Features: 14 Levels of Programmable Gain125dB CMRR Independent of GainGain Accuracy 0.1% (Typ)Maximum Offset Voltage of 10mVMaximum Offset Voltage Drift: 50nV/°CRail-to-Rail Input and OutputParallel or Serial (SPI) Interface for Gain SettingSupply Operation: 2.7V to ±5.5VTypical Noise: 2.5VP-P (0....
LTC6915: Features: 14 Levels of Programmable Gain125dB CMRR Independent of GainGain Accuracy 0.1% (Typ)Maximum Offset Voltage of 10mVMaximum Offset Voltage Drift: 50nV/°CRail-to-Rail Input and OutputParallel...
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The LTC®6915 is a precision programmable gain instrumentation amplifier. The gain can be programmed to 0, 1, 2, 4, 8, 16, 32, 64, 128, 256, 512, 1024, 2048, or 4096 through a parallel or serial interface. The CMRR is typically 125dB with a dual 5V supply with any programmed gain. The offset is below 10mV with a temperature drift of less than 50nV/°C.
The LTC6915 uses charge balanced sampled data techniques to convert a differential input voltage into a single ended signal that is in turn amplified by a zero-drift operational amplifier.
The differential inputs operate from rail-to-rail and the single-ended output swings from rail-to-rail. The LTC6915 can be used in single power supply applications as low as 2.7V, or with dual ±5V supplies. The LTC6915 is available in a 16-lead SSOP package and a 12-lead DFN surface mount package.