Microchip Technology_MCP6V96UT-E/OT

Microchip Technology
MCP6V96UT-E/OT  
OP Amps, Buffer Amps ICs

MCP6V96UT-E/OT
687-MCP6V96UT-E/OT
Ersa
Microchip Technology-MCP6V96UT-E/OT-datasheets-5480818.pdf
IC OPAMP ZER-DRIFT 1CIRC SOT23-5
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MCP6V96UT-E/OT Description

MCP6V96UT-E/OT Description

The MCP6V96UT-E/OT is a high-performance, zero-drift operational amplifier (op-amp) from Microchip Technology, designed for precision applications requiring low offset voltage and high stability. This single-channel op-amp features a wide supply voltage range from 2.4 V to 5.5 V, making it suitable for a variety of power supply configurations. With a gain bandwidth product of 10 MHz and a slew rate of 9.5 V/µs, the MCP6V96UT-E/OT delivers exceptional performance in signal processing and amplification tasks. Its low input bias current of 2 pA and input offset voltage of 25 µV ensure high accuracy and minimal signal distortion. The device is packaged in a compact SOT23-5 surface-mount package, ideal for space-constrained designs. The MCP6V96UT-E/OT is REACH unaffected and RoHS3 compliant, ensuring environmental sustainability and regulatory compliance. With a moisture sensitivity level (MSL) of 1 (unlimited), it is suitable for a wide range of manufacturing processes.

MCP6V96UT-E/OT Features

  • Wide Supply Voltage Range: Operates from 2.4 V to 5.5 V, providing flexibility in power supply design.
  • High Gain Bandwidth Product: 10 MHz ensures high-frequency performance and fast response times.
  • Low Input Bias Current: 2 pA minimizes the impact on sensitive input signals.
  • Low Input Offset Voltage: 25 µV ensures high accuracy in precision applications.
  • High Slew Rate: 9.5 V/µs allows for rapid signal transitions and accurate reproduction of high-frequency signals.
  • Zero-Drift Technology: Reduces long-term drift and temperature-related errors, enhancing stability over time.
  • Compact SOT23-5 Package: Ideal for space-constrained applications, enabling smaller and more efficient designs.
  • High Output Current: 40 mA per channel supports driving high-capacitive and resistive loads.
  • Environmental Compliance: REACH unaffected and RoHS3 compliant, ensuring regulatory adherence and environmental sustainability.
  • Moisture Sensitivity Level: MSL 1 (unlimited) allows for flexible manufacturing processes without moisture-related concerns.

MCP6V96UT-E/OT Applications

The MCP6V96UT-E/OT is ideal for applications requiring high precision and stability, such as:

  • Precision Signal Conditioning: Ideal for amplifying and conditioning low-level signals in sensors and transducers.
  • Analog-to-Digital Converters (ADC) Interfaces: Provides high-precision signal amplification and conditioning for ADC inputs.
  • Medical Equipment: Suitable for medical devices requiring high accuracy and reliability, such as ECG and EEG signal processing.
  • Industrial Automation: Enhances the performance of industrial control systems by providing precise signal amplification and processing.
  • Consumer Electronics: Improves the accuracy and reliability of audio and video signal processing in consumer devices.
  • Automotive Applications: Enhances the performance of automotive sensors and control systems, ensuring high accuracy and reliability.

Conclusion of MCP6V96UT-E/OT

The MCP6V96UT-E/OT from Microchip Technology stands out as a versatile and high-performance zero-drift op-amp, offering a combination of wide supply voltage range, high gain bandwidth, low input bias current, and low input offset voltage. Its compact SOT23-5 package and high output current make it suitable for a wide range of precision applications in various industries, including medical, industrial, consumer, and automotive. The device's environmental compliance and moisture sensitivity level further enhance its suitability for modern manufacturing processes. For engineers and designers seeking a reliable, high-precision op-amp, the MCP6V96UT-E/OT is an excellent choice.

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
Input Offset Voltage Drift (uV/°C)
Number of Circuits
Package Width
Typical Settling Time (ns)
Base Product Number
en - Input Voltage Noise Density
Vos - Input Offset Voltage
Product
RoHS
Supply Voltage - Min
Operating Supply Current
SR - Slew Rate
Number of Channels
Height
Maximum Operating Temperature
Ib - Input Bias Current
Supply Voltage - Max
Width
Mounting Style
Input Type
PSRR - Power Supply Rejection Ratio
Minimum Operating Temperature
CMRR - Common Mode Rejection Ratio
In - Input Noise Current Density
Ios - Input Offset Current
Shutdown
Length
Operating Supply Voltage
Output Current per Channel
USHTS
GBP - Gain Bandwidth Product

MCP6V96UT-E/OT Documents

Download datasheets and manufacturer documentation for MCP6V96UT-E/OT

Ersa Multi Dev 28/Sep/2022      
Ersa MCP6V96/6U/7/9      
Ersa Microchip CA Prop65       Microchip RoHS       Microchip REACH      

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