensures portability and space efficiency in busy labs. Automatic control reduces manual intervention and errors, supporting consistent, repeatable experimentation while freeing up instructor and student time for analysis and learning.

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