TLA7AC3 Opt 4S - Tektronix Logic Analyzers





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Technical Specifications

Max. Channels Number
102

Max. State Speed
450.0MHz

Max. Timing Speed
8GHz

Extra Specifications
TLA7ACx Logic Analyzer Modules


Product Description

Hardware developers, hardware/software integrators, and embedded software developers will appreciate the range of capabilities of the TLA7ACx Series logic analyzer modules. Its broad feature set includes capturing and correlating elusive hardware and software faults; providing simultaneous state, high-speed timing, and analog analysis through the same probe; using deep state acquisition to find the cause of complex problems; real-time, nonintrusive software execution tracing that correlates to source code and to hardware events; and nonintrusive connectorless probing.

The TLA7ACx Series logic analyzer modules offer the Tektronix breakthrough MagniVu technology for providing high-speed sampling (up to 8 GHz) that dramatically changes the way logic analyzers work and enables them to provide startling new measurement capabilities.

The TLA7ACx modules offer high-speed state synchronous capture, high-speed timing capture and analog capture through the same set of probes. They capitalize on MagniVu technology to offer up to 125 ps timing on all channels, glitch and setup/hold triggering and display and timestamp that is always on at 125 ps resolution.

  • 68/102/136 Channel Logic Analyzers with up to 512 Mb Depth
  • 500 ps (2 GHz)/128 Mb Deep Memory Timing Analysis
  • MagniVu"" Acquisition Technology Provides up to 125 ps (8 GHz) Timing Resolution to Find Difficult Problems Quickly
  • Up to 800 MHz State Acquisition Analysis of Synchronous Digital Circuits
  • Glitch and Setup/Hold Triggering and Display Finds and Displays Elusive Hardware Problems
  • Transitional Storage Extends the Signal Analysis Capture Time
  • Simultaneous Analog and Digital Measurements Through the Same Probe
  • Compression Probing System With 0.5 pF Capacitive Loading Eliminates Need For On-board Connectors, Minimizes Intrusion on Circuits, and is Ideal for Differential Signal Applications
  • Broad Processor and Bus Support
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