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    Part Img ADS1605IPAPR datasheet by Texas Instruments

    • ADS1605 - 16-bit, 5 MSPS Delta-Sigma, Analog-to-Digital Converter 64-HTQFP -40 to 85
    • Original
    • Yes
    • Yes
    • Active
    • 3A991.C.4
    • 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.

    ADS1605IPAPR datasheet preview

    ADS1605IPAPR Price & Stock

    Distributor Stock Lead Time Min Order Qty Price Buy
    DigiKey 1,000 1,000
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    • 1000 $32.93
    • 10000 $32.93
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    Mouser Electronics () 196
    • 1 $51.06
    • 10 $42.97
    • 100 $38.10
    • 1000 $36.87
    • 10000 $36.87
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    • 1 -
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    • 1000 $32.93
    • 10000 $32.93
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    Ameya Holding Limited 8,520
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    Vyrian 1,244
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    ADS1605IPAPR Frequently Asked Questions (FAQs)

    • Texas Instruments provides a recommended layout and routing guide in the ADS1605IPAPR evaluation module documentation. It's essential to follow this guide to minimize noise, ensure signal integrity, and optimize performance.
    • The ADS1605IPAPR requires differential analog input signals to be terminated with a 100-ohm resistor to VCM (common-mode voltage) to ensure proper signal integrity and minimize reflections. This termination should be placed as close to the ADC input pins as possible.
    • The ADS1605IPAPR can operate with clock frequencies up to 20 MHz. However, the optimal clock frequency depends on the specific application and noise requirements. A lower clock frequency can reduce noise and increase dynamic range, while a higher clock frequency can increase throughput.
    • The ADS1605IPAPR outputs 16-bit digital data in a serial format. The digital output data should be captured and processed by a microcontroller or FPGA. The data can be processed using a variety of methods, including SPI or parallel interfaces, depending on the specific application requirements.
    • The ADS1605IPAPR has a typical power consumption of 35 mW at 20 MHz clock frequency. Power consumption can be reduced by operating the ADC at a lower clock frequency, using the power-down mode, or implementing dynamic voltage scaling.
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