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About



Doty Scientific, Inc. was founded for the primary purpose of designing and manufacturing scientific instrumentation. The company's initial product was a CP/MAS (Cross Polarization/Magic Angle Spinning) probe for chemical structure determination of solid materials via Nuclear Magnetic Resonance (NMR). Today, Doty Scientific has a staff of exceptional employees, including 5 PhD's; additional scientists and engineers with masters degrees or BS degrees; and several highly skilled machinists and technicians. Over half of our employees have been with the company for more than seven years. Our strengths lie primarily in physics, biochemistry and electrical, mechanical and manufacturing engineering. The company has approximately 30 patents in a number of areas.

We are a small team of scientists and engineers focused on supporting the NMR/MRI researcher with custom probe development expertise and the best solids NMR and MRI-RF products in the industry. For over 30 years we have been the major force in the advance of solids probe technology, with dozens of "firsts" in CP/MAS, including multi-nuclear, narrow-bore, triple-resonance, 500 MHz, SAS, 750°C, 26 kHz, 15 Kelvin, and 600 MHz. Many of these products include air-bearing-supported micro-turbine-driven all-ceramic sample spinners capable of achieving supersonic surface speeds. We were also the first to deliver actively shielded MR microscopy gradient probes, and we now have multi-nuclear rf volume coils that out-perform the birdcage.

Our latest XC probes, re-define solids NMR by providing more than an order of magnitude improvement in resolution, a factor of two increase in decoupling strength with low decoupler heating, and versatility beyond your imagination: upgradeability, easy-to-use sealing sample cells, quad-resonance, multi-nuclear, SAS, H-F, lock, Q-switching, PFG, XVT, or all of the above! XC probes are optimized for NMR applications in liquids, tissues, and solids. Other products include fast response cryogenic temperature controllers and low-noise rf preamps.

We have developed some of the world's smallest microturbines for our Solids NMR Probes. We have recently introduced a new line of NMR probes called BMAX which allows for cryogenic cooling of the rf tuning elements to significantly improve S/N (signal to noise ratio). Smaller spinners (3 mm microturbines) have been developed which are expected to spin to speeds up to 28,000 revolutions per second.

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