TAS5614ADKDR

TAS5614ADKDR

Category: IC Chips

Specifications
Details

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Parameter Description Conditions Min Typ Max Unit
Supply Voltage (VDD) Operating supply voltage 4.5 5.5 V
Output Power Maximum output power per channel 8 Ω load, THD+N = 10% 2.8 W
Efficiency Efficiency at full power 8 Ω load, 1 kHz 85 %
SNR (Signal-to-Noise Ratio) Signal-to-noise ratio A-weighted, quiescent state 105 dB
THD+N (Total Harmonic Distortion + Noise) Distortion and noise level 1 kHz, 1 W into 8 Ω 0.03 %
Quiescent Current Current consumption in standby mode VDD = 5 V 2 mA
Shutdown Current Current consumption in shutdown mode VDD = 5 V 0.1 μA
Input Voltage Range Maximum differential input voltage -0.3 0.3 V
ESD Rating Human Body Model (HBM) ESD protection 4000 V

Instructions for TAS5614ADKDR:

  1. Power Supply Connection:

    • Connect the VDD pin to a stable 4.5V to 5.5V power supply.
    • Ensure proper decoupling capacitors are placed close to the power pins.
  2. Output Configuration:

    • Connect the speaker or load directly to the output terminals.
    • Ensure the load impedance matches the recommended values for optimal performance.
  3. Input Signal:

    • Apply the audio signal to the input pins within the specified input voltage range.
    • Use appropriate input coupling capacitors if necessary.
  4. Control Signals:

    • Set up control signals such as shutdown and enable according to your system requirements.
    • For shutdown, pull the SHDN pin low; for normal operation, keep it high.
  5. Thermal Management:

    • Ensure adequate heat dissipation, especially during high-power operation.
    • Consider using a heatsink if operating near maximum power levels.
  6. Protection Features:

    • The device includes built-in thermal and short-circuit protection.
    • Monitor these features through diagnostic outputs if available.
  7. Initial Setup:

    • Before powering on, verify all connections and ensure no shorts exist.
    • Gradually apply power while monitoring for any unusual behavior.
  8. Testing:

    • After setup, perform initial tests with low-level signals to confirm functionality.
    • Gradually increase the signal level to ensure stability and performance meet expectations.
(For reference only)

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