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AD976ABNZ by:
Analog Devices Inc

ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDIP28

Part Details for AD976ABNZ by Analog Devices Inc

Results Overview of AD976ABNZ by Analog Devices Inc

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Applications Education and Research Internet of Things (IoT) Industrial Automation Computing and Data Storage Aerospace and Defense Healthcare Telecommunications Electronic Manufacturing Automotive

AD976ABNZ Information

AD976ABNZ by Analog Devices Inc is an Analog to Digital Converter.
Analog to Digital Converters are under the broader part category of Converters.

A converter is an electrical circuit that transforms electric energy into a different form that will support a elecrical load needed by a device. Read more about Converters on our Converters part category page.

Price & Stock for AD976ABNZ

Part # Distributor Description Stock Price Buy
Rochester Electronics ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDIP28 RoHS: Compliant Status: Obsolete Min Qty: 1 4
  • 25 $52.5700
  • 100 $49.9400
  • 500 $47.3100
  • 1,000 $44.6800
  • 10,000 $42.0600
$42.0600 / $52.5700 Buy Now
Vyrian Obsolete 7341
RFQ

US Tariff Estimator: AD976ABNZ by Analog Devices Inc

Calculations from this tool are estimations only for imports into the United States. Please refer to the distributor or manufacturer and reference official US government sources and authorities to verify any final purchase costs.

AD976ABNZ
Analog Devices Inc
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Part Details for AD976ABNZ

AD976ABNZ CAD Models

AD976ABNZ Part Data Attributes

AD976ABNZ Analog Devices Inc
Buy Now Datasheet
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AD976ABNZ Analog Devices Inc ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDIP28
Pbfree Code No
Rohs Code Yes
Part Life Cycle Code Obsolete
Part Package Code DIP
Package Description Dip, Dip28,.3
Pin Count 28
Manufacturer Package Code N-28-2
Reach Compliance Code Unknown
HTS Code 8542.39.00.01
Analog Input Voltage-Max 10 V
Analog Input Voltage-Min -10 V
Conversion Time-Max 4 µS
Converter Type Adc, Successive Approximation
JESD-30 Code R-PDIP-T28
JESD-609 Code e3
Length 35.687 Mm
Linearity Error-Max (EL) 0.0031%
Number of Analog In Channels 1
Number of Bits 16
Number of Functions 1
Number of Terminals 28
Operating Temperature-Max 85 °C
Operating Temperature-Min -40 °C
Output Bit Code BINARY, 2S COMPLEMENT BINARY
Output Format Parallel, Word
Package Body Material Plastic/Epoxy
Package Code DIP
Package Equivalence Code DIP28,.3
Package Shape Rectangular
Package Style In-Line
Qualification Status Not Qualified
Sample Rate 0.2 Mhz
Sample and Hold / Track and Hold Sample
Seated Height-Max 5.33 Mm
Supply Current-Max 11 Ma
Supply Voltage-Nom 5 V
Surface Mount No
Technology Bicmos
Temperature Grade Industrial
Terminal Finish Matte Tin (Sn) - Annealed
Terminal Form Through-Hole
Terminal Pitch 2.54 Mm
Terminal Position Dual
Width 7.62 Mm

Alternate Parts for AD976ABNZ

This table gives cross-reference parts and alternative options found for AD976ABNZ. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of AD976ABNZ, but it may not fit your design. 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.

Part Number Manufacturer Composite Price Description Compare
AD976ABN Analog Devices Inc Check for Price ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDIP28 AD976ABNZ vs AD976ABN
Part Number Manufacturer Composite Price Description Compare
ADS8515IDBR Texas Instruments $5.9704 16-Bit 250kHz CMOS Analog-to-Digital Converter With Parallel Interface 4.096V Internal Reference 28-SSOP -40 to 85 AD976ABNZ vs ADS8515IDBR
AD976ACR Analog Devices Inc Check for Price ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDSO28 AD976ABNZ vs AD976ACR
AD976AACHIPS Analog Devices Inc Check for Price ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS AD976ABNZ vs AD976AACHIPS
AD976ABRS Analog Devices Inc Check for Price ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDSO28 AD976ABNZ vs AD976ABRS
AD976AAN Analog Devices Inc Check for Price ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDIP28 AD976ABNZ vs AD976AAN
AD976AARSRL Analog Devices Inc Check for Price ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDSO28 AD976ABNZ vs AD976AARSRL
AD976ACRS Analog Devices Inc Check for Price ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDSO28 AD976ABNZ vs AD976ACRS
AD976ARSRL Analog Devices Inc Check for Price ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDSO28 AD976ABNZ vs AD976ARSRL
AD976ARSZRL Analog Devices Inc Check for Price ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDSO28 AD976ABNZ vs AD976ARSZRL
AD976ABRSRL Analog Devices Inc Check for Price ADC, Successive Approximation, 16-Bit, 1 Func, 1 Channel, Parallel, Word Access, BICMOS, PDSO28 AD976ABNZ vs AD976ABRSRL
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AD976ABNZ Related Parts

AD976ABNZ Frequently Asked Questions (FAQ)

  • The recommended power-up sequence is to apply VCC first, followed by AVCC, and then the digital inputs. This ensures proper device operation and prevents latch-up.

  • To minimize noise and ensure reliable operation, it is recommended to keep the analog and digital grounds separate, use a solid ground plane, and keep the signal traces short and away from noise sources. Additionally, decoupling capacitors should be placed close to the device pins.

  • The AD976ABNZ can support clock frequencies up to 65 MSPS. However, the actual clock frequency limit may be lower depending on the specific application and system requirements.

  • The AD976ABNZ outputs data in a 10-bit, 2's complement format. The output data can be processed using a microcontroller or FPGA, and can be formatted to suit the specific application requirements.

  • The typical power consumption of the AD976ABNZ is around 350 mW at a supply voltage of 5V and a clock frequency of 65 MSPS. However, the actual power consumption may vary depending on the specific application and operating conditions.

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