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Agilent 1100
Agilent 1100

Agilent 1100

Price 650000 INR/ Unit

MOQ : 1 Unit

Agilent 1100 Specification

  • Dimension (L*W*H)
  • approx. 46 x 52 x 42 cm (per module)
  • Height
  • 42 cm (per module approximately)
  • Treatment Type
  • Chemical analysis
  • Shape
  • Rectangular modular units
  • Use
  • Analytical chemistry, pharmaceuticals, food safety, environmental analysis
  • Suitable For
  • Laboratory use
  • Storage Capacity
  • 16-100 samples (depending on autosampler module)
  • Properties
  • High precision, modular design, easy maintenance, robust performance
  • Humidity Range
  • Up to 95% RH (non-condensing)
  • Power
  • 250 VA (per module, typical)
  • Function
  • Component separation, detection, quantification
  • Color Code
  • White/Grey
  • Weight
  • Approx. 40-60 kg (full system, varies per configuration)
  • Accuracy
  • 0.1% RSD (pump); 0.1 min (autosampler timing)
  • Product Type
  • HPLC System
  • Temperature Range
  • Ambient +4C to 60C (with column oven)
  • Material
  • Corrosion-resistant metal and polymer composite
  • Phase
  • Single or Three Phase
  • Automation Grade
  • Automatic
  • Display Type
  • LCD or alphanumeric
  • Application
  • High Performance Liquid Chromatography (HPLC) for chemical analysis
  • Frequency
  • 50/60 Hz
  • Power Source
  • Electric
  • Display
  • Yes (digital display on module)
  • Voltage
  • 100-240 V AC
  • Column Temperature Control
  • Ambient +4C to 60C
  • Communication Interface
  • RS232, LAN, CAN
  • Maximum Pressure
  • 400 bar
  • Flow Rate Range
  • 0.0015.000 mL/min (depending on pump)
  • Pump Type
  • Quaternary and binary gradient pumps available
  • Noise Level
  • < 1.0 AU (typical, UV detector)
  • Wavelength Range
  • 190-600 nm (UV/VIS detector)
  • Injection Volume
  • 0.1100 L (adjustable, autosampler)
  • Safety Features
  • Leak detection, pressure monitoring, automated shutdown
  • Software
  • ChemStation and OpenLab compatible
  • Detector
  • UV/VIS, DAD, Fluorescence, or RID depending on configuration
 

Agilent 1100 Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • Supply Ability
  • 1 Unit Per Week
  • Delivery Time
  • 1 Days
 

About Agilent 1100

We are a renowned manufacturer of a qualitative array of Agilent 1100 to our highly esteemed clients. It is a medical equipment sturdily built using optimum quality raw material along with the help of advanced tools and equipment at our unit. Our experts go through numerous parameters of quality checks to ensure that Agilent 1200 HPLC is free from any flaws. This hence stands high on effectiveness, simple usage, low power consumption, corrosion resistance,durability and a long service life. 

High Performance and Flexibility

The Agilent 1100 is engineered for diverse analytical needs, providing precision, modularity, and robust construction. Its adaptability for quaternary or binary gradient pumping, adjustable injection volumes, and broad flow rate range support separation of complex mixtures in a range of industries, ensuring accurate and reproducible results every time.


Advanced Detection and Control

Benefit from multiple detector optionsincluding UV/VIS, DAD, fluorescence, and RIDtailored to varied analytical requirements. State-of-the-art column temperature control, digital displays, and comprehensive safety mechanisms empower users with reliable monitoring and automated protection, making laboratory operations safer and more predictable.

FAQs of Agilent 1100:


Q: How do I choose between the quaternary and binary gradient pumps in the Agilent 1100 system?

A: Selection depends on your application requirements. The quaternary pump is suitable for complex gradients requiring up to four solvents, offering greater flexibility. The binary pump allows faster gradient changes and is ideal for high-throughput runs with two solvents. Both support a maximum pressure of 400 bar for demanding HPLC applications.

Q: What are the primary applications and benefits of using the Agilent 1100 in the laboratory?

A: The Agilent 1100 is used in analytical chemistry, pharmaceuticals, food safety, and environmental analysis, delivering high-precision component separation, detection, and quantification. Its modular design, automation features, and compatibility with major data systems make it highly versatile and efficient, streamlining workflow and improving analytical accuracy.

Q: When should I calibrate and maintain the Agilent 1100 to ensure optimal performance?

A: Calibration and routine maintenance should be performed as per manufacturer recommendations, typically before beginning new analytical runs, after significant system use, or if unusual performance is detected. Regular servicingsuch as leak checks and pump maintenancefurther enhances instrument longevity and reliability.

Q: Where can the Agilent 1100 be installed, and what environmental conditions are required?

A: The system is designed for laboratory environments with reliable electricity (100240 V AC, 50/60 Hz), non-condensing humidity up to 95% RH, and temperature control (ambient +4C to 60C with the column oven). Its corrosion-resistant components make it suitable for rigorous scientific settings.

Q: What is the process of operating the Agilent 1100 for chemical analysis?

A: Operation involves method setup on compatible software (ChemStation or OpenLab), configuring the gradient pump, autosampler, and detector, followed by sample loading. The instrument then automates sample injection, separation, detection, and data recording, with real-time monitoring via digital displays and built-in safety features.

Q: How does the system manage safety and reduce operational risks during usage?

A: Integrated safety mechanisms include leak detection, pressure monitoring, and automated shutdown to prevent damage or accidents. Modular construction and easy-access components also facilitate safe maintenance, while robust materials resist corrosion and chemical exposure.

Q: What advantages does automated sample handling provide in the Agilent 1100?

A: Automated autosampling allows precise and reproducible sample injections (0.1100 L, up to 100 samples), minimizing manual intervention, reducing the risk of error, and increasing laboratory throughput for high-volume or complex sample analysis.

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