IsoVu Isolated Probes
IsoVu® probes are the right tool for today’s demanding power measurement challenges given their industry leading 1 GHz bandwidth, 160 dB or 100 Million to 1 common mode rejection, 60 kV common mode voltage, large ± 2500 V differential range and superior probe loading.Learn how you can use IsoVu technology to make impossible measurements such as high side Vgs.
Model | Bandwidth | Differential Voltage | Common Mode Voltage | Common Mode Rejection Ratio | Fiber Cable Length | |
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TIVH02 | 200 MHz |
± 2500 V |
≤ 60 kV |
DC: > 160 dB 100 MHz: 100 dB 200 MHz: 100 dB |
3 meters |
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TIVH02L | 200 MHz |
± 2500 V |
≤ 60 kV |
DC: > 160 dB 100 MHz: 100 dB 200 MHz: 100 dB |
10 meters |
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TIVH05 | 500 MHz | ± 2500 V | ≤ 60 kV |
DC: > 160 dB 100 MHz: 100 dB 500 MHz: 80 dB |
3 meters |
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TIVH05L | 500 MHz | ± 2500 V | ≤ 60 kV |
DC: > 160 dB 100 MHz: 100 dB 500 MHz: 80 dB |
10 meters |
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TIVM1 | 1 GHz | ± 50 V |
≤ 60 kV |
DC: > 160 dB 100 MHz: 120 dB 1 GHz: 80 dB |
3 meters |
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TIVH08 | 800 MHz | ± 2500 V | ≤ 60 kV |
DC: > 160 dB 100 MHz: 100 dB 800 MHz: 75 dB |
3 meters |
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TIVM1L | 1 GHz | ± 50 V |
≤ 60 kV |
DC: > 160 dB 100 MHz: 120 dB 1 GHz: 80 dB |
10 meters |
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TIVH08L | 800 MHz | ± 2500 V | ≤ 60 kV |
DC: > 160 dB 100 MHz: 100 dB 800 MHz: 75 dB |
10 meters |
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High Bandwidth Optical Probes
The DPO7OE series optical probes with a DPO70000 real-time scope deliver the performance and advanced debug capabilities designers need to fully troubleshoot 400G PAM4 signals, up to 56 GBaud, and reduce time to market.
These probes can also be used as a conventional O/E with flat response filter for general laser signal acquisition up to their respective bandwidth of 33 GHz or 59 GHz.
Model | Wavelength Response | High-bandwidth DC | Optical Noise | NRZ / PAM2 and PAM4 | |
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DPO7OE1 |
750nm - 1650nm |
up to 33 GHz |
6.6 uW rms (TekConnect / ATI) |
up to 28 Gbaud |
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DPO7OE2 |
1200m - 1650nm |
up to 59 GHz |
10 uW rms (ATI) |
up to 56 Gbaud |
Power Rail Probes
Optimized for power integrity measurements, these probes combine low noise contribution, DC offset up to 60 V, high bandwidth, low loading, and a wide range of connectivity alternatives.
Model | Attenuation | Bandwidth | Dynamic Range | DC Offset | |
---|---|---|---|---|---|
TPR1000 |
1.25x |
1 GHz |
±1 V |
±60 V |
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TPR4000 |
1.25x |
4 GHz |
±1 V |
±60 V |
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Current Probe
Tektronix current probe solutions offer:
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Model Maximum Current Minimum Current Bandwidth Rise Time
TRCP0300 300A 250 mA 30 kHz- TCP305A DC: 50 A Max RMS: 35.4 APeak Current: 50 A 5 mA 50 kHz- < 7 ns
TRCP3000 3000 A 500 mA 16 MHz TRCP0600 600 A 500 mA 30 MHz
TCPA400 (Probe Dependent) 100 MHz |
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TCP2020 20 A RMS, 100 A Peak Pulse 10 mA 50 MHz ≤ 7ns | |||||||||||||||||||||||||||||||||||||||||||||||||||||
TCPA300 DC - 100 MHz | |||||||||||||||||||||||||||||||||||||||||||||||||||||
TCP0020 DC: 20 A Max RMS: 20 A Peak Current: 100 A 10 mA 50 MHz < 7 ns
TCP0030A DC: 30 A Max RMS: 30 A Peak Current: 50 A 1 mA 120 MHz < 2.92 ns
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MODEL Attenuation Bandwidth Input Impedance Maximum Voltage | |||||||||||||||||||||||||||||||||||||||||||||||||||||
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High Voltage Probe - Single Ended
A high voltage single-ended probe is typically used for measuring ground referenced signals up to 40 kV. However, some single-ended probes are designed for instruments with isolated or floating inputs for measurements that are not ground referenced. Users should select probes with a low input capacitance specification (< 4 pF) to minimize the probe’s loading effect on the circuit because a probe with lower input capacitance will offer higher input impedance at higher frequencies.Tektronix High Voltage Probe solutions offer:Best-in-class bandwidth up to 800 MHzBest-in-class probe loading with input capacitance as low as 1.8 pFThe only products with 3rd Party Safety Certification (UL, CSA, ETL)Most extensive set of probe accessories MODEL Bandwidth Input Impedance Maximum Voltage |
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P5122 200 MHz 100 MΩ || 4 pF RMS: 1000 V CAT II P5100A 500 MHz 40 MΩ || 2.5 p Peak: 2.5 kV RMS: 1000 V CAT II
TPP0850 800 MHz 40 MΩ || 1.8 pF Peak: 2.5 kV RMS: 1000 V CAT II
Low Voltage Probe - Single Ended
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TAP2500 10X 2.5 GHz 40 kΩ || ≤ 0.8 pF ± 4 V TAP3500 10X 3.5 GHz 40 kΩ || ≤ 0.8 pF ± 4 V TAP4000 10X 4 GHz 40 kΩ || ≤ 0.8 pF ± 4 V |
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P7240 5X 4 GHz 20 kΩ || ≤ 0.8 pF ± 2 V
Logic Analyzer Probe
Verification and debug of today's high speed, low voltage digital signals requires probing solutions that can accurately acquire from a wide variety of electronic designs and protect signal fidelity. Tektronix logic analyzer probes contain a variety of connectivity options that are engineered to ensure that signal acquisition is a true reflection of your design's performance. Compare and learn more about Tektronix logic analyzer probe solutions.
Model | Connectivity | Instrument Series | |
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P5910 | Fits both 0.100 in. and 2 mm square pin configurations | TLA6400 |
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TLP058 | FlexChannel (TM) input | 5 Series MSO |
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P5934 | Amp Mictor 34-channel connector | TLA6400 |
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P5960 | D-Max® probing technology compression cLGA | TLA6400 |
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Low Bandwidth Optical Probes
Depend on Tektronix to provide you with performance you can count on, and industry-leading service and support.Broad Wavelength Response 500 to 950 nm or 1100 to 1700 nmHigh-bandwidth DC up to 1.2 GHzHigh Gain 1 V/mWLow Noise <11 pW/√HzProbe Connects to DPO7000*1 and DPO/DSA/MSO70000*2SeriesSONET/SDH and Fibre Channel Reference Receiver Performance
Model | Bandwidth | |
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P6703B | ≥1.2 GHz |
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P6701B | ≥1.0 GHz |
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Advantages︰ HIGH QUALITY
Export Markets︰ WORLDWIDE
Payment method︰ T/T
Min Order︰ 10
Standard Met︰ CE/UL