Precision Cleaning: Low-power mode of 0-500W (40-80kHz frequency), applicable to delicate workpieces such as semiconductor wafers and optical lenses, which avoids excessive surface damage caused by cavitation effects.
Industrial Welding: High-power mode of 500-2000W (20-40kHz frequency). Dynamic phase angle adjustment technology enables seamless welding of 1.2mm aluminum-nickel composite strips during power battery pole piece processing, raising welding efficiency by 30%.
2. Core Components and Reliability Design
High-Performance Transducer Technology
Piezoelectric ceramic-metal composite vibrators made of PZT-8 material are adopted, which deliver energy conversion efficiency over 92% and amplitude stability within ±1.5%, and can operate stably under a wide temperature range of -30°C to +85°C. As an example in cold-chain logistics, digital power adjustment technology maintains ±0.5°C temperature control precision for refrigerated vehicle cooling systems under -30°C surroundings, meanwhile cutting energy consumption by 25%.
Intelligent Thermal Management System
Micro-channel liquid cooling modules and AI temperature control algorithms are built in to monitor the temperature rise rate of transducers in real time (limited to 0.8°C/min), and adjust heat dissipation power automatically, guaranteeing no performance drop after more than 10 hours of continuous operation.
3. Green Manufacturing and Carbon Footprint Management
Leading Energy Efficiency Standards
This product’s coefficient of performance (COP) is 20%-30% higher than conventional equipment; several models reach China Energy Efficiency Label Grade 1 standards (for reference, one industrial cleaning equipment model has no-load standby power consumption below 0.15W, satisfying the latest GB20943-2025 specifications).
Full Lifecycle Sustainability
Recycled marine plastic is used for the machine body (cutting virgin plastic consumption by 120g per unit), alongside lead-free welding processes, and recycled glass fiber makes up 35% of PCB substrate materials. Matched with photovoltaic charging technology (the rear flexible solar film gains 5% charge within 1 hour under adequate sunlight), it minimizes carbon emissions across the whole lifecycle from hardware design to daily use.