Basic Information
1. Product model and positioning
The TDS3000 series is a mid to high end digital fluorescence oscilloscope (DPO) launched by Tektronix, featuring high sampling rate and flexible analysis functions, covering multi scene signal debugging. The core models and parameters are shown in the table below:
Model Channel Number Bandwidth Maximum Sampling Rate Maximum Record Length Typical Application Scenarios
TDS3012B 2 100MHz 1GS/s 10k point basic analog signal debugging (such as audio)
TDS3014B 4 100MHz 1GS/s 10k point multi-channel low-speed signal (such as sensor)
TDS3032B 2 300MHz 2.5GS/s 100k point medium speed signal (such as 100Mbps communication)
TDS3034B 4 300MHz 2.5GS/s 100k point multi-channel medium speed signal (such as CAN bus)
TDS305232 500MHz 5GS/s 1M high-speed signal (such as 500MHz clock)
TDS3054B 4 500MHz 5GS/s 1M point multi-channel high-speed signal (such as PCIe)
2. Document and Service Support
Document scope: The manual covers device operation, functional applications, troubleshooting, and is applicable to firmware versions V4.XX and above;
Technical support: Call 1-800-833-9200 in North America, and visit the Tektronix official website for local hotlines in other regions; Support online download of drivers, application notes, and firmware updates;
Warranty Policy: The oscilloscope host comes with a 2-year warranty, and the probe (such as P6139A) comes with a 1-year warranty, excluding malfunctions caused by human damage or unauthorized repairs.
Basic Operation Guide
1. Device initialization and probe settings
(1) Power on and self-test
After turning on, the oscilloscope automatically performs a self-test. If it displays "PASS", it is normal; If "FAIL", check the power connection or contact for repair;
Press the Default Setup button to quickly reset to factory settings (vertical coupling DC, trigger edge rise, time base 200ns/grid).
(2) Probe connection and compensation
Probe selection: It is recommended to use Tektronix specialized probes, such as P6139A (100MHz/10X) and P6249 (500MHz/10X);
Connection steps: ① Connect the BNC end of the probe to the oscilloscope channel, ② Connect the probe tip to the measured signal point, ③ Connect the reference wire to the circuit ground;
Manual compensation: ① Connect the probe to the "probe compensation" terminal (output 5V/1kHz square wave), ② Display the waveform according to AutoSet, ③ Rotate the probe compensation screw until the waveform is free of overshoot/undershoot (standard square wave);
Attenuation setting: Channel menu ->"Probe Attenuation" Set to 1X/10X, which should match the actual attenuation ratio of the probe (default 10X).
2. Core control system operation
(1) Vertical system
Coupling mode:
DC: AC/DC signal, suitable for DC bias signals (such as power supply voltage);
AC: Block DC components (attenuation<10Hz signal), suitable for AC signals (such as audio);
Grounding: Disconnect the input to determine the zero level position;
Vertical Scale: Range 2mV-10V/grid (1-2-5 sequence), adjustable through the "Vertical Scale" knob; Support "fine adjustment" mode (switch by knob), achieve non-standard stepping (such as 2.5mV/grid);
Channel control: Press the channel button (CH1/CH2, etc.) to turn on/off the channel, move the "vertical position" knob up and down to display the waveform, and support channel overlay display (press Display → "Overlay").
(2) Horizontal system
Time base range: 5ns-50s/grid (1-2-5 sequence), corresponding to the following sampling rate relationship (taking TDS3052B as an example):
Time base setting sampling rate maximum measurable frequency (Nyquist frequency)
5ns-200ns 5GS/s 2.5GHz
400ns-1μs 2.5GS/s 1.25GHz
2μs-50s 1GS/s 500MHz
Sampling mode:
Real time sampling: suitable for high-frequency signals (≤ bandwidth), directly capturing signals;
Equivalent sampling: suitable for ultra-high frequency signals (>bandwidth), reconstructing waveforms through multiple samplings;
Window function: Press Horiz Menu → "Window" to open, define waveform segments and zoom in to view, support switching between main timing and window view.
(3) Trigger system
Trigger type:
Edge trigger: Based on the rising/falling edge of the signal, the source can be selected as CH1-CH4/Ext/Ext 5x/mains power; Coupling supports DC/AC/noise suppression (reducing false triggering of high-frequency noise);
Video trigger: Supports NTSC/PAL/SECAM standards, with synchronization methods including all fields/odd fields/even fields/specified number of lines (1-525 NTSC, 1-625 PAL);
Pulse triggering: triggered by pulse width (20ns-10s), with conditions of>,<,=, ≠, suitable for abnormal pulse detection (such as burrs);
Code triggering: triggered based on logical combinations of 2-4 channels (such as CH1=high, CH2=low), supporting TTL/CMOS levels;
Key operation: Press Set to 50% to automatically set the trigger level to the midpoint of the signal peak to peak; Press Force Trigger to ignore triggering conditions and force collection.

Advanced functional applications
Email:wang@kongjiangauto.com