ADUM321N0WBRIZ

Analog Devices
584-ADUM321N0WBRIZ
ADUM321N0WBRIZ

Mfr.:

Description:
Digital Isolators IC, Robust Dual Iso 2:1

Lifecycle:
New Product:
New from this manufacturer.
ECAD Model:
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In Stock: 790

Stock:
790 Can Dispatch Immediately
Factory Lead Time:
13 Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:

Pricing (EUR)

Qty. Unit Price
Ext. Price
5,32 € 5,32 €
3,81 € 38,10 €
3,55 € 88,75 €
3,12 € 249,60 €
2,96 € 710,40 €
2,66 € 1.489,60 €
2,24 € 2.329,60 €

Product Attribute Attribute Value Select Attribute
Analog Devices Inc.
Product Category: Digital Isolators
RoHS:  
ADUM321N
SMD/SMT
SOIC-8
AEC-Q100
Tube
Brand: Analog Devices
Country of Assembly: Not Available
Country of Diffusion: Not Available
Country of Origin: TW
Moisture Sensitive: Yes
Product Type: Digital Isolators
Factory Pack Quantity: 80
Subcategory: Interface ICs
Part # Aliases: ADUM321N0WBRIZ-RL
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TARIC:
8542399000
CNHTS:
8542399000
USHTS:
8542390090
MXHTS:
8542399999
ECCN:
EAR99

ADuM320N/ADuM321N Dual Digital Isolators

Analog Devices Inc. ADuM320N/ADuM321N Dual Digital Isolators are dual-channel devices based on Analog Devices, Inc., iCoupler® technology. Combining high-speed, complementary metal-oxide semiconductor (CMOS) and monolithic air core transformer technology, these isolation components provide outstanding performance characteristics and meet CISPR 32/EN 55032 Class B limits at 5Mbps. The maximum propagation delay is 10ns with a pulse width distortion of less than 3ns at 5V operation. Channel matching is hard at 3.0ns maximum. Data channels are independent and available in various configurations with a withstand voltage rating of 5.7kVRMS and 3.0kVRMS. The devices operate with the supply voltage on either side ranging from 2.25V to 5.5V, providing compatibility with lower voltage systems and enabling voltage translation functionality across the isolation barrier. Two different fail-safe options are available by which the outputs transition to a predetermined state when the input power supply is not applied.