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Tektronix Manuals
Test Equipment
TriMode TDP7706
Technical reference
Tektronix TriMode TDP7706 Technical Reference
Probes
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Contents
Table of Contents
Bookmarks
Table of Contents
Table of Contents
List of Figures
List of Tables
Important Safety Information
General Safety Summary
Terms in the Manual
Terms on the Product
Symbols on the Product
Theory of Operation
Introduction
Probe Components
Figure 1: TDP7700 Series Trimode Probe Components
Probe Tips
Figure 2: Tekflex Active Probe Tips
Figure 3: P77C292MM Adapter
Probe Input Architecture
Figure 4: TDP7700 Series Trimode Probe Input Architecture
Trimode Operation
Figure 5: TDP7700 Series Trimode Probe Input Architecture with the P77C292MM SMA Adapter
Operating Voltages
Figure 6: Trimode Input Structure
Max Non-Desctruct Input Voltage
Input Signal Dynamic Range
Figure 7: Tekflex Probe Tip Inputs
Offset Voltage
Figure 8: Simplified Diagram of the Tekflex Probe Tip Input Network
Figure 9: Simplified Auto Tracking Circuitry
Operating Voltage Window
Figure 10: Operating Voltage Window (Tekflex Solder-In Tips)
Figure 11: Operating Voltage Window (Diferential Mode, Flex Tip)
Figure 12: Operating Voltage Window (Common Mode, Flex Tip)
Figure 13: Operating Voltage Window (P77C292MM SMA Adapter)
Figure 14: Operating Voltage Window (Differential Mode, P77C292MM Adapter)
Figure 15: Operating Voltage Window (Common Mode, P77C292MM Adapter)
Improving Measurement Accuracy
DSP Correction Filtering
Solder-In Tip Connection Wire Length
Figure 16: P77STFLXA Solder Tip Attached with 10 Mils (0.250 MM) Wires (Rise Time = 30.5 Ps)
Figure 17: P77STFLXA Solder Tip Attached with 75 Mils (1.90 MM) Wires (Rise Time = 27.9 Ps)
Figure 18: P77STFLXA Solder Tip Attached with 120 Mils (3.05 MM) Wires (Rise Time = 30.1 Ps)
Figure 19: P77STFLXA Solder Tip Attached with 200 Mils (5.08 MM) Wires (Rise Time = 34 Ps)
Figure 20: P77STFLXA Solder Tip Attached with 300 Mils (7.62 MM) Wires (Rise Time = 42.8 Ps)
Using Offset Voltage to Extend Tekflex® Solder-In Tip Input Voltage Range
Figure 21: Simplified Diagram of the Tekflex Probe Tip Input Network
Making Single Ended Measurements Using the P77BRWSR Differential Probe Tip
Temperature Compensation
Active Tip Measurement Configuration
Skew Measurements of Differential Signals
Figure 22: Active Tip Measurement Configuration
Figure 23: Example of LVDS Differential Signal
Reference
Differential Measurements
Common-Mode Rejection Ratio
Figure 24: Simplified Model of a Differential Amplifier
Assessing CMRR Error
Input Impedance Effects on CMRR
Differential-Mode Rejection
Channel Isolation
Figure 25: Typical CMRR
Figure 26: Typical Channel Isolation
Impedance Graphs
Figure 27: P77STCABL Differential Impedance
Figure 28: P77STCABL SE Impedance
Figure 29: P77STFLXA Differential Impedance
Figure 30: PST77FLXA SE Impedance
Nominal Characteristics
Environmental
Figure 31: P77BRWSR Differential Impedance
Performance Verification
Test Record
Check System Noise
Index
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Summarization of Contents
Contacting Tektronix
Important safety information
General safety summary
Overview of precautions for safe operation and product protection.
Terms and Symbols
Definitions of terms and identification of symbols used in the manual and on the product.
Theory of Operation: Probe Components and Input Architecture
Introduction and Probe Components
Overview of probes, their parts, and the TekFlex connector.
Probe Input Architecture
Explanation of the probe's internal signal path and design for high-frequency signals.
Theory of Operation: Measurement Modes and Voltage Characteristics
TriMode Operation
How the probe supports differential, single-ended, and common-mode measurements.
Operating Voltages and Dynamic Range
Discussion of voltage limits, dynamic range, and operating windows.
Theory of Operation: Offset Voltage and Accuracy Improvement
Offset Voltage Control
How to adjust DC offset for signal centering and measurement accuracy.
Measurement Accuracy Techniques
Methods like DSP filtering, wire length, and temperature compensation for better accuracy.
Reference: Signal Measurement Concepts
Differential Measurements
Explanation of measuring differential signals and their characteristics.
Signal Integrity Metrics
Metrics like CMRR, DMRR, and Channel Isolation for signal quality.
Specifications: Electrical and Performance Data
Key Electrical Parameters
Output zero, linearity, termination voltage, and overload indicators.
Performance Metrics
CMMR/DMRR, isolation, time delay, rise time, and frequency response.
Electrical Characteristics
System noise, input resistance, capacitance, voltage ranges.
Nominal Characteristics and Environmental Conditions
Physical and Interface Details
Probe weight, cable length, and interface connectors.
Environmental Operating Limits
Specifies temperature, altitude, and humidity limits for operation.
Performance Verification Procedures
Test Record and System Noise Check
Procedures for recording test results and checking system noise levels.
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