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AD7715ARZ-5 integrated components Integrated Circuit Chip 3 V/5 V, 450 muA 16-Bit, Sigma-Delta ADC

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    Buy cheap AD7715ARZ-5 integrated components Integrated Circuit Chip 3 V/5 V, 450 muA 16-Bit, Sigma-Delta ADC from wholesalers
     
    Buy cheap AD7715ARZ-5 integrated components Integrated Circuit Chip 3 V/5 V, 450 muA 16-Bit, Sigma-Delta ADC from wholesalers
    • Buy cheap AD7715ARZ-5 integrated components Integrated Circuit Chip 3 V/5 V, 450 muA 16-Bit, Sigma-Delta ADC from wholesalers

    AD7715ARZ-5 integrated components Integrated Circuit Chip 3 V/5 V, 450 muA 16-Bit, Sigma-Delta ADC

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    Model Number : AD7715ARZ-5
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    AD7715ARZ-5 integrated components Integrated Circuit Chip 3 V/5 V, 450 muA 16-Bit, Sigma-Delta ADC


    3 V/5 V, 450 μA 16-Bit, Sigma-Delta ADC AD7715


    FEATURES

    Charge-balancing ADC

    16-bits no missing codes

    0.0015% nonlinearity

    Programmable gain front end

    Gains of 1, 2, 32 and 128

    Differential input capability

    Three-wire serial interface

    SPI-, QSPI™-, MICROWIRE™-, and DSP-compatible

    Ability to buffer the analog input

    3 V (AD7715-3) or 5 V (AD7715-5) operation

    Low supply current: 450 μA maximum @ 3 V supplies

    Low-pass filter with programmable output update

    16-lead SOIC/PDIP/TSSOP


    GENERAL DESCRIPTION

    The AD7715 is a complete analog front end for low frequency measurement applications. The part can accept low level input signals directly from a transducer and outputs a serial digital word. It employs a Σ-Δ conversion technique to realize up to 16 bits of no missing codes performance. The input signal is applied to a proprietary programmable gain front end based around an analog modulator. The modulator output is processed by an on-chip digital filter. The first notch of this digital filter can be programmed via the on-chip control register allowing adjustment of the filter cutoff and output update rate.

    The AD7715 features a differential analog input as well as a differential reference input. It operates from a single supply (3 V or 5 V). It can handle unipolar input signal ranges of 0 mV to 20 mV, 0 mV to 80 mV, 0 V to 1.25 V and 0 V to 2.5 V. It can also handle bipolar input signal ranges of ±20 mV, ±80 mV, ±1.25 V and ±2.5 V. These bipolar ranges are referenced to the negative input of the differential analog input. The AD7715 thus performs all signal conditioning and conversion for a single channel system.

    The AD7715 is ideal for use in smart, microcontroller, or DSPbased systems. It features a serial interface that can be configured for three-wire operation. Gain settings, signal polarity, and update rate selection can be configured in software using the input serial port. The part contains self-calibration and system calibration options to eliminate gain and offset errors on the part itself or in the system.

    CMOS construction ensures very low power dissipation, and power-down mode reduces the standby power consumption to 50 μW typical. The part is available in a 16-lead, 0.3 inch-wide, plastic dual-in-line package (PDIP) as well as a 16-lead 0.3 inch wide small outline (SOIC_W) package and a 16-lead TSSOP package.


    PRODUCT HIGHLIGHTS

    1. The AD7715 consumes less than 450 μA in total supply current at 3 V supplies and 1 MHz master clock, making it ideal for use in low-power systems. Standby current is less than 10 μA.

    2. The programmable gain input allows the AD7715 to accept input signals directly from a strain gage or transducer removing a considerable amount of signal conditioning.

    3. The AD7715 is ideal for microcontroller or DSP processor applications with a three-wire serial interface reducing the number of interconnect lines and reducing the number of optocouplers required in isolated systems. The part contains on-chip registers which allow software control over output update rate, input gain, signal polarity, and calibration modes.

    4. The part features excellent static performance specifications with 16-bits no missing codes, ±0.0015% accuracy, and low rms noise (<550 nV). Endpoint errors and the effects of temperature drift are eliminated by on-chip calibration options, which remove zero-scale and full-scale errors.


    ABSOLUTE MAXIMUM RATINGS TA = 25°C, unless otherwise noted.

    Parameter

    Rating

    AVDD to AGND

    −0.3 V to +7 V

    AVDD to DGND

    −0.3 V to +7 V

    AVDD to DVDD

    −0.3 V to +7 V

    DVDD to AGND

    −0.3 V to +7 V

    DVDD to DGND

    −0.3 V to +7 V

    DGND to AGND

    −0.3 V to +7 V

    Analog Input Voltage to AGND

    −0.3 V to AVDD + 0.3 V

    Reference Input Voltage to AGND

    −0.3 V to AVDD + 0.3 V

    Digital Input Voltage to DGND

    −0.3 V to DVDD + 0.3 V

    Digital Output Voltage to DGND

    −0.3 V to DVDD + 0.3 V

    Operating Temperature Range

    Commercial (A Version)


    −40°C to +85°C

    Storage Temperature Range

    −65°C to +150°C

    Junction Temperature

    150°C

    Plastic DIP Package, Power Dissipation

    θJA Thermal Impedance

    Lead Temperature, (Soldering, 10 sec)

    450 mW

    105°C/W

    260°C

    SOIC Package, Power Dissipation

    θJA Thermal Impedance

    Lead Temperature, Reflow Soldering

    450 mW

    75°C/W

    260°C

    TSSOP Package, Power Dissipation

    θJA Thermal Impedance

    Lead Temperature, Reflow Soldering

    450 mW

    128°C/W

    +260°C

    Power Dissipation (Any Package) to +75°C

    450 mW

    ESD Rating

    >4000 V

    Stresses above those listed under Absolute Maximum Ratings may cause permanent damage to the device. This is a stress rating only; functional operation of the device at these or any other conditions above those indicated in the operational section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.


    FUNCTIONAL BLOCK DIAGRAM


    OUTLINE DIMENSIONS


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