AD8610ARMZ-REEL

AD8610ARMZ-REEL

Manufacturer No:

AD8610ARMZ-REEL

Manufacturer:

Analog Devices Inc.

Description:

IC OPAMP JFET 1 CIRCUIT 8MSOP

Datasheet:

Datasheet

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AD8610ARMZ-REEL Specifications

  • Type
    Parameter
  • Gain Bandwidth Product
    25 MHz
  • Supplier Device Package
    8-MSOP
  • Package / Case
    8-TSSOP, 8-MSOP (0.118", 3.00mm Width)
  • Mounting Type
    Surface Mount
  • Operating Temperature
    -40°C ~ 125°C
  • Voltage - Supply Span (Max)
    26 V
  • Voltage - Supply Span (Min)
    10 V
  • Current - Output / Channel
    45 mA
  • Current - Supply
    3mA
  • Voltage - Input Offset
    85 µV
  • Current - Input Bias
    3 pA
  • -3db Bandwidth
    -
  • Slew Rate
    60V/µs
  • Output Type
    -
  • Number of Circuits
    1
  • Amplifier Type
    J-FET
  • Packaging
    Cut Tape (CT)
  • Packaging
    Tape & Reel (TR)
  • Product Status
    Active
  • Series
    -
The AD8610ARMZ-REEL is a precision, low noise, low input bias current operational amplifier integrated circuit chip. Some of its advantages and application scenarios include:Advantages: 1. Low noise: The AD8610ARMZ-REEL has a very low noise level, making it suitable for applications where signal integrity is crucial, such as audio amplification and measurement equipment. 2. Low input bias current: The chip has a very low input bias current, which minimizes the impact of input current on the circuit's performance. This makes it suitable for applications where high input impedance is required, such as sensor interfaces and transimpedance amplifiers. 3. High precision: The AD8610ARMZ-REEL offers high precision and accuracy in amplification, making it suitable for applications that require precise signal conditioning, such as instrumentation and control systems. 4. Wide supply voltage range: The chip can operate with a wide supply voltage range, allowing flexibility in various applications.Application scenarios: 1. Audio amplification: The low noise and high precision characteristics of the AD8610ARMZ-REEL make it suitable for audio amplification applications, such as headphone amplifiers, audio mixers, and preamplifiers. 2. Sensor interfaces: The low input bias current and high precision make the chip suitable for sensor interface applications, where accurate amplification of small sensor signals is required, such as in medical devices, environmental monitoring, and industrial automation. 3. Transimpedance amplifiers: The low input bias current and high precision of the chip make it suitable for transimpedance amplifiers used in photodiode or photomultiplier tube applications, where low noise and high gain accuracy are essential. 4. Instrumentation and control systems: The high precision and wide supply voltage range of the chip make it suitable for instrumentation and control systems, such as data acquisition systems, process control, and test and measurement equipment, where accurate signal conditioning and wide voltage range operation are required.It's important to note that the specific application scenarios may vary depending on the requirements and specifications of the overall system design.