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    Part Img PCM1808PWRG4 datasheet by Texas Instruments

    • PCM1808 - 99dB SNR Stereo ADC with Single-Ended Inputs 14-TSSOP -40 to 85
    • Original
    • Yes
    • Yes
    • Active
    • 8542.39.00.01
    • 8542.39.00.00
    • Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

    PCM1808PWRG4 datasheet preview

    PCM1808PWRG4 Price & Stock

    Distributor Stock Lead Time Min Order Qty Price Buy
    DigiKey 2,000
    • 1 -
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    • 10000 $0.87
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    Mouser Electronics () 26,863
    • 1 $2.12
    • 10 $1.57
    • 100 $1.05
    • 1000 $1.01
    • 10000 $0.98
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    8,362
    • 1 $1.45
    • 10 $1.06
    • 100 $0.86
    • 1000 $0.75
    • 10000 $0.70
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    3,336
    • 1 $3.29
    • 10 $2.15
    • 100 $1.67
    • 1000 $1.17
    • 10000 $1.02
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    628
    • 1 $2.27
    • 10 $1.46
    • 100 $1.08
    • 1000 $0.79
    • 10000 $0.76
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    Vyrian 285
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    Win Source Electronics 42,160
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    • 100 $0.65
    • 1000 $0.50
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    PCM1808PWRG4 Frequently Asked Questions (FAQs)

    • The recommended power-up sequence is to apply VCC first, followed by AVDD, and then DVDD. This ensures that the internal voltage regulators are powered up in the correct order.
    • To optimize the analog input circuitry, use a low-pass filter with a cutoff frequency below 20 kHz to remove high-frequency noise, and use a buffer amplifier with a high input impedance to minimize loading on the source.
    • The maximum allowed input voltage on the analog input pins is 2.5V, which is the same as the analog supply voltage (AVDD). Exceeding this voltage may damage the device.
    • To ensure proper clock synchronization, use a common clock source for both the PCM1808 and the downstream digital signal processor, and ensure that the clock signals are properly buffered and terminated to prevent signal degradation.
    • To minimize noise and interference, use a multi-layer PCB with a dedicated ground plane, keep analog and digital signals separate, and use shielding and filtering to reduce electromagnetic interference (EMI).
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