The LM7372 is a high speed dual voltage feedback amplifier with the slewing
characteristic of current feedback amplifiers. However, it can be used in all traditional voltage
feedback amplifier configurations.
The LM7372 is stable for gains as low as +2 or −1. It provides a very high slew rate at
3000 V/µs and a wide gain bandwidth product of 120 MHz, while consuming only 6.5 mA/per amplifier
of supply current. It is ideal for video and high speed signal processing applications such as xDSL
and pulse amplifiers. With 150 mA output current, the LM7372 can be used for video distribution, as
a transformer driver or as a laser diode driver.
Operation on ±15 V power supplies allows for large signal swings and provides greater
dynamic range and signal-to-noise ratio. The LM7372 offers high SFDR and low THD, ideal for ADC/DAC
systems. In addition, the LM7372 is specified for ±5 V operation for portable applications.
The LM7372 is built on TI's Advance VIP
III (Vertically integrated PNP) complementary bipolar process.
The LM7372 is a high speed dual voltage feedback amplifier with the slewing
characteristic of current feedback amplifiers. However, it can be used in all traditional voltage
feedback amplifier configurations.
The LM7372 is stable for gains as low as +2 or −1. It provides a very high slew rate at
3000 V/µs and a wide gain bandwidth product of 120 MHz, while consuming only 6.5 mA/per amplifier
of supply current. It is ideal for video and high speed signal processing applications such as xDSL
and pulse amplifiers. With 150 mA output current, the LM7372 can be used for video distribution, as
a transformer driver or as a laser diode driver.
Operation on ±15 V power supplies allows for large signal swings and provides greater
dynamic range and signal-to-noise ratio. The LM7372 offers high SFDR and low THD, ideal for ADC/DAC
systems. In addition, the LM7372 is specified for ±5 V operation for portable applications.
The LM7372 is built on TI's Advance VIP
III (Vertically integrated PNP) complementary bipolar process.