Used TEKTRONIX DPO 7104 #9069801 for sale
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TEKTRONIX DPO 7104 is a digital phosphor oscilloscope (DPO) which combines the high-bandwidth performance, accuracy, and capability of a long-established DPO with the power and convenience of a modern digital oscilloscope. TEKTRONIX 7104 has a 10-GHz, optically-isolated bandwidth and sample rate up to 5 GS/s, allowing it to capture high-speed signals with up to 8-bit depth of vertical resolution. Fast Rise Time ensures accurate viewing of waveforms quickly and accurately without sacrificing sampling rate, and UltraVision II Technology provides advanced waveform analytics features such as advanced triggering, auto voltage measurements, and serial decode. The 7104 has a bright 9-inch display with an intuitive user interface with resize, zoom, and panning, and a large 320x240 px front panel. With 32 channels of logic and 12 digital channels, the 7104 offers cost-effective and reliable measurement of digital and analog signals. Intuitive and contextual menus reduce the time and expertise required to take measurements, providing some of the most valuable core features in the market. TEKTRONIX 7104 comes with a 32 GB internal hard drive and two USB ports for data storage, or can be shared via an optional TEKTRONIX File Share option. It is also compatible with external Ethernet accessories such as thumb drives, allowing users to perform meaningful tests on complex signals quickly. DPO 7104 also comes with a 5-year warranty, ensuring long-term reliability and reduced downtime. TEKTRONIX service center and technical support are available for any repairs and services, and their extensive library of videos, user guides, and downloads can provide access to TEKTRONIX Knowledge Base. TEKTRONIX DPO 7104 is a valuable addition to any lab, providing users with a versatile and cost-effective tool for measuring, analyzing, and understanding signal integrity and analog/digital events. It can be used for the most demanding and complex application, such as debugging multi-lane interfaces, performing accurate waveform analysis, and modeling complex signal integrity challenges.
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