
TS27L4IDT
ActiveOPERATIONAL AMPLIFIER, QUAD, 100 KHZ, 4, 0.04 V/ S, 3V TO 16V, SOIC, 14 ROHS COMPLIANT: YES
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TS27L4IDT
ActiveOPERATIONAL AMPLIFIER, QUAD, 100 KHZ, 4, 0.04 V/ S, 3V TO 16V, SOIC, 14 ROHS COMPLIANT: YES
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Technical Specifications
Parameters and characteristics for this part
| Specification | TS27L4IDT |
|---|---|
| Amplifier Type | CMOS |
| Current - Input Bias | 1 pA |
| Current - Output / Channel | 45 mA |
| Current - Supply | 10 µA |
| Gain Bandwidth Product | 100 kHz |
| Mounting Type | Surface Mount |
| Number of Circuits | 4 |
| Operating Temperature [Max] | 125 °C |
| Operating Temperature [Min] | -40 C |
| Package / Case | 3.9 mm, 0.154 in |
| Package / Case | 14-SOIC |
| Slew Rate | 0.04 V/µs |
| Supplier Device Package | 14-SO |
| Voltage - Input Offset | 1.1 mV |
| Voltage - Supply Span (Max) [Max] | 16 V |
| Voltage - Supply Span (Min) [Min] | 3 V |
TS27L4 Series
Micropower, high voltage CMOS op-amp
| Part | Mounting Type | Amplifier Type | Voltage - Input Offset | Supplier Device Package | Voltage - Supply Span (Min) [Min] | Current - Output / Channel | Number of Circuits | Package / Case | Package / Case | Operating Temperature [Max] | Operating Temperature [Min] | Slew Rate | Voltage - Supply Span (Max) [Max] | Current - Input Bias | Current - Supply | Gain Bandwidth Product | Package / Case | Package / Case | Package / Case [x] |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
STMicroelectronics | Surface Mount | CMOS | 900 µV | 14-SO | 3 V | 45 mA | 4 | 0.154 in 3.9 mm | 14-SOIC | 70 °C | 0 °C | 0.04 V/µs | 16 V | 1 pA | 10 µA | 100 kHz | |||
STMicroelectronics | Surface Mount | CMOS | 900 µV | 14-SO | 3 V | 45 mA | 4 | 0.154 in 3.9 mm | 14-SOIC | 125 °C | -40 C | 0.04 V/µs | 16 V | 1 pA | 10 µA | 100 kHz | |||
STMicroelectronics | Through Hole | CMOS | 900 µV | 14-DIP | 3 V | 45 mA | 4 | 14-DIP | 70 °C | 0 °C | 0.04 V/µs | 16 V | 1 pA | 10 µA | 100 kHz | 0.3 in | 7.62 mm | ||
STMicroelectronics | Surface Mount | CMOS | 1.1 mV | 14-TSSOP | 3 V | 45 mA | 4 | 14-TSSOP | 125 °C | -40 C | 0.04 V/µs | 16 V | 1 pA | 10 µA | 100 kHz | 0.173 " 4.4 mm | |||
STMicroelectronics | Surface Mount | CMOS | 1.1 mV | 14-SO | 3 V | 45 mA | 4 | 0.154 in 3.9 mm | 14-SOIC | 125 °C | -40 C | 0.04 V/µs | 16 V | 1 pA | 10 µA | 100 kHz | |||
STMicroelectronics | Surface Mount | CMOS | 900 µV | 14-SO | 3 V | 45 mA | 4 | 0.154 in 3.9 mm | 14-SOIC | 70 °C | 0 °C | 0.04 V/µs | 16 V | 1 pA | 10 µA | 100 kHz | |||
STMicroelectronics | Surface Mount | CMOS | 1.1 mV | 14-TSSOP | 3 V | 45 mA | 4 | 14-TSSOP | 70 °C | 0 °C | 0.04 V/µs | 16 V | 1 pA | 10 µA | 100 kHz | 0.173 " 4.4 mm |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
| Distributor | Package | Quantity | $ | |
|---|---|---|---|---|
| Digikey | Cut Tape (CT) | 1 | $ 1.35 | |
| 10 | $ 1.21 | |||
| 25 | $ 1.14 | |||
| 100 | $ 0.94 | |||
| 250 | $ 0.88 | |||
| 500 | $ 0.78 | |||
| 1000 | $ 0.61 | |||
| Digi-Reel® | 1 | $ 1.35 | ||
| 10 | $ 1.21 | |||
| 25 | $ 1.14 | |||
| 100 | $ 0.94 | |||
| 250 | $ 0.88 | |||
| 500 | $ 0.78 | |||
| 1000 | $ 0.61 | |||
| Tape & Reel (TR) | 2500 | $ 0.57 | ||
| 5000 | $ 0.54 | |||
| 12500 | $ 0.52 | |||
| Newark | Each (Supplied on Cut Tape) | 1 | $ 1.03 | |
| 10 | $ 0.67 | |||
| 25 | $ 0.63 | |||
| 50 | $ 0.59 | |||
| 100 | $ 0.55 | |||
| 250 | $ 0.54 | |||
| 500 | $ 0.51 | |||
| 1000 | $ 0.47 | |||
Description
General part information
TS27L4 Series
These devices are low cost, low power quad operational amplifiers designed to operate with single or dual supplies. These operational amplifiers use the ST silicon gate CMOS process allowing an excellent consumption-speed ratio. These series are ideally suited for low consumption applications.
Three power consumptions are available allowing to have always the best consumption-speed ratio:ICC= 10µA/amp.: TS27L4 (very low power)ICC= 150µA/amp.: TS27M4 (low power)ICC= 1mA/amp.: TS274 (standard)
These CMOS amplifiers offer very high input impedance and extremely low input currents. The major advantage versus JFET devices is the very low input currents drift with temperature (see figure 2).
Documents
Technical documentation and resources