TLE2425 Series
Precision Virtual Ground
Manufacturer: Texas Instruments
Link to Manufacturer Page: https://www.ti.com/
Catalog
Precision Virtual Ground
Part | Operating Temperature [Max] | Operating Temperature [Min] | Output Type | Voltage - Input [Min] | Voltage - Input [Max] | Package / Case | Package / Case | Voltage - Output (Min/Fixed) | Supplier Device Package | Tolerance [Max] | Tolerance [Min] | Mounting Type | Temperature Coefficient | Reference Type | Noise - 10Hz to 10kHz | Current - Output | Package / Case | Package / Case [custom] |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Texas Instruments TLE2425IDRG4 | 85 °C | -40 °C | 27.03 °C/W | 4 V | 40 V | 3.9 mm | 8-SOIC | 2.5 V | 8-SOIC | 1 % | -1 % | Surface Mount | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | ||
Texas Instruments TLE2425CDR | 70 °C | 0 °C | 27.03 °C/W | 4 V | 40 V | 3.9 mm | 8-SOIC | 2.5 V | 8-SOIC | 1 % | -1 % | Surface Mount | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | ||
Texas Instruments TLE2425ILP | 85 °C | -40 °C | 27.03 °C/W | 4 V | 40 V | TO-92-3 | 2.5 V | TO-92-3 | 1 % | -1 % | Through Hole | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | TO-226-3, TO-226AA | ||
Texas Instruments TLE2425CLP | 70 °C | 0 °C | 27.03 °C/W | 4 V | 40 V | TO-92-3 | 2.5 V | TO-92-3 | 1 % | -1 % | Through Hole | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | TO-226-3, TO-226AA | ||
Texas Instruments TLE2425IDG4 | 85 °C | -40 °C | 27.03 °C/W | 4 V | 40 V | 3.9 mm | 8-SOIC | 2.5 V | 8-SOIC | 1 % | -1 % | Surface Mount | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | ||
Texas Instruments TLE2425CD | 70 °C | 0 °C | 27.03 °C/W | 4 V | 40 V | 3.9 mm | 8-SOIC | 2.5 V | 8-SOIC | 1 % | -1 % | Surface Mount | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | ||
Texas Instruments TLE2425MDR | 125 °C | -55 C | 27.03 °C/W | 4 V | 40 V | 3.9 mm | 8-SOIC | 2.5 V | 8-SOIC | 1 % | -1 % | Surface Mount | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | ||
Texas Instruments TLE2425MDRG4 | 125 °C | -55 C | 27.03 °C/W | 4 V | 40 V | 3.9 mm | 8-SOIC | 2.5 V | 8-SOIC | 1 % | -1 % | Surface Mount | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | ||
Texas Instruments TLE2425MD | 125 °C | -55 C | 27.03 °C/W | 4 V | 40 V | 3.9 mm | 8-SOIC | 2.5 V | 8-SOIC | 1 % | -1 % | Surface Mount | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | ||
Texas Instruments TLE2425IDR | 85 °C | -40 °C | 27.03 °C/W | 4 V | 40 V | 3.9 mm | 8-SOIC | 2.5 V | 8-SOIC | 1 % | -1 % | Surface Mount | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | ||
Texas Instruments TLE2425ID | 85 °C | -40 °C | 27.03 °C/W | 4 V | 40 V | 3.9 mm | 8-SOIC | 2.5 V | 8-SOIC | 1 % | -1 % | Surface Mount | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | ||
Texas Instruments TLE2425CPS | 70 °C | 0 °C | 27.03 °C/W | 4 V | 40 V | 0.209 in | 8-SOIC | 2.5 V | 8-SO | 1 % | -1 % | Surface Mount | 20 ppm/°C | Ground Reference (Virtual) | 100 µVrms | 20 mA | 5.3 mm |
Key Features
• 2.5-V Virtual Ground for 5-V/GND Analog SystemsHigh Output-Current Capability Sink or Source . . . 20 mA TypMicropower Operation . . . 170 uA TypExcellent Regulation CharacteristicsOutput Regulation–45 uV Typ at IO= 0 to –10 mA+15 uV Typ at IO= 0 to +10 mAInput Regulation = 1.5 uV/V TypLow-Impedance Output . . . 0.0075TypMacromodel Included2.5-V Virtual Ground for 5-V/GND Analog SystemsHigh Output-Current Capability Sink or Source . . . 20 mA TypMicropower Operation . . . 170 uA TypExcellent Regulation CharacteristicsOutput Regulation–45 uV Typ at IO= 0 to –10 mA+15 uV Typ at IO= 0 to +10 mAInput Regulation = 1.5 uV/V TypLow-Impedance Output . . . 0.0075TypMacromodel Included
Description
AI
In signal-conditioning applications using a single power source, a reference voltage is required for termination of all signal grounds. To accomplish this, engineers have typically used solutions consisting of resistors, capacitors, operational amplifiers, and voltage references. Texas Instruments has eliminated all of those components with one easy-to-use 3-terminal device. That device is the TLE2425 precision virtual ground.
Use of the TLE2425 over other typical circuit solutions gives the designer increased dynamic signal range, improved signal-to-noise ratio, lower distortion, improved signal accuracy, and easier interfacing to ADCs and DACs. These benefits are the result of combining a precision micropower voltage reference and a high-performance precision operational amplifier in a single silicon chip. It is the precision and performance of these two circuit functions together that yield such dramatic system-level performance.
The TLE2425 improves input regulation as well as output regulation and, in addition, reduces output impedance and power dissipation in a majority of virtual-ground-generation circuits. Both input regulation and load regulation exceed 12 bits of accuracy on a single 5-V system. Signal-conditioning front ends of data acquisition systems that push 12 bits and beyond can use the TLE2425 to eliminate a major source of system error.
In signal-conditioning applications using a single power source, a reference voltage is required for termination of all signal grounds. To accomplish this, engineers have typically used solutions consisting of resistors, capacitors, operational amplifiers, and voltage references. Texas Instruments has eliminated all of those components with one easy-to-use 3-terminal device. That device is the TLE2425 precision virtual ground.
Use of the TLE2425 over other typical circuit solutions gives the designer increased dynamic signal range, improved signal-to-noise ratio, lower distortion, improved signal accuracy, and easier interfacing to ADCs and DACs. These benefits are the result of combining a precision micropower voltage reference and a high-performance precision operational amplifier in a single silicon chip. It is the precision and performance of these two circuit functions together that yield such dramatic system-level performance.
The TLE2425 improves input regulation as well as output regulation and, in addition, reduces output impedance and power dissipation in a majority of virtual-ground-generation circuits. Both input regulation and load regulation exceed 12 bits of accuracy on a single 5-V system. Signal-conditioning front ends of data acquisition systems that push 12 bits and beyond can use the TLE2425 to eliminate a major source of system error.