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  <title>[elecena] Reinforced, Fast, Low-Power, Two-Channel Digital Isolators - zmiany ceny</title>
  <description>The MAX22290/MAX22291 is a family of 2-channel
reinforced, fast, low-power digital galvanic isolators
using Maxim’s proprietary process technology. All
devices feature reinforced isolation for a withstand
voltage rating of 3kVRMS for 60 seconds. Both
automotive and general-purpose devices are rated for
operation at ambient temperatures of -40°C to +125°C.

Devices with /V suffix are AEC-Q100 qualified. See the
Ordering Information table for all automotive grade part
numbers.

* Industrial

* Isolated SPI

* Isolated RS-232, RS-485/RS-422, CAN

* Fieldbus Communications

* Motor Drive

These devices transfer digital signals between circuits
with different power domains, using as little as 0.78mW
per channel at 1Mbps (1.8V supply). The low-power
feature reduces system dissipation, increases reliability,
and enables compact designs.

The devices are available with a maximum data rate of
25Mbps or 200Mbps, and with outputs that are either
default high or default low. They feature low propagation
delay and low clock jitter, which reduces system latency.
Independent 1.71V to 5.5V supplies on each side of the
isolator also make the devices suitable for use as level
translators.

The MAX22290 features two channels transferring data
in the same direction. The two channels of the
MAX22291 transfer data in opposite directions, and this
makes the MAX22291 ideal for isolating the Tx and Rx
lines of a transceiver.

Applications

* Automotive

* Battery Management Systems (BMS)

* Chargers

* Hybrid Electric Vehicle

* Inverters

* AEC-Q100 Qualification for /V Devices

* Reinforced Galvanic Isolation for Digital Signals

* 8-SOIC with 4mm of Creepage and Clearance

* Withstands 3kVRMS for 60s (VISO)

* Continuously withstands 445VRMS (VIOWM)

* Withstands ±10kV Surge between GNDA and GNDB with 1.2/50µs Waveform

* High CMTI (50kV/µs, typ)

* Low Power Consumption

* 0.78mW per Channel at 1Mbps with VDD = 1.8V</description>
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