ADUM1241

RECOMMENDED FOR NEW DESIGNS

Micropower, Dual-Channel Digital Isolators, Default High (1/1 Channel Directionality)

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Overview

  • Ultralow power operation
    • 3.3 V operation
      • 6 μA per channel quiescent current, refresh enabled
      • 0.3 μA per channel quiescent current, refresh disabled
      • 148 μA/Mbps per channel typical dynamic current
    • 2.5 V operation
      • 3 μA per channel quiescent current, refresh enabled
      • 0.1 μA per channel quiescent current, refresh disabled
      • 116 μA/Mbps per channel typical dynamic current
  • Small, 8-lead SOIC package
  • Bidirectional communication
  • CSA Component Acceptance Notice #5A (pending)
  • Up to 2 Mbps data rate (NRZ)
  • High temperature operation: 125°C
  • Quad-channel products available
  • See datasheet for additional features

The ADUM1241 is a micropower, dual-channel digital isolator which has a default high and 1/1 directionality based on the Analog Devices, Inc., iCoupler® technology, (Quad-channel products available). Combining high speed CMOS and monolithic air core transformer technologies, these isolation components provide outstanding performance characteristics superior to alternatives, such as optocoupler devices, yet require the lowest power of any available isolation product.

Packaged in an 8-lead SOIC, this series of quad, 3 kV digital isolation devices operate with supplies as low as 2.5 V, offering the lowest available power consumption at a fraction of the power of comparable isolators at comparable data rates (up to 2 Mbps). In addition, all models provide low pulse width distortion (<8 ns for A grade) and an input glitch filter for extraneous noise disturbance protection.

All models operate with the supply voltage on either side ranging as low as 2.25 V, providing compatibility with lower voltage systems, as well as enabling voltage translation functionality across the isolation barrier. All products also have an output default logic state in the absence of the input power. When power is first applied, or is not yet applied to the input side, the ADuM1240 and ADuM1241 have a default high output and the ADuM1245 and ADuM1246 have a default low output.

PRODUCT HIGHLIGHTS

  1. Outstanding Power Performance. These 3 kV digital isolators operate with 2.5 V supplies.
  2. Distortion and Noise Protection. Low pulse width distortion (< 8 ns for A grade models) and an input glitch filter for extraneous noise disturbance protection.

iCoupler Technology. Patented Analog Devices technology combining high speed CMOS and monolithic air core transformer technologies.

APPLICATIONS

  • General-purpose, low power, multichannel isolation
  • 1 MHz low power SPI
  • 4 mA to 20 mA loop process control

ADUM1241
Micropower, Dual-Channel Digital Isolators, Default High (1/1 Channel Directionality)
ADuM124x Functional Block Diagram ADuM1241/ADuM1246 Pin Configuration
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Tools & Simulations

ADUM1241 IBIS Models 2


Evaluation Kits

eval board
EVAL-ADUM1241

ADuM124x Evaluation Board

Product Details

The EVAL-ADuM1241EBZ supports the ADuM1240ARSZ, ADuM1241ARSZ, ADuM1245ARSZ, and ADuM1246ARSZ, which are ultralow power, 2-channel iCoupler® isolators. The evaluation board provides a JEDEC standard 20-lead SSOP pad layout, support for signal distribution, loopback, and loads referenced to VDDx or GNDx, as well as optimal by pass capacitance. Signal sources can be wired onto the board as well as brought on to the board through edge-mounted SMA connectors (sold separately) or terminal blocks for power connections. The board includes 200mil header positions for compatibility with Tektronix active probes.

The board follows best printed circuit board (PCB) design practices for 4-layer boards, including a full power and ground plane on each side of the isolation barrier. No other EMI or noise mitigation design features are included on this board. In cases of very high speed operation or when ultralow emissions are required, refer to the AN-1109 application note for additional board layout techniques.

EVAL-ADUM1241
ADuM124x Evaluation Board

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