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TLE2072-Q1 Datasheet

Part Number TLE2072-Q1
Manufacturers Texas Instruments
Logo Texas Instruments
Description EXCALIBUR LOW-NOISE HIGH-SPEED JFET-INPUT OPERATIONAL AMPLIFIER
Datasheet TLE2072-Q1 DatasheetTLE2072-Q1 Datasheet (PDF)

D Qualified for Automotive Applications D Direct Upgrades to TL05x, TL07x, and TL08x BiFET Operational Amplifiers D Greater Than 2× Bandwidth (10 MHz) and 3× Slew Rate (45 V/µs) Than TL07x TLE207x-Q1, TLE207xA-Q1 EXCALIBUR LOW-NOISE HIGH-SPEED JFET-INPUT OPERATIONAL AMPLIFIERS SGLS226B − DECEMBER 2003 − REVISED MAY 2008 D Ensured Maximum Noise Floor 17 nV/√Hz D On-Chip Offset Voltage Trimming for Improved DC Performance D Wider Supply Rails Increase Dynamic Signal Range to ±19 V description/or.

  TLE2072-Q1   TLE2072-Q1






EXCALIBUR LOW-NOISE HIGH-SPEED JFET-INPUT OPERATIONAL AMPLIFIER

D Qualified for Automotive Applications D Direct Upgrades to TL05x, TL07x, and TL08x BiFET Operational Amplifiers D Greater Than 2× Bandwidth (10 MHz) and 3× Slew Rate (45 V/µs) Than TL07x TLE207x-Q1, TLE207xA-Q1 EXCALIBUR LOW-NOISE HIGH-SPEED JFET-INPUT OPERATIONAL AMPLIFIERS SGLS226B − DECEMBER 2003 − REVISED MAY 2008 D Ensured Maximum Noise Floor 17 nV/√Hz D On-Chip Offset Voltage Trimming for Improved DC Performance D Wider Supply Rails Increase Dynamic Signal Range to ±19 V description/ordering information The TLE207x series of JFET-input operational amplifiers more than double the bandwidth and triple the slew rate of the TL07x and TL08x families of BiFET operational amplifiers. Texas Instruments Excalibur process yields a typical noise floor of 11.6 nV/√Hz, 17-nV/√Hz ensured maximum, offering immediate improvement in noise-sensitive circuits designed using the TL07x. The TLE207x also has wider supply voltage rails, increasing the dynamic signal range for BiFET circuits to ±19 V. On-chip zener trimming of offset voltage yields precision grades for greater accuracy in dc-coupled applications. The TLE207x are pin-compatible with lower performance BiFET operational amplifiers for ease in improving performance in existing designs. BiFET operational amplifiers offer the inherently higher input impedance of the JFET-input transistors, without sacrificing the output drive associated with bipolar amplifiers. This makes them better suited for interfacing with high-impedance se.


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