ultrasonic scalpel handpiece BTW-US-E23
$550.00 / Piece Min.order:1
The transducer developed by Wuhan BBT Medical is a state-of-the-art component used in ultrasonic surgical systems. Designed for precision, this transducer converts electrical energy into mechanical vibrations, essential for high-frequency ultrasonic applications. Its advanced material composition ensures superior energy transmission, optimizing the efficiency of the ultrasonic device.

Support Payment Term:

HSBC Hong Kong

paypal

Alibaba Pay

Western Union

USD

EUR

GBP

SGD

HKD

CNH

CAD

MXN

BRL

JPY

THB

MOP

AUD

NZD

PLN

CZK

HUF

RON

CHF

SEK

NOK

DKK

TRY

AED

SAR

ILS

ZAR

$0.00

Quantity

Discover similar items

Page 1 of 2

The gray transducer (Also known as Handpiece.) from Wuhan BBT Medical plays a pivotal role in converting electrical energy into mechanical motion for ultrasonic surgical instruments. Constructed with cutting-edge piezoelectric materials, this transducer delivers reliable and efficient performance across a wide range of medical applications. Its mechanical vibration frequency operates in the 55.5 kHz range, a crucial parameter for ensuring precision tissue dissection and coagulation during surgery.

With an energy conversion efficiency rate exceeding 90%, the transducer minimizes energy loss, leading to enhanced thermal management. This ensures that the instrument remains cool to the touch, which is essential for maintaining patient safety during extended surgical procedures.

The gray transducer is meticulously engineered to meet strict safety and performance standards. In performance testing, the transducer demonstrated durability by withstanding over 10 million vibration cycles without a decrease in operational efficiency. Additionally, it boasts an input power rating of 150 watts, which is sufficient for handling a variety of tissue types, including dense or fibrous tissues.

This high-performance transducer is essential for improving the efficacy of ultrasonic surgical systems, reducing procedure times, and ensuring optimal patient outcomes.