HOUNIAO K1 27MHz High-Frequency Electrosurgical Unit for Oral Surgery
Product general information
Brand Name
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Product general information
Place of Origin |
CHINA |
Brand Name |
HOUNIAO |
Model Number |
K1 |
Certification |
GB/T42061-2022/ISO13485:2016 |
Commercial terms of products
MOQ |
1 unit |
Price |
$950 |
Packaging Details |
500×400×200mm |
Delivery Time |
Within 15 days |
Payment Terms |
payment before delivery |
Supply Ability |
100 units/month |
Description
The HOUNIAO K1 High-Frequency Electrosurgical Unit for Oral Surgery is a specialized device designed to replace traditional mechanical scalpels, offering a safe and efficient method for soft tissue cutting in oral surgical procedures. By generating high-frequency, high-voltage currents at the effective electrode tip, it heats and separates tissue while simultaneously achieving hemostasis. This device boasts several advantages, including rapid cutting, effective hemostasis, ease of operation, and enhanced safety and convenience, which significantly reduce surgical time, blood loss, and patient discomfort.
The HOUNIAO K1 High-Frequency Electrosurgical Unit operates at a frequency of 27.126MHz, approximately ten times higher than that of traditional soft tissue surgical devices, offering multiple operational and functional benefits:In high-frequency mode, the patient's entire body surface acts as a large grounding or neutral electrode, forming a current loop through air feedback of high-frequency signals. Traditional devices require cumbersome neutral electrodes, which can cause patient discomfort and anxiety. The HOUNIAO device eliminates the need for such electrodes, thereby avoiding these issues.
The 27.126MHz frequency does not stimulate nerve tissue, eliminating the need for deep anesthesia typically required by traditional low-frequency devices. However, some degree of anesthesia may still be used to enhance patient comfort.
The high frequency is integral to the HOUNIAO K1's fully automatic and instantaneous power tuning system. This unique system continuously controls and precisely adjusts the power output on the surgical electrode. Regardless of various clinical conditions, the device delivers accurate energy to create optimal incisions. If the surgical electrode tip approaches bone or tooth structures, the tuning system immediately reduces power to prevent bone necrosis.