Microchip Technology_MCP622-E/MF

Microchip Technology
MCP622-E/MF  
OP Amps, Buffer Amps ICs

MCP622-E/MF
687-MCP622-E/MF
Ersa
Microchip Technology-MCP622-E/MF-datasheets-660947.pdf
IC OPAMP GP 2 CIRCUIT 8DFN
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MCP622-E/MF Description

MCP622-E/MF Description

The MCP622-E/MF is a high-performance, general-purpose operational amplifier (op-amp) designed by Microchip Technology. This dual-channel op-amp is housed in a surface-mount 8-DFN package, making it suitable for a wide range of applications where space is a critical consideration. The MCP622-E/MF operates with a wide supply voltage range, from 2.5 V to 5.5 V, ensuring compatibility with various power supply configurations. Its gain bandwidth product of 20 MHz and a slew rate of 10 V/µs provide excellent performance for high-frequency applications. The op-amp features a low input bias current of 5 pA and an input offset voltage of 200 µV, ensuring high precision and stability in signal processing.

MCP622-E/MF Features

  • Wide Supply Voltage Range: The MCP622-E/MF operates effectively within a supply voltage range of 2.5 V to 5.5 V, making it versatile for different power supply requirements.
  • High Gain Bandwidth Product: With a gain bandwidth product of 20 MHz, the MCP622-E/MF is well-suited for applications requiring high-frequency signal processing.
  • Low Input Bias Current: The low input bias current of 5 pA ensures minimal loading on the input signal source, maintaining signal integrity.
  • High Slew Rate: The 10 V/µs slew rate allows for fast response times, making it ideal for applications requiring rapid signal transitions.
  • Dual-Channel Design: The MCP622-E/MF features two independent op-amp channels, each capable of sourcing or sinking up to 70 mA, providing flexibility in circuit design.
  • Surface-Mount Packaging: The 8-DFN package is compact and suitable for surface-mount technology (SMT), facilitating integration into modern, space-constrained designs.
  • Compliance and Reliability: The MCP622-E/MF is REACH unaffected and ROHS3 compliant, ensuring environmental safety and regulatory compliance. It also has a moisture sensitivity level (MSL) of 1, indicating unlimited exposure to moisture, enhancing its reliability in various environmental conditions.

MCP622-E/MF Applications

The MCP622-E/MF is ideal for a variety of applications due to its high performance and versatility. Some specific use cases include:

  • Signal Conditioning: The low input bias current and high gain bandwidth make it suitable for conditioning weak or high-impedance signals in sensor interfaces and transducers.
  • Audio Applications: The high slew rate and wide bandwidth ensure high-fidelity audio signal processing, making it suitable for audio amplifiers and mixers.
  • Industrial Control Systems: The dual-channel design and robust performance characteristics make it ideal for industrial applications requiring precise control and signal processing.
  • Consumer Electronics: The compact size and surface-mount package make it suitable for consumer electronics where space is limited, such as smartphones, tablets, and portable devices.

Conclusion of MCP622-E/MF

The MCP622-E/MF from Microchip Technology is a versatile and high-performance general-purpose op-amp that offers a wide range of benefits. Its wide supply voltage range, high gain bandwidth, low input bias current, and high slew rate make it suitable for a variety of applications, from signal conditioning to audio processing. The dual-channel design and compact surface-mount package further enhance its appeal for modern, space-constrained designs. With its compliance to environmental and regulatory standards, the MCP622-E/MF is a reliable choice for engineers looking to integrate a high-performance op-amp into their projects.

Tech Specifications

Voltage - Supply Span (Max)
Number of Channels per Chip
Power Supply Type
Maximum Input Offset Voltage (mV)
Typical Output Current (mA)
PPAP
Gain Bandwidth Product
Product Status
Current - Input Bias
Automotive
Maximum Input Offset Current (uA)
Rail to Rail
Supplier Package
Package / Case
Typical Voltage Gain (dB)
REACH Status
Typical Input Bias Current (uA)
EU RoHS
Amplifier Type
Moisture Sensitivity Level (MSL)
Typical Input Noise Voltage Density (nV/rtHz)
Operating Temperature
Typical Slew Rate (V/us)
ECCN
Supplier Temperature Grade
Mounting Type
Current - Supply
Standard Package Name
Pin Count
Shut Down Support
Mounting
Minimum Single Supply Voltage (V)
Minimum PSRR (dB)
Voltage - Supply Span (Min)
Manufacturer Type
HTSUS
Package
Current - Output / Channel
Minimum CMRR (dB)
Maximum Quiescent Current (mA)
PCB changed
Output Type
HTS
ECCN (US)
Supplier Device Package
Minimum CMRR Range (dB)
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Process Technology
Typical Gain Bandwidth Product (MHz)
Package Height
Mfr
RoHS Status
Maximum Input Bias Current (uA)
Typical Noninverting Input Current Noise Density (pA/rtHz)
Slew Rate
Package Length
Voltage - Input Offset
Series
Type
Maximum Single Supply Voltage (V)
Part Status
Number of Circuits
Package Width
Base Product Number
Unit Weight
en - Input Voltage Noise Density
Vos - Input Offset Voltage
Voltage Gain dB
Product
RoHS
Supply Voltage - Min
Operating Supply Current
SR - Slew Rate
Number of Channels
Technology
Height
Maximum Operating Temperature
Ib - Input Bias Current
Supply Voltage - Max
Width
Mounting Style
PSRR - Power Supply Rejection Ratio
Minimum Operating Temperature
CMRR - Common Mode Rejection Ratio
In - Input Noise Current Density
Qualification
Shutdown
Vcm - Common Mode Voltage
Length
Operating Supply Voltage
Output Current per Channel
Supply Type
USHTS
GBP - Gain Bandwidth Product

MCP622-E/MF Documents

Download datasheets and manufacturer documentation for MCP622-E/MF

Ersa Manufacturing Change 29/Jul/2021      
Ersa MCP621-629       Analog and Interface Product Guide      
Ersa Packing Changes 10/Oct/2016       Label and Packing Changes 23/Sep/2015      
Ersa MCP622 Development Tool Selector      
Ersa MCP62Y Datasheet Update 14/Aug/2014      
Ersa Microchip CA Prop65       Microchip RoHS       Microchip REACH      

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