ADS8507IBDW ADS8507IBDW is a 16-bit single-channel SAR analog-to-digital converter with 40 kSPS sampling rate, SPI/parallel interface, and -10V to 10V input range. It is supplied in a 28-SOIC surface-mount package.
Mfr Part #:

ADS8507IBDW

Available from 4 distributors
Mfr Name: Texas Instruments
Texas Instruments
ADS8507IBDW is a 16-bit single-channel SAR analog-to-digital converter with 40 kSPS sampling rate, SPI/parallel interface, and -10V to 10V input range. It is supplied in a 28-SOIC surface-mount package.
✓ Total Stock: 13,681 pcs
$ Price Range: $13.35

ADS8507IBDW Available from 4 distributors

✓ Authorised
✓ Non-Authorised

ADS8507IBDW Specifications Quick View

Most important parameters for selection – full specs in datasheet.
Category
Manufacturer Name
Architecture
Configuration
Data Interface
Features
INL
Input Type
Mounting Type
Number of A
Number of Bits
Number of Inputs
Operating Temperature
Ratio
Reference Type
Sampling Rate (Per Second)
Supplier Device Package
Voltage

ADS8507IBDW Description

Short technical summary and product information.

The ADS8507IBDW is a 16-bit successive approximation register (SAR) analog-to-digital converter from Texas Instruments. It samples one single-ended input at rates up to 40 kS/s, producing a 16-bit digital output. The device accepts a bipolar input range of -10 V to 10 V and can use either an internal 2.5 V reference or an external reference.

 

Electrical characteristics include a typical signal-to-noise ratio of 89.9 dB and SINAD of 89.9 dB with a 10 kHz input. Maximum INL is ±1.5 LSB and DNL is +1.5/-1 LSB with 16-bit no missing codes. The ADC operates from analog and digital supplies of 4.75 V to 5.25 V, with typical power consumption of 155 mW; at 40 kSPS it dissipates 24 mW typical and 30 mW maximum. A power-down mode reduces dissipation to 50 µW maximum.

 

The device offers a full parallel interface and SPI-compatible serial output with daisy-chain feature. The SAR architecture and 40 kS/s sample rate make it suited for industrial process control, test equipment, medical equipment, data acquisition systems, and instrumentation. Bipolar zero error is ±5 mV maximum with 0.4 ppm/°C typical drift.

 

The ADS8507IBDW is offered in a 28-pin SOIC surface-mount package and operates over -40°C to 85°C. It is rated as RoHS3 compliant per existing database data.

ADS8507IBDW Quick Information

Product Type: Analog-to-Digital Converter (ADC)
Series: ADS8507
Canonical Name: ADS8507IBDW - 16-Bit 40 kSPS SAR Analog-to-Digital Converter
Subcategory: Precision ADCs

ADS8507IBDW Compliance

RoHS Status: RoHS Compliant
Moisture Sensitivity Level (MSL): 1 Unlimited
REACH Status: REACH Unaffected

ADS8507IBDW Estimated Pricing

Qty Low High
1+ $13.35 $13.35

Estimated market price range - modelled values for guidance only, not live distributor offers.

ADS8507IBDW Features

  • 16-bit resolution with 40 kSPS sampling rate.
  • Single-ended input and SAR architecture.
  • Supports external or internal 2.5V reference.
  • Low power 24 mW typical at 40 kSPS.
  • Available in 28-pin surface-mount SOIC package.

ADS8507IBDW Applications

  • Suitable for industrial process control systems.
  • Used in test and measurement equipment.
  • Fits medical equipment data acquisition boards.
  • Ideal for digital signal processing front ends.
  • Accepts -10V to +10V analog input range.

ADS8507IBDW FAQs

7 frequently asked questions generated from this part’s specifications.
What is the ADC resolution and maximum sampling rate?

16-bit resolution with 40 kSPS sampling rate.

What supply voltages does the ADS8507IBDW require?

Analog and digital supplies both accept 4.75V to 5.25V.

What input voltage range is supported?

-10V to 10V single-ended input range.

What package is available?

28-SOIC surface-mount package (0.295\" width, 7.50mm).

What is the operating temperature range?

-40°C to 85°C.

What is the power consumption at 40 kSPS?

24 mW typical, 30 mW maximum at 40 kSPS; 155 mW typical overall power consumption.

Is this ADC RoHS compliant?

RoHS3 compliant per existing database, but not independently verified.

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