The LT1013M is a dual precision operational amplifier designed for high-performance applications. It operates over a wide temperature range of -55¬8C to 125¬8C, making it suitable for military and industrial environments. The amplifier features a low input offset voltage of 150 ¬µV maximum at 25¬8C and a low offset voltage temperature coefficient of 2 ¬µV/¬8C. It has a high gain of 1.5 V/¬µV minimum with a load of 2 kOc and a low supply current of 0.5 mA maximum at 25¬8C. The device supports single-supply operation down to 5 V and can swing its output to ground while sinking current. Additionally, it includes phase reversal protection and is characterized by low noise levels, with a typical peak-to-peak noise voltage of 0.55 ¬µV. Applications include thermocouple amplifiers, low-side current measurement, and instrumentation amplifiers. The LT1013M is available in an 8-pin CDIP package.
Dual Precision Operational Amplifier 8-CDIP -55 to 125
IC OPAMP GP 2 CIRCUIT 8CDIP
DUAL PRECISION OPERATIONAL AMPLI
General Purpose Amplifier 2 Circuit No 8-CDIP
General Purpose Amplifier 2 Circuit 8-CDIP
| Texas Instruments | ODG (Origin Data Global) | Shenzhen Shengyu Electronics Technology Limited | Quarktwin Technology Ltd. | Quarktwin Technology Ltd. | |
|---|---|---|---|---|---|
| Product Category | Operational Amplifiers | Operational Amplifiers | Operational Amplifiers | Operational Amplifiers | Operational Amplifiers |
| Product Number | LT1013MJGB | LT1013MJGB | LT1013MJGB | LT1013MJGB | LT1013MJGB |
| Product Name | LT1013M Dual Precision Operational Amplifier | Instrumentation, OP Amps, Buffer Amps | Integrated Circuits (ICs) - Linear - Amplifiers | Instrumentation, OP Amps, Buffer Amps | Instrumentation, OP Amps, Buffer Amps |
| Supply Voltage (VS) | 4 to 44 volts | 5 volts | 30 volts | ||
| VOS | 0.3000 millivolts | 0.0600 millivolts | 0.0600 millivolts | 0.0600 millivolts | |
| Quiescent Current (IQ) | 550 microamps | ||||
| CMRR | 97 dB | ||||
| Slew Rate | 0.4000 V/µs | 0.4000 V/µs | 4.00E-7 V/µs | 0.4000 V/µs | 0.4000 V/µs |