TLE2141 Series
Excalibur Low-Noise High-Speed Precision Operational Amplifier
Manufacturer: Texas Instruments
Link to Manufacturer Page: https://www.ti.com/
Catalog
Excalibur Low-Noise High-Speed Precision Operational Amplifier
Part | Supplier Device Package | Voltage - Input Offset | Slew Rate | Operating Temperature [Min] | Operating Temperature [Max] | Voltage - Supply Span (Min) [Min] | Mounting Type | Number of Circuits | Package / Case | Package / Case | Amplifier Type | Current - Supply | Gain Bandwidth Product | Current - Output / Channel | Current - Input Bias | Voltage - Supply Span (Max) [Max] | Package / Case | Grade | Qualification |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Texas Instruments TLE2141MDRG4 | 8-SOIC | 200 çV | 45 V/µs | -55 °C | 125 °C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141AIP | 8-PDIP | 175 çV | 45 V/µs | -40 °C | 105 ░C | 4 V | Through Hole | 1 | 0.3 in | 8-DIP | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | 7.62 mm | ||
Texas Instruments TLE2141MDG4 | 8-SOIC | 200 çV | 45 V/µs | -55 °C | 125 °C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141AID | 8-SOIC | 175 çV | 45 V/µs | -40 °C | 105 ░C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141CD | 8-SOIC | 200 çV | 45 V/µs | 0 °C | 70 ░C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141AIDG4 | 8-SOIC | 175 çV | 45 V/µs | -40 °C | 105 ░C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141CDR | 8-SOIC | 200 çV | 45 V/µs | 0 °C | 70 ░C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141IP | 8-PDIP | 200 çV | 45 V/µs | -40 °C | 105 ░C | 4 V | Through Hole | 1 | 0.3 in | 8-DIP | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | 7.62 mm | ||
Texas Instruments TLE2141IPG4 | 8-PDIP | 200 çV | 45 V/µs | -40 °C | 105 ░C | 4 V | Through Hole | 1 | 0.3 in | 8-DIP | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | 7.62 mm | ||
Texas Instruments TLE2141MDR | 8-SOIC | 200 çV | 45 V/µs | -55 °C | 125 °C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141CDRG4 | 8-SOIC | 200 çV | 45 V/µs | 0 °C | 70 ░C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141MD | 8-SOIC | 200 çV | 45 V/µs | -55 °C | 125 °C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141ACD | 8-SOIC | 175 çV | 45 V/µs | 0 °C | 70 ░C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141IDR | 8-SOIC | 200 çV | 45 V/µs | -40 °C | 105 ░C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141AIDR | 8-SOIC | 175 çV | 45 V/µs | -40 °C | 105 ░C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | |||
Texas Instruments TLE2141QDRQ1 | 8-SOIC | 200 çV | 45 V/µs | -40 °C | 125 °C | 4 V | Surface Mount | 1 | 3.9 mm | 8-SOIC | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | Automotive | AEC-Q100 | |
Texas Instruments TLE2141CP | 8-PDIP | 200 çV | 45 V/µs | 0 °C | 70 ░C | 4 V | Through Hole | 1 | 0.3 in | 8-DIP | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | 7.62 mm | ||
Texas Instruments TLE2141CPG4 | 8-PDIP | 200 çV | 45 V/µs | 0 °C | 70 ░C | 4 V | Through Hole | 1 | 0.3 in | 8-DIP | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | 7.62 mm | ||
Texas Instruments TLE2141ACP | 8-PDIP | 175 çV | 45 V/µs | 0 °C | 70 ░C | 4 V | Through Hole | 1 | 0.3 in | 8-DIP | General Purpose | 3.5 mA | 5.9 MHz | 50 mA | 700 nA | 44 V | 7.62 mm |
Key Features
• Low Noise10 Hz...15 nV/Hz\1 kHz...10.5 nV/Hz\10000-pF Load Capability20-mA Min Short-Circuit Output Current27-V/µs Min Slew RateHigh Gain-Bandwidth Product...5.9 MHzLow VIO...500 µV Max at 25°CSingle or Split Supply...4 V to 44 VFast Settling Time340 ns to 0.1%400 ns to 0.01%Saturation Recovery...150 nsLarge Output SwingVCC–+0.1 V to VCC+–1 VLow Noise10 Hz...15 nV/Hz\1 kHz...10.5 nV/Hz\10000-pF Load Capability20-mA Min Short-Circuit Output Current27-V/µs Min Slew RateHigh Gain-Bandwidth Product...5.9 MHzLow VIO...500 µV Max at 25°CSingle or Split Supply...4 V to 44 VFast Settling Time340 ns to 0.1%400 ns to 0.01%Saturation Recovery...150 nsLarge Output SwingVCC–+0.1 V to VCC+–1 V
Description
AI
The TLE214x and TLE214xA devices are high-performance, internally compensated operational amplifiers built using Texas Instruments complementary bipolar Excalibur process. The TLE214xA is a tighter offset voltage grade of the TLE214x. Both are pin-compatible upgrades to standard industry products.
