Introduction

Mechanical Heating Ultrasonic Cleaner delivers high efficiency functionality and features. This compact model with 4.5 L tank capacity and 120 W ultrasonic power provides deep cleansing action removing contamination even from blind holes and internal surfaces. Its key feature is the variance of using it at 28 KHz for gross rinse to 40 KHz for intensive rinse Equipped with degassing and gettering function for removal of dissolved gasses and efficient cleansing of oil and wax

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

Applications

Ideal for cleaning irregular and complex instruments, lenses and other optical parts, dental and surgical instruments, electronics. It is also used in extraction and to degas certain analyzed stuff in laboratories

Specifications

Capacity 4.5 L
Tank size ( L x W x H ) 300 x 155 x 100 mm
Machine size ( L x W x H ) 312 x 162 x 240 mm
Ultrasonic power 120 W
Heater power 100 W
Temperature set 20 °C ~ 80 °C
Digital timer ( mechanical ) 0 ~ 20 mins
Control mode Mechanical
Construction material Stainless Steel
Voltage AC 220 V / 50 Hz

Features

4.5 L capacity tank

Integrated mechanical circuit for timer and heater

Temperature range : 20 °C ~ 80 °C ( mechanical )

Cleaning duration : 0 ~ 20 mins

Efficient cleaning can be done by distilled water

Optimum durability under prolonged and heavy usage

Equipped with degassing and gettering function

FAQs

1. What types of objects can be cleaned using the Mechanical Heating Ultrasonic Cleaner ?

It Mechanical Heating Ultrasonic Cleaner is ideal for cleaning items with complex geometries like optical lenses, dental tools, surgical instruments, and circuit boards. Its ultrasonic waves reach deep into small cavities, crevices, and blind holes where manual cleaning fails. This ensures complete removal of dirt, grime, and residues. It is also suitable for lab use, such as in sample preparation and degassing applications.

2. How does the dual-frequency feature of the Mechanical Heating Ultrasonic Cleaner benefit the cleaning process?

Mechanical Heating Ultrasonic Cleaner operates at both 28 KHz and 40 KHz, giving users the flexibility to tailor the cleaning intensity. Use 28 KHz for robust, initial cleaning (gross rinse) and 40 KHz for fine, detailed cleaning (intensive rinse) of delicate parts. This adaptability ensures effective results across a wide variety of contamination types and materials. It also reduces the risk of damage to sensitive surfaces.

3. Is the Mechanical Heating Ultrasonic Cleaner safe for everyday use in medical or electronic environments?

Yes, the Mechanical Heating Ultrasonic Cleaner is constructed from stainless steel and includes temperature control to prevent overheating, making it safe for frequent use. The mechanical control system is simple, reducing the risk of user error. The degassing and gettering functions ensure cleanliness to a level suitable for medical and electronic standards. However, always verify compatibility of items with ultrasonic cleaning before use.

4. What are the key maintenance steps to ensure long-term durability of Mechanical Heating Ultrasonic Cleaner ?

Mechanical Heating Ultrasonic Cleaner recommends that after each session, drain the tank and wipe it clean to remove any residues or buildup. Users should avoid using abrasive materials or harsh chemicals that may corrode the stainless steel interior. It should be ensured that the vents are clear and the power cord and controls are inspected regularly. Following a simple routine keeps the product functioning efficiently over long-term use.

5. Can the Mechanical Heating Ultrasonic Cleaner handle multiple small items at once, and how should they be arranged?

Yes, the Mechanical Heating Ultrasonic Cleaner 's 4.5 L tank provides ample space for cleaning multiple small components simultaneously. Items should be spaced apart and placed in a mesh basket (not touching the tank’s bottom) for even exposure to ultrasonic waves. This prevents damage from direct contact with the vibrating tank and ensures uniform cleaning. The tank should not be overloaded, as this can reduce cleaning effectiveness.

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