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Precision Headphone Amplifier

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Adhi Dharma Maharsi Satriya Kartika

Project Timeline

May 2025 - Current

OVERVIEW

Issues: 1.Amplifier PCB should be small enough to be under 6cmx6cm 2.Should be able to supply enough current while keeping distortion low 3.Amplifier should be able to be used with In Ear Monitor or Headphone Solution: 1. Implement separate gain and buffer section to reduce load. 2. Use parallel opamp to increase current output from 70mA to 140mA perchannel 3. Use SMT component to reduce overall PCB foot print 4. Implement Switchable Gain 2.5x and 4x to accomodate In ear monitor and headphones.

HighlightS

  1. High power out 1.2W at 32ohm compared to more common headphone amp around 500mW
  2. Compact size 5cmx5cm making retrofit and integration easier.
  3. Low THD around -110dB while avoiding any exotic part or complicated topology.

SKILLS

Analog PCB DesignData Aquistion and MeasurementMultilayer PCB DesignEasy EDAAudio Amplifier Design.
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Adhi Dharma Maharsi Satriya Kartika

Embedded Systems Engineer & Hardware Developer

I am an electronic engineer who specialized in embedded hardware design and analog design, with project ranging from Raspberry Pi 5 Compute Module mainboard to Precision Headphone Amplifier,and a digital direct synthesis devkit.My skillset includes mixed-signal circuit design, multilayer PCB layout, and signal-integrity-driven development, supported by thorough testing using oscilloscopes, logic analyzers, and DAQ systems. In addition, I have hands-on experience with R/C and marine applications, applying my design skills to ruggedized hardware and prototype systems.