THS3095

AKTIV

Einzelner, verzerrungsarmer Hochspannungs-Operationsverstärker mit Stromrückkopplung und Abschaltung

Produktdetails

Architecture Current FB Number of channels 1 Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V) 10 Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V) 32 GBW (typ) (MHz) 305 BW at Acl (MHz) 715 Acl, min spec gain (V/V) 1 Slew rate (typ) (V/µs) 6000 Vn at flatband (typ) (nV√Hz) 1.1 Vn at 1 kHz (typ) (nV√Hz) 1.1 Iq per channel (typ) (mA) 9.5 Vos (offset voltage at 25°C) (max) (mV) 2 Rail-to-rail No Features Shutdown Rating Catalog Operating temperature range (°C) -40 to 85 CMRR (typ) (dB) 78 Input bias current (max) (pA) 15000000 Offset drift (typ) (µV/°C) 10 Iout (typ) (mA) 310 2nd harmonic (dBc) 84 3rd harmonic (dBc) 99 Frequency of harmonic distortion measurement (MHz) 10
Architecture Current FB Number of channels 1 Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V) 10 Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V) 32 GBW (typ) (MHz) 305 BW at Acl (MHz) 715 Acl, min spec gain (V/V) 1 Slew rate (typ) (V/µs) 6000 Vn at flatband (typ) (nV√Hz) 1.1 Vn at 1 kHz (typ) (nV√Hz) 1.1 Iq per channel (typ) (mA) 9.5 Vos (offset voltage at 25°C) (max) (mV) 2 Rail-to-rail No Features Shutdown Rating Catalog Operating temperature range (°C) -40 to 85 CMRR (typ) (dB) 78 Input bias current (max) (pA) 15000000 Offset drift (typ) (µV/°C) 10 Iout (typ) (mA) 310 2nd harmonic (dBc) 84 3rd harmonic (dBc) 99 Frequency of harmonic distortion measurement (MHz) 10
HSOIC (DDA) 8 29.4 mm² 4.9 x 6 SOIC (D) 8 29.4 mm² 4.9 x 6
  • Low distortion:
    • 84-dBc HD2 at 10 MHz, R L = 1 kΩ
    • 99-dBc HD3 at 10 MHz, R L = 1 kΩ
  • Low noise:
    • 15-pA/√ Hz noninverting current noise
    • 14-pA/√ Hz inverting current noise
    • 1.1-nV/√ Hz voltage noise
  • High slew rate: 6000 V/µs (G = 5, V O = 20 V PP)
  • Wide bandwidth: 305 MHz (G = 2, R L = 100 Ω)
  • High output current drive: ±310 mA
  • Wide supply range: ±5 V to ±16 V
  • Power-down feature: THS3095 only
  • Low distortion:
    • 84-dBc HD2 at 10 MHz, R L = 1 kΩ
    • 99-dBc HD3 at 10 MHz, R L = 1 kΩ
  • Low noise:
    • 15-pA/√ Hz noninverting current noise
    • 14-pA/√ Hz inverting current noise
    • 1.1-nV/√ Hz voltage noise
  • High slew rate: 6000 V/µs (G = 5, V O = 20 V PP)
  • Wide bandwidth: 305 MHz (G = 2, R L = 100 Ω)
  • High output current drive: ±310 mA
  • Wide supply range: ±5 V to ±16 V
  • Power-down feature: THS3095 only

The THS3091 and THS3095 (THS309x) are high-voltage, low-distortion, high-speed, current-feedback amplifiers that operate over a wide supply range of ±5 V to ±16 V. These devices are an excellent choice for applications that require large, linear output signals, such as pin drivers, power-FET drivers, and arbitrary waveform generators.

The THS3095 features a power-down pin ( PD) that puts the amplifier into a low-power standby mode, and lowers the quiescent current from 9.5 mA to 500 µA.

The wide, 32‑V supply range, 6000‑V/µs slew-rate, and 310‑mA output current drive make the THS309x an excellent choice for high-voltage arbitrary-waveform-driver applications. Moreover, with the ability to handle large voltage swings driving into low-resistance and high-capacitance loads while maintaining good settling time performance, these devices are an excellent choice for pin-driver and power-FET driver applications.

The THS309x are offered in an 8‑pin SOIC (DDA) PowerPAD™ integrated circuit package. The THS3091 is also offered in an 8‑pin HVSSOP (DGN) package.

The THS3091 and THS3095 (THS309x) are high-voltage, low-distortion, high-speed, current-feedback amplifiers that operate over a wide supply range of ±5 V to ±16 V. These devices are an excellent choice for applications that require large, linear output signals, such as pin drivers, power-FET drivers, and arbitrary waveform generators.

The THS3095 features a power-down pin ( PD) that puts the amplifier into a low-power standby mode, and lowers the quiescent current from 9.5 mA to 500 µA.

The wide, 32‑V supply range, 6000‑V/µs slew-rate, and 310‑mA output current drive make the THS309x an excellent choice for high-voltage arbitrary-waveform-driver applications. Moreover, with the ability to handle large voltage swings driving into low-resistance and high-capacitance loads while maintaining good settling time performance, these devices are an excellent choice for pin-driver and power-FET driver applications.

The THS309x are offered in an 8‑pin SOIC (DDA) PowerPAD™ integrated circuit package. The THS3091 is also offered in an 8‑pin HVSSOP (DGN) package.

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Technische Dokumentation

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Typ Titel Datum
* Data sheet THS309x High-Voltage, Low-Distortion, Current-Feedback Operational Amplifiers datasheet (Rev. K) PDF | HTML 17 Apr 2023
Technical article 3 common questions when designing with high-speed amplifiers PDF | HTML 17 Jul 2020
Analog Design Journal Q3 2009 Issue Analog Applications Journal 24 Sep 2018
Analog Design Journal Q4 2009 Issue Analog Applications Journal 24 Sep 2018
E-book The Signal e-book: A compendium of blog posts on op amp design topics 28 Mär 2017
Application note Design for a Wideband Differential Transimpedance DAC Output (Rev. A) 17 Okt 2016
EVM User's guide TSW3070EVM: Amplifier Interface to Current Sink DAC - (Rev. A) 23 Mai 2016
Design guide Wide-Bandwidth and High-Voltage Arbitrary Waveform Generator Front End 03 Sep 2013
More literature 600-mA Fully Integrated Step-Down Solution: Compact Power - TPS82671 (Rev. A) 20 Jan 2011
Application note Design of Differential Filters for High-Speed Signal Chains (Rev. B) 30 Apr 2010
Analog Design Journal Interfacing op amps to high-speed DACs, Part 2: Current-sourcing DACs 04 Okt 2009
Analog Design Journal Interfacing op amps to high-speed DACs, Part 1: Current-sinking DACs 14 Jul 2009
Application note Design for a Wideband Differential Transimpedance DAC Output 18 Apr 2008
Analog Design Journal Designing for low distortion with high-speed op amps 02 Mär 2005
Application note Noise Analysis for High Speed Op Amps (Rev. A) 17 Jan 2005
Application note Stabilizing Current-Feedback Op Amps While Optimizing Circuit Performance 28 Apr 2004
Application note Voltage Feedback vs. Current Feedback Op Amps 30 Nov 1998

Design und Entwicklung

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