Introducing the ADC 500128Q Tuning Fork - the ultimate tool for precise frequency testing and bone conduction experiments. Crafted with meticulous attention to detail, this tuning fork offers exceptional performance and durability, making it an essential addition to any medical or scientific toolkit.
Made from a non-magnetic, corrosion-resistant aluminum alloy, this ADC Tuning Fork guarantees long-lasting reliability, ensuring accurate frequency delivery for years to come. The use of aluminum not only enhances its durability but also makes it incredibly lightweight, weighing merely one-third of comparable steel tuning forks. Its lightness allows for easy portability, making it an ideal companion for professionals on the move.
Engineered from high-quality 3/8" x 1" bar stock, this tuning fork boasts superior performance and consistent frequency accuracy. Whether used for medical diagnoses or scientific research, you can rely on this ADC Tuning Fork to deliver precise results every time.
The ADC 500128Q also features an extra-long 2" handle made from smooth aluminum. This design allows for effortless bone conduction tests, ensuring optimal comfort and usability during experiments. The elongated handle provides ease of grip, facilitating accurate and consistent testing procedures.
For your convenience, the standard orders come securely packaged in a polybag. However, for a more professional and attractive presentation, we offer optional retail packaging, as shown in the photos. To opt for the retail packaging, simply add a “Q” to the item number when placing your order. This slight upcharge guarantees that your ADC Tuning Fork arrives in pristine condition, ready for immediate use or display.
Whether you are a medical professional, researcher, or educator, the ADC 500128Q Tuning Fork will undoubtedly prove to be an invaluable tool in your arsenal. Experience the precision, durability, and ease of use that only ADC can provide. Invest in the ADC 500128Q Tuning Fork today and elevate your frequency testing and bone conduction experiments to new heights of accuracy and efficiency.