Share:


TA7613AP

Specifications

SKU: 1274590

BUY TA7613AP https://www.utsource.net/itm/p/1274590.html
LINEAR INTEGRATED CIRCUIT
Parameter Symbol Conditions Min Typ Max Unit
Supply Voltage Vcc - 4.5 - 20 V
Quiescent Current Iq Vcc = 5V, No Load - 5 - mA
Output Power Po Vcc = 5V, RL = 8Ω, THD = 10% 250 - - mW
Frequency Response f Vcc = 5V, RL = 8Ω, Vin = 100mV 20 - 20000 Hz
Signal-to-Noise Ratio SNR Vcc = 5V, RL = 8Ω - 70 - dB
Total Harmonic Distortion THD Vcc = 5V, RL = 8Ω, f = 1kHz - 0.5 - %
Input Sensitivity Vin Vcc = 5V, RL = 8Ω, Po = 10mW - 10 - mV
Input Impedance Zin Vcc = 5V - 47 -
Shutdown Current Ishutdown Vcc = 5V, Shutdown Mode - 0.1 - μA

Instructions for Using TA7613AP

  1. Supply Voltage:

    • Ensure the supply voltage (Vcc) is within the range of 4.5V to 20V.
    • Use a stable power source to avoid fluctuations that can affect performance.
  2. Quiescent Current:

    • The quiescent current is typically 5mA at 5V. Ensure your power supply can handle this current draw.
  3. Output Power:

    • For optimal performance, use a load resistance (RL) of 8Ω when operating at 5V supply voltage.
    • The output power should not exceed 250mW to avoid overheating and damage to the component.
  4. Frequency Response:

    • The frequency response is flat from 20Hz to 20kHz, making it suitable for audio applications.
  5. Signal-to-Noise Ratio:

    • The signal-to-noise ratio (SNR) is 70dB, which is suitable for most audio applications.
  6. Total Harmonic Distortion:

    • The total harmonic distortion (THD) is 0.5% at 1kHz, indicating good linearity and low distortion.
  7. Input Sensitivity:

    • The input sensitivity is 10mV for an output power of 10mW. Adjust the input signal level accordingly to achieve the desired output power.
  8. Input Impedance:

    • The input impedance is 47kΩ, which allows for easy integration with various audio sources.
  9. Shutdown Mode:

    • To enter shutdown mode, apply a low signal to the shutdown pin. The shutdown current is 0.1μA, significantly reducing power consumption.
  10. Heat Dissipation:

    • Ensure adequate heat dissipation by using a heatsink if the component will be operated at high power levels or in high ambient temperatures.
  11. Layout Considerations:

    • Place the component close to the power supply and ground planes to minimize noise and improve stability.
    • Use decoupling capacitors (e.g., 100nF and 10μF) near the power supply pins to filter out any noise.
  12. Storage:

    • Store the component in a dry, cool place to prevent moisture damage and ensure long-term reliability.
(For reference only)

 Inquiry - TA7613AP