Atec Tektronix-TDS-5052-5054-5104 User Manual

Page 3

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Digital Phosphor Oscilloscopes

TDS5000 Series

Applications

The TDS5000 Series’ high performance fea-

tures make it ideal for a multitude of applica-

tions, such as digital design and debug, power

measurements and video design.

Digital Design and Debug

The interoperability of the TDS5000 Series

oscilloscope with the Tektronix TLA600 logic

analyzer made possible by Tektronix Integrated

View (iView) enables digital designers to solve

signal integrity challenges and effectively

debug and verify their systems more quickly

and easily. iView fully integrates the industry-

leading performance and measurement accu-

racy of a Tektronix oscilloscope with the multi-

channel and powerful triggering capabilities of

a Tektronix logic analyzer. This integration

allows designers to view time-correlated digi-

tal and analog data in the same display win-

dow and isolate the analog characteristics of

the digital signals that are causing failures in

their systems.The iView Wizard simplifies this

integration of the oscilloscope and logic

analyzer by guiding the user through set up

and connection.

No user calibration is required. And, once set

up, iView is completely automated. The

result – an integrated tool set for digital

design and troubleshooting.

Embedded Design

With its long record length, high sample rate

and intuitive zoom model, the TDS5000 Series

simplifies the characterization of today’s high-

speed digital buses, making it an ideal tool for

critical timing measurements in embedded

design applications.

Power Measurements

The TDS5000 Series’ powerful and flexible

measurements, math, and math-on-math

capabilities make it an ideal solution for mak-

ing power measurements, such as voltage,

current, instantaneous power, and energy for

power device designers.

Video Design

Tektronix exclusive DPX

acquisition technolo-

gy sets the TDS5000 Series apart from other

digital oscilloscopes, enabling the capture of

up to 100,000 waveforms per seconds for a

live, analog-like display. The TDS5000 Series

also supports a wide variety of video stan-

dards with dedicated triggers including NTSC,

PAL, SECAM and analog HDTV. In addition, IRE

and mV graticules can be selected for easier

measurements and visual inspection. All of

this together makes the TDS5000 Series an

ideal tool for video design and development.

Digital Phosphor Oscilloscopes • TDS5000 Series • www.tektronix.com/tds5000

3

Digital Design and Debug.

Tektronix

Integrated View (iView) fully integrates
the performance and measurement accuracy
of a Tektronix oscilloscope with the multi-
channel and powerful triggering capabilities
of a Tektronix logic analyzer in one display,
allowing designers to quickly verify and
debug their designs.

Embedded Design.

A source synchronous,

double-pumped bus. Channel 1 (yellow) is
the clock signal, Channel 2 (blue) is the
strobe signal and Channel 3 (pink) is a data
line. The upper half of the graticule shows a
long acquisition of a write-cycle, enabling
designers to gauge the throughput efficiency
of their systems by comparing live writing
time with dead time. The bottom half of the
graticule shows a zoomed-in view of a small
slice of time in the upper graticule, enabling
designers to make critical timing measure-
ments to ensure that the data on the bus
meets the setup-and-hold timing require-
ments of the receiver.

Power Measurements.

Channel 1 (yellow,

labeled Voltage) shows the turn-off voltage
on the FET of a switching power supply,
with current on Channel 2 (blue, labeled
Current). The Math 1 waveform, M1 (red,
labeled Power), is the instantaneous power
resulting from the multiplication of the volt-
age and current waveforms (Ch. 1 * Ch. 2).
The Math 2 waveform, M2 (red, labeled
Energy), is the result of a calculation of the
integral of M1, a math-on-math operation of
the TDS5000 Series. An energy measure-
ment, located to the right of the display,
is a gated measurement made on M1 and
includes statistics. The TDS5000 Series’
powerful and flexible measurements, math,
and math-on-math capabilities make it an
ideal solution for engineers designing today’s
high-efficiency power devices.

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