Detalles del producto

Package name DFN3030 Peak pulse power (8/20 μs) (max) (W) 950 IEC 61000-4-5 (A) 27 Vrwm (V) 27 Breakdown voltage (min) (V) 29.6 Bi-/uni-directional Bi-directional Number of channels 1 IO capacitance (typ) (pF) 40 Clamping voltage (V) 34
Package name DFN3030 Peak pulse power (8/20 μs) (max) (W) 950 IEC 61000-4-5 (A) 27 Vrwm (V) 27 Breakdown voltage (min) (V) 29.6 Bi-/uni-directional Bi-directional Number of channels 1 IO capacitance (typ) (pF) 40 Clamping voltage (V) 34
VSON (DRB) 8 9 mm² 3 x 3
  • Protection Against 1-kV, 42-Ω IEC 61000-4-5 Surge Test for Industrial Signal Lines
  • Bidirectional Polarity Enables Protection Against Bipolar Signaling or Miswiring Conditions
  • Clamping Voltage of 34 V at 27-A, 8/20-µs Surge Current
  • Standoff Voltage: ±27 V
  • Small 3 mm × 3 mm2 SON Footprint
  • Survives Over 5,000 Repetitive Strikes of 27-A 8/20-µs Surge Current at 125°C
  • Robust Surge Protection
    • IEC61000-4-5 (8/20 µs): 27 A
    • IEC61643-321 (10/1000 µs): 3.5 A
  • Low Leakage Current
    • 0.8-nA Typical at 27°C
    • 400-nA Maximum at 85°C
  • Low Capacitance: 57 pF
  • Integrated Level 4 IEC 61000-4-2 ESD Protection
  • Protection Against 1-kV, 42-Ω IEC 61000-4-5 Surge Test for Industrial Signal Lines
  • Bidirectional Polarity Enables Protection Against Bipolar Signaling or Miswiring Conditions
  • Clamping Voltage of 34 V at 27-A, 8/20-µs Surge Current
  • Standoff Voltage: ±27 V
  • Small 3 mm × 3 mm2 SON Footprint
  • Survives Over 5,000 Repetitive Strikes of 27-A 8/20-µs Surge Current at 125°C
  • Robust Surge Protection
    • IEC61000-4-5 (8/20 µs): 27 A
    • IEC61643-321 (10/1000 µs): 3.5 A
  • Low Leakage Current
    • 0.8-nA Typical at 27°C
    • 400-nA Maximum at 85°C
  • Low Capacitance: 57 pF
  • Integrated Level 4 IEC 61000-4-2 ESD Protection

The TVS2701 device shunts up to 27 A of IEC 61000-4-5 fault current to protect systems from high-power transients or lightning strikes. The device survives the common industrial signal line EMC requirement of 1-kV IEC 61000-4-5 open circuit voltage coupled through a 42-Ω impedance. The TVS2701 uses a feedback mechanism to ensure precise flat clamping during a fault, keeping system exposure lower than traditional TVS diodes. The tight voltage regulation allows designers to confidently select system components with a lower voltage tolerance, lowering system costs and complexity without sacrificing robustness. The TVS2701 has a ±27-V operating range to enable operation in systems that require protection against reverse wiring conditions.

In addition, the TVS2701 is available in a small SON footprint designed for space constrained applications, offering a significant size reduction compared to standard SMA and SMB packages. Low device leakage and capacitance ensure a minimal effect on the protected line. To ensure robust protection over the lifetime of the product, TI tests the TVS2701 against 5000 repetitive surge strikes at 125°C with no shift in device performance.

The TVS2701 is part of TI’s Flat-Clamp family of surge devices. For a deeper look at the Flat-Clamp family, refer to the Flat-Clamp Surge Protection Technology for Efficient System Protection white paper.

The TVS2701 device shunts up to 27 A of IEC 61000-4-5 fault current to protect systems from high-power transients or lightning strikes. The device survives the common industrial signal line EMC requirement of 1-kV IEC 61000-4-5 open circuit voltage coupled through a 42-Ω impedance. The TVS2701 uses a feedback mechanism to ensure precise flat clamping during a fault, keeping system exposure lower than traditional TVS diodes. The tight voltage regulation allows designers to confidently select system components with a lower voltage tolerance, lowering system costs and complexity without sacrificing robustness. The TVS2701 has a ±27-V operating range to enable operation in systems that require protection against reverse wiring conditions.

In addition, the TVS2701 is available in a small SON footprint designed for space constrained applications, offering a significant size reduction compared to standard SMA and SMB packages. Low device leakage and capacitance ensure a minimal effect on the protected line. To ensure robust protection over the lifetime of the product, TI tests the TVS2701 against 5000 repetitive surge strikes at 125°C with no shift in device performance.

The TVS2701 is part of TI’s Flat-Clamp family of surge devices. For a deeper look at the Flat-Clamp family, refer to the Flat-Clamp Surge Protection Technology for Efficient System Protection white paper.

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Documentación técnica

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Tipo Título Fecha
* Data sheet TVS2701 27-V Bidirectional Flat-Clamp Surge Protection Device datasheet (Rev. A) PDF | HTML 04 dic 2018
Application note ESD Packaging and Layout Guide (Rev. B) PDF | HTML 18 ago 2022
Application brief Protecting I/O modules from surge events 04 feb 2019
Application brief TVS Surge Rating: Power vs. Current 12 nov 2018
White paper Demystifying surge protection 06 nov 2018
User guide Flat Clamp TVS Evaluation Module—Adaptor Boards 10 sep 2018
Application note How to select a Surge Diode 29 ago 2018

Diseño y desarrollo

Para conocer los términos adicionales o los recursos necesarios, haga clic en cualquier título de abajo para ver la página de detalles cuando esté disponible.

Placa de evaluación

FLAT-CLAMP-TVS-EVM — Módulo de evaluación TVSxx0x de diodos de protección contra sobretensiones de precisión

The FLAT-CLAMP-TVS-EVM (Precision Surge Protection Diode Adaptor Board Evaluation Module) demonstrates the characteristics, operation, and use of the TVSxx0x family of devices. The TVSxx0x family of devices are precision clamps that keep ultra-low and flat clamping voltages during transient (...)
Guía del usuario: PDF
Modelo de simulación

TVS2701 PSpice Transient Model

SLVMCT2.ZIP (52 KB) - PSpice Model
Diseños de referencia

TIDA-010008 — Diseño de referencia basado en TVS de abrazadera plana para protección contra transitorios para apli

This reference design features multiple approaches for  protecting AC or DC analog input, DC analog output, AC or DC binary input, digital output with a high side or low side driver, LCD bias supply, USB interfaces (power and data) and onboard power supplies with 24, 12 or 5V input used in (...)
Design guide: PDF
Esquema: PDF
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