36V High Precision, Zero Drift , Dual OpAmp MS8188-2
Candidate for:2024 World Electronics Achievement Awards - Amplifier / Data Conversion
The MS8188-2 is a high-voltage, low-noise, high-precision, and zero-drift dual operational amplifier with a supply voltage range of 4-36V. Its primary features lie in exceptional DC accuracy and ultra-low noise levels, ensuring precise signal processing capabilities across various environments. The key specifications of this product are as follows:
1. Vos: Less than 3μV across the full temperature range, guaranteeing extremely high initial accuracy.
2. Vos Drift: Merely 0.01μV/°C over the entire temperature range, ensuring consistent performance within a wide temperature spectrum.
3. Noise: Below 9nV/√Hz, making it suitable for precision measurement scenarios sensitive to noise.
4. Low Chopper Ripple: Particularly crucial in precision measurement and signal conditioning applications, its low ripple characteristic enhances measurement accuracy and reliability. Compared to competitors, the MS8188 significantly reduces glitches on the harmonics of the chopping frequency.
5. PSRR: Exceeding 150 dB, providing outstanding power noise isolation capabilities.
This operational amplifier finds broad application areas, including but not limited to sensor signal conditioning in industrial automation, data acquisition systems in scientific research instruments, and precision testing and measurement scenarios requiring high accuracy over a wide temperature range.
Compared to competitors, the product's core advantages stem from its leading comprehensive performance indicators, particularly in ultra-high precision, low noise, low chopper ripple, and temperature stability, making it the preferred choice for designers seeking ultimate signal purity and reliability. Furthermore, its advanced manufacturing processes and design optimizations ensure low power consumption and a smaller package size while delivering high performance, further enhancing its applicability in modern electronic systems with high integration requirements.
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