MCP6411T-E/OT Overview
The MCP6411T-E/OT is a high-performance operational amplifier designed to deliver exceptional precision and efficiency in a compact package. With its low power consumption and wide supply voltage range, it is ideal for battery-operated devices and low-power applications. This amplifier is optimized for high-speed performance and provides excellent stability, making it a reliable choice for engineers seeking versatility in their designs. For more information, visit IC Manufacturer.
MCP6411T-E/OT Key Features
- Low Power Consumption: This amplifier operates with minimal power usage, extending battery life in portable applications.
- Wide Supply Voltage Range: It supports a variety of supply voltages, allowing for flexibility in design and compatibility with different systems.
- High-Speed Performance: The device offers fast response times, enhancing performance in high-frequency applications.
- Excellent Stability: With a robust design, the MCP6411T-E/OT ensures reliable operation even in challenging conditions.
MCP6411T-E/OT Technical Specifications
| Parameter | Value |
|---|---|
| Supply Voltage Range | 2.7V to 6.0V |
| Input Offset Voltage | Max 150 ??V |
| Input Bias Current | Max 1 pA |
| Gain Bandwidth Product | 1 MHz |
| Output Voltage Swing | Rail-to-rail |
| Supply Current | Max 1.2 mA |
| Common Mode Rejection Ratio | Min 70 dB |
| Temperature Range | -40??C to +125??C |
MCP6411T-E/OT Advantages vs Typical Alternatives
This operational amplifier stands out against typical alternatives due to its low power consumption and wide supply voltage range. These features enhance overall design efficiency and reliability, making it suitable for a variety of applications where performance and durability are crucial.
🔥 Best-Selling Products
Typical Applications
- Portable medical devices benefit from the low power consumption and high precision of this operational amplifier, ensuring accurate measurements without draining batteries.
- Audio equipment can utilize the device for its high-speed performance and low noise, delivering clear sound quality.
- Sensor signal conditioning is enhanced through the amplifier’s excellent stability, allowing for accurate data processing.
- Power management circuits find the MCP6411T-E/OT ideal due to its adaptability across varying supply voltages.
MCP6411T-E/OT Brand Info
The MCP6411T-E/OT is developed by Microchip Technology, a leading provider of microcontroller and analog semiconductors. This operational amplifier reflects the company’s commitment to innovation and quality, offering engineers a reliable solution for diverse electronic applications.
FAQ
What is the typical supply voltage range for the MCP6411T-E/OT?
The typical supply voltage range for this operational amplifier is between 2.7V to 6.0V, making it versatile for various applications in different environments.
🌟 Featured Products
-

“Buy MAX9312ECJ+ Precision Voltage Comparator in DIP Package for Reliable Performance”
-

QCC-711-1-MQFN48C-TR-03-1 Bluetooth Audio SoC with MQFN48C Package
-

0339-671-TLM-E Model – High-Performance TLM-E Package for Enhanced Functionality
-

1-1415898-4 Connector Housing, Electrical Wire-to-Board, Receptacle, Packaged
How does the MCP6411T-E/OT improve battery life in devices?
Its low power consumption of a maximum of 1.2 mA allows devices to operate longer on battery power, which is critical for portable and battery-operated applications.
What applications are best suited for this operational amplifier?
The MCP6411T-E/OT is well-suited for portable medical devices, audio equipment, sensor signal conditioning, and power management circuits due to its performance characteristics.
📩 Contact Us
What is the temperature range in which the MCP6411T-E/OT operates?
This operational amplifier operates effectively within a temperature range of -40??C to +125??C, ensuring reliability in extreme conditions.
What benefits does the rail-to-rail output voltage swing provide?
The rail-to-rail output voltage swing maximizes output range, allowing for full utilization of the supply voltage, which is crucial for achieving higher accuracy and performance in applications.