The design incorporates an input stage that simultaneously achieves low audio-band noise of 10.5 nV//100-pF load is useful in fast actuator/positioning drivers. Under similar test conditions, settling time to 0.01% is 400 ns.
The devices are stable with capacitive loads up to 10 nF, although the 6-MHz bandwidth decreases to 1.8 MHz at this high loading level. As such, the TLE214x and TLE214xA are useful for low-droop sample-and-holds and direct buffering of long cables, including 4-mA to 20-mA current loops.
The special design also exhibits an improved insensitivity to inherent integrated circuit component mismatches as is evidenced by a 500-µV maximum offset voltage and 1.7-µV/°C typical drift. Minimum common-mode rejection ratio and supply-voltage rejection ratio are 85 dB and 90 dB, respectively.
Device performance is relatively independent of supply voltage over the ±2-V to ±22-V range. Inputs can operate between VCC–– 0.3 to VCC+– 1.8 V without inducing phase reversal, although excessive input current may flow out of each input exceeding the lower common-mode input range. The all-npn output stage provides a nearly rail-to-rail output swing of VCC–– 0.1 to VCC+– 1 V under light current-loading conditions. The device can sustain shorts to either supply since output current is internally limited, but care must be taken to ensure that maximum package power dissipation is not exceeded.
Both versions can also be used as comparators. Differential inputs of VCC±can be maintained without damage to the device. Open-loop propagation delay with TTL supply levels is typically 200 ns. This gives a good indication as to output stage saturation recovery when the device is driven beyond the limits of recommended output swing.
Both the TLE214x and TLE214xA are available in a wide variety of packages, including both the industry-standard 8-pin small-outline version and chip form for high-density system applications. The C-suffix devices are characterized for operation from 0°C to 70°C, I-suffix devices from –40°C to 105°C, and M-suffix devices over the full military temperature range of –55°C to 125°C.
The TLE214x and TLE214xA devices are high-performance, internally compensated operational amplifiers built using Texas Instruments complementary bipolar Excalibur process. The TLE214xA is a tighter offset voltage grade of the TLE214x. Both are pin-compatible upgrades to standard industry products.
The design incorporates an input stage that simultaneously achieves low audio-band noise of 10.5 nV//100-pF load is useful in fast actuator/positioning drivers. Under similar test conditions, settling time to 0.01% is 400 ns.
The devices are stable with capacitive loads up to 10 nF, although the 6-MHz bandwidth decreases to 1.8 MHz at this high loading level. As such, the TLE214x and TLE214xA are useful for low-droop sample-and-holds and direct buffering of long cables, including 4-mA to 20-mA current loops.
The special design also exhibits an improved insensitivity to inherent integrated circuit component mismatches as is evidenced by a 500-µV maximum offset voltage and 1.7-µV/°C typical drift. Minimum common-mode rejection ratio and supply-voltage rejection ratio are 85 dB and 90 dB, respectively.
Device performance is relatively independent of supply voltage over the ±2-V to ±22-V range. Inputs can operate between VCC–– 0.3 to VCC+– 1.8 V without inducing phase reversal, although excessive input current may flow out of each input exceeding the lower common-mode input range. The all-npn output stage provides a nearly rail-to-rail output swing of VCC–– 0.1 to VCC+– 1 V under light current-loading conditions. The device can sustain shorts to either supply since output current is internally limited, but care must be taken to ensure that maximum package power dissipation is not exceeded.
Both versions can also be used as comparators. Differential inputs of VCC±can be maintained without damage to the device. Open-loop propagation delay with TTL supply levels is typically 200 ns. This gives a good indication as to output stage saturation recovery when the device is driven beyond the limits of recommended output swing.
Both the TLE214x and TLE214xA are available in a wide variety of packages, including both the industry-standard 8-pin small-outline version and chip form for high-density system applications. The C-suffix devices are characterized for operation from 0°C to 70°C, I-suffix devices from –40°C to 105°C, and M-suffix devices over the full military temperature range of –55°C to 125°C.