6 Series
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Catalog excerpts

6 Series - 1

Highest Performance. Unmatched Density. Oscilloscope Class Control.

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6 Series - 2

6 Series Low Profile Digitizer Datasheet Input channels • Each SMA input supports Analog, Spectral (using DDC), or both simultaneously Performance for every channel • Record Length: 125 Mpts (std), 250 Mpts, 500 Mpts or 1 Gpts (optional) • Lowest-in-class Noise • Highest-in-class ENOB • Best-in-class channel-to-channel isolation Real-Time Digital Down Converter (DDC) • Patented individual time domain and frequency domain controls • Up to 2 GHz capture bandwidth (optional) • IQ data transfers to PC for analysis (optional) • Frequency vs time, Phase vs time and Magnitude vs time plotting...

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6 Series - 3

6 Series Low Profile Digitizer Datasheet Table continued... Physics is constantly leading the world to exciting new scientific discoveries in both matter and energy. These experiments require digitizers and oscilloscopes with improvements in precision, accuracy, performance and density when monitoring target test points. The 6 Series Low Profile Digitizer meets these requirements by bringing an industry leading performance, small form factor, Tektronix’s class of reliability, easy remote accessibility, and award-winning user interface. Common physics fields • High Energy (Particle) Physics...

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6 Series - 4

6 Series Low Profile Digitizer Datasheet Profile Digitizer has industry leading performance on EVERY channel, always. No compromises! Key performance features: • • • 25 GS/s on ALL channels DC to 8 GHz on ALL channels Up to 1 Billion samples on ALL channels Up to 2 GHz RF DDC capture bandwidth on ALL channels 12-bit analog-to-digital converters Best-in-class low noise Best-in-class Effective Number Of Bits Best-in-class channel isolation (crosstalk) High Sample rate on each input enables a new class of density performance. In this example, 4 channels at 25 GS/s are measuring rising edges...

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6 Series - 5

6 Series Low Profile Digitizer Datasheet Spectrum View Intuitive spectrum analyzer controls like center frequency, span and resolution bandwidth (RBW), independent from time domain controls, provide easy setup for frequency domain analysis. A spectrum view is available for each analog input, enabling multichannel mixed domain analysis. It is often easier to debug an issue by viewing one or more signals in the frequency domain. Oscilloscopes and digitizers have included mathbased FFTs for decades in an attempt to address this need. However, FFTs are notoriously difficult to use as they are...

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6 Series - 6

6 Series Low Profile Digitizer Datasheet Lowest in class noise enabled by new front-end amplifier A key attribute to being able to view fine signal details on small, highspeed signals is noise. The higher a measurement systems' intrinsic noise, the less actual signal detail will be visible. This becomes more critical on a digitizer when the vertical settings are set to high sensitivity (like ≤ 10 mV/div) to view small signals that are prevalent in high-speed bus topologies. The 6 Series Low Profile has a new front-end ASIC, the TEK061, that enables breakthrough noise performance at the...

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6 Series - 7

6 Series Low Profile Digitizer Datasheet smooth interactive waveform viewers. TekDrive is purpose-built for integration, automation, and security. www.tekcloud.com/tekdrive Two LPD64 instruments being analyzed on PC running TekScope’s ‘Multi-Scope’ Programming with a Low Profile in a test rack has never been easier E*Scope is an easy method of viewing and controlling a 6 Series Low Profile instrument over a network connection in the same way that you do in-person with a monitor or keyboard. Simply type the instrument’s IP address into a browser to display the LXI landing page, then select...

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6 Series - 8

6 Series Low Profile Digitizer Datasheet To clear user data, run TekSecure from the menu. Sanitize the oscilloscope by removing the SSD from the bottom of the instrument. Tile multiple e*Scope browser tabs on a monitor for viewing live data Synchronize multiple instrument channels within 200 ps using manual deskew and the Aux Trigger input When synchronizing multiple instruments its important to have the smallest amount of skew between instrument channels to allow for data timing accuracy. Generally speaking this can be broken down into two types of skew; the part that comes from...

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6 Series - 9

6 Series Low Profile Digitizer Datasheet The instrument contains an integrated 4-digit digital voltmeter (DVM) and 8-digit trigger frequency counter. Any of the analog inputs can be a source for the voltmeter, using the same probes that are already attached for general oscilloscope usage. The trigger frequency counter provides a very precise readout of the frequency of the trigger event on which you're triggering. Both the DVM and trigger frequency counter are available for free and are activated when you register your product. In the broad sense, any system that processes a signal can be...

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6 Series - 10

6 Series Low Profile Digitizer Datasheet Filter creation dialog showing selection for Filter Type, Filter Response, Cutoff Frequency, Filter Order, and a graphical representation of Magnitude/Phase, Impulse Response, and Step Response Filter designs can be saved, recalled, and applied once any editing has been completed.

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6 Series - 11

6 Series Low Profile Digitizer Datasheet All specifications are guaranteed and apply to all models unless noted otherwise. Input impedance 50 Q, DC 50 Q ±3% coupled Input sensitivity range 50 Q 1 mV/div to 1 V/div in a 1-2-5 sequence Note: 1 mV/div is a 2X digital zoom of 2 mV/div. 1 Warranted specification, immediately after SPC, add 2% for every 5 °C change in ambient temperature. 2 Warranted specification, immediately after SPC, add 1% for every 5 °C change in ambient temperature. At full scale is sometimes used to compare to other manufactures.

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6 Series - 12

6 Series Low Profile Digitizer Datasheet Maximum input voltage 2.3VRMS, at < 100 mV/div, with peaks <±20 V (Pulse Width < 1 us). 5.5Vrms, at > 100 mV/div, with peaks <±20 V (Pulse Width < 200 us) Effective bits (ENOB), typical 2 mV/div, High Res mode, 50 Q, 10 MHz input with 90% full screen Table continued...

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