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MCP6566T-E/LT
+StücklisteIC COMPARATOR 1 GEN PUR SC70-5
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HerstellerMikrochip-Technologie
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Herstellerteil #MCP6566T-E/LT
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Auf Lager9552
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Spezifikationen
| Attribut | Wert |
| PartStatus | Active |
| Type | Standard (General Purpose) |
| NumberofElements | 1 |
| OutputType | CMOS, Open-Drain |
| Voltage-Supply,Single/Dual(±) | 1.8V ~ 5.5V |
| Voltage-InputOffset(Max) | 10mV @ 5.5V |
| Current-InputBias(Max) | 1pA @ 5.5V |
| Current-Output(Typ) | 50mA |
| Current-Quiescent(Max) | 130µA |
| CMRR,PSRR(Typ) | 66dB CMRR, 70dB PSRR |
| PropagationDelay(Max) | 80ns |
| Hysteresis | 5mV |
| OperatingTemperature | -40°C ~ 125°C |
| Package/Case | 5-TSSOP, SC-70-5, SOT-353 |
| MountingType | Surface Mount |
| SupplierDevicePackage | SC-70-5 |
| BaseProductNumber | MCP6566 |
Übersicht
Description
This op-amp has a high gain bandwidth product, allowing for effective amplification of high-frequency signals, making it ideal for audio processing, sensor interfacing, and signal conditioning applications. The device is packaged in a compact 8-pin MSOP or SOIC format, facilitating integration into space-constrained designs. Additionally, it offers excellent power supply rejection and common-mode rejection ratios, ensuring stable performance in varying conditions. The MCP6566T-E/LT is a versatile choice for engineers seeking reliable, efficient amplification solutions in low-power applications.
Equivalent
1. OPA2333 - Texas Instruments
2. TLV2372 - Texas Instruments
3. MAX44284 - Maxim Integrated
4. LMP2021 - Texas Instruments
5. AD8606 - Analog Devices
These alternatives offer similar performance characteristics, such as low offset voltage and low power consumption. Always check specific datasheets for detailed parameters to ensure compatibility for your application.
Features
1. Rail-to-Rail Output: Allows the output to swing to the power supply rails, maximizing the output range.
2. Low Supply Voltage: Operates from a single supply voltage as low as 1.8V to 6.0V, making it suitable for battery-powered applications.
3. Low Input Offset Voltage: Typically around 50 µV, ensuring high precision in signal amplification.
4. Low Noise: Low voltage noise density, contributing to improved signal fidelity in sensitive applications.
5. High Gain-Bandwidth Product: Approximately 1 MHz, allowing for use in a variety of frequency applications.
6. Wide Temperature Range: Operates from -40°C to +125°C, ensuring reliability in harsh environments.
7. Low Quiescent Current: Consumes just 2 µA, enhancing energy efficiency in portable devices.
These features make the MCP6566T-E/LT ideal for applications in sensors, signal conditioning, and portable instrumentation.
Pinout
1. Pin 1 (OUTA): Output of the first op-amp.
2. Pin 2 (INA): Inverting input of the first op-amp.
3. Pin 3 (INB): Non-inverting input of the first op-amp.
4. Pin 4 (VSS): Negative power supply (ground).
5. Pin 5 (INB): Non-inverting input of the second op-amp.
6. Pin 6 (INB): Inverting input of the second op-amp.
7. Pin 7 (OUTB): Output of the second op-amp.
8. Pin 8 (VDD): Positive power supply.
The MCP6566T-E/LT operates with a supply voltage range from 1.8V to 6V and is designed for low-power applications, making it suitable for battery-operated devices.
Manufacturer
The MCP6566T is a low-power, precision operational amplifier designed for various applications, including signal conditioning, filtering, and data acquisition systems. Microchip is known for its commitment to quality and reliability, offering a broad portfolio of products that cater to the needs of engineers and designers in industries such as automotive, industrial, consumer electronics, and communications.
Microchip also provides extensive development tools and resources to support its products, fostering a strong ecosystem for developers. Overall, Microchip Technology Inc. is recognized as a key player in the semiconductor industry, enabling advancements in technology across numerous sectors.
Application
1. Signal Conditioning: Amplifying weak signals from sensors.
2. Filtering: Implementing active filters in audio or data acquisition systems.
3. Instrumentation: Used in medical devices and measurement equipment for accurate readings.
4. Battery-Powered Devices: Suited for portable applications due to low power consumption.
5. Data Acquisition: Enhancing ADC inputs by buffering or amplifying signals.
6. Analog Signal Processing: In audio, communication, and control systems.
Its high precision and low noise characteristics make it ideal for these applications.