Used ZEISS LEO 1430 #9074727 for sale
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ZEISS LEO 1430 is a scanning electron microscope (SEM) that offers unparalleled resolution and flexibility in terms of sample characterization. Utilizing a cold field emission gun (FEG) electron optical column and digital signal processor (DSP) platform, LEO 1430 provides a maximum resolution of 1.5 nm spacial resolution with integration times under a millisecond. The superior imaging features of ZEISS LEO 1430 enable the capture of high-resolution images of individual nanoparticles, as well as the quantitation of near-field recombination dynamics of unstained biological samples. LEO 1430 employs a range of current imaging modes to accommodate a variety of applications, such as large-scale topography imaging, backscatter imaging for investigative structure mapping, and elemental mapping to gain insights into materials and chemical composition. Furthermore, its versatility and advanced imaging capabilities extend to 3D imaging, making it suitable for a variety of material research fields. Its acquisition modes—including angle, capacitance, dynamic, line scan, image-space gating, and low-charge—allow users to achieve timely and accurate results. The FEG performance is optimized by using a programmable inertial focusing system which accurately controls the gap between the sample and the electron gun in order to optimize the resolution, intensity, and contrast of images. This system is essential for obtaining detail-rich 3D imaging. The precision of the system is further enhanced by the usage of a custom-tailored, low-dispersion, and highly efficient objective lens. The DSP platform increases the imaging speed, accuracy, and resolution. The software also includes a variety of color adjustments, providing colorful and vivid images that can better illustrate observed materaial and structural changes of samples. Additionally, the user-friendly user interface results in improved user experience and increased efficiency. All in all, ZEISS LEO 1430 SEM offers advanced imaging capabilities and increased acquisition speed, enabling researchers to effectively address a variety of research needs. Its corrosion-resistant construction, energy-efficient operation, and exceptional resolution capabilities make LEO 1430 a powerful and versatile tool to study a range of domains.
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