Features and Benefits
- 35µV Maximum Offset Voltage (LT6013A)
- Low 1/f Noise:
- 200nVP-P (0.1Hz to 10Hz)
- 40nVRMS (0.1Hz to 10Hz)
- Low White Noise: 9.5nV/√Hz (1kHz)
- Rail-to-Rail Output Swing
- 145µA Supply Current per Amplifier
- 250pA Maximum Input Bias Current (LT6013A)
- AV ≥ 5 Stable; Up to 500pF CLOAD
- 0.2V/µs Slew Rate
- 1.4MHz Gain Bandwidth Product
- 120dB Minimum Voltage Gain, VS = ±15V
- 0.8µV/°C Maximum VOS Drift
- 2.7V to ±18V Supply Voltage Operation
- Operating Temperature Range: -40°C to 85°C
- Available in SO-8 and Space Saving 3mm × 3mm DFN Packages
The LT6013 and LT6014 op amps combine low noise and high precision input performance with low power consumption and rail-to-rail output swing. The amplifiers are stable in a gain of 5 or more and feature greatly improved CMRR and PSRR versus frequency compared to other precision op amps.
Input offset voltage is factory-trimmed to less than 35µV. The low drift and excellent long-term stability ensure a high accuracy over temperature and time. The 250pA maximum input bias current and 120dB minimum voltage gain further maintain this precision over operating conditions.
The LT6013 and LT6014 operate from any supply voltage from 2.7V to 36V and draw only 145µA of supply current per amplifier on a 5V supply. The output swings to within 40mV of either supply rail, making the amplifiers very useful for low voltage single supply operation.
The amplifiers are fully specified at 5V and ±15V supplies and from -40°C to 85°C. The single LT6013 and dual LT6014 are both available in SO-8 and space saving 3mm × 3mm DFN packages. For unity gain stable versions, refer to the LT6010 and LT6011 data sheets.
- Thermocouple Amplifiers
- Precision Photodiode Amplifiers
- Instrumentation Amplifiers
- Battery-Powered Precision Systems
- Low-Voltage Precision Systems
- Micro-Power Sensor Interface
Product Lifecycle Production
At least one model within this product family is in production and available for purchase. The product is appropriate for new designs but newer alternatives may exist.
Documentation & Resources
R423 Reliability Data3/26/201819 K
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