X-On Electronics has gained recognition as a prominent supplier of AD623BNZ Instrumentation Amplifiers across the USA, India, Europe, Australia, and various other global locations. AD623BNZ Instrumentation Amplifiers are a product manufactured by Analog Devices. We provide cost-effective solutions for Instrumentation Amplifiers, ensuring timely deliveries around the world.

AD623BNZ Analog Devices

AD623BNZ electronic component of Analog Devices
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Part No.AD623BNZ
Manufacturer: Analog Devices
Category: Instrumentation Amplifiers
Description: Instrumentation Amplifiers PDIP SINGLE SUPPLY RAIL-RAIL L/C IN AMP
Datasheet: AD623BNZ Datasheet (PDF)
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)
1: USD 10.3084 ea
Line Total: USD 10.31 
Availability - 2
Ship by Thu. 19 Dec to Tue. 24 Dec
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
2
Ship by Thu. 19 Dec to Tue. 24 Dec
MOQ : 1
Multiples : 1
1 : USD 10.3084
10 : USD 10.0915
30 : USD 8.8895
100 : USD 8.7441

   
Manufacturer
Product Category
RoHS - XON
Icon ROHS
Series
Number of Channels
3 dB Bandwidth
SR - Slew Rate
Operating Supply Voltage
CMRR - Common Mode Rejection Ratio
Operating Supply Current
Ib - Input Bias Current
Vos - Input Offset Voltage
Minimum Operating Temperature
Maximum Operating Temperature
Mounting Style
Package / Case
Pd - Power Dissipation
Packaging
Gain V/V
Bandwidth
Operating Temperature Range
Product
Brand
Dual Supply Voltage
Psrr - Power Supply Rejection Ratio
Factory Pack Quantity :
Supply Current Per Channel
Cnhts
Hts Code
Mxhts
Product Type
Subcategory
Vcm - Common Mode Voltage
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We are delighted to provide the AD623BNZ from our Instrumentation Amplifiers category, at competitive rates not only in the United States, Australia, and India, but also across Europe and beyond. A long established and extensive electronic component distribution network has enhanced our global reach and dependability, ensuring cost savings through prompt deliveries worldwide. Client satisfaction is at the heart of our business, where every component counts and every customer matters. Our technical service team is ready to assist you. From product selection to after-sales support, we strive to deliver a seamless and satisfying experience. Are you ready to experience the best in electronic component distribution? Contact X-ON Electronics today and discover why X-On are a preferred choice for the AD623BNZ and other electronic components in the Instrumentation Amplifiers category and beyond.

