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AM1063-2 - ATLANTA

Description: Amplifier, DC to 10 GHz Miniature Gain Block, 15 dB Gain, 2.5 dB Noise Figure, +30 dBm OIP3, +18 dBm P1dB, 1.3 x 2.0mm DFN, -40C to +85C Operation

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PCB Footprints
AM1063-2 - ATLANTA PCB footprint - Other - Other - DFN50P130x200x090-6 Package
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3D Models
AM1063-2 - ATLANTA  - 3D model - Other - DFN50P130x200x090-6 Package
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AM1063-2 Details

  • Manufacturer Part Number:

    AM1063-2

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Contact Manufacturer

  • Package Description:

    DFN-6

  • Manufacturer:

    Atlanta Micro

  • Characteristic Impedance:

    50 Ω

  • Construction:

    COMPONENT

  • Gain:

    15 dB

  • Input Power-Max (CW):

    13 dBm

  • Operating Frequency-Max:

    10000 MHz

  • Operating Temperature-Max:

    85 °C

  • Operating Temperature-Min:

    -40 °C

  • RF/Microwave Device Type:

    WIDE BAND LOW POWER

AM1063-2 Frequently Asked Questions (FAQs)

  • Atlanta Micro recommends a 4-layer PCB with a solid ground plane, and thermal vias under the device to dissipate heat. A heat sink or thermal pad can also be used to improve thermal management.
  • The AM1063-2 requires a specific biasing scheme to achieve optimal performance. A voltage regulator and filtering capacitors should be used to ensure a stable supply voltage. Additionally, the device's input and output should be properly terminated to minimize reflections and ensure maximum dynamic range.
  • The AM1063-2 has a nominal input impedance of 50 ohms and output impedance of 25 ohms. To achieve optimal performance, the input and output should be matched to these impedances using resistive or reactive matching networks.
  • To minimize noise and interference, use proper shielding and grounding techniques, keep the device away from noise sources, and use filtering capacitors and ferrite beads to reduce electromagnetic interference (EMI). Additionally, use a low-noise power supply and ensure that the device is properly decoupled from the power supply.
  • The AM1063-2 has an operating temperature range of -40°C to +85°C. The device's performance may degrade at higher temperatures, resulting in reduced gain, increased noise figure, and decreased linearity. Ensure proper thermal management and heat dissipation to maintain optimal performance.

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AM1063-2 Overview

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