ADI ADuM1301BRW
- Part Number:
- ADuM1301BRW
- Manufacturer:
- ADI
- Ventron No:
- 5149652-ADuM1301BRW
- Description:
- Triple-Channel Digital Isolators
- Datasheet:
- ADuM1301BRW
Images are for reference only.See Product Specifications for product details.If you are interested to buy ADuM1301BRW.
ADuM1301BRW More Descriptions
Digital Isolator CMOS 3-CH 10Mbps Automotive 16-Pin SOIC W Tube
Interface Circuit, CMOS, PDSO16
Optocoupler 3 Channel 16-Pin SOIC W
Triple-Channel Digital Isolator
DGTL ISO 2500VRMS 3CH GP 16SOIC
DGTL ISO 2.5KV GEN PURP 16SOIC
French Electronic Distributor since 1988
ADUM1301 - TRIPLE-CHANNEL DIGITA
The ADuM130x1 are 3-channel digital isolators based on Analog DevicesR^ iCoupler(R) technology. Combining high speed CMOS and monolithic transformer technology, these isolation components provide outstanding performance characteristics superior to alternatives such as optocoupler devices. By avoiding the use of LEDs and photo diodes, i Coupler devices remove the design difficulties commonly associated with optocouplers. The typical optocoupler concerns regarding uncertain current transfer ratios, nonlinear transfer functions, and temperature and lifetime effects are eliminated with the simple i Coupler digital interfaces and stable performance characteristics. The need for external drivers and other discrete components is eliminated with these i Coupler products. Furthermore, i Coupler devices consume one-tenth to one-sixth the power of optocouplers at comparable signal data rates. The ADuM130x isolators provide three independent isolation channels in a variety of channel configurations and data rates (see the Ordering Guide). Both models operate with the supply voltage on either side ranging from 2.7 V to 5.5 V, providing compatibility with lower voltage systems as well as enabling a voltage translation functionality across the isolation barrier. In addition, the ADuM130x provides low pulse width distortion (<2 ns for CRW grade) and tight channel-to-channel matching (<2 ns for CRW grade). Unlike other optocoupler alternatives, the ADuM130x isolators have a patented refresh feature that ensures dc correctness in the absence of input logic transitions and during power-up/power-down conditions.
Interface Circuit, CMOS, PDSO16
Optocoupler 3 Channel 16-Pin SOIC W
Triple-Channel Digital Isolator
DGTL ISO 2500VRMS 3CH GP 16SOIC
DGTL ISO 2.5KV GEN PURP 16SOIC
French Electronic Distributor since 1988
ADUM1301 - TRIPLE-CHANNEL DIGITA
The ADuM130x1 are 3-channel digital isolators based on Analog DevicesR^ iCoupler(R) technology. Combining high speed CMOS and monolithic transformer technology, these isolation components provide outstanding performance characteristics superior to alternatives such as optocoupler devices. By avoiding the use of LEDs and photo diodes, i Coupler devices remove the design difficulties commonly associated with optocouplers. The typical optocoupler concerns regarding uncertain current transfer ratios, nonlinear transfer functions, and temperature and lifetime effects are eliminated with the simple i Coupler digital interfaces and stable performance characteristics. The need for external drivers and other discrete components is eliminated with these i Coupler products. Furthermore, i Coupler devices consume one-tenth to one-sixth the power of optocouplers at comparable signal data rates. The ADuM130x isolators provide three independent isolation channels in a variety of channel configurations and data rates (see the Ordering Guide). Both models operate with the supply voltage on either side ranging from 2.7 V to 5.5 V, providing compatibility with lower voltage systems as well as enabling a voltage translation functionality across the isolation barrier. In addition, the ADuM130x provides low pulse width distortion (<2 ns for CRW grade) and tight channel-to-channel matching (<2 ns for CRW grade). Unlike other optocoupler alternatives, the ADuM130x isolators have a patented refresh feature that ensures dc correctness in the absence of input logic transitions and during power-up/power-down conditions.
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