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Waters Alliance HPLC System
Waters Alliance HPLC System

Waters Alliance HPLC System

Price 653000 INR/ Unit

MOQ : 1 Unit

Waters Alliance HPLC System Specification

  • Dimension (L*W*H)
  • Approx. 45 x 56 x 46 cm
  • Use
  • For Lab Use
  • Function
  • Separation and quantification of mixtures
  • Weight
  • ~30 kg (main system unit)
  • Application
  • Chemical Analysis, Pharmaceuticals, Laboratory Research
  • Material
  • Metal and Plastic
  • Height
  • Approx. 46 cm (main module)
  • Display Type
  • Digital
  • Product Type
  • Waters Alliance HPLC System
  • Suitable For
  • Scientist
  • Temperature Range
  • Ambient +4 C to 60 C (Column Heater)
  • Properties
  • High sensitivity, reproducible results, modular design
  • Color Code
  • Black and Grey
  • Automation Grade
  • Automatic
  • Power
  • 300 VA
  • Storage Capacity
  • Multi-solvent bottle trays, up to 6 bottles
  • Accuracy
  • 0.1% RSD for retention time
  • Frequency
  • 50/60 Hz
  • Phase
  • Liquid
  • Humidity Range
  • 20% - 85% RH (non-condensing)
  • Treatment Type
  • Analytical HPLC
  • Shape
  • Rectangular
  • Power Source
  • Electrical
  • Display
  • LCD Digital Display
  • Voltage
  • 100-240 V AC
  • Injection Volume Range
  • 0.1 L to 1 mL
  • System Configuration
  • Can include pump, autosampler, column heater, and UV/Vis detector modules
  • Pressure Range
  • Up to 6000 psi (400 bar)
  • Wavelength Range (UV Detector)
  • 190 700 nm
  • Flow Rate Range
  • 0.001 10 mL/min
  • Noise Level
  • < 20 AU
  • Interface
  • LAN, USB, RS232 ports for data transfer
  • Gradient Type
  • Binary/Quaternary (model dependent)
  • Number of Channels
  • Multi-channel support (depending on model)
  • Data System
  • Empower Software compatible
 

Waters Alliance HPLC System Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • Payment Terms
  • Telegraphic Transfer (T/T), Cheque
  • Supply Ability
  • 2 Units Per Week
  • Delivery Time
  • 1-10 Days
  • Packaging Details
  • Wooden Box and Carton Box
  • Main Export Market(s)
  • Western Europe, Australia, North America, Eastern Europe, Central America, Middle East, South America, Asia, Africa
  • Main Domestic Market
  • All India
 

About Waters Alliance HPLC System

We are an acclaimed manufacturer of Waters Alliance HPLC System to our highly reputed clients. This is designed with the help of state-of-the-art tools and equipment, using finest quality raw material at our unit. It works on hydrophobic interaction principle. Our experts keep a vigilant eye on the production process in order to make sure that Waters Alliance HPLC System stands free from any defects. This has gained us huge applaud from our clients in the form of increasing demands among that of our competitors.



Modular Design for Flexible Laboratory Configuration

The Waters Alliance HPLC System features a modular build, enabling scientists to customize their setup with a pump, autosampler, column heater, and UV/Vis detector modules. Multi-solvent bottle trays accommodate up to six bottles, ensuring efficiency for diverse separation and quantification tasks in chemical analysis.


Precision and Sensitivity for Reliable Results

Achieve high accuracy in retention time (0.1% RSD) and outstanding sensitivity with the systems advanced technology. The noise level remains below 20 AU, and the system achieves reproducible results essential for analytical HPLC applications in pharmaceuticals, chemical research, and quality control environments.


Seamless Data Integration and Easy Operation

This HPLC system comes Empower Software compatible, simplifying data management and analysis. Multiple connectivity options, including LAN, USB, and RS232, streamline digital transfer, while the LCD digital display provides clear operational feedback and ensures smooth workflow within laboratory environments.

FAQs of Waters Alliance HPLC System:


Q: How can a scientist operate the Waters Alliance HPLC System for chemical analysis?

A: A scientist can operate the Waters Alliance HPLC System by configuring the modular units such as the pump, autosampler, column heater, and UV/Vis detector. Using the digital LCD display and Empower Software, users can set parameters for injection volume, flow rate, temperature, and wavelength, then start the automated process for precise separation and quantification of mixtures.

Q: What types of samples and applications is this HPLC system suitable for?

A: The Waters Alliance HPLC System is ideal for analyzing liquid-phase samples in pharmaceutical research, chemical laboratories, and quality control. Its high sensitivity and reproducibility support detailed chemical analysis, purity testing, and quantitative studies for a wide range of compounds.

Q: When should you utilize binary or quaternary gradient functions?

A: Binary gradient modes are best for simpler separations using two solvents, while quaternary settings suit complex mixture analyses that require up to four solvents. Selection depends on your analytical requirements and the specific model configuration of your Waters Alliance HPLC System.

Q: Where does data storage and management occur in this system?

A: Data generated during HPLC runs is managed and stored via Empower Software, compatible with the systems LAN, USB, and RS232 interfaces. The modular trays accommodate solvent bottles for easy sample and mobile phase logistics, and digital systems handle secure data transfer and archiving.

Q: What is the process for maintaining high sensitivity and reliable operation?

A: Regular calibration, verification of injection volumes, checking solvent levels, and temperature control in the column heater help maintain high sensitivity (<20 AU noise level) and reproducibility. Scheduled preventive maintenance and software updates also support sustained, accurate performance.

Q: How does the modular design benefit laboratory workflows?

A: The modular architecture allows laboratories to tailor system configurations based on experimental needs. Individual modules, such as autosamplers or specific detectors, can be upgraded or replaced, improving flexibility, minimizing downtime, and ensuring the system evolves with changing research demands.

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