2-GHz-Verstärker mit Stromrückkopplung

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Ähnliche Funktionalität wie verglichener Baustein
THS3491 AKTIV 900-MHz-Verstärker mit hoher Leistung und Stromrückkopplung This current feedback amplifier (CFA) provides a new level of performance for applications requiring the lowest distortion at high output power levels from DC through values greater than 100 MHz at 100-Ω loads

Produktdetails

Architecture Current FB Number of channels 2 Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V) 6.6 Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V) 15 GBW (typ) (MHz) 2000 BW at Acl (MHz) 2000 Acl, min spec gain (V/V) 1 Slew rate (typ) (V/µs) 9000 Vn at flatband (typ) (nV√Hz) 1.65 Vn at 1 kHz (typ) (nV√Hz) 1.65 Iq per channel (typ) (mA) 15 Vos (offset voltage at 25°C) (max) (mV) 4 Rating Catalog Operating temperature range (°C) -40 to 85 CMRR (typ) (dB) 69 Input bias current (max) (pA) 35000000 Offset drift (typ) (µV/°C) 10 Iout (typ) (mA) 115 2nd harmonic (dBc) 70 3rd harmonic (dBc) 72 Frequency of harmonic distortion measurement (MHz) 10
Architecture Current FB Number of channels 2 Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V) 6.6 Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V) 15 GBW (typ) (MHz) 2000 BW at Acl (MHz) 2000 Acl, min spec gain (V/V) 1 Slew rate (typ) (V/µs) 9000 Vn at flatband (typ) (nV√Hz) 1.65 Vn at 1 kHz (typ) (nV√Hz) 1.65 Iq per channel (typ) (mA) 15 Vos (offset voltage at 25°C) (max) (mV) 4 Rating Catalog Operating temperature range (°C) -40 to 85 CMRR (typ) (dB) 69 Input bias current (max) (pA) 35000000 Offset drift (typ) (µV/°C) 10 Iout (typ) (mA) 115 2nd harmonic (dBc) 70 3rd harmonic (dBc) 72 Frequency of harmonic distortion measurement (MHz) 10
HVSSOP (DGN) 8 14.7 mm² 3 x 4.9 SOIC (D) 8 29.4 mm² 4.9 x 6 VSSOP (DGK) 8 14.7 mm² 3 x 4.9
  • Unity-Gain Bandwidth: 2 GHz
  • High Slew Rate: 9000 V/µs
  • High Output Current: ±115 mA into 20 RL
  • Power-Supply Voltage Range: 6.6 V to 15 V
  • APPLICATIONS
    • High-Speed Signal Processing
    • Test and Measurement Systems
    • High-Voltage ADC Preamplifier
    • RF and IF Amplifier Stages
    • Professional Video
  • Unity-Gain Bandwidth: 2 GHz
  • High Slew Rate: 9000 V/µs
  • High Output Current: ±115 mA into 20 RL
  • Power-Supply Voltage Range: 6.6 V to 15 V
  • APPLICATIONS
    • High-Speed Signal Processing
    • Test and Measurement Systems
    • High-Voltage ADC Preamplifier
    • RF and IF Amplifier Stages
    • Professional Video

The THS3202 is a dual current-feedback amplifier developed with BiCOM-II technology. Designed for low distortion with a high slew rate of 9000 V/µs, the THS320x family is ideally suited for applications driving loads sensitive to distortion at high frequencies.

The THS3202 provides well-regulated ac performance characteristics with power supplies ranging from single-supply 6.6-V operation up to a 15-V supply. The high unity-gain bandwidth of up to
2 GHz is a major contributor to the excellent distortion performance. The THS3202 offers an output current drive of ±115 mA and a low differential gain and phase error that make it suitable for applications such as video line drivers.

The THS3202 is available in an SOIC-8, an MSOP-8, and an MSOP-8 with PowerPAD packages.

The THS3202 is a dual current-feedback amplifier developed with BiCOM-II technology. Designed for low distortion with a high slew rate of 9000 V/µs, the THS320x family is ideally suited for applications driving loads sensitive to distortion at high frequencies.

The THS3202 provides well-regulated ac performance characteristics with power supplies ranging from single-supply 6.6-V operation up to a 15-V supply. The high unity-gain bandwidth of up to
2 GHz is a major contributor to the excellent distortion performance. The THS3202 offers an output current drive of ±115 mA and a low differential gain and phase error that make it suitable for applications such as video line drivers.

The THS3202 is available in an SOIC-8, an MSOP-8, and an MSOP-8 with PowerPAD packages.

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* Data sheet 2-GHz Low Distortion, Dual Current-Feedback Amplifiers datasheet (Rev. F) 14 Jan 2010

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