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Single and Dual-Supply, Rail-to-Rail, Low Cost Instrumentation Amplifier Data Sheet AD623 FEATURES GENERAL DESCRIPTION Easy to use The AD623 is an integrated, single- or dual-supply instrumentation Rail-to-rail output swing amplifier that delivers rail-to-rail output swing using supply Input voltage range extends 150 mV below ground voltages from 2.7 V to 12 V. The AD623 offers user flexibility by (single supply) allowing single gain set resistor programming and by conforming Low power, 550 A maximum quiescent current to the 8-lead industry standard pinout configuration. With no Gain set with one external resistor external resistor, the AD623 is configured for unity gain (G = 1), Gain range: 1 to 1000 and with an external resistor, the AD623 can be programmed for High accuracy dc performance gains of up to 1000. 0.10% gain error (G = 1) The accuracy of the AD623 is the result of increasing ac 0.35% gain error (G > 1) common-mode rejection ratio (CMRR) coincident with Noise: 35 nV/Hz RTI noise at 1 kHz increasing gain. Line noise harmonics are rejected due to Optimal dynamic specifications constant CMRR up to 200 Hz. The AD623 has a wide input 800 kHz bandwidth (G = 1) common-mode range and amplifies signals with common- 20 s settling time to 0.01% (G = 10) mode voltages as low as 150 mV below ground. The AD623 maintains optimal performance with dual and single polarity APPLICATIONS power supplies. Low power medical instrumentation Transducer interfaces Table 1. Low Power Upgrades for the AD623 Thermocouple amplifiers Typical Quiescent Industrial process controls Part No. Total Supply Voltage, VS (V dc) Current, IQ (A) Difference amplifiers AD8235 5.5 30 Low power data acquisition AD8236 5.5 33 AD8237 5.5 33 AD8226 36 350 AD8227 36 325 AD8420 36 85 AD8422 36 300 AD8426 36 325 (per channel) FUNCTIONAL BLOCK DIAGRAM +V S 2 7 IN 50k 50k A1 V DIFF 2 + R 50k G 6 V CM 1 A3 OUTPUT R V G DIFF 8 50k 2 + +R G +IN 50k 50k 5 3 4 A2 REF V S Figure 1. Rev. G Document Feedback Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A. rights of third parties that may result from its use. Specifications subject to change without notice. No Tel: 781.329.4700 2020 Analog Devices, Inc. All rights reserved. license is granted by implication or otherwise under any patent or patent rights of Analog Devices. Technical Support www.analog.com Trademarks and registered trademarks are the property of their respective owners. 00778-054AD623 Data Sheet TABLE OF CONTENTS Features .............................................................................................. 1 Basic Connection ....................................................................... 24 Applications ....................................................................................... 1 Gain Selection ............................................................................. 24 General Description ......................................................................... 1 Reference Terminal .................................................................... 24 Functional Block Diagram .............................................................. 1 Input and Output Offset Voltage Error ................................... 24 Revision History ............................................................................... 2 Input Protection ......................................................................... 25 Specifications ..................................................................................... 4 RF Interference ........................................................................... 25 Single Supply ................................................................................. 4 Grounding ................................................................................... 26 Dual Supplies ................................................................................ 6 Input Differential and Common-Mode Range vs. Supply and Gain .............................................................................................. 28 Specifications Common to Dual and Single Supplies ............. 8 Additional Information ............................................................. 29 Absolute Maximum Ratings ............................................................ 9 Evaluation Board ............................................................................ 30 ESD Caution .................................................................................. 9 General Description ................................................................... 30 Pin Configuration and Function Descriptions ........................... 10 Outline Dimensions ....................................................................... 31 Typical Performance Characteristics ........................................... 11 Ordering Guide .......................................................................... 32 Theory of Operation ...................................................................... 23 Applications Information .............................................................. 24 REVISION HISTORY 9/2020Rev. F to Rev. G 4/2018Rev. E to Rev. F Changed AD623A to AD623ANZ, AD623ARZ and AD623B to Changes to Gain Error Parameter, Nonlinearity Parameter, Offset Referred to the Input vs. Supply (PSR) Parameter, and AD623BNZ, AD623BRZ .............................................. Throughout Changes to General Description Section ...................................... 1 Output Swing Parameter, Table 2 .................................................... 3 Changes to Figure 5 Caption, Figure 6 Caption, and Figure 8 Changes to Gain Error Parameter and Offset Referred to the Caption ............................................................................................. 10 Input vs. Supply (PSR) Parameter, Table 3 ..................................... 5 Changes to Figure 10 Caption, Figure 11, Figure 12, Figure 13, Changes to Current Noise Parameter, Table 4 ............................... 7 and Figure 14 ................................................................................... 12 Changes to Ordering Guide .......................................................... 26 Changes to Figure 15 to Figure 20 ................................................ 13 Changes to Figure 21 to Figure 26 ................................................ 14 6/2016Rev. D to Rev. E Changes to Features Section, General Description Section, Changes to Figure 27 to Figure 32 ................................................ 15 Changes to Figure 33 to Figure 38 ................................................ 16 and Figure 1 ........................................................................................1 Changes to Figure 39 to Figure 40 ................................................ 17 Deleted Connection Diagram Section ............................................ 1 Added Figure 41 to Figure 44 Renumbered Sequentially ........ 17 Added Functional Block Diagram Section and Table 1 Added Figure 45 to Figure 50 ........................................................ 18 Renumbered Sequentially ................................................................ 1 Added Figure 51 to Figure 56 ........................................................ 19 Changes to Single Supply Section ................................................... 3 Added Figure 57 to Figure 62 ........................................................ 20 Changes to Table 3 ............................................................................. 6 Added Figure 63 to Figure 66 ........................................................ 21 Changed Both Dual and Single Supplies Section to Specifications Common to Dual and Single Supplies Section .... 7 Deleted Single-Supply Data Acquisition System Section and Figure 53 Renumbered Sequentially ........................................... 21 Changes to Table 5 ............................................................................. 8 Added Figure 67 to Figure 69 ........................................................ 22 Added Pin Configuration and Function Descriptions Section, Change to Figure 70 ....................................................................... 23 Figure 2, and Table 6 Renumbered Sequentially .......................... 9 Changes to Basic Connection Section and Reference Terminal Changes to Figure 5 Caption, Figure 6 Caption, and Section .............................................................................................. 24 Figure 8 Caption ............................................................................. 10 Changes to RF Interference Section ............................................ 25 Changes to Figure 17 Caption through Figure 20 Caption ...... 11 Change to Figure 77 ....................................................................... 26 Changes to Figure 21 Caption through Figure 26 Caption ...... 12 Changes to Figure 79 and Output Buffering Section ................. 27 Changes to Figure 27 Caption and Figure 28 Caption .............. 13 Changes to Input Differential and Common-Mode Range vs. Changes to Theory of Operation Section.................................... 17 Supply and Gain Section ................................................................ 28 Changes to Basic Connection Section ......................................... 18 Changes to Ordering Guide .......................................................... 32 Changes to Input and Output Offset Voltage Error Section, and Input Protection Section ................................................................ 19 Rev. G Page 2 of 32

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Electronic integrated circuits: Processors and controllers, whether or not combined with memories, converters, logic circuits, amplifiers, clock and timing circuits, or other circuits
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