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Technical content
TPR1000 • TPR4000 Datasheet The TPR1000 and TPR4000 probes provide a low noise, large offset range solution for measurement of ripple on DC power rails ranging from –60 to +60 VDC. Tektronix’s power rail probes offer industry leading low noise and high offset range required to measure AC ripple between 200 μVp-p and 800 mVp-p at up to 4 GHz. Key performance specifications Compatible with the 6 series MSO, 5 series MSO, 4 Series MSO,
3 Series MDO, MDO3000 1, MDO4000C 1, MSO/DPO5000B,
DPO7000C, and DPO70000C/DX/SX 2 oscilloscopes Bandwidth: 3 4 DC coupling mode: TPR1000: DC to 1 GHz TPR4000: DC to 4 GHz DC reject mode: TPR1000: 10 kHz to 1 GHz TPR4000: 10 kHz to 4 GHz Linear dynamic range: Up to 60 V DC, 1Vp-p to bandwidth 5 Attenuation: 1.25x 3 Measurement accuracy: DC linearity: <0.1% Step response long-term aberrations: ±1% Noise: <300 μVp-p noise on 6 Series MSO (20 MHz BW Limit) <1 mVp-p noise on 6 Series MSO (Full Bandwidth) Input impedance: 50 kΩ DC to 10 kHz 50 Ω AC > 100 kHz Temperature range at tip: 6 –40 to +85 °C (standard accessories) –40 to +155 °C (high temperature cable option) Offset: ±60 V offset range Offset setting error: ±2 mV max, ±0.4 μV typical
Applications
Probing chipsets for power rail voltage supply and control in automotive, industrial and consumer markets Probing digital power management, memory and Ethernet connectivity Probing noise sources on high-frequency power rails 1 Due to software incompatibilities between the TPR1000 and TPR4000 probes and the MDO3000 and MDO4000C oscilloscopes, the accuracy of probe measurements is reduced when these oscilloscopes are used in vertical scale settings less than 2 mV/division. For all other vertical scale settings, the specified accuracy of the probe is maintained. 2 DPO70000 oscilloscopes require the optional TCA-VPI50 adapter. 3 Frequency response optimized for <1 Ω source impedance. 4 Through SMA-to-SMA cable or Solder Micro-Coax tip. 5 Max AC RMS of 1 V. 6 Comp box and oscilloscope temperature range limited to 0 to +55 °C. www.tek.com 1
Why use a power-rail probe? The added functionality, higher density, and faster switching speeds of modern electronic products drive the need for lower supply voltages. Designers need to zoom-in on power rails to look for high-frequency intruder signals, measure ripple and analyze coupling effects with tighter tolerances. Oscilloscopes often don't have enough offset to shift the noise and ripple on DC rails to the center of the screen to make the needed measurements. The TPR1000 and TPR4000 probes provide a low-noise measurement solution (oscilloscope and probe), which is critical to not confuse the noise of the oscilloscope and probe with the noise and ripple of the DC supply being measured. The higher input impedance in the probes minimize the oscilloscope loading effect on DC rails (50 kΩ at DC). The probes provide higher bandwidth to see more signal content (harmonics, faster ripples, etc.) on DC rails that could affect data signals, clocks, etc. The TPR1000 and TPR4000 provide a best-in-class integrity solution for power integrity and validation engineers in the high speed (μP), low power (mobile) and switched-mode power supply markets. The probes are designed to offer the lowest noise with high bandwidth at 60 V offset, flexible connectivity options to cover customers challenges, and software packages to cover the digital power management market. Connectivity using probe accessories The available probe accessories provide solutions for reliable and repeatable power rail measurements. Probe accessories to enable connectivity TPR1000 and TPR4000 Datasheet 2 www.tek.com
All specifications are guaranteed unless noted otherwise. All specifications apply to all models unless noted otherwise. Bandwidth TPR1000: 1 GHz TPR4000: 4 GHz Offset voltage range ±60 V Dynamic range ±1 V Input resistance 50 kΩ DC 50 Ω AC Input coupling DC, LF reject Accuracy 1 mV System noise <300 μVP-P (with 20 MHz bandwidth limit) 7 <1.3 mVP-P (at full bandwidth of oscilloscope) 7 Attenuation 1.25x 8 Connectivity and accessories New browser, solder-in and snap-on 7 Using 6 Series MSO oscilloscopes. With grounded input and maximum sensitivity set to 1.3 mV/Div. 8 Frequency response optimized for <1 Ω source impedance. TPR1000 and TPR4000 Datasheet www.tek.com 3
Ordering information
TPR1000 1 GHz, Single-Ended TekVPI® Power-Rail Probe; includes one TPR4KIT accessory kit TPR4000 4 GHz, Single-Ended TekVPI® Power-Rail Probe; includes one TPR4KIT accessory kit Accessory kits Accessory kits provide flexible and modular connectivity options. Each of the kits are orderable separately. Description TPR4KIT (std. accessory) TPR4KITHT (high temp.) TPRBRWSR1G (1 GHz browser) TPR4SIAFLEX (flex tips) TPR4SIACOAX (micro-coax tips) 1.3 m cable, SMA male-to-MMCX male, 50 Ω 1.3 m cable, SMA male-to-SMA male, 50 Ω Y-lead adapter, MMCX female- to-0.8 mm sockets Adapter cable, MMCX female-to-U.FL female, 50 Ω Adapter, MMCX female-to-square pin (0.062 centers) DUT interface solder pins, set of 20 Soldering aide tool, 0.062 solder pins over SMT TPR1000 and TPR4000 Datasheet 4 www.tek.com
(std. accessory) TPR4KITHT (high temp.) TPRBRWSR1G (1 GHz browser) TPR4SIAFLEX (flex tips) TPR4SIACOAX (micro-coax tips) Probe tip tripod support (with living hinge) Marker bands, set of 5 (for probe identification) Wire card, solderable enameled self- fluxing copper wire (for use with the solder-in tips) Solder-in cable adapter, MMCX female- to-solder micro-coax tip, 50 Ω, set of 3 ✓ ✓ ✓ Solder-in cable adapter, MMCX female- to-solder flex-paddle tip, 50 Ω, set of 3 ✓ ✓ ✓ 2 m high-temperature cable, SMA male- to-MMCX male, 50 Ω
1 GHz browser
Ground leads (blade, 0.5 mm spring, 15 cm alligator) Y-lead adapter, browser tip-to-0.8 mm sockets TPR1000 and TPR4000 Datasheet www.tek.com 5
(std. accessory) TPR4KITHT (high temp.) TPRBRWSR1G (1 GHz browser) TPR4SIAFLEX (flex tips) TPR4SIACOAX (micro-coax tips) Micro-SMD clip Replacement 0.5 mm browser tips (2 solid tips, 2 spring tips) Tektronix is registered to ISO 9001 and ISO 14001 by SRI Quality System Registrar. Product(s) complies with IEEE Standard 488.1-1987, RS-232-C, and with Tektronix Standard Codes and Formats. TPR1000 and TPR4000 Datasheet ASEAN / Australasia (65) 6356 3900 Austria 00800 2255 4835* Balkans, Israel, South Africa and other ISE Countries +41 52 675 3777 Belgium 00800 2255 4835* Brazil +55 (11) 3759 7627 Canada 1 800 833 9200 Central East Europe and the Baltics +41 52 675 3777 Central Europe & Greece +41 52 675 3777 Denmark +45 80 88 1401 Finland +41 52 675 3777 France 00800 2255 4835* Germany 00800 2255 4835* Hong Kong 400 820 5835 India 000 800 650 1835 Italy 00800 2255 4835* Japan 81 (3) 6714 3086 Luxembourg +41 52 675 3777 Mexico, Central/South America & Caribbean 52 (55) 56 04 50 90 Middle East, Asia, and North Africa +41 52 675 3777 The Netherlands 00800 2255 4835* Norway 800 16098 People's Republic of China 400 820 5835 Poland +41 52 675 3777 Portugal 80 08 12370 Republic of Korea +822 6917 5084, 822 6917 5080 Russia & CIS +7 (495) 6647564 South Africa +41 52 675 3777 Spain 00800 2255 4835* Sweden 00800 2255 4835* Switzerland 00800 2255 4835* Taiwan 886 (2) 2656 6688 United Kingdom & Ireland 00800 2255 4835* USA 1 800 833 9200 * European toll-free number. If not accessible, call: +41 52 675 3777 price change privileges reserved. TEKTRONIX and TEK are registered trademarks of Tektronix, Inc. All other trade names referenced are the service marks, trademarks, or registered trademarks of their respective companies.
22 Aug 2019 51W-61491-3
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