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Si8920BC-IP Silicon Labs, Current Shunt Monitor Single Differential 8-Pin DIP
Description:
- Silicon Labs' Si8920BC-IP precision current shunt monitor is designed for accurate differential measurement and high-voltage isolation in a variety of demanding applications.
- Input Voltage Range:
- Designed to measure modest voltage differentials across a current shunt resistor.
- Supports a differential input range of approximately ±200 mV.
- Output characteristics:
- The setup determines whether the differential analogue output is amplified by 8.1x or 16.2x.
- The low signal latency (about 0.75 μs) ensures rapid response.
- Low output noise (0.10 mVrms over a 100 kHz bandwidth) ensures flawless signal integrity.
- High precision and stability.
- The input offset is incredibly low, at only 0.2 mV.
- Gain Error: Less than 0.5%, indicating high accuracy.
- Low offset drift of 1 μV/°C ensures reliable performance despite temperature changes.
- Gain Drift: 10 ppm/°C, ensuring accuracy throughout a broad temperature range.
- Nonlinearity: Excellent linearity at 0.025% Full Scale.
- Operational features:
- High Common Mode. Transient immunity is 75 kV/μs, making it resistant to high power switching conditions.
- Wide operating temperature range of -40°C to +125°C.
- Package:
- Available in an 8-Pin Dual In-line Package (DIP) for easy integration into a variety of designs.
Electrical Characteristics:
- Input Voltage Range:
- Low Voltage Differential Input.
- ±200 mV Differential Input Range.
- Output:
- Differential Analog Output amplified by 8.1x or 16.2x.
- Signal Delay: Approximately 0.75 µs.
- Output Noise: 0.10 mVrms over 100 kHz bandwidth.
- Precision and Stability:
- Input Offset: 0.2 mV.
- Gain Error: <0.5%.
- Offset Drift: 1 µV/°C.
- Gain Drift: 10 ppm/°C.
- Nonlinearity: 0.025% Full-Scale.
- Operational Conditions:
- Operating Temperature Range: -40°C to +125°C.
- Common Mode Transient Immunity: 75 kV/µs.
- Package:
- Type: 8-Pin DIP (Dual In-line Package).
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