MCP6N16T-100E/MSVAO
Manufacturer No:
MCP6N16T-100E/MSVAO
Manufacturer:
Description:
IC INST AMP 1 CIRCUIT 8MSOP
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MCP6N16T-100E/MSVAO Specifications
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TypeParameter
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-3db Bandwidth-
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Supplier Device Package8-MSOP
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Package / Case8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
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Mounting TypeSurface Mount
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Operating Temperature-40°C ~ 125°C
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Voltage - Supply Span (Max)5.5 V
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Voltage - Supply Span (Min)1.8 V
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Current - Output / Channel10 mA
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Current - Supply1.1mA
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Voltage - Input Offset17 µV
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Current - Input Bias2 pA
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Gain Bandwidth Product500 kHz
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Slew Rate-
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Output TypeRail-to-Rail
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Number of Circuits1
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Amplifier TypeInstrumentation
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PackagingTape & Reel (TR)
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Product StatusActive
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SeriesAutomotive, AEC-Q100
The MCP6N16T-100E/MSVAO is a specific model of integrated circuit chip manufactured by Microchip Technology. It is a zero-drift operational amplifier designed for precision applications. Here are some advantages and application scenarios of this chip:Advantages: 1. Zero-drift technology: The MCP6N16T-100E/MSVAO offers extremely low input offset voltage and input offset drift, resulting in high accuracy and stability over time and temperature variations. 2. Low noise: It has low input voltage noise, making it suitable for applications that require high signal integrity and low distortion. 3. Wide input voltage range: The chip can operate with a wide range of input voltages, allowing flexibility in various applications. 4. Low power consumption: It is designed to consume low power, making it suitable for battery-powered devices or applications where power efficiency is crucial. 5. Small form factor: The chip comes in a small package, enabling it to be used in space-constrained designs.Application scenarios: 1. Sensor amplification: The MCP6N16T-100E/MSVAO can be used to amplify signals from various sensors, such as temperature sensors, pressure sensors, or strain gauges, while maintaining high accuracy and stability. 2. Data acquisition systems: It is suitable for precision data acquisition systems that require high-resolution measurements, such as in industrial automation, medical devices, or scientific instruments. 3. Instrumentation amplifiers: The chip can be used as a building block for precision instrumentation amplifiers, which are commonly used in applications like bridge amplifiers, current sensing, or differential voltage measurements. 4. Signal conditioning: It can be used for signal conditioning in applications where accurate amplification and filtering of signals are required, such as in audio equipment, communication systems, or control systems. 5. Portable devices: Due to its low power consumption and small form factor, the chip can be used in portable devices like handheld meters, portable medical devices, or wearable electronics.It is important to note that the specific advantages and application scenarios may vary depending on the requirements and specifications of the overall system design.
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