DIELECTRIC CONSTANT IN LIQUID AND SOLIDS (RESONANCE METHOD)
DIELECTRIC CONSTANT IN LIQUID AND SOLIDS (RESONANCE METHOD)

DIELECTRIC CONSTANT IN LIQUID AND SOLIDS (RESONANCE METHOD)

DIELECTRIC CONSTANT IN LIQUID AND SOLIDS (RESONANCE METHOD) Specification

  • Type
  • Laboratory Instrument
  • Material
  • Stainless Steel, Borosilicate Glass
  • Size
  • Standard
  • Input Voltage
  • 230 V AC, 50 Hz
  • Color
  • Silver/Blue
  • Dimension (L*W*H)
  • 320 mm x 270 mm x 180 mm
  • Capacity
  • Single Sample Measurement
  • Noise Level
  • Low
  • Standard Accessories
  • Sample holders, connecting cables, user manual
  • Display
  • High resolution digital voltmeter
  • Sample Holder Material
  • Copper / Non-reactive alloy
  • Accuracy
  • ±2% of full scale
  • Safety Feature
  • Overload protection
  • Operation Mode
  • Manual
  • Compliance
  • CE certified
  • Indication Method
  • Digital / Analog display
  • Power Consumption
  • Approx. 30 W
  • Calibration
  • Manual calibration with standard sample
  • Temperature Control
  • Ambient
  • Weight
  • Approx. 10 kg
  • Measurement Range
  • 1 to 100 (relative permittivity)
  • Frequency Range
  • 1 MHz to 10 MHz
  • Application
  • Determination of dielectric constant in liquids and solids by resonance method
 
 

About DIELECTRIC CONSTANT IN LIQUID AND SOLIDS (RESONANCE METHOD)



Discover an exclusive, top-ranking laboratory instrument-the DIELECTRIC CONSTANT IN LIQUID AND SOLIDS (RESONANCE METHOD). This extraordinary device offers instant savings and a true bargain for research professionals. Engineered for accuracy (2%), the system determines dielectric constants (relative permittivity) for liquids and solids across a broad range (1-100) and frequencies (1-10 MHz). Featuring both analog and crackerjack digital displays, it provides reliable, high-resolution readings. The robust construction-stainless steel, borosilicate glass, and copper-ensures longevity, while essential safety features and CE certification give peace of mind. Standard accessories, low power consumption, and manual calibration complete this exceptional offering for distributors, exporters, manufacturers, suppliers, and traders across India and beyond.

Versatile Usage & Applications of Dielectric Constant Measurement

The DIELECTRIC CONSTANT IN LIQUID AND SOLIDS (RESONANCE METHOD) is designed for precision measurement in laboratories, universities, and research centers. Its crackerjack performance is ideal for academic research, industrial material analysis, and quality control applications. The durable copper and non-reactive alloy sample holders accommodate a variety of liquid and solid samples, making it a top choice for diverse surfaces and sites of application. This instrument ensures extraordinary value for scholars and professionals alike.


Delivery Schedule, Payment Terms & Export Market Estimate

Delivery rates are highly competitive, with prompt dispatch times to maintain your market value. Payment terms are flexible, accommodating a wide range of clients globally. We estimate fast turnaround times for both domestic and export orders, especially throughout India, Europe, the Middle East, and Southeast Asia. Our extensive network aids in seamless distribution, ensuring your purchase arrives safely and efficiently at its destination, enhancing your investment's profitability.


FAQ's of DIELECTRIC CONSTANT IN LIQUID AND SOLIDS (RESONANCE METHOD):


Q: How does the resonance method in this instrument determine dielectric constants?

A: This instrument measures the dielectric constant of liquids and solids by analyzing the resonance frequency shift of a sample. By comparing the resonance frequencies with and without the sample in the holder, the device calculates the relative permittivity accurately.

Q: What benefits does the high-resolution digital voltmeter provide?

A: The high-resolution digital voltmeter allows precise and easy-to-read measurements, reducing human error and enhancing the reliability of results in laboratory settings.

Q: Where can the DIELECTRIC CONSTANT IN LIQUID AND SOLIDS instrument be used?

A: This instrument is well-suited for research laboratories, university departments, quality control labs, and industrial facilities needing accurate dielectric property data for solids and liquids.

Q: What is the process for calibrating this instrument?

A: Manual calibration is performed using a standard sample with a known dielectric constant, ensuring extraordinary measurement accuracy and repeatability.

Q: How does the overload protection feature enhance operational safety?

A: The overload protection automatically safeguards internal components from electrical surges or excessive loads, ensuring operator safety and prolonging instrument life.

Q: When is it necessary to use manual operation mode?

A: Manual operation provides full user control during measurement and calibration, which is especially useful for complex experiments or when working with unconventional sample materials.

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