Used MICROMANIPULATOR 4060 #9236863 for sale
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MICROMANIPULATOR 4060 is physical analysis equipment designed for use in surface labs or microfabrication environments. This prober is designed for mapping and characterizing RF and integrated circuit components as small as 1 micron with a resolution of 0.5 nanometers. 4060 has four main components, these include: an advanced prober stage, a precision controller, a sample handler, and a microscope system. The stage is capable of high-precision X, Y, Z translations with the highest accuracy and repeatability available on any prober stage. This enables rapid and precise positioning of sample probe assemblies for mobile probing of non-memory devices. The precision controller allows precise control of electrical parameters, such as voltages, currents, and termination resistance. This also provides the ability to compensate for errors in sample positioning. The sample handler ensures that all samples will be held in the exact position required during testing. The microscope unit provides the user with both stereo and compound viewing through both transmitted and reflected light views. MICROMANIPULATOR 4060 works in a variety of ways to increase accuracy for measurements of both small and large devices. A low-noise pre-amplifier is used for good signal-to-noise ratio and the parameters of the machine are optimized to reduce parasitic capacitances and inductances to improve tool performance. The microscope asset also has autofocus and adaptive focusing capabilities to facilitate measurements and increase test accuracy. Additionally, the model is designed to eliminate vibration and acoustic noise, allowing for more precise measurements. This prober also includes sophisticated diagnostic features like a frequency spectrum analyzer to evaluate energy levels at different frequencies, frequency tracking to detect frequency drift, and an amplitude-frequency curve to visualize the energy levels. In conclusion, 4060 is an ideal prober for measuring RF and integrated circuit components as small as 1micron with a resolution of 0.5 nanometers. It features an advanced prober stage, a precision controller, a sample handler, a microscope equipment, a low-noise pre-amplifier, sophisticated diagnostic features, and the ability to reduce vibrations and acoustic noise. It is ideal for labs and microfabrication environments where precise and accurate measurements are needed.
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