MCP6004-I/SL Overview
The MCP6004-I/SL is a dual operational amplifier designed for various low-power applications. Its features include a wide supply voltage range and low input bias current, making it an ideal choice for battery-powered devices. With excellent noise performance and low offset voltage, this component ensures precision in signal processing. Engineered for versatility, it integrates seamlessly into a multitude of designs, enhancing overall system performance. For more information, visit IC Manufacturer.
MCP6004-I/SL Key Features
- Low Power Consumption: This model operates on a low supply current, which significantly extends battery life in portable applications.
- Wide Supply Voltage Range: It supports a broad input voltage range, enabling adaptability in various circuit designs.
- High Input Impedance: The high input impedance minimizes loading effects on the source, enhancing accuracy in measurement applications.
- Low Offset Voltage: With low offset voltage performance, users can achieve improved precision in analog signal processing.
MCP6004-I/SL Technical Specifications
| Parameter | Specification |
|---|---|
| Supply Voltage (V) | 2.7 to 6.0 |
| Input Bias Current (nA) | 10 |
| Gain Bandwidth Product (MHz) | 1.0 |
| Supply Current (mA) | 1.0 |
| Common Mode Rejection Ratio (dB) | 90 |
| Input Offset Voltage (mV) | 2.0 |
| Temperature Range (??C) | -40 to +125 |
| Output Voltage Swing (V) | 0 to VDD – 1.5 |
MCP6004-I/SL Advantages vs Typical Alternatives
The MCP6004-I/SL stands out against typical alternatives due to its combination of low power consumption and high input impedance, which leads to enhanced sensitivity and accuracy in signal processing applications. Additionally, its wide supply voltage range allows for versatile integration into various electronic designs, providing reliability and efficiency.
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Typical Applications
- Battery-Powered Devices: The low power consumption makes this operational amplifier ideal for portable electronics, ensuring prolonged operational life while maintaining performance.
- Signal Conditioning: Suitable for amplifying low-level signals, enhancing their quality in diverse measurement and monitoring systems.
- Data Acquisition Systems: Its precision and stability enable effective integration in data acquisition setups, ensuring accurate data capture.
- Instrumentation: Used in medical and industrial instrumentation, providing reliable performance under varying conditions.
MCP6004-I/SL Brand Info
The MCP6004-I/SL is produced by a leading manufacturer known for its commitment to high-quality semiconductor solutions. This operational amplifier is part of a robust lineup designed for performance and efficiency, catering to engineers and designers looking for reliable components in their applications.
FAQ
What is the typical supply voltage range for the MCP6004-I/SL?
The typical supply voltage range for this operational amplifier is between 2.7V and 6.0V, making it suitable for various applications that require flexibility in power supply options.
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Can the MCP6004-I/SL be used in high-temperature environments?
Yes, the device is rated for a temperature range of -40??C to +125??C, allowing it to operate effectively in high-temperature environments, making it ideal for automotive and industrial applications.
What are the key advantages of using this operational amplifier?
Key advantages include low power consumption, high input impedance, and low offset voltage, all of which contribute to its superior performance in precision applications and battery-operated devices.
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Is the MCP6004-I/SL suitable for audio applications?
While primarily designed for general-purpose use, its low noise characteristics and high fidelity can make it suitable for audio applications, ensuring clear and accurate signal amplification.
How does the MCP6004-I/SL perform in terms of common mode rejection ratio?
The operational amplifier features a common mode rejection ratio of 90 dB, which significantly enhances its ability to reject noise and interference from common mode signals, ensuring accurate signal processing.




