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MCP6486RT-E/OT - Microchip

Description: Operational Amplifiers - Op Amps Single, 10MHz Op Amp, E Temp

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PCB Footprints
MCP6486RT-E/OT - Microchip PCB footprint - SOT23 (5-Pin) - SOT23 (5-Pin) - 5-Lead Plastic Small Outline Transistor (OT) [SOT23]
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3D Models
MCP6486RT-E/OT - Microchip  - 3D model - SOT23 (5-Pin) - 5-Lead Plastic Small Outline Transistor (OT) [SOT23]
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MCP6486RT-E/OT Details

  • Manufacturer Part Number:

    MCP6486RT-E/OT

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Active

  • Pin Count:

    5

  • Manufacturer Package Code:

    SOT-23-5

  • Country Of Origin:

    Thailand

  • ECCN Code:

    EAR99

  • HTS Code:

    8542.33.00.01

  • Factory Lead Time:

    6 Weeks

  • Manufacturer:

    Microchip Technology Inc

  • YTEOL:

    23

  • Amplifier Type:

    OPERATIONAL AMPLIFIER

  • Architecture:

    VOLTAGE-FEEDBACK

  • Common-mode Reject Ratio-Min:

    66 dB

  • Common-mode Reject Ratio-Nom:

    110 dB

  • Frequency Compensation:

    YES

  • Input Offset Voltage-Max:

    1600 µV

  • JESD-30 Code:

    R-PDSO-G5

  • JESD-609 Code:

    e3

  • Length:

    2.9 mm

  • Low-Bias:

    NO

  • Low-Offset:

    NO

  • Micropower:

    YES

  • Number of Functions:

    1

  • Number of Terminals:

    5

  • Operating Temperature-Max:

    125 °C

  • Operating Temperature-Min:

    -40 °C

  • Package Body Material:

    PLASTIC/EPOXY

  • Package Code:

    LSSOP

  • Package Equivalence Code:

    SOP5,.11,37

  • Package Shape:

    RECTANGULAR

  • Package Style:

    SMALL OUTLINE, LOW PROFILE, SHRINK PITCH

  • Packing Method:

    TR

  • Power:

    NO

  • Programmable Power:

    NO

  • Seated Height-Max:

    1.45 mm

  • Slew Rate-Nom:

    20 V/us

  • Supply Current-Max:

    0.72 mA

  • Supply Voltage Limit-Max:

    6 V

  • Supply Voltage-Nom (Vsup):

    5 V

  • Surface Mount:

    YES

  • Technology:

    CMOS

  • Terminal Finish:

    Matte Tin (Sn)

  • Terminal Form:

    GULL WING

  • Terminal Pitch:

    0.95 mm

  • Terminal Position:

    DUAL

  • Unity Gain BW-Nom:

    10000

  • Voltage Gain-Min:

    177827.941

  • Wideband:

    NO

  • Width:

    1.6 mm

MCP6486RT-E/OT Frequently Asked Questions (FAQs)

  • The maximum power dissipation of the MCP6486RT-E/OT is 670 mW, which is calculated based on the maximum junction temperature (TJ) of 150°C and the thermal resistance (θJA) of 125°C/W.
  • To ensure stability in high-gain configurations, it's essential to follow proper PCB layout practices, such as minimizing parasitic capacitance and inductance, using a solid ground plane, and placing bypass capacitors close to the op-amp. Additionally, consider adding a compensation capacitor (e.g., 10-100 pF) between the output and the inverting input to improve stability.
  • The recommended input impedance for the MCP6486RT-E/OT is greater than 1 kΩ to ensure optimal performance and minimize input bias current effects. However, the input impedance can be lower if the source impedance is matched to the op-amp's input impedance.
  • While the MCP6486RT-E/OT can be used as a comparator, it's not the most suitable choice due to its relatively slow slew rate (0.5 V/μs) and limited output current (±20 mA). For comparator applications, consider using a dedicated comparator IC, such as the MCP6546, which is designed for high-speed and low-power consumption.
  • To protect the MCP6486RT-E/OT from ESD and overvoltage, use external protection devices such as TVS diodes (e.g., SMAJ5.0A) and resistors in series with the input pins. Additionally, ensure that the PCB layout and component placement minimize the risk of ESD damage.

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MCP6486RT-E/OT Overview

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About Microchip

Microchip Technology Inc. is a leading manufacturer of microcontrollers and semiconductor devices for a wide range of applications in the aerospace, automotive, consumer electronics, industrial, and medical industries. Alongside a comprehensive product portfolio, Microchip Technology Inc. also provides easy-to-use development tools that enable engineers to create optimal designs quickly with minimal iterations to reduce risk while lowering total system costs to market. Headquartered in Chandler, Arizona, th

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