ADS8325IBDGKT

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Analog to Digital Converters - ADC 16-Bit 100kSPS Serial Out

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ADS8325IBDGKT DataSheet

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ADS8325IBDGKT Details

The ADS8325IBDGKT is a 16-bit analog-to-digital converter (ADC) from Texas Instruments, designed for high-precision data acquisition applications. This ADC offers a sampling rate of up to 500kHz, allowing for fast and accurate conversion of analog signals into digital data. It features a wide operating temperature range and low power consumption, making it suitable for various industrial and consumer electronics applications.

Pinout

  • 1 (REFP): Positive Reference Voltage Input
  • 2 (REFN): Negative Reference Voltage Input
  • 3 (INP): Positive Analog Input
  • 4 (INN): Negative Analog Input
  • 5 (AGND): Analog Ground
  • 6 (AVCC): Analog Power Supply
  • 7 (SDI): Serial Data Input
  • 8 (SCLK): Serial Clock Input
  • 9 (CS): Chip Select Input
  • 10 (SDO): Serial Data Output
  • 11 (DGND): Digital Ground
  • 12 (DVCC): Digital Power Supply

(Tip: For detailed pinout information, please refer to the corresponding datasheet.)

Key Features

  • High Resolution: Provides 16-bit resolution for accurate analog-to-digital conversion.
  • Fast Sampling Rate: Offers a sampling rate of up to 500kHz for capturing fast-changing analog signals.
  • Wide Temperature Range: Operates over a wide temperature range from -40°C to +125°C.
  • Low Power Consumption: Designed for low power operation, making it suitable for battery-powered applications.
  • Serial Interface: Features a serial interface for easy integration with microcontrollers and digital systems.

Application

  • Data Acquisition: Ideal for high-precision data acquisition systems in industrial and scientific applications.
  • Sensor Measurement: Used for accurate conversion of sensor signals into digital data.
  • Audio Processing: Suitable for audio processing applications requiring high-resolution conversion.

Where to Use

The ADS8325IBDGKT is suitable for applications that require high-resolution analog-to-digital conversion, particularly in data acquisition, sensor measurement, and audio processing systems. It is well-suited for both industrial and consumer electronics applications.

How to Use

Connect the ADS8325IBDGKT to your system by providing the necessary reference voltages to the REFP and REFN pins. Connect the analog input signals to the INP and INN pins. Ensure proper power supply connections to the AVCC and DVCC pins. Control the ADC operation using the SDI, SCLK, and CS pins. The digital output data can be obtained from the SDO pin. For detailed usage instructions, refer to the datasheet.

Application Circuit

The application circuit diagram for the ADS8325IBDGKT shows how to connect the ADC to your system. It includes connections for reference voltages, analog inputs, power supplies, and the serial interface, ensuring proper operation and accurate digital conversion.

(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)

Equivalents

  • ADS8325: A similar 16-bit ADC from Texas Instruments with similar features and performance.
  • ADS8324: Another 16-bit ADC from Texas Instruments offering comparable functionality and performance.

Complementary

The ADS8325IBDGKT can be complemented by the ADS1220, which is a precision 24-bit ADC from Texas Instruments. The ADS1220 offers higher resolution and accuracy, suitable for applications requiring ultra-high precision data acquisition.

When selecting complementary ADCs, consider your specific application requirements for resolution, accuracy, and sampling rate.

Frequently Asked Questions

Q: What is the maximum sampling rate supported by the ADS8325IBDGKT?

A: The ADS8325IBDGKT supports a maximum sampling rate of 500kHz. However, the achievable sampling rate depends on various factors, including the system configuration and timing constraints. Refer to the datasheet for more details.

Q: Can the ADS8325IBDGKT be used in battery-powered applications?

A: Yes, the ADS8325IBDGKT is designed for low power consumption, making it suitable for battery-powered applications. Ensure proper power management and voltage supply for optimal performance.

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Pbfree Code Yes Rohs Code Yes
Part Life Cycle Code Active Part Package Code MSOP
Pin Count ! 8 Reach Compliance Code compliant
ECCN Code EAR99 HTS Code ! 8542.39.00.01
Analog Input Voltage-Max 5.5 V Conversion Time-Max 666.7 µs
Converter Type ADC, SUCCESSIVE APPROXIMATION JESD-30 Code S-PDSO-G8
JESD-609 Code e4 Length 3 mm
Linearity Error-Max (EL) 0.0061% Moisture Sensitivity Level 2
Number of Analog In Channels 1 Number of Bits 16
Number of Functions 1 Number of Terminals 8
Operating Temperature-Max 85 °C Operating Temperature-Min -40 °C
Output Bit Code BINARY Output Format ! SERIAL
Package Body Material PLASTIC/EPOXY Package Code TSSOP
Package Equivalence Code TSSOP8,.19 Package Shape SQUARE
Package Style SMALL OUTLINE, THIN PROFILE, SHRINK PITCH Peak Reflow Temperature (Cel) 260
Power Supplies ! 2.7/5 V Qualification Status ! Not Qualified
Sample Rate 0.1 MHz Sample and Hold / Track and Hold SAMPLE
Seated Height-Max 1.1 mm Supply Current-Max 1.5 mA
Supply Voltage-Min 2.7 V Supply Voltage-Nom 5 V
Surface Mount ! YES Technology CMOS
Temperature Grade ! INDUSTRIAL Terminal Finish NICKEL PALLADIUM GOLD SILVER
Terminal Form ! GULL WING Terminal Pitch ! 0.65 mm
Terminal Position DUAL Time@Peak Reflow Temperature-Max (s) 30
Width 3 mm

Datasheet PDF

Datasheets record the features, absolute maximum ratings, applications and more of the device, which benefit a lot as an overall guide to the specific application of the part.

Preliminary Specification ADS8325IBDGKT PDF Download

FAQs

What is ADS8325IBDGKT?

The ADS8325IBDGKT is a 16-bit, 500 kSPS (kilosamples per second) analog-to-digital converter (ADC) designed by Texas Instruments. It is suitable for applications requiring high-precision analog-to-digital conversion, such as industrial automation, data acquisition, and precision measurement systems.

How Does ADS8325IBDGKT Work?

The ADS8325IBDGKT operates by converting analog voltage signals into digital data with 16-bit resolution and a sampling rate of 500 kSPS. It employs a SAR (successive approximation register) architecture to achieve high-resolution conversion with low power consumption. The ADC features a flexible digital interface and wide input voltage range, making it suitable for diverse measurement applications.

How Many Pins does ADS8325IBDGKT have and What are the Functions of the Pinout Configuration?

The ADS8325IBDGKT is housed in a 10-lead VSSOP (Very Small Outline Package) package. The pinout configuration includes:

  • AGND, DGND: Analog and digital ground pins, respectively.
  • VDD: Positive power supply pin.
  • VSS: Negative power supply pin.
  • DIN, DOUT, CS, SCLK: Serial interface control pins.
  • CONVST: Convert start input pin.
  • EOC: End of conversion output pin.

What are the Pros and Cons of ADS8325IBDGKT?

Pros:

  • High Resolution: Offers 16-bit resolution for accurate analog-to-digital conversion.
  • High Sampling Rate: Provides a fast sampling rate of 500 kSPS for time-critical measurements.
  • Low Power Consumption: Operates with low power, suitable for battery-powered or low-power devices.
  • Small Package Size: The VSSOP package is compact, saving board space in tight designs.
  • Flexible Interface: Supports a serial interface for easy integration with microcontrollers and digital systems.

Cons:

  • External Components: May require additional external components for specific signal conditioning or filtering requirements.
  • Input Voltage Range: Limited input voltage range compared to some other ADCs.
  • No Internal Reference: Requires an external reference voltage for operation.

Are There Any Equivalents/Alternatives to ADS8325IBDGKT for Recommendation?

  • The ADS8324 from Texas Instruments is a similar 16-bit ADC offering different package and pinout options.
  • Alternatives to the ADS8325IBDGKT include the MAX11615 from Maxim Integrated and the MCP3424 from Microchip Technology.

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