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  • Datasheet Literature Number: ReleaseDate
    500 MHz Passive Probes
    500 MHz Passive Probes Datasheet
    51W-26150-6
    THP0301 Series Passive 10x Voltage Probe
    The THP0301 datasheet provides an overview of the product's features, important specifications, and ordering information.
    3GW-27122-4
    Passive 10X Voltage Probe
    The TPP0200 and TPP0201 datasheet provides an overview of the product's features, important specifications, and ordering information.
    51W-25681-4
    Passive 10X Voltage Probe
    The TPP0100 and TPP0101 probes are 100 MHz, 10X passive voltage probes with 10 MΩ input resistance.
    51W-25690-4
    Passive 10X Voltage Probe
    51W-30155-2
    Passive Voltage Probes
    The P3010 and P6101B probes are designed to complement the Tektronix family of portable DSO and ART instruments.
    51W-26153-6
    Passive 1x/10x Voltage Probe
    Tektronix passive probe solutions provide high reliability and testing accuracy for basic oscilloscope measurements. The P2220 and P2221 are compact passive probes with selectable 1X/10X attenuation are compact passive probes with selectable 1X/10X …
    51W-17984-4
    Passive Voltage Probes
    The passive voltage probes datasheet provides an overview of the product features, important specifications, and ordering information.
    51W-26151-10
  • Technical Documents Document Type ReleaseDate
    ABCs of Probes Primer
    Precision Measurements Start at the Probe Tip Probes are vital to oscilloscope measurements. To understand how vital, disconnect the probes from an oscilloscope and try to make a measurement. It can’t be done. There has to be some kind of …
    Whitepaper
    Tektronix Probe Selection Guide
    Oscilloscope Probes Compatibility *1 Some probes require an external power supply (1103) when used with the TDS3000 series. *2 When using with MSO / DPO2000 series, a dedicated AC adapter (119-8726-00) and a power cable (161-0342-00) are …
    Product Selector Guide
    How to Minimize Probe Loading with Low Capacitance Probes
    Probing a circuit always has some impact on signals. Probe loading changes the signal being probed and can cause measurement problems or can even cause a circuit to perform differently. Reducing capacitive loading can help minimize these effects. In …
    Application Note
    How Oscilloscope Probes Affect Your Measurement
    Introduction This application note describes how an oscilloscope probe changes the signal you’re measuring at the test point and what probing specifications to look for to minimize probing effects. One measurement trap users often …
    Application Note
  • Motor designers typically measure direct-quadrature-zero (dq0) using custom built embedded control software together with hardware having an FPGA for Field Oriented Control (FOC). This session …
    Duration: 20:42
    Watch as panelists discuss emerging technologies and the feedback loop between signal integrity and power integrity. See how to combine jitter and power integrity analysis into a formidable tool …
    Duration: 35:32
    Explore a collection of test and measurement tools chosen by Tektronix experts perfect for engineers working on power integrity. From measuring ripple on DC power rails to seeing noise on your …
    Duration: 1m 26s
    As designs for mobile devices and computers use lower power circuits in their design, validation testing and debug become more challenging. Board and component density increase leaving little …
    Duration: 17m 6s
    An oscilloscope probe’s ground connection to a Device Under Test (DUT) is often a significant contributor to measurement error.  Here we look at a classic 10x passive probe, its various ground …
    Duration: 37:38