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TESTEC Elektronik GmbH

TESTEC TT-SX 9001 Active Differential Probe (15601) - 30MHz Bandwidth, ±700V CAT III

TESTEC TT-SX 9001 Active Differential Probe (15601) - 30MHz Bandwidth, ±700V CAT III

High-voltage differential probe for precise floating signal measurements on grounded oscilloscopes
SKU: 15601
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260.200 Ft exc tax
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Key Features

  • 30MHz bandwidth for detailed signal analysis in high-frequency applications.
  • ±700V differential input (x100 mode) and ±70V (x10) for versatile high-voltage measurements.
  • 1000V CAT III safety certification (IEC/EN 61010-031:2015) for reliable operator protection.
  • ±2% DC accuracy ensures precision in power electronics and industrial diagnostics.
  • Dual power options: USB-C or 4x AA batteries for lab or field flexibility.
  • 5MΩ input impedance minimises circuit interference during measurements.
  • Compatible with all 1MΩ BNC oscilloscopes for seamless integration.
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Overview

The Testec TT-SX 9001 Active Differential Probe enables engineers to safely measure floating signals up to ±700V (DC + peak AC) using standard earth-grounded oscilloscopes. Part of the TT-SX 900x series, this probe features a 30MHz bandwidth and selectable attenuation ratios (x10/x100), ensuring accurate measurements across high-voltage applications such as motor drives, power converters, and EV component testing.

With ±2% DC accuracy and a 1000V CAT III safety rating (IEC/EN 61010-031:2015 certified), the TT-SX 9001 prioritises both precision and operator safety. Its robust design supports common mode voltages up to ±700V, making it ideal for isolating noise in industrial environments. For higher voltage requirements, the TT-SX 9002 variant offers x20/x200 attenuation and ±1400V measurement capability.

Powered by 4x AA batteries or USB-C, the TT-SX 9001 combines portability with versatility. Engineers benefit from its 5MΩ input impedance, minimising circuit loading, and a compact design optimised for lab or field use. This probe is indispensable for professionals demanding reliable, high-voltage diagnostics without compromising on safety or performance.

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