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Ultrasonic Instrumentation Revealed

When a clinician adjusts the power of automatic tuner magnetostriction or piezoelectric Ultrasonic Scaler, is the frequency and amplitude affected?
One doesn't. When a clinician adjusts the power Settings of the automatic tuning system, whether it is magnetostriction or piezoelectric system, only the amplitude is affected. Small changes in frequency may occur depending on the function of the electron, but usually the change is very small and insignificant.
Q: what is the difference between frequency and amplitude? How do these effects affect the performance of the cutting edge?
Frequency refers to the number of times the tip moves back and forth on the tip of a cycle. This is usually expressed in seconds. Amplitude is the measure of the distance that the tip moves forward and backward. The frequency and amplitude determine the cleaning effect together, assuming the same. Speed is probably the best predictor of tipping. The velocity of the tip is determined by the amplitude times the frequency. For example, the speed of a car is called miles per hour. In an ultrasound system, the range is much lower, but the principle is the same, per second or an inch or per second.
Q is the frequency stronger than the low frequency?
A no, this is A common misconception. The higher frequencies are not necessarily stronger. It just means that the prompt will move more times in a second. Power is a function of several factors, including the tip shape, amplitude, frequency, the tip pressure of the tooth, and the Angle of pressure.
Q: is the performance of manually tuned magnetostrictive units superior to the automatic tuning unit?
An artificial tuning system should not work better than an automatic tuning system. Typically, system performance is optimized by driving inserts or tips, generating maximum amplitude in any given power setting. In the artificial tuning system, the clinician is responsible for finding the optimal level. There are some discussions about how to determine this. Should I use sound or spray mode? Both are valid. But most importantly, the artificial tuning system requires a clinician's decision to make it to the best level of automatic system routine.
How to improve tip performance?
Prompt performance starts with prompt design. The clinical application should determine the basic design. For example, the size and basic shape of the prompt should be determined by the access and adaptation of the requirements. This includes the tip thickness, the shape and length of the working part of the tip, and the distance from the tip of the end of the hand plate (piezoelectric) or grip area (magnetostrictive). There is a side tip, such as 1000, with the right length of work or any piezoelectric sheet with edges, which will be more efficient than the circular shape. Secondly, materials should be used to make cutting-edge materials to ensure reliable performance. This includes the ability to use the manufacturer's recommended power levels, the high strength of the resistance to breakage, and the ability to wear a reasonable abrasion (service life).
How does the thickness and power level of the tip or insert affect performance?
Under the same operating conditions, there is a greater cleaning force at the high power level, which has a greater cleaning capacity than a thinner top. In low power Settings, the difference may not be significant. The challenge is that many of the thinner tips are generally not available at higher power levels because they are at risk of breakage. Because thinner tips are adapted to the shape of contact and cues, a carefully designed thin tip can be safe to operate at a higher power level. More research and development using insertions of design and materials to create thin tips, effectively working on tough calculus is necessary. All cutting-edge cleaning effects are enhanced by operating prompts or inserts in an electronic dental equipment that has the ability to maintain amplitude and frequency in clinical operation conditions. In principle, the speed (amplitude multiplied by frequency) has a greater effect on performance than the tip size.

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