Product Details
Place of Origin: China
Brand Name: Senova
Certification: CE
Model Number: HyPure-30UV
Payment & Shipping Terms
Minimum Order Quantity: 1 unit
Price: Available upon request
Packaging Details: plywood case
Delivery Time: 5-20 working days
Payment Terms: T/T
Supply Ability: 200 units
Type: |
Water Purification System |
Keywords: |
Ultrapure Water System For Laboratory |
Water Tank Storage: |
30L |
Feed Water: |
Tap Water |
Output Water: |
Class I, Class III |
Adoption: |
Multi-stage Filtration System |
Raw Water: |
TDS<2000ppm |
Pure Water Quality: |
1~20us/cm(RO - 2 5us/cm) |
Control System: |
Touch Screen |
Powersupply: |
220V/50Hz Or 110V/60Hz |
Type: |
Water Purification System |
Keywords: |
Ultrapure Water System For Laboratory |
Water Tank Storage: |
30L |
Feed Water: |
Tap Water |
Output Water: |
Class I, Class III |
Adoption: |
Multi-stage Filtration System |
Raw Water: |
TDS<2000ppm |
Pure Water Quality: |
1~20us/cm(RO - 2 5us/cm) |
Control System: |
Touch Screen |
Powersupply: |
220V/50Hz Or 110V/60Hz |
Compact new design for small volume ultra-pure water needs.
Simplest operation Get started instantly with a straightforward four-button control panel. Smart automation manages the rest. Administrative PIN codes ensure settings stay secure.
Rapid cartridge replacement Experience minimal downtime. Quick-connect cartridges pop in and out. An intelligent layout with a wide door simplifies servicing in under-bench locations.
Reliable work Safeguard system performance. The secondary feedwater monitor alerts you to pretreatment issues before they affect purity or cause costly cartridge damage.
Conductivity measurement Ensure data integrity. With individually stored calibration values and automatic electronic checks, you receive consistently accurate purity readings.
Temperature compensation Achieve measurement confidence. The system automatically compensates for temperature variations, fulfilling USP requirements for reported water quality.
Flexible dispensing Create an ergonomic dispensing station. Adjust the arm, detach the pistol, or use the foot switch. Auto-dispense streamlines repetitive tasks.
Clear information Stay informed with a comprehensive dashboard. Monitor real-time purity, system activity, and receive timely consumable replacement alerts.
Water leakage protection Integrate a critical safety feature. The system detects leaks and reacts automatically to cut water inflow and warn the user.
Space saving Free up valuable bench space. Tuck the main system away and use the remote dispenser up to 3 meters distant for convenient access.
| Model | HyPure-30UV |
| Pretreatment module | ○ |
| High pressure pump | ○ |
| Reverse osmosis | ○ |
| Dual wavelength UV-lamp | ○ |
| Ultra-purification cartridge | ○ |
| Microfiltration cartridge | ○ |
| Point-of-use filter Internal | ○ |
| Water Tank | ○ |
| Bio-filter | / |
| Model | HyPure-30UV |
| Feed Water Requirement | |
| Source | Tap water |
| Conductivity* | <2000us/cm |
| Hardness** | <450ppm as CaCO3 |
| Pressure | 0.05~0.5MPa(7 - 72psi) |
| Temperature | 5~40℃ |
| Purification Water(Class III) | |
| Ionic Rejection | >95% |
| Bacteria Rejection | >99% |
| Conductivity | 1~20us/cm(RO - 2 5us/cm) |
| Productivity Rate | 30L/h |
| Ultrapurification Water(Class I) | |
| Resistivity At 25℃ | 18.2MΩ.cm |
| Conductivity At 25℃ | 0.055us/cm |
| TOC Level*** | 1~5ppb |
| Endotoxin(Pyrogens) | N/A |
| Particulate(≥0.02um) | <1pc/ml |
| Bacteria*** | <0.1cfu/ml |
| Rnase / Dnase** | N/A |
| Ultrapurification Water(Class I) | |
| Manual dispense flow rate | 1.2~1.5L/min |
| Automatic dispense volume | 100~60000ml |
| Electrical Requirements | |
| Electrical Voltage | 110V/220V±10% |
| Electrical Frequency | 50HZ/60HZ |
| Packing Information | |
| Net Weight | |
| Main units | 32kg |
| Water tank | N/A |
| External Dimensions(WxDxH) | |
| Main units | 315x525x570mm |
| Water tank | N/A |
| Shipping weight | |
| Main units | 45kg |
| Water tank | N/A |
| Shipping Dimensions(WxDxH) | |
| Main units | 525x610x770mm |
| Water tank | N/A |
Investing in a laboratory water system offers significant long-term economic benefits compared to purchasing bottled water. It eliminates recurring purchase costs, reduces handling and storage labor, and minimizes plastic waste disposal. More importantly, it mitigates the risk of expensive experiment failures or instrument damage caused by inconsistent water quality. Although requiring an initial capital outlay and periodic maintenance (filter changes, etc.), the total cost of ownership over time is typically lower, while providing superior control, convenience, and reliability.