Introduction

Ultrapure Water System delivers Class I ultrapure water with a resistivity of 18.2 MΩ·cm. It supports feed water sources such as reverse osmosis, distilled, or deionized water. The system ensures reliable operation under varying environmental and input conditions. It is a laboratory-grade purification unit designed to meet high standards of water purity. Our Ultrapure Water System is ideal for applications like molecular biology, cell culture, analytical chemistry, electrochemistry, clinical diagnostics, and ultra-trace analysis.

This water purification system is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.

Applications

Our Ultrapure Water System delivers contamination-free water, deal for techniques such as , IC, -MS, and , as well as for reagent preparation, glassware rinsing, and other critical laboratory applications.

Specifications

Source RO, Distilled, DI water
Water Temperature 5℃ to 40℃
Water Pressure 0.1 to 0.8 MPa
Class I Resistivity (25℃) 18.2 MΩ.cm
Class I Conductivity (25℃) 0.055 us/cm
Class I Water Total Organic Level 1 to 5 ppb
Class I Flow Rate 1.5 to 2.0 L/min
Class I Particulate Matter (≥0.02um) ≤1 pc/ml
Electrical Voltage 110 V/220 V±10%
Electrical Frequency 50 Hz/60 Hz
External Dimension (Main Units) 315 × 525 × 570 mm
External Dimension (Water Tank) 380 × 380 × 595 mm
Net Weight (Main Units) 32 Kg
Net Weight (Water Tank) 4.5 Kg

Features

Comprehensive Quality Control

Ergonomic Dispensing System

High Water Purity Output

User Access Management

Chemical-Resistant Housing

FAQs

1. What type of water output does the Ultrapure Water System provide?

The Ultrapure Water System delivers ultrapure (Type I) water that meets the highest purity standards required for sensitive lab procedures. It ensures minimal ionic and organic contaminants, making it suitable for experiments where even trace impurities can affect results. The system uses multiple purification technologies in sequence to eliminate dissolved solids, microorganisms, organics, and gases. It also controls water temperature to avoid affecting experiments. Additionally, the system minimizes water waste through optimized flow regulation and internal circulation. The final output complies with and standards, ensuring reproducibility in critical lab tests.

2. How does the Ultrapure Water System ensure user-friendly operation in busy labs?

Designed with the end-user in mind, the Ultrapure Water System features a responsive interface with intuitive navigation for effortless daily use. The color-coded indicators help users easily interpret water quality and system status. Touch-button or volume-controlled dispensing ensures precise delivery without manual measurement. Quick-access cartridge compartments allow maintenance without tools, reducing technician downtime. Acoustic alerts notify users of any irregularities, even from a distance. Its compact footprint makes it easy to place on standard lab benches without occupying excess space. In addition, real-time display feedback reduces the need for external meters or instruments.

3. Is the Ultrapure Water System suitable for use in temperature-sensitive lab environments?

Yes, the Ultrapure Water System is optimized to perform consistently in labs with varying ambient temperatures. It uses insulation materials and thermal shielding to protect critical internal components from external heat fluctuations. The system can regulate internal flow temperature, maintaining stable conditions for purification processes. Integrated thermal sensors provide accurate readings and adjust operations to prevent overheating. It avoids microbial growth through temperature management of internal lines. The stable operation is also supported by its auto-adaptive cooling fan that reduces internal heat without increasing noise. This makes it ideal for climate-controlled labs and high-temperature regions.

4. What sustainability features are included in the Ultrapure Water System model?

Sustainability is a core aspect of the Ultrapure Water System design, starting with its energy-efficient electronics that reduce power consumption without compromising performance. The filtration cartridges are recyclable, and their extended lifespan minimizes environmental impact. Water usage is optimized through intelligent membrane flushing that reduces waste during standby cycles. The housing is made from non-toxic, durable plastics that are chemically resistant and eco-friendly. It also includes an eco-mode that powers down non-essential functions during inactivity. Additionally, the system promotes sustainable lab practices by reducing the need for bottled ultrapure water and single-use containers.

5. Can the Ultrapure Water System support multiple users in a shared lab environment?

Yes, the Ultrapure Water System is ideal for shared lab settings due to its smart access design and rapid dispensing capabilities. It features customizable user settings for dispensing volume and quality preferences. The system supports queue-based access to prevent overlap or misuse when multiple users operate it in succession. Its continuous water availability ensures no delay in busy labs. Multi-language support enhances accessibility for diverse research teams. The user activity can also be logged for lab management tracking. The high flow rate enables quick bottle or container filling, even during peak hours.

